WO2022268217A1 - 基于基座的收容供电系统 - Google Patents

基于基座的收容供电系统 Download PDF

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Publication number
WO2022268217A1
WO2022268217A1 PCT/CN2022/101309 CN2022101309W WO2022268217A1 WO 2022268217 A1 WO2022268217 A1 WO 2022268217A1 CN 2022101309 W CN2022101309 W CN 2022101309W WO 2022268217 A1 WO2022268217 A1 WO 2022268217A1
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WO
WIPO (PCT)
Prior art keywords
base
charging
power supply
cleaning
devices
Prior art date
Application number
PCT/CN2022/101309
Other languages
English (en)
French (fr)
Inventor
李斌
柯亨钊
周露蓉
Original Assignee
浙江齐享科技有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority claimed from CN202110707881.0A external-priority patent/CN113472038A/zh
Priority claimed from CN202111314286.7A external-priority patent/CN116094078A/zh
Priority claimed from CN202111314248.1A external-priority patent/CN116094075A/zh
Priority claimed from CN202111314257.0A external-priority patent/CN116094077A/zh
Application filed by 浙江齐享科技有限公司 filed Critical 浙江齐享科技有限公司
Publication of WO2022268217A1 publication Critical patent/WO2022268217A1/zh

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    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02JCIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER; SYSTEMS FOR STORING ELECTRIC ENERGY
    • H02J7/00Circuit arrangements for charging or depolarising batteries or for supplying loads from batteries

Definitions

  • the present application relates to the field of storage and power supply of a tool, in particular to a storage and power supply system based on a base.
  • smart devices such as mobile phones, tablet computers, sweeping robots, vacuum cleaners, mopping machines, automatic washing machines, automatic baking machines, and automatic cooking machines.
  • the charging problem of smart devices has become a bigger problem.
  • Each device is compatible with different chargers and charging methods, which requires multiple charging positions to charge the device, which in turn occupies multiple sockets in the user's home, not only causing a shortage of sockets in the user's home, but also multiple chargers and charging methods It also creates a cleaning burden for the user.
  • users need to connect to the ground wall and drag a socket to provide more sockets, which not only has the possibility of tripping, but also may cause fire accidents caused by electrical overload.
  • mobile devices are used in different spaces. Therefore, the mobile device is easily placed in a corner, and then forgotten by the user, and it will take some effort to find it when looking for it next time. Different mobile devices are stacked separately in various corners, taking up a lot of space and easily becoming messy.
  • the smart device cannot be circuit-connected to the charging head, which may affect the operation of the smart device.
  • An object of the present application is to provide a base-based containment power supply system, wherein the containment power supply system includes at least one base and at least one device, wherein the device is accommodated by the base.
  • Another object of the present application is to provide a base-based containment power supply system, wherein the containment power supply system includes at least one base and at least two devices, wherein the devices are accommodated by the base.
  • Another object of the present application is to provide a base-based storage and power supply system, which includes at least one base and at least two devices, wherein the devices are charged by the base.
  • Another object of the present application is to provide a storage and power supply system based on a pedestal, wherein the pedestal is suitable for at least two devices of different types to be accommodated, wherein the type refers to the category formed by things with common characteristics, for example In other words, sweeping robots and vacuum cleaners belong to cleaning equipment used to clean surfaces, mobile phones and ipads belong to mobile devices used for interactive communication, and automatic cooking machines and baking machines belong to cooking equipment used for cooking.
  • Another object of the present application is to provide a base-based containment power supply system, wherein the containment power supply system is suitable for containing at least two devices of the same type.
  • Another object of the present application is to provide a housing power supply system based on a base, wherein the base accommodates at least one cleaning device used to clean the surface, for example, the cleaning device is implemented as a sweeping robot, a vacuum cleaner, a floor washing machine, etc. At least one of them.
  • Another object of the present application is to provide a storage and power supply system based on a pedestal, wherein the pedestal accommodates at least one mobile device for interactive communication, for example, the mobile device can be implemented as a mobile phone, an ipad, a game console, or an AR device , At least one of entertainment electric equipment.
  • Another object of the present application is to provide a storage and power supply system based on a base, wherein the base is accommodated in at least one cooking device, for example, the cooking device can be implemented as an automatic cooking machine, a baking machine, a thermos pot, a kettle at least one of the .
  • Another object of the present application is to provide a base-based storage and power supply system, wherein the storage and power supply system can charge and store at least two devices of different types.
  • Another object of the present application is to provide a housing power supply system based on a base, wherein the base supplies power to at least one cleaning device, for example, the cleaning device is implemented as at least one of a sweeping robot, a vacuum cleaner, and a washing machine.
  • Another object of the present application is to provide a base-based containment power supply system, wherein the base supplies power to at least one mobile device.
  • the mobile device can be implemented as a mobile phone, ipad, game console, AR device, entertainment electric At least one of the devices.
  • Another object of the present application is to provide a storage power supply system based on a base, wherein the base supplies power to at least one cooking device, for example, the cooking device can be implemented as an automatic cooking machine, a baking machine, a thermos pot, a kettle at least one of the .
  • Another object of the present application is to provide a storage and power supply system based on a base, wherein the base can continuously supply power to the device, so as to save the user from the process of charging the device and the pressure of finding a suitable charging cable and charging end.
  • Another object of the present application is to provide a storage power supply system based on the base, wherein the base can continuously supply power to at least two devices, so as to reduce the load on the charging end of the family and effectively slow down the charging end caused by the increase of electric equipment. tense question.
  • Another object of the present application is to provide a storage power supply system based on a base, wherein the storage power supply system can provide the equipment with an external battery that can be used alternately, and the replaceable external battery can prolong the use time of the equipment and prevent electric equipment from Insufficient electric capacity cannot keep cleaning.
  • an external battery refers to an external power supply device (power-holding device), which can store power and supply power to other devices.
  • Another object of the present application is to provide a storage and power supply system based on the base, wherein the base is charged on an external battery, which can effectively reduce the problem that the electric equipment cannot run for a long time due to battery damage, and reduce the cost of replacing the electric equipment.
  • the cost is improved, the service life of the electric equipment is improved, and the operation and maintenance cost of the electric equipment is reduced.
  • Another object of the present application is to provide a base-based containment and power supply system, wherein the containment and power supply system realizes the exchange of external batteries between different types of devices.
  • Another object of the present application is to provide an information relay power supply method, wherein the information relay power supply method reduces the number of required power supply sockets in the user's family.
  • Another object of the present application is to provide an information relay power supply method, wherein the information relay power supply method concentrates power supply on at least two charging devices, and the power supply methods include but are not limited to direct power supply and battery swap power supply.
  • Another object of the present application is to provide an information relay power supply method, wherein the information relay power supply method supplies power to other devices in a manner that can replace a power supply device.
  • both charging equipment and power supply equipment in this application refer to external power supply equipment (power-holding equipment), which can store electricity and supply power to other equipment.
  • Another object of the present application is to provide an information relay power supply method, wherein the direct power supply methods of the information relay power supply method include wired power supply and wireless power supply.
  • Another object of the present application is to provide an information relay power supply method, wherein the information relay power supply method includes at least one relay base, and the relay base is connected to an external circuit by a circuit, wherein the relay base can not only supply power to at least two devices, but also Communicatively connected to at least two devices.
  • Another object of the present application is to provide an information transfer power supply method, wherein the transfer base communicates with at least two devices, and the communication content includes but not limited to at least one device-related information and at least one instruction of the devices.
  • Another object of the present application is to provide an information relay power supply method, wherein the equipment-related information of the equipment communicated by the information relay power supply method includes, but is not limited to, an instruction-related information, a power supply-related information, and a device status information.
  • equipment instructions Relevant information includes but is not limited to instruction completion information, instruction operation information, and coordination of other equipment related information
  • equipment power supply related information includes but is not limited to power information and battery consumption
  • equipment status information includes but is not limited to equipment operating status and location information, navigation information.
  • Another object of the present application is to provide an information relay power supply method, wherein the information relay power supply method realizes that the equipment and the relay base are in the same local area network, and the relay base communicates with at least two devices through the LAN.
  • Another object of the present application is to provide an information relay power supply method, wherein the relay base of the information relay power supply method includes at least one base body and at least one device, wherein the device is electrically connected to the base body, and is powered by the power supply device Other devices powered are communicatively turned on.
  • Another object of the present application is to provide an auxiliary power supply system based on a basic device, wherein the auxiliary power supply system can provide external batteries for equipment to be used alternately, and replaceable external batteries can prolong the use time of equipment and prevent electric shocks.
  • the auxiliary power supply system can provide external batteries for equipment to be used alternately, and replaceable external batteries can prolong the use time of equipment and prevent electric shocks.
  • the problem that the device's battery capacity is not enough to keep cleaning.
  • Another object of the present application is to provide an auxiliary power supply system based on a basic device, wherein the auxiliary power supply system realizes the exchange of external batteries between different types of equipment.
  • Another object of the present application is to provide an auxiliary power supply system based on a basic device, wherein at least one other device is powered by the basic base of the basic power supply device that needs to be powered for a long time.
  • Another object of the present application is to provide a basic device-based auxiliary power supply system, in which at least one other device and the basic electric device are centrally powered by the basic base that needs to supply power to the basic power supply equipment for a long time.
  • Another object of the present application is to provide a basic device-based auxiliary power supply system, wherein the circuit connection is triggered by an action in which the power supply equipment and/or other equipment is placed.
  • Another object of the present application is to provide an auxiliary power supply system based on a basic device, wherein the power supply equipment and/or other equipment are circuit-connected in a manner of being placed on the foundation base, so as to jointly supply power to the power supply equipment and other equipment.
  • Another object of the present application is to provide an auxiliary power supply system based on a base device, wherein the base electric device and/or other equipment are circuit-connected in such a way that the base electric device and other equipment are commonly powered.
  • Another object of the present application is to provide an auxiliary power supply system based on a basic device, wherein other equipment is implemented as a power supply device, and the power supply device and the basic electric device are directly powered by the basic base, when the basic electric device is moved away from the basic base , the power supply equipment is replaced to supply power to the basic electric device, wherein the power supply equipment not only solves the difficulty of being powered for a long time, but is more suitable for being replaced by the basic electric device to ensure that the basic electric device is always powered.
  • Another object of the present application is to provide an auxiliary power supply system based on the basic device, wherein the power supply method of the basic electric device by the basic base includes but not limited to direct power supply and power exchange power supply, and then the basic electric device is placed on the basic base When being powered, the basic electric device and the basic base are kept at a certain distance, the basic electric device is continuously powered in exchange for the power supply equipment, so that the basic electric device is always powered.
  • Another object of the present application is to provide an auxiliary power supply system based on a basic device, wherein the auxiliary power supply system based on the basic device supplies power to other devices in a manner that one power supply device can be replaced alternately.
  • Another object of the present application is to provide an auxiliary power supply system based on a base device, wherein the direct power supply method of the base base includes wired power supply and wireless power supply.
  • Another object of the present application is to provide an auxiliary power supply system based on the basic device, wherein the priority of the basic electric device to be powered by the basic base is higher than that of other devices to be powered by the basic base.
  • Another object of the present application is to provide a containment power supply system, wherein the base can continuously supply power to at least one cleaning device and at least one charging device, wherein the cleaning device and the base are communicatively connected, and the base is placed on the base The charging device, even if the base is not electrically connected to the external circuit, the base can still be connected to the cleaning device, so as to prevent the base from being communicatively connected to the cleaning device in the event of a power outage.
  • Another object of the present application is to provide a storage power supply system, wherein, when the cleaning equipment is implemented as a washing machine, in order to prevent sewage from overflowing during the cleaning process, the washing machine can self-clean only when it is held on the base, and the washing machine can be cleaned by washing After the ground machine and the base are contacted and connected, and after the floor scrubber and the base are communicatively connected, the floor scrubber is kept on the base and self-cleans.
  • Another object of the present application is to provide a containment power supply system, in which other devices can be wirelessly powered by the wireless charging part of the device placed on the base, that is, the base does not need to reserve an appropriate size There is no need to adapt the charging cable port of the device, and the device connected to the base circuit can wirelessly supply power to other devices.
  • Another object of the present application is to provide a containment power supply system, wherein the device can be wirelessly powered by the base, so that the device only needs to be placed to be electrically connected to the base.
  • Another object of the present application is to provide a contained power supply system, wherein, the wireless charging port externally placed on the base increases the number of power supply devices on the base.
  • Another object of the present application is to provide a containment power supply system, wherein the containment power supply system intelligently prioritizes power supply to at least one of devices with low power, selected by the user, and with scheduled tasks.
  • Another object of the present application is to provide a containment power supply system, wherein at least two different types of devices are independently powered by the base.
  • Another object of the present application is to provide a containment power supply system, wherein the containment power supply system can cut off the power of high-power charging and discharging equipment without affecting the power supply of other equipment.
  • Another object of the present application is to provide a containment power supply system, wherein the containment power supply system cuts off power to self-cleaning devices without affecting other devices being charged.
  • Another object of the present application is to provide a storage power supply system, wherein, when the base actively detects or communicates to obtain the self-cleaning of the cleaning equipment, the base and the cleaning equipment are powered off, and the power-off instruction can come from the base or from the user, Cloud, other devices or other systems.
  • Another object of the present application is to provide a containment and power supply system, wherein the containment and power supply system can select at least one charging mode or power-off mode according to equipment-related information, power-related information, user selection, and directly detected information.
  • Another object of the present application is to provide a storage power supply system, wherein, the base is continuously powered by an external circuit and/or a charging device, and the base accommodates cleaning equipment.
  • the base When the base is not connected to the external circuit, it can also Communicatively connected to the cleaning device, so that the cleaning device is self-cleaning.
  • a pedestal-based containment power supply system of the present application that can achieve the foregoing and other purposes and advantages includes:
  • a base wherein the base has at least one charging part and at least one base main body, wherein the charging part is connected to the base main body by a circuit, wherein the base main body is powered;
  • At least one second device, and at least one of the first device and the second device is connected by the charging part circuit.
  • the base includes at least one housing portion, wherein the first device and the second device are accommodated in the housing portion, the housing portion includes at least a first housing body and a second housing body, and the first device can be accommodated In the first containment body, the second device can be contained in the second containment body.
  • the charging part includes at least a first charging terminal, a second charging terminal and a power supply terminal, wherein the first charging terminal and the second charging terminal are conductively connected to the power supply terminal, wherein the first charging terminal is It is formed on the first storage body, wherein the second charging end is formed on the second storage body, and the power supply end is powered by the base body.
  • the type of the first device is selected from at least one of combined cleaning device, communication device, charging device, mobile device, and cooking device
  • the type of the second device is selected from combined cleaning device, communication device, charging device, At least one of mobile devices and cooking devices.
  • the cleaning equipment is selected from at least one of a combined sweeping robot, a vacuum cleaner, and a floor washing machine.
  • the charging device is selected from at least one of a combined pluggable battery, a battery pack containing at least two batteries, and a power holding device.
  • a pedestal-based containment power supply system of the present application that can achieve the foregoing and other purposes and advantages includes:
  • a base wherein the base has at least one receiving portion, a charging portion and at least one base main body, wherein the charging portion is connected to the base main body by a circuit, wherein the base main body is powered;
  • At least one device wherein the device is accommodated in the housing part, and at least one of the devices is powered by the charging part, wherein the device acquires at least one instruction; or the device feeds back at least one device-related information.
  • the type of device is selected from at least one of combined cleaning device, communication device, charging device, mobile device, and cooking device.
  • the charging device is a power-holding device, a battery or a battery pack.
  • a pedestal-based containment power supply system of the present application capable of achieving the foregoing and other objectives and advantages, wherein the pedestal-based containment power supply system is suitable for supplying power to at least one device, including:
  • a base wherein the base has at least one accommodating portion, at least one charging portion and a base main body, the charging portion is electrically connected to the base main body, so that the device can be accommodated in the accommodating portion and connected to the charging portion circuit;
  • At least one charging device wherein the charging device is pluggably away from the base, so that the charging device and other devices are accommodated in the receiving part at intervals, and the charging device and other devices are respectively connected by the charging part circuit, and the charging device is away from the base Power is supplied to at least one other device in a manner, and the device that is remote from the base can be powered by the charging device.
  • the charging device is a battery, a battery pack containing at least two detachable batteries, or a power holding device.
  • the charging device has a charging communication module, wherein the charging communication module can communicate at least one piece of device-related information and/or at least one instruction for communication between the user and the device via the charging device.
  • the charging device acquires device-related information of the device in a manner of being connected to other devices; and/or the charging device sends user instructions to the device in a manner of being connected to other devices.
  • the charging device controls the device to perform work by being circuit-connected to other devices.
  • a pedestal-based containment power supply system of the present application that can achieve the aforementioned purpose and other purposes and advantages includes:
  • a base wherein the base has at least one receiving portion, a charging portion and at least one base body, wherein the charging portion is connected to the base body by a circuit, wherein the base body is powered;
  • At least one device wherein the device is accommodated in the accommodating part, and at least one of the devices is connected to the charging part circuit, wherein the base and/or the device communicate at least one device-related information.
  • the device has at least one device processing module, wherein the device processing module can communicate at least one device related information and/or an instruction.
  • the number of devices is more than two, and at least one piece of device-related information and/or an instruction can be communicated between the two devices.
  • the base includes at least one processing module, and the processing module of the base can communicate at least one device-related information and/or an instruction.
  • the type of device is selected from the group of types of cleaning device, communication device, charging device, mobile device, cooking device.
  • the charging device is a battery, a battery pack containing at least two detachable batteries, or a power holding device.
  • an auxiliary power supply system based on a basic device of the present application, which can achieve the aforementioned object and other objects and advantages, includes:
  • the foundation device includes at least one foundation base and at least one foundation electric device
  • the base electric device can be electrically connected in such a way that it can be placed on the foundation base, and the base electric device can perform work in a manner that can be away from the foundation base;
  • At least one piece of equipment wherein the base base is itself electrically connected to the base electric device, the equipment can be powered by the base base, and the equipment performs work in a manner that can be remote from the base base.
  • the cleaning device is a floor scrubber
  • the floor scrubber includes at least one operating head and at least one machine body, wherein the operating head of the floor scrubber is placed at a position lower than that of the foundation base and is connected to the circuit by a circuit The location of the foundation base.
  • a housing power supply system of the present application capable of achieving the foregoing and other objectives and advantages, wherein the power supply system is suitable for supplying power to at least one device, includes:
  • a base wherein the base includes a base main body, at least one accommodating portion and at least one charging portion, wherein the charging portion is connected to the base main body by a circuit, wherein the base main body is connected to an external circuit by a circuit, and the charging portion is arranged on The receiving part, wherein the receiving part further includes at least one first receiving part and at least one second receiving part, for the device to be circuit-connected to the charging part in a manner of being arranged in the first receiving part; and
  • At least one charging device wherein the charging device is circuit-connected to the charging part in a manner of being arranged in the second receiving part, and the main body of the base is always connected to the charging device and/or the external circuit.
  • a housing power supply system of the present application capable of achieving the foregoing and other objectives and advantages, wherein the power supply system is suitable for supplying power to at least one device, includes:
  • a base wherein the base includes a base main body, at least one accommodating portion and at least one charging portion, wherein the charging portion is connected to the base main body by a circuit, wherein the base main body is connected to an external circuit by a circuit, and the charging portion is arranged on The receiving part, wherein the receiving part further includes at least one first receiving part and at least one second receiving part, for the device to be stored in the charging part; and
  • At least one charging device wherein the charging device is arranged in the second receiving part and connected to the charging part by a circuit, and is kept charged by at least one of storing electricity and being connected to the base main body circuit.
  • the charging device by connecting the charging device circuit to the battery, the charging device always maintains power by storing electricity, being connected to the main body circuit of the base, and replacing at least one of the pluggable batteries.
  • the present application provides a containment power supply system, comprising:
  • a base wherein the base includes a base main body, at least one accommodating portion and at least one charging portion, wherein the charging portion is connected to the base main body by a circuit, wherein the base main body is connected to an external circuit by a circuit, and the charging portion is arranged on The housing part, wherein the housing part further comprises at least one first housing part and at least one second housing part;
  • At least one first device wherein the first device is accommodated in the first housing part
  • At least one charging device wherein the charging device is arranged in the second receiving part and connected to the charging part by a circuit, and is kept charged by at least one of storing electricity and being connected to the base main body circuit.
  • the device includes at least one first device and at least one second device, and at least one of the first device and the second device is connected by the charging part circuit, wherein the base Including at least one of the housing parts, the first device and the second device are housed in the housing part, the housing part includes at least a first housing body and a second housing body, the first device can Being housed in the first housing body, the second device can be housed in the second housing body.
  • the charging part includes at least one first charging terminal and at least one second charging terminal, the first charging terminal is arranged on the first receiving body, and the second charging terminal is arranged on the The second receiving body, the first charging end and the second charging end are connected to the base body by a circuit, and the first charging end and the second charging end can output current to supply power respectively on the first device and/or the second device.
  • the type of the first device is selected from at least one of combined smart devices, cleaning devices, communication devices, charging devices, mobile devices, and cooking devices
  • the type of the second device is selected from combined smart devices , at least one of cleaning equipment, communication equipment, charging equipment, mobile equipment, and cooking equipment.
  • the devices include at least one charging device, and the charging device is selected from at least one of a combined pluggable battery, a battery pack containing at least two batteries, and a power-holding device. one.
  • the first device is a charging device, wherein the charging device can be plugged into the base, so that the charging device and the second device are accommodated in the accommodating portion at intervals,
  • the charging device and the second device are respectively connected by the charging part circuit, and the second device that is far away from the base can be powered by the charging device.
  • the device includes at least one charging device, and the charging device has a charging communication module, and the charging communication module can communicate at least one device-related information and/or at least one instruction for users and other devices to borrow communicated by the charging device.
  • the device includes at least one charging device, and the charging device obtains the device-related information of the device in a manner of being circuit-connected to other devices; and/or the charging device is circuit-connected
  • the user's instruction is sent to the device by connecting to other devices.
  • the base includes at least one processing module, wherein the processing module is circuit-connected to the charging part, and the processing module of the base can communicate at least one device-related information and/or one Instructions, the base and the device communicate at least one device-related information and/or an instruction.
  • said device comprises at least one cleaning device, said base is continuously powered by said charging device and/or an external circuit, even if the base is not connected to an external circuit, wherein at least one of said cleaning devices is powered by The means of being held in the first housing part is held in communication with the base.
  • the device includes at least one first device and at least one second device, the first device is charged by the base in one of a first device charging mode, a first device slow charging mode and a power-off mode To supply power, the second device is powered by the base in one of a second device charging mode, a second device slow charging mode and a power-off mode.
  • the device includes at least one first device and at least one second device, the first device is charged by the base in one of a first device charging mode, a first device slow charging mode and a power-off mode To supply power, the second device is powered by the base in one of a second device charging mode, a second device slow charging mode and a power-off mode.
  • the accommodating portion includes at least one first accommodating body, and the base further includes an auxiliary cleaning portion, wherein the auxiliary cleaning portion is arranged on the supporting surface of the first accommodating portion for
  • the cleaning device has at least one working head, and the working head of the cleaning device is correspondingly held on the auxiliary cleaning part, wherein the auxiliary cleaning part is used to assist the self-cleaning of the working head.
  • the device includes a first device
  • the base includes at least one information processing part
  • the information processing part includes a communication module, at least one control module and a selection module
  • the charging part includes a first A base charging unit
  • the system selection mechanism sends the system initial result of one of the first device charging mode, the first device slow charging mode and a power-off mode to the control module
  • the control module according to the system
  • the selected initial result and the user selected initial result are processed to obtain a selected result in one of a first device charging mode, a first device slow charging mode, and a power-off mode
  • the first base charging unit is The control module controls the selected charging module
  • the base includes a base body, at least one receiving portion, at least one charging portion, and an information processing portion, and the information processing portion is communicably connected to the charging portion, wherein the charging The part includes at least two base charging parts and the power supply terminals that are respectively circuit connected to the two base charging parts, wherein the power supply terminals are circuit connected to the base main body, wherein the base main body is connected by a circuit
  • each of the base charging parts is controlled by the information processing part to output a current corresponding to at least one of the circuit modes of the charging mode and the power-off mode, and at least two of the devices are respectively being housed in the housing part, wherein at least one of the devices is circuit-connected to the charging part in a manner of being disposed in the housing part, and the device is circuit-connected to at least one base charging part , the device is circuit-connected by the base in one of a charging mode and a power-off mode.
  • the information processing unit includes a communication module, at least one control module, and a selection module, wherein the charging unit and the communication module are communicably connected to the selection module, and the selection module
  • the module includes at least one user-selected institution and a system-selected institution, wherein the control module receives a user-selected initial result from the user-selected institution and a system-selected initial result sent by the system-selected institution,
  • the communication module obtains at least one device-related information of the device and the charging part obtains the device power information corresponding to the device, it processes to obtain a selected result, so as to control each base charging part of the charging part outputting a current corresponding to at least one of the circuit mode of the charging mode and the power-off mode corresponding to the selected result.
  • the user selection mechanism is selected by the user to fast charge, slow charge or power off, and according to the device related information sent by the communication module and the device power information sent by the charging unit, the system
  • the selecting module selects at least one circuit mode of the charging mode and the power-off mode.
  • the communication module can communicatively acquire the device-related state of the device, wherein the device-related state is selected from the type group of high-current discharge state and scheduled task state, and each of the base charging parts according to The electric current of the device connected to the circuit obtains the power related information of the device, and when the power of the device is less than a first threshold, the system selection module receives the power of the device provided by the charging part of the base If the power is less than the first threshold, the initial result of the system selection selected by the system selection module is the fast charging mode; when the power of the device is greater than the first threshold and less than 100%, the system selection The determination module receives that the power of the device provided by the base charging part is greater than a first threshold and less than 100%, and the system selection initial result selected by the system selection module is the slow charging mode.
  • the base charging unit includes a first base charging unit and a second base charging unit
  • the device includes at least one first device and at least one second device, wherein the first base
  • the dock charging part is circuit-connectable to the first device
  • the second base charging part is circuit-connectable to the second device, wherein the first base charging part is circuit-connected to the first device.
  • the current of the device and the second device obtains the power information of the first device and the second device
  • the second base charging part obtains the power information of the second device connected to the circuit according to the current The power information of the device.
  • the device includes a first device, the device-related information of the first device is a large current discharge state, the communication module receives the large current discharge state of the first device, and the The base charging part includes a first base charging part, wherein the system selection mechanism sends the system initial result of the power-off mode of the first device to the control module, and the control module according to the system selection initial result and The user selected initial result processing results in a selected result in a first device power off mode, and the first base charging unit is controlled to be powered off by the control module.
  • the first device is a cleaning device
  • the communication module sends an electrical signal receiving the self-cleaning of the cleaning device to the system selection module, wherein The system selection module selects a first device power-off mode, wherein the control module receives the first device power-off mode sent by the system selection module, and the control module processes and controls the charging of the base
  • the unit is powered down in a circuit mode of the first device power down mode.
  • the device includes a second device, and the second device is operated by the second base charging unit in one of the second device fast charging mode, the second device slow charging mode and the power-off mode mode output corresponding current, wherein when the information processing part processes that the first device is in a high-current discharge state, the circuit mode in which the second device is powered by the second base charging part is not affected by it, and the The control module selects the power supply circuit modes of the second device and the first device respectively.
  • the device includes at least one second device, and the second device is operated by the second base charging unit in one of the second device fast charging mode, the second device slow charging mode and the power-off mode
  • the circuit mode outputs a corresponding current, wherein after the control module receives that the first device is in the fast charging mode of the first device, the control module controls at least one of the second devices to be powered off.
  • the second device is a charging device, wherein the charging device is selected from the type group of combining a battery, a battery pack containing and electrically connecting at least two batteries, and a power holding device.
  • the communication module includes at least one communication unit, and each communication unit communicates with the corresponding device in a contact communication manner.
  • At least one charging device wherein the charging device is circuit-connected to one of the base charging parts in a manner of being placed in the receiving part, and the base charging part is controlled by the information processing part A current corresponding to at least one of a circuit mode of the charging mode and the power-down mode of the device is controllably output.
  • the information processing unit includes a communication module, at least one control module, and a selection module, wherein the charging unit and the communication module are communicably connected to the selection module, and the selection module
  • the module includes at least one user-selected institution and a system-selected institution, wherein the control module receives a user-selected initial result from the user-selected institution and a system-selected initial result sent by the system-selected institution,
  • the communication module obtains at least one device-related information of the device and the charging part obtains the device power information corresponding to the device, it processes to obtain a selected result, so as to control each base charging part of the charging part outputting a current corresponding to at least one of the circuit mode of the charging mode and the power-off mode corresponding to the selected result.
  • the base further includes at least one detection module, wherein the detection module directly detects the device status of the at least one device to obtain detection-related information, and the system selection mechanism receives the detection
  • the detection-related information sent by the module, the device-related information sent by the communication module, and the power-related information of the device sent by the charging unit of the base are processed to obtain an initial result of the first device system selection.
  • FIG. 1A is a schematic perspective view and a left side view of a base-based storage and power supply system in a state where the base and equipment are separated according to a preferred embodiment of the present application.
  • FIG. 1B is a schematic perspective view of the device of the base-based storage and power supply system of the above-mentioned preferred embodiment in a state of being accommodated by the base.
  • FIG. 2A is a schematic perspective view of another preferred embodiment of a housing and power supply system based on a base.
  • FIG. 2B is another perspective view of the base-based storage and power supply system of the above-mentioned preferred embodiment.
  • Fig. 2C is a partial schematic diagram of a storage and power supply system based on a base in a modified embodiment of the above-mentioned preferred embodiment.
  • FIG. 2D is a schematic partial top view of the base according to FIG. 2A of the above-mentioned preferred embodiment.
  • FIG. 2E is a perspective schematic diagram of a modified embodiment of the base-based storage and power supply system according to FIG. 2A among the modified embodiments of the above-mentioned preferred embodiment and a partially enlarged schematic diagram thereof.
  • Fig. 3A is a schematic left view and a partially enlarged schematic view of a base-based storage and power supply system of another preferred embodiment.
  • FIG. 3B is another schematic perspective view and a partially enlarged schematic view of the base-based storage and power supply system of the above-mentioned preferred embodiment.
  • Fig. 4 is a schematic perspective view of another preferred embodiment of a storage and power supply system based on a base.
  • FIG. 5A is a three-dimensional schematic view of a base of a base-based power supply system according to another preferred embodiment.
  • Fig. 5B is a three-dimensional schematic diagram of the base-based storage and power supply system and a partial schematic diagram of the cleaning equipment of the above-mentioned preferred embodiment.
  • FIG. 5C is a right side schematic view of the base-based storage and power supply system of the above-mentioned preferred embodiment.
  • FIG. 5D is a three-dimensional schematic diagram of the storage and power supply system based on the base of the above-mentioned preferred embodiment and a partial schematic diagram of self-cleaning of the cleaning equipment placed on the base.
  • FIG. 6A is a schematic perspective view of a base of another preferred embodiment of a base for accommodating a power supply system based on the base.
  • FIG. 6B is another schematic perspective view of the base of the base-based housing and power supply system of the above-mentioned preferred embodiment.
  • FIG. 7A is a schematic perspective view of a base of a base-based storage and power supply system of a modified embodiment of the above-mentioned preferred embodiment.
  • FIG. 7B and FIG. 7C are application diagrams of the base-based storage and power supply system of the above-mentioned preferred embodiment.
  • Fig. 8A is a schematic top view of another preferred embodiment of a housing and power supply system based on a base.
  • FIG. 8B is a schematic perspective view of the base-based storage and power supply system of the above-mentioned preferred embodiment.
  • Fig. 8C is a schematic right side view of the base-based storage and power supply system of the above-mentioned preferred embodiment.
  • FIG. 8D is another perspective view of the base-based storage and power supply system of the above-mentioned preferred embodiment.
  • FIG. 9A is another perspective view of a base-based storage and power supply system in another preferred embodiment.
  • FIG. 9B is a schematic perspective view of the base-based storage and power supply system of the above-mentioned preferred embodiment.
  • FIG. 9C is a schematic perspective view of a base-based storage and power supply system of a modified embodiment of the above-mentioned preferred embodiment.
  • FIG. 10A is a schematic perspective view of another preferred embodiment of a housing and power supply system based on a base.
  • Fig. 10B is a schematic diagram of the base-based storage and power supply system of the above-mentioned preferred embodiment.
  • 11A to 11D are schematic diagrams of application scenarios of the base-based storage and power supply system.
  • Fig. 12A is a three-dimensional schematic diagram of a base-based containment and power supply system of a modified embodiment of another preferred embodiment.
  • Fig. 12B is a schematic perspective view of another modified embodiment of the base-based storage and power supply system of the above-mentioned preferred embodiment.
  • FIG. 12C is a schematic perspective view of a base-based storage and power supply system of another modified embodiment of the above-mentioned preferred embodiment of the present application.
  • Fig. 12D is a three-dimensional schematic diagram of a base-based containment and power supply system of another modified embodiment of the above-mentioned preferred embodiment.
  • Fig. 12E is a schematic perspective view of another modified embodiment of the base-based storage and power supply system of the above-mentioned preferred embodiment.
  • Fig. 13A is a three-dimensional schematic diagram of a base-based containment and power supply system of a modified embodiment of another preferred embodiment.
  • Fig. 13B is a three-dimensional schematic diagram of a base-based storage and power supply system of another modified embodiment of the above-mentioned preferred embodiment.
  • Fig. 13C is a schematic perspective view of another modified embodiment of the base-based storage and power supply system of the above-mentioned preferred embodiment.
  • Fig. 13D is a three-dimensional schematic diagram of a base-based containment and power supply system of another modified embodiment of the above-mentioned preferred embodiment.
  • Fig. 13E is a schematic perspective view of another modified embodiment of the base-based storage and power supply system of the above-mentioned preferred embodiment.
  • Fig. 13F is a schematic perspective view of another modified embodiment of the base-based storage and power supply system of the above-mentioned preferred embodiment.
  • Fig. 13G is a schematic perspective view of another modified embodiment of the base-based storage and power supply system of the above-mentioned preferred embodiment.
  • Fig. 16A is a schematic diagram of relay device-related information and/or instructions in the information relay power supply method according to the above-mentioned preferred embodiment of the present application.
  • Fig. 16B is a schematic diagram of a method for transferring device-related information in the method for transferring power supply for information in the above-mentioned preferred embodiment.
  • Fig. 16C is a schematic diagram of the relay base communicating with the device to relay device-related information in the information relay power supply method of the above-mentioned preferred embodiment.
  • Fig. 16D is a schematic diagram of the device and the transfer base relaying device-related information through the power supply device in the information transfer power supply method of the above-mentioned preferred embodiment.
  • Fig. 16E is a schematic diagram of relaying information related to the charging device and the relay base through at least one external battery circuit connected to the relay base in the information transfer power supply method of the above-mentioned preferred embodiment.
  • FIG. 16F is a schematic diagram of the information transfer power supply method of the above-mentioned preferred embodiment in which the charging device and the transfer base transfer device-related information through at least one external battery connected to the device by a circuit.
  • FIG. 17A is a schematic diagram of a charging device and an external battery connected to the device via a circuit to transfer related information of the device in the information transfer power supply method of the above-mentioned preferred embodiment.
  • Fig. 17B is a schematic diagram of relaying device-related information when the two devices 20 of the information relaying power supply method of the above-mentioned preferred embodiment are respectively circuit-connected to the relaying base.
  • Fig. 17C is a schematic diagram of the two devices communicating with the relay base in the information transfer power supply method of the above-mentioned preferred embodiment.
  • Fig. 17D is a schematic diagram of the communication connection between two devices in the information transfer power supply method of the above-mentioned preferred embodiment.
  • Fig. 18 is a schematic diagram of another device-related information transfer in the information transfer power supply method of the above-mentioned preferred embodiment.
  • Fig. 19A is a schematic diagram of command transfer in the information transfer power supply method of the above-mentioned preferred embodiment.
  • Fig. 19B is a schematic diagram of another method of the information transfer power supply method of the above-mentioned preferred embodiment.
  • FIG. 20A is a schematic perspective view of a base of an auxiliary power supply system based on a basic device according to another preferred embodiment.
  • Fig. 20B is another perspective view of the base of the auxiliary power supply system based on the basic device of another preferred embodiment.
  • Fig. 20C is a schematic perspective view of a base of an auxiliary power supply system based on a basic device according to another variant embodiment of another preferred embodiment.
  • Fig. 20D is a schematic perspective view of the base of the base device-based auxiliary power supply system according to another variant embodiment of the preferred embodiment.
  • Fig. 21 is an application schematic diagram of an auxiliary power supply system based on a basic device of another preferred embodiment.
  • Fig. 22A is a schematic perspective view of another preferred embodiment of a storage and power supply system.
  • Fig. 22B is a schematic diagram of the base for accommodating the power supply system of the above-mentioned preferred embodiment being connected to an external circuit.
  • FIG. 22C is a schematic diagram of the base of the storage and power supply system in the above-mentioned preferred embodiment without being connected to an external circuit.
  • Fig. 22D is a three-dimensional schematic diagram of a storage and power supply system of a modified embodiment of the above-mentioned preferred embodiment.
  • Fig. 23A is a three-dimensional schematic diagram of another preferred embodiment in a state where the power supply system is accommodated.
  • Fig. 23B is another perspective view of the storage and power supply system of the above-mentioned preferred embodiment.
  • Fig. 24A is a schematic diagram of a state of a base for accommodating a power supply system according to another preferred embodiment of the present application.
  • Fig. 24B is a schematic perspective view of another state of the base for accommodating the power supply system of the above-mentioned preferred embodiment.
  • Fig. 24C is a schematic perspective view of another state of the base for accommodating the power supply system of the above-mentioned preferred embodiment.
  • 25A to 25C are schematic perspective views of another preferred embodiment of the storage and power supply system.
  • Fig. 25D is a three-dimensional schematic diagram of a storage and power supply system of a modified embodiment of the above-mentioned preferred embodiment.
  • 26A to 26C are three-dimensional schematic views of another preferred embodiment of the storage and power supply system.
  • Fig. 26D is another perspective view of the storage and power supply system of the modified embodiment of the above-mentioned preferred embodiment.
  • Fig. 26E is another perspective view of the storage and power supply system of the modified embodiment of the above-mentioned preferred embodiment.
  • Fig. 26F is another perspective view of the storage and power supply system of the modified embodiment of the above-mentioned preferred embodiment.
  • Fig. 26G is another perspective view of the storage and power supply system of the modified embodiment of the above-mentioned preferred embodiment.
  • Fig. 26H is another perspective view of the storage and power supply system of the modified embodiment of the above-mentioned preferred embodiment.
  • Fig. 26I is another perspective view of the storage and power supply system of the modified embodiment of the above-mentioned preferred embodiment.
  • Fig. 26J is another perspective view of the storage and power supply system of the modified embodiment of the above-mentioned preferred embodiment.
  • FIGS. 27A to 27N are schematic perspective views of another preferred embodiment of a base for accommodating a power supply system.
  • Fig. 27O is another perspective view of the storage and power supply system of another preferred embodiment.
  • the term “a” should be understood as “at least one” or “one or more”, that is, in one embodiment, the number of an element can be one, while in another embodiment, the number of the element
  • the quantity can be multiple, and the term “a” cannot be understood as a limitation on the quantity.
  • references to "one embodiment,” “an embodiment,” “example embodiments,” “various embodiments,” “some embodiments,” etc. indicate that such embodiments describing the invention may include a particular feature, structure, or characteristic , but not every embodiment must include this feature, structure or characteristic. Furthermore, some embodiments may have some, all, or none of the features described for other embodiments.
  • first, second, third, etc. may be used in this application to describe various information, the information should not be limited to these terms. These terms are only used to distinguish information of the same type from one another. For example, without departing from the scope of the present application, first information may also be called second information, and similarly, second information may also be called first information. Depending on the context, the word “if” as used herein may be interpreted as “at” or “when” or “in response to a determination.”
  • the base-based containment power supply system includes at least one base 10, wherein the base 10 accommodates at least one device 20, the base 10 includes a base body 11, a receiving part 12 and defines at least one receiving space 120, wherein the receiving part 12 is arranged on the base main body 11 to define the receiving space 120, when the device 20 is When placed in the storage part 12, the device 20 is stored in the storage space 120 of the storage part 12, so that at least one device 20 is accommodated by the storage power supply system.
  • the number of devices 20 is more than two. That is to say, at least two devices 20 are respectively placed in the two receiving spaces 120, and at least two devices 20 are collectively housed in the base 10.
  • the base 10 includes a base body 11 , a receiving portion 12 and at least one charging portion 13 , wherein the charging portion 13 is connected to the base body 11 by a circuit.
  • the device 20 When the device 20 is placed on the charging portion 13 , the device 20 is powered by the charging portion 13 , and further accommodate the power supply system to accommodate and supply power to at least one device 20 .
  • the base 10 can accommodate at least three devices 20 , and the present application is not limited thereto.
  • the base 10 can charge at least three devices 20 , and the present application is not limited thereto.
  • the base body 11 of the base 10 includes a support body 111 and a power supply part 112, the power supply part 112 is arranged on the support body 111, and the power supply part 112 can be connected to an AC power supply or a DC power supply, so that the base 10 can provide At least two devices 20 are powered.
  • the charging unit 13 receives the current from the power supply unit 112 and outputs the current.
  • the power supply unit 112 can rectify the input AC power to output DC current.
  • the devices 20 are respectively a first device 2001 and a second device 2002, wherein the first device 2001 and the second device 2002 can be respectively placed in the receiving parts 12 of different cavities.
  • the receiving portion 12 includes a first receiving body 121 and a second receiving body 122 .
  • the first device 2001 is supported by the first storage body 121
  • the second storage body 122 is supported and stored by the second storage body 122 .
  • the receiving portion 12 has at least one first receiving cavity 1210 and one second receiving cavity 1220 , the first receiving cavity 1210 is defined by the receiving body 121 , and the second receiving cavity 1220 is defined by the second receiving body 122 .
  • the first device 2001 is housed in the first storage chamber 1210
  • the second device 2002 is housed in the second storage chamber 1220 .
  • the charging part 13 is disposed on at least one of the first receiving body 121 and the second receiving body 122 .
  • the charging section 13 charges at least one device 20
  • the charging section 13 includes a first charging terminal 131, a second charging terminal 132 and at least one power supply terminal 130
  • the first charging terminal 131 and the second charging terminal 132 are respectively Being circuit connected to the power supply terminal 130
  • the power supply terminal 130 of the charging unit 13 is circuit connected to the power supply unit 112 , so that at least one device 20 is circuit connected to the power supply unit 112 .
  • the first charging terminal 131 and the second charging terminal 132 are connected to the power supply part 112 by a circuit, so that when the power supply part 112 is powered by commercial power and/or power supply, the first charging terminal 131 and a second charging terminal 132 can output current .
  • the first charging end 131 is set in the first receiving cavity 1210 and the second charging end 132 is set in the second receiving cavity 1220.
  • the first charging end 131 is connected to the first device 2001 by a circuit, and the second charging end 132 is connected by a circuit to the The second device 2002.
  • the first accommodating cavity 1210 and the second accommodating cavity 1220 are disposed on the sides of the base main body 11 so as to surround them. That is to say, the first device 2001 and the second device 2002 housed in the storage unit 12 are held at intervals, which reduces mutual interference between products.
  • the first charging end 131 of the charging part 13 is electrically connected to the first device 2001 by the electrical connection method
  • the second charging end 132 is electrically connected to the second device 2002 by the electrical connection method, which may be the same or different, depending on the type of the device 20 selected.
  • the electrical connection may be implemented as a contact electrical connection or a non-contact electrical connection, which is not limited in this application.
  • contact electrical connection can be through contact contact, plug contact (for example, as USB interface, TYPE C interface, Lightning interface), non-contact electrical connection can be implemented as electromagnetic induction, magnetic resonance, microwave electrical transmission , those skilled in the art can understand and know.
  • the first device 2001 is selected from at least one of a smart device 21A, a cleaning device 22A, a communication device 23A, a charging device 24A, a mobile device 25A, a walking device 26A and a cooking device.
  • the cleaning equipment 22A is implemented as at least one of at least one sweeping robot 22B, a vacuum cleaner 22C, and at least one floor washing machine 22D.
  • the mobile device 25A may be implemented as at least one of a mobile phone 25B, an ipad 25C, a game console, an AR device, and an electric entertainment device.
  • the cooking equipment may be implemented as at least one of an automatic cooking machine, a roaster, a thermos pot, and a kettle.
  • the second device 2002 is selected from at least one of a smart device 21A, a cleaning device 22A, a communication device 23A, a charging device 24A, a mobile device 25A, a walking device 26A and a cooking device.
  • the cleaning equipment 22A is implemented as at least one of at least one sweeping robot 22B, a vacuum cleaner 22C, and at least one floor washing machine 22D.
  • the mobile device 25A may be implemented as at least one of a mobile phone 25B, an ipad 25C, a game console, an AR device, and an electric entertainment device.
  • the cooking equipment can be implemented as at least one of an automatic cooking machine, a baking machine, a thermos pot, and a kettle.
  • the first charging terminal 131 is implemented as a contact. In this way, when the first device 2001 is accommodated in the first receiving cavity 1210 , the first device 2001 is electrically connected to the first charging end 131 in a manner of direct contact.
  • the second charging terminal 132 is embodied as a contact. In this way, when the second device 2002 is accommodated in the second receiving cavity 1220 , the second device 2002 is electrically connected to the second charging terminal 132 in a direct contact manner.
  • the first charging terminal 131 is implemented as at least one of a USB interface, a TYPE C interface, and a Lightning interface, and the first charging terminal 131 is implemented by implementing a direct contact connection with the first device 2001. connect.
  • the second charging terminal 132 is implemented as at least one of a USB interface, a TYPE C interface, and a Lightning interface. In this way, when the second device 2002 is accommodated in the second receiving cavity 1220 , the second device 2002 is electrically connected to the second charging terminal 132 in a direct contact manner.
  • first charging terminal 131 and the second charging terminal 132 can also be implemented as other interfaces, such as VGA data lines, DVI data lines, HDMI data lines, not only for electrical connection, but also for other information transmission, so that the base 10 can be communicatively connected to other devices 20, and this application is not limited in any way.
  • the first charging terminal 131 is implemented as a non-contact connection, for example, electromagnetic induction, magnetic resonance, microwave power transmission, for example, the first charging terminal 131 and the first device 2001
  • the electrical connection is made by magnetic resonance, without any limitation of this application.
  • the second charging end 132 is implemented as a non-contact connection, for example, electromagnetic induction, magnetic resonance, microwave electrical transmission, for example, the second charging end 132 and the first device 2001 are electrically connected by magnetic resonance. connection, this application is not subject to any restrictions.
  • the first device 2001 has a first charging port 20010
  • the second device 2002 has a second charging port 20020
  • the first charging port 20010 of the first device 2001 is in contact with the first charging end 131 of the base 10
  • the second charging port 20020 of the second device 2002 is in contact with the second charging terminal 132 of the base 10
  • the charging types of the first charging port 20010 of the first device 2001 and the second charging port 20020 of the second device 2002 are not subject to any limitation, and can be designed according to specific conditions.
  • the first charging port 20010 is set at the bottom of the first device 2001
  • the second charging port 20020 is set at the bottom of the second device 2002.
  • This application does not accept any restrictions here, and it can be used according to the first The type of device 2001 and the second device 2002 are specifically designed.
  • the storage power supply system is applied in the home environment, and the first device 2001 and the second device 2002 are stored in the base 10 and then applied in the home environment.
  • the types of the first device 2001 and the second device 2002 are not limited by this application.
  • the storage power supply system When the storage power supply system is applied to the living room in the home environment, the storage power supply system can preferably be set at a certain height away from the ground, so that the user can directly pick and place at least two devices 20 stored in the storage power supply system , where the power supply system can be comfortably held by the user.
  • the base 10 for accommodating the power supply system When the base 10 for accommodating the power supply system is placed on the coffee table, the user can reach out to obtain the device 20 for accommodating the power supply system.
  • the containment power supply system is suitable for being applied to the same type of equipment 20.
  • the power supply system is adapted to be applied to at least two cleaning devices 22A.
  • the device 20 includes two cleaning devices 22A, at least part of which are jointly housed in the base 10 .
  • the types of the two cleaning devices 22A are not limited by this application, and the two cleaning devices 22A may be of different types or the same type, and this application is not subject to any limitation here.
  • one of the cleaning devices 22A is fully automatic and is always used for floor cleaning, so the base 10 is placed on the ground to facilitate the placement of cleaning devices 22A for different surface cleaning.
  • one of the cleaning devices 22A is accommodated in the first receiving cavity 1210 of the first receiving body 121
  • the other of the cleaning devices 22A is accommodated in the second receiving cavity 1220 of the second receiving body 122 .
  • one of the cleaning devices 22A is implemented as a sweeping robot 22B, and the other of the cleaning devices 22A is implemented as a vacuum cleaner 22C.
  • the vacuum cleaner includes a detachable grip portion 221C and a dust collection body 222C detachably connected to the grip portion 221C.
  • the grip portion 221C drives the dust collection body 222C to suck dust.
  • the suction main body 222C and the grip part 221C are detachably provided.
  • the handle portion 221C of the vacuum cleaner 22C is detachably disposed in the second receiving cavity 1220 .
  • the first cleaning device 22A is electrically connected to the first charging terminal 131 in a contact connection manner.
  • the grip portion 221C of the cleaning device 22A is electrically connected to the first charging terminal 131 in a contact connection manner.
  • the cleaning robot 22B is electrically connected to the first charging terminal 131 in a contact connection manner.
  • the first charging end 131 is set in a manner facing the remote end surface 112 and is provided with the first receiving cavity 1210.
  • the cleaning robot 22B is moving, it is held by the first charging end 131 in a limited position, so that the cleaning robot 22B is moving. can be snugly adsorbed.
  • the first charging end 131 is implemented as two contacts, which are directly connected to a charging port of the cleaning robot 22B, and the first charging end 131 is protruded from the surface defining the first receiving cavity 1210. , in such a way that the first charging end 131 can be directly contacted by the cleaning robot 22B for charging.
  • the first charging end 131 has certain magnetism, so that the cleaning robot 22B can be attracted to the first charging end 131 during the moving process.
  • the first housing body 121 includes a first bottom surface 1211, a first side wall 1212 and a first top surface 1213, wherein the first side wall 1212 extends from the first bottom surface 1211 to the first top surface 1213 to define the first housing Cavity 1210.
  • the first charging terminal 131 is formed on the first bottom surface 1211 of the first receiving body 121 .
  • the cleaning robot 22B moves on the first bottom surface 1211 , it can be contacted and connected to the first charging terminal 131 .
  • the distance between the first charging end 131 and the first side wall 1212 is adapted to the distance between the surrounding wall of the cleaning robot 22B and the charging port of the cleaning robot 22B.
  • the first charging end 131 has a certain length, so that robots 211 of different sizes can be adaptively charged.
  • the first charging end 131 is disposed on the first side wall 1212 defining the first receiving cavity 1210 . More optionally, the first charging end 131 is protruded from the first side wall 1212 of the first receiving body 121 , so as to be suitable for a charging position on the surrounding wall of the cleaning robot 22B.
  • the first charging end 131 is disposed on the first top surface 1213 defining the first receiving cavity 1210 . More optionally, the first charging end 131 is configured in such a way that it protrudes from the first top surface 1213 of the first receiving body 121 .
  • the grip portion 221C of the vacuum cleaner 22C is electrically connected to the second charging end 132 in a contact connection manner.
  • the second charging end 132 is disposed in the second receiving cavity 1220 of the second receiving body 122 .
  • the second receiving body 122 defines a second supporting surface 1221 and a second side wall 1222 , wherein the second side wall 1222 axially extends from the second supporting surface 1221 to define the second receiving cavity 1220 .
  • the second charging end 132 is disposed on the second supporting surface 1221 to be electrically connected to the cleaning device 22A supported by the second supporting surface 1221 .
  • the second charging terminal 132 is disposed on the second side wall 1222 and is electrically connected to the cleaning device 22A in a manner of adhering to the second side wall 1222 .
  • the first cleaning device 22A and the cleaning device 22A are electrically connected to the first charging terminal 131 in the form of a socket and a plug.
  • the first cleaning device 22A is electrically connected to the first charging end 131 in a non-contact manner.
  • the cleaning device 22A is electrically connected to the first charging terminal 131 in a non-contact connection.
  • the non-contact connection is selected from the types of electromagnetic induction, magnetic resonance, and microwave electric transmission, and the present application is not limited in this regard. .
  • the supporting body 111 has a proximal end and a distal end, the first receiving cavity 1210 of the receiving portion 12 is formed in the radial direction of a proximal end of the supporting main body 111, and the first receiving cavity 1210 is at least A first opening leading to the external space is formed at the lower end of the supporting body 111 .
  • the distal end and the proximal end of the support body 111 are defined by the vertical extension direction of the support body 111 , and the proximal end of the support body 111 is closer to the ground than the distal end.
  • the sweeping robot 22B can automatically enter the first receiving chamber 1210 and keep the sweeping robot 22B with a sweeping robot charging port 2210B, the charging port and the charging port of the sweeping robot of the sweeping robot 22B.
  • the first charging end 131 of the part 13 is in direct contact, and when the charging end 2110 of the cleaning robot is in direct contact with the first charging end 131 , the cleaning robot 22B is charged by the base 10 .
  • the holding portion 221C is detachably disposed in the second receiving cavity 1220 . Therefore, the second receiving cavity 1220 is formed at the distal end of the supporting body 111 , and the grip portion 221C is hung on the supporting body 111 and is limited in the second receiving cavity 1220 .
  • the second accommodating cavity 1220 is disposed upwardly in the radial direction of the supporting body 111 in such a manner that at least one second opening leads to the external space.
  • the first receiving cavity 1210 of the first receiving portion 121 is formed in the radial direction of the supporting body 111 .
  • the storage power supply system includes at least two Cleaning equipment 22A and a base 10, one of the cleaning equipment 22A is implemented as a sweeping robot 22B, the cleaning equipment 22A is implemented as an integrated vacuum cleaner 22C', the integrated vacuum cleaner 22C' is charged by the base 10 as a whole, and the sweeping robot 22B It is accommodated and charged by the base 10 . Further, the integrated vacuum cleaner 22C′ and the cleaning robot 22B are installed on the radial side wall of the base 10 .
  • first receiving cavity 1210 and the second receiving cavity 1220 are formed opposite to each other on the radial sidewall of the supporting body 111 .
  • the first opening of the first receiving cavity 1210 is held in the radial direction of the supporting body 111 .
  • the second opening of the second receiving chamber 1220 is held in the axial direction of the supporting body 111 and the second opening of the second receiving chamber 1220 is held upward.
  • the second charging end 132 is formed on the side wall of the base 10 so that the integrated vacuum cleaner 22C′ can be integrally attached to the second charging end 132 of the base 10 to be charged.
  • the cleaning robot 22B is powered by the first charging terminal 131 in a manner of being placed in the first receiving body 121 .
  • the base 10 can accommodate and charge at least one all-in-one vacuum cleaner 22C' and other devices 20, and the base 10 is kept at a higher position, so that the all-in-one vacuum cleaner 22C'
  • the base 10 can be adapted to the height of the grip portion 221C′ of the integrated vacuum cleaner 22C′ to charge it.
  • the first receiving cavity 1210 and the second receiving cavity 1220 are oppositely formed in a radial direction of the supporting body 111 . Furthermore, the first receiving cavity 1210 and the second receiving cavity 1220 are adjacently formed on the radial sidewall of the supporting body 111 . The first opening of the first receiving cavity 1210 is held in the radial direction of the supporting body 111 . The second opening of the second receiving chamber 1220 is held in the axial direction of the supporting body 111 and the second opening of the second receiving chamber 1220 is held upward.
  • the system comprises at least one cleaning device 22A embodied as a grip 221C' of an all-in-one vacuum cleaner 22C', and at least one communication device 23A, as well as a base 10.
  • the first receiving cavity 1210 and the second receiving cavity 1220 are formed in the axial direction of the distal end portion of the supporting body 111 .
  • the second receiving chamber 1220 is formed on the axial end surface of the supporting body 111, and then supports the cleaning device 22A in a vertical support manner, and the gripping portion 221C′ of the integrated vacuum cleaner 22C′ can be supported by the supporting body 111.
  • the cleaning device 22A is placed in the first receiving body 121 and is electrically connected to the first charging terminal 131 .
  • the communication device 23A is placed in the second receiving body 122 and is electrically connected to the second charging end 132 .
  • the cleaning device 22A and the communication device 23A are respectively powered by the base 10 .
  • the communication device 23A is preferably implemented as a LAN signal amplifier, wherein the communication device 23A is continuously charged by the base 10, when the communication device 23A can be connected to a local area network within a short distance to provide a LAN signal to the device 20 within a certain distance .
  • the communication device 23A has its own battery, and the communication device 23A can be taken to other locations, so that the communication device 23A can be moved to other locations to provide LAN signals.
  • the communication device 23A can be implemented as a 4G/5G mobile signal device, and the communication device 23A can provide the device 20 within a certain distance to provide a local area network signal. More optionally, the communication device 23A has its own battery, so that the communication device 23A can be moved to other areas for providing a local area network.
  • the self-contained battery of the communication device 23A can be charged by a mobile device, and the communication device 23A can continuously provide the local area network and power.
  • the first receiving chamber 1210 is formed at the proximal end of the supporting body 111, and the first receiving chamber 1210 is formed on the radial side wall of the supporting body 111, so that the cleaning equipment 22A suitable for self-propelled movement is accommodated. .
  • the base 10 can be kept at a certain height away from the ground, such as being set on a certain height wall or placed on a certain height support surface, such as a desktop, a cabinet, and the like.
  • the second receiving cavity 1220 and the first receiving cavity 1210 are respectively formed at the proximal end of the supporting body 111, and the second receiving cavity 1220 and the first receiving cavity 1210 are arranged at intervals on the diameter of the supporting body 111. to the side wall.
  • the shapes of the first receiving chamber 1210 and the second receiving chamber 1220 are not limited by this application, and those skilled in the art should understand and know.
  • the storage power supply system includes a base 10 and at least two devices 20 that are continuously powered by the continuous base 10 .
  • the storage power supply system includes a base 10 and at least three devices 20 continuously powered by the continuous base 10 .
  • the storage and power supply system includes at least one cleaning device 22A, a communication device 23A, a charging device 24A and a base 10 .
  • the cleaning device 22A, the communication device 23A, and the charging device 24A are commonly housed in the base 10 and charged by the base 10 .
  • the cleaning device 22A treats water pollution, and the base 10 can charge the cleaning device 22A and the communication device 23A when there is water.
  • the cleaning device 22A is first accommodated in the first storage cavity 1210 of the main body 121 and is always used for floor cleaning, so the base 10 is placed on the ground so that the cleaning device 22A can be placed.
  • the communication device 23A is accommodated in the second accommodation chamber 1220 .
  • the communication device 23A is charged by the second charging terminal 132 while being held by the second housing body 122 . That is, the communication device 23A is powered by the base 10 .
  • the base 10 further has a third receiving body 123 and a third receiving cavity 1230 , the device 20 is implemented as a charging device 24A, and the charging device 24A is accommodated in the third receiving cavity 1230 .
  • the third receiving body 123 and the second receiving body 122 are held on the distal end surface of the base body 111 . That is to say, the third receiving body 123 and the second receiving body 122 are formed on the top surface of the base body 111 .
  • the charging device 24A is implemented as at least two batteries 24B, and the batteries 24B are held above the base body 111 by being supported by the third receiving body 123 .
  • the battery 24B can be accessed directly, and the battery 24B can be used to power other devices 20 independently.
  • the battery 24B is charged by the base 10 in a built-in manner.
  • the third receiving body 123 is provided with an ejection mechanism, so that the battery 24B can be ejected with one key.
  • At least two batteries 24B can be ejected simultaneously with one key.
  • the charging part 13 includes a third charging terminal 133, the third charging terminal 133 is connected to the base body 11 by a circuit, the third charging terminal 133 is connected to the power supply terminal 130, and the third charging terminal 133 can output current,
  • the third charging end 133 is placed in the third receiving body 123 , so that the battery 24B accommodated in the third receiving body 123 can be powered by the third charging end 133 . That is, the battery 24B housed in the base 10 can be powered by the base 10 .
  • the cleaning equipment 22A is implemented as a scrubber 22D, and the scrubber 22D is limitedly held by the first receiving body 121 .
  • the first receiving body 121 of the base 10 is arranged vertically upward.
  • the first receiving body 121 is set on one side of the base body 111 in a manner away from the base body 111, so that the washing machine 22D can be supported by the base 10, and the first power supply end 131 is formed on the base body 111.
  • the side wall of the seat main body 111 is suitable for direct contact charging with the charging port of the washing machine 22D.
  • the washing machine 22D will keep part of the sewage in the first storage body 121 , and the first storage body 121 of the base body 111 will supply power to the communication device 23A and the charging device 24A when the first storage body 121 receives water.
  • the scrubber 22D can self-clean in the first housing body 121, and the first housing body 121 collects the liquid flowing out of the scrubber 22D to prevent the sewage from the scrubber 22D from polluting the ground.
  • the first receiving body 121 is provided with a corresponding self-cleaning cleaning component to assist the cleaning of the scrubber 22D.
  • the base 10 when one of the cleaning equipment 22A is implemented as a floor scrubber, preferably, the base 10 includes an auxiliary cleaning part 14, wherein the auxiliary cleaning part 14 is arranged in the first receiving chamber 1210, The functional auxiliary cleaning part 14 is suitable for cleaning a working head 220D of the floor scrubber 22D, and then the base 10 cleans the floor scrubber 22D without human intervention.
  • the charging device 24A is accommodated in the second accommodation cavity 1220 , and the base 10 can continuously charge the charging device 24A and the washing machine 22D during the self-cleaning process of the washing machine 22D by the base 10 .
  • the auxiliary cleaning part 14 is formed in the first receiving cavity 1210 .
  • the first receiving body 121 further has a first bottom surface 1211 and at least one first side wall 1212, wherein the first bottom surface 1211 and the first side wall 1212 define the first receiving cavity 1210, wherein the auxiliary cleaning part 14 is formed in The first bottom surface 1211, when the cleaning equipment 21 is accommodated in the first housing cavity 1210 of the first housing body 121, the washing machine 22D is supported by the first bottom surface 1211, and the washing machine 22D is radially supported by the first side wall 1212 The position is limited so that the working head 220D of the floor scrubber 22D is closely supported by the first bottom surface 1211.
  • the first storage chamber 1210 defined by the first side wall 1212 and the first bottom surface 1211 can be Bear the water and dirt flowing out, prevent the water and dirt flowing out from the cleaning equipment 22A from contaminating the ground, further, the auxiliary cleaning part 14 is preferably arranged on the first side wall 1212, and then when the working head 220D is driven to rotate and clean , the auxiliary cleaning part 14 can be adapted to self-cleaning of the working head.
  • the auxiliary cleaning part 14 is a triangular protrusion formed on the first bottom surface 1211, so that the working head 220D can better discharge sewage and dirt when it rotates.
  • the auxiliary cleaning part 14 can also be an automatic rolling brush to cooperate with the relative rotation and rolling of the working head 220D, so as to drive the working head 220D to discharge water and sewage.
  • the auxiliary cleaning unit 14 can be electrically connected to the charging unit 13 , which should be understood and known by those skilled in the art.
  • the auxiliary cleaning part 14 can also be implemented as a type group selected from various forms of grooves, gears, automatic vibrating elements, and automatic rolling brush elements, and the present application is not limited thereto.
  • the power supply storage device of the power supply storage system includes a base 10 and at least two different types of device 20.
  • devices 20 are at least one cleaning device cleaning device 22A and at least one charging device 24A, respectively.
  • the cleaning device 22A is a grip portion 221C of a vacuum cleaner 22C.
  • the base 10 accommodates and supplies power to the cleaning device 22A and the charging device 24A, wherein the charging device 24A can be used for the cleaning device 22A after being away from the base 10, and the charging device 24A is preferably adapted to the cleaning device 22A for continuous power supply in cleaning equipment 22A.
  • the grip portion 221C is accommodated in the base 10 at the side. That is to say, the first receiving body 121 is formed on the radial sidewall of the base 10 .
  • the charging device 24A of the power supply containment system is implemented as a battery and/or a battery pack.
  • the charging device 24A can be charged by the base 10 for alternately powering the cleaning device 22A. That is to say, the charging device 24A is directly charged by the base 10, so that the cleaning device 22A can be replaced by replacing the charging device 24A in real time, so that the cleaning device 22A can be used for a long time. 22A is required to deal with the cleaning process of a large area, the cleaning device 22A can stand by for a long time without the need to suspend charging due to the limited battery capacity, which improves the cleaning needs of users when they urgently need to clean the surface.
  • the charging device 24A is a battery pack 24C containing at least two batteries 24B, and the battery pack 24C is held above the base body 111 by being supported by the second receiving body 122 .
  • the battery 24B housed in the battery pack 24C can be taken out to independently power other devices 20 .
  • the battery pack 24C can power other devices 20 as a whole.
  • the battery pack 24C can be directly installed behind the cleaning device 22A, and the battery pack 24C is electrically connected to the cleaning device 22A to supply power to the cleaning device 22A.
  • the battery pack 24C includes at least one battery 24B, so that the battery taken out from the battery pack 24C can be installed in the cleaning device 22A to provide power for the cleaning device 22A.
  • the at least two batteries 24B and the battery pack 24C accommodated can be circuit-connected to expand the capacity and extend the capacity of the output current.
  • the battery pack 24C includes a battery pack charging port 240C, the second charging end 132 is formed on the second receiving body 122, wherein the second charging end 132 is connected to the battery pack charging port of the battery pack 24C in a contactable manner 240C.
  • the battery pack charging port 240C is formed on the bottom of the battery pack 24C, so that the battery pack 24C containing the battery 24B can be placed on the base body 111 for charging.
  • the cleaning device 22A is implemented as a sweeping robot, a mite remover and other cleaning devices, and this application is not limited in any way here.
  • the cleaning device 22A refers to a device for surface cleaning or deep cleaning, which may have other multiple functions, and this application does not limit the type of the cleaning device 22A.
  • the charging device 24A is implemented as a battery 24B, and the two batteries 24B are held separately in The second accommodating portion 122 , the battery 24B is inserted so as to be charged by the base 10 .
  • the second receiving body 122 is provided with an ejection mechanism, so that the battery 24B can be ejected with one key.
  • At least two batteries 24B can be ejected simultaneously with one key.
  • the battery 24B can be externally installed in at least one of the vacuum cleaner 22C and other devices 20, and the battery 24B can be replaced in real time.
  • the battery 24B may be externally installed in at least one of the cleaner 22C and the all-in-one cleaner 22C'.
  • the battery 24B can be plugged into at least one of the vacuum cleaner 22C and the integrated vacuum cleaner 22C′ in real time after being charged by the base 10 , and the battery 24B can improve the running time of the device 20 and make the device 20 last longer.
  • the battery 24B is charged by the base 10 by being placed in at least one of the vacuum cleaner 22C and the integrated vacuum cleaner 22C′, so that the battery 24B is charged by the base 10 by being placed in the device 24, It can also be taken out at any time for other purposes.
  • the storage power supply system includes the base 10 and at least two charging devices 24A and communication devices 23A.
  • the communication device 23A and at least two charging devices 24A are disposed on the remote end surface of the base main body 111 . That is to say, the communication device 23A and at least two charging devices 24A are disposed on the top surface of the base main body 111 .
  • the two charging devices 24A are implemented as a battery pack 24C accommodating at least two batteries 24B and at least two batteries 24B.
  • the receiving portion 12 of the base 10 includes a first receiving body 121 , a second receiving body 122 , a third receiving body 123 , a fourth receiving body 124 and a fifth receiving body 125 .
  • the cleaning robot 22B is housed in the first housing body 121
  • the grip portion 221C of the vacuum cleaner 22C is housed in the second housing body 122
  • the communication device 23A is housed in the third housing body 123
  • the battery pack 24C is housed in the fourth housing body 124
  • the battery 24B is housed in the fifth housing body 125 .
  • the charging part 13 includes a third charging terminal 133, the third charging terminal 133 is connected to the base body 11 by a circuit, the third charging terminal 133 is connected to the power supply terminal 130, and the third charging terminal 133 can output current, So that the communication device 23A accommodated in the third housing body 123 can be powered by the third charging terminal 133 . That is, the communication device 23A housed in the cradle 10 can be powered by the cradle 10 .
  • the battery 24B is supported above the base main body 111 .
  • the battery 24B can be accessed directly, and the battery 24B can be used to power other devices 20 independently.
  • the battery 24B is charged by the base 10 in a built-in manner.
  • the charging part 13 includes a fourth charging end 134 , the fourth charging end 134 is connected to the base body 11 by a circuit, and the fourth charging end 134 is placed in the fourth receiving body 124 .
  • the fourth charging terminal 134 is connected to the power supply terminal 130 , and the fourth charging terminal 134 can output current, so that the battery pack 24C accommodated in the fourth receiving body 124 can be powered by the fourth charging terminal 134 . That is, the battery pack 24C housed in the base 10 can be powered by the base 10 .
  • the battery 24B is supported above the base main body 111 .
  • the battery 24B can be accessed directly, and the battery 24B can be used to power other devices 20 independently.
  • the battery 24B is charged by the base 10 in a built-in manner.
  • the charging part 13 includes a fifth charging end 135 , the fifth charging end 135 is connected to the base body 11 by a circuit, and the fifth charging end 135 is placed in the fifth receiving body 125 .
  • the fifth charging terminal 135 is connected to the power supply terminal 130 , and the fifth charging terminal 135 can output current, so that the battery 24B accommodated in the fifth receiving body 125 can be powered by the fifth charging terminal 135 . That is, the battery 24B housed in the base 10 can be powered by the base 10 .
  • the fourth receiving body 124 is provided with an ejection mechanism, so that the battery pack 24C can be ejected with one key.
  • the fifth receiving body 125 is provided with an ejection mechanism, so that the battery 24B can be ejected with one key.
  • At least two batteries 24B can be ejected simultaneously with one key.
  • the communication device 23A is implemented as a 4G/5G signal device or a LAN signal expansion device, so that the communication device 23A can provide a local area network to different devices 20 with network signals. More preferably, the device 20 housing the charging device can communicate under the provided local area network.
  • the storage power supply system includes a base 10 and at least Two charging devices 24A and a communication device 23A.
  • the communication device 23A and at least one charging device 24A are disposed on the remote end surface of the base body 111 . That is, the communication device 23A and at least one charging device 24A are disposed on the top surface of the base main body 111 .
  • the charging device 24A is embodied as at least two batteries 24B.
  • the mobile device 25A is selected from the type group of a mobile phone, a tablet computer, an entertainment device, a game device, a display, a smart bracelet, a smart watch, and a smart robot, and this application is not limited in any way.
  • the charging device 24A can be powered by the sub-base 10 in different devices such as the mobile device 25A or other cleaning devices 21. Since the electrical connection method of the charging device 24A can be implemented as a contact electrical connection, the charging device 24A can further be connected through The contacts and plug contacts supply power to other devices 20. For example, the plug contacts can be implemented as USB interfaces, TYPE C interfaces, and Lightning interfaces. The charging device 24A can also supply power to other devices 20 through a non-contact electrical connection.
  • the non-contact connection includes electromagnetic induction, magnetic resonance, and microwave electrical transmission, which can be understood and known by those skilled in the art.
  • the charging device 24A may be powered by different types of devices 20 of different powers. More preferably, the charging device 24A can select the output power and voltage of the charging device 24A according to the type of the device 20 , so that the charging device 24A can be powered by different types of devices 20 with different powers.
  • the receiving portion 12 of the base 10 includes a first receiving body 121 , a second receiving body 122 , a third receiving body 123 , a fourth receiving body 124 and a fifth receiving body 125 .
  • the tablet computer 25C is accommodated in the first accommodation cavity 1210 of the accommodation portion 12 .
  • the second receiving cavity 1220 of the receiving part 12 is formed at the distal end of the supporting body 111, and the mobile phone 25B and the charging device 24A are preferably held in a direction away from the ground.
  • the battery 24B is stored in the second storage body 122 , the third storage body 123 can be used to store other devices, the communication device 23A is stored in the fourth storage body 124 , and a mobile phone 25B is stored in the fifth storage body 125 .
  • the tablet computer 25C, the battery 24B, the mobile phone 25B, and the communication device 23A are housed in the base 10 for power supply.
  • the base 10 may be provided with a preset storage space, instead of being used for power supply, it may be used for users to store items.
  • the charging part 13 includes a fifth charging end 135, the fifth charging end 135 is placed in the fifth receiving body 125, the fifth charging end 135 is connected to the base body 11, so as to be powered, and the fifth charging end 135
  • the terminal 135 can output current, so that the mobile phone 25B accommodated in the fifth receiving body 125 can be powered by the fifth charging terminal 135 .
  • the storage power supply system When the storage power supply system is applied to the living room in the home environment, the storage power supply system can preferably be set at a certain height away from the ground, so that the user can directly pick and place at least two devices 20 stored in the storage power supply system , where the power supply system can be comfortably held by the user.
  • the base 10 for accommodating the power supply system When the base 10 for accommodating the power supply system is placed on the coffee table, the user can reach out to obtain the device 20 for accommodating the power supply system.
  • the storage and power supply system includes a base 10 and at least one charging device 24A and a communication device 23A.
  • the communication device 23A and at least one charging device 24A are disposed on the remote end surface of the base body 111 . That is, the communication device 23A and at least one charging device 24A are disposed on the top surface of the base main body 111 .
  • the charging device 24A is implemented as at least two battery packs 24C.
  • the receiving portion 12 of the base 10 includes a first receiving body 121 , a second receiving body 122 , a third receiving body 123 , a fourth receiving body 124 and a fifth receiving body 125 .
  • the mobile device 25A is housed in the first housing body 121 . More preferably, a tablet computer 25C is stored in the first storage body 121, the battery pack 24C is stored in the second storage body 122, the communication device 23A is stored in the third storage body 123, and a mobile phone 25B is stored in the fourth storage body.
  • the tablet computer 25C, the battery pack 24C, the mobile phone 25B, and the communication device 23A are housed in the base 10 for power supply. That is, the tablet computer 25C is powered by the first charging terminal 131, the battery pack 24C is powered by the second charging terminal 132 when it is stored in the second storage body 122, and the communication device 23A is powered by the third storage body 123 when it is stored in the third storage body 122.
  • the charging terminal 133 supplies power, and the mobile phone 25B is stored in the fourth receiving body 124 to be powered by the fourth charging terminal 134 .
  • the storage and power supply system includes the base 10 and at least two charging devices 24A and communication devices 23A.
  • the communication device 23A and at least two charging devices 24A are disposed on the remote end surface of the base main body 111 . That is to say, the communication device 23A and at least two charging devices 24A are disposed on the top surface of the base main body 111 .
  • the two charging devices 24A are implemented as a battery pack 24C accommodating at least two batteries 24B and at least two batteries 24B.
  • the battery 24B and the battery pack 24C respectively refer to a battery device, that is, a charging device 24A that can store electricity and output current.
  • the types of the battery 24B and the battery pack 24C are not limited in type.
  • the tablet computer 25C is accommodated in the first accommodation chamber 1210 of the accommodation portion 12 , and the charging device 24A is disposed in the second accommodation chamber 1220 of the accommodation portion 12 .
  • the first receiving cavity 1210 and the second receiving cavity 1220 of the receiving portion 12 are formed at the distal end of the supporting body 111, and the mobile phone 25B and the charging device 24A are preferably held in a direction away from the ground.
  • the battery 24B is stored in the second storage body 122
  • the battery pack 24C is stored in the third storage body 123
  • the communication device 23A is stored in the fourth storage body 124
  • a mobile phone 25B is stored in the fifth storage body 125 . That is, the tablet computer 25C is powered by the first charging terminal 131, the battery 24B is supplied with power by the second charging terminal 132 in a manner of being accommodated in the second storage body 122, and the battery pack 24C is supplied by the second charging terminal 132 in a manner of being accommodated in the third storage body 123.
  • the third charging terminal 133 supplies power, and the communication device 23A is powered by the fourth charging terminal 134 in such a manner that it is housed in the fourth storage body 124 .
  • the mobile phone 25B is housed in the fifth housing body 125 and powered by the fifth charging terminal 135 . More preferably, the power supply means is a circuit connection.
  • the containment power supply system 1 is different from the preferred embodiment shown in Fig. 1A and Fig. 1B in that the basic The seat 10 includes at least one processing module 15, wherein the processing module 15 includes at least one interaction unit 151, a control unit 152 and a communication unit 153, wherein the interaction unit 151 and the communication unit 153 are controlled by the control unit, wherein the interaction unit 151 obtains the user's
  • the instruction is sent to the control unit 152 and the communication unit 153, wherein the communication unit 153 is communicably connected to smart devices 21A of other families, such as an air conditioner 21B, a TV 21C and other devices 20 required by different families, wherein when the user issues a control For instructions from different devices 20, the interaction unit 151 of the base 10 receives the user's control instruction and sends it to the control unit 152, wherein the control unit 152 processes and analyzes to obtain a regulation instruction of the control device
  • the processing module 15 is electrically connected to the base body 11 and the charging unit 13 .
  • the processing module 15 is electrically connected to the power supply part 112 and the supporting body 111 .
  • the processing module 15 is communicatively connected to each charging terminal of the charging part 13 , so that the processing module 15 can communicate device-related information and/or instructions of the device 20 .
  • the number of charging terminals is not limited by the present application.
  • the charging part 13 may include a first charging terminal 131, a second charging terminal 132, a third charging terminal 133, a fourth charging terminal 134, a fifth charging terminal 135 and More charging ports.
  • the first charging terminal 131 , the second charging terminal 132 , the third charging terminal 133 , the fourth charging terminal 134 , and the fifth charging terminal 135 can be circuit-connected to the control unit 152 and the communication unit 153 of the processing module 15 respectively.
  • the user issues a voice command to adjust the air conditioner 21B to a specified temperature (such as 26°C), and the interaction unit 151 of the processing module of the base 10 receives the voice command and sends it to the control panel.
  • the control unit 152 processes and analyzes to obtain the adjustment of the air conditioner 21B to a specified temperature (such as 26° C.), and the communication unit 153 sends it to the air conditioner 21B after receiving the adjustment command of the control unit 152 to adjust the air conditioner 21B to a specified temperature (such as 26° C.). , so that the air conditioner 21B is adjusted to a specified temperature (such as 26° C.).
  • the interaction unit 151 of the processing module 15 of the base 10 receives the voice command and sends it to the control unit 152, and the control unit 152 processes and analyzes it.
  • the communication unit 153 receives the regulation instruction of the control unit 152 for controlling the TV 21C to play the movie and sends it to the TV 21C, so that the TV 21C plays the movie.
  • the interaction unit 151 of the processing module 15 of the base 10 receives the voice command and sends it to the control unit 152, and the control unit 152 processes and analyzes it to obtain an interactive command to play music directly And process playing music, the electric signal of playing music is converted into an acoustic signal through the interaction unit 151, so that the base 10 plays music.
  • the interaction unit 151 of the processing module 15 of the base 10 receives the voice command and sends it to the control unit 152, and the control unit 152 processes and analyzes it.
  • the communication unit 153 sends it to the sweeping robot 22B after receiving the control instruction of the control unit 152 for controlling the cleaning robot 22B to clean the specific area (such as the second bedroom). Make the sweeping robot 22B clean a specific area (such as the second bedroom).
  • the interaction unit 151 of the processing module 15 of the base 10 receives the voice command and sends it to the control unit 152, and the control unit 152 processes and analyzes it.
  • the communication unit 153 receives the control command of the control unit 152 for controlling the sweeping robot 22B to clean the whole house and sends it to the sweeping robot 22B, so that the sweeping robot 22B cleans the whole house.
  • Containment power systems can be used to intelligently serve users. Further, the feedback can be provided to the user in the form of image, text, or language.
  • the interaction unit 151 of the processing module 15 of the base 10 receives the voice command and sends it to the control unit 152, and the control unit 152 processes it. Analyze to obtain a shopping instruction, and feed back the purchase information of the shopping cart and an identification information to the interaction unit 151, wherein the interaction unit 151 sends the identification code received from the user’s authorization to the processing module 15 to complete the purchase, and the interaction unit 151 Send "Order successfully placed, delivery time is ***, please check the order details with your mobile device" to the user.
  • the interaction unit 151 can convert electrical signals into acoustic signals, light signals and other interactive signals, and this application is not limited thereto.
  • the interaction unit 151 can actively acquire voice, light, fingerprint and other information, which is not subject to any limitation, and those skilled in the art should be able to understand and know.
  • the user can communicate with other mobile devices through the base 10 to meet the communication needs between users.
  • user A When user A is in the kitchen space and user C is in the balcony space, user A sends a voice command "Send C to C to come over" to the base 10, and the interaction unit 151 of the processing module 15 of the base 10 receives the voice command and sends To the control unit 152, the control unit 152 processes and analyzes to obtain the regulation instruction of sending WeChat to C to let him come over, and the communication unit 153 sends it to the mobile device of user C after receiving the regulation instruction of sending WeChat to C from the control unit 152 to let him come over , user C can go to user A's address in time.
  • the user can control a specific home appliance through the base 10, so that the user can enjoy it more comfortably.
  • User A is in the kitchen space, and user A sends out a voice command to adjust the master bedroom air conditioner 21B to a specified temperature (such as 26°C), and the base 10 will send the command to adjust the master bedroom air conditioner 21B to a specified temperature (such as 26°C).
  • a specified temperature such as 26°C
  • the base 10 will send the command to adjust the master bedroom air conditioner 21B to a specified temperature (such as 26°C).
  • user A can enjoy the specified temperature as soon as he enters the master bedroom.
  • the user can control a specific home appliance through the base 10, so that the user can enjoy it more comfortably.
  • User A is in the living room, and user A sends out a voice command to control the cooking equipment to cook a dish, and the base 10 will send the command to control the cooking equipment to cook a dish (target dish: braised pork, cooking time xxx, cooking time xxx) to Cooking equipment in a kitchen such that the cooking equipment cooks automatically.
  • the processing module 15 may be provided in the device 20 .
  • Devices 20 are communicatively coupled to other devices 20 and interact with users.
  • the device 20 has a device processing module 2010 that is communicatively connected to other devices 20 and interacts with the user.
  • the device processing module 2010 of the device 20 can be communicatively connected to other devices 20 to control other devices 20 .
  • the processing module 15 of the socket 10 may be provided in the device 20 .
  • Devices 20 are communicatively coupled to other devices 20 and interact with users.
  • the device 20 has a device processing module 2010 that is communicatively connected to other devices 20 and interacts with the user.
  • the base 10 accommodates and supplies power to a plurality of devices 20 , at least one of which can communicate with the cloud 30 and/or interact with the user. At least two of the devices 20 can communicate with each other, so that the devices 20 can feed back at least one device-related information 201 and/or obtain at least one instruction 202 from a user.
  • the device 20 can better serve the user, so that the user can instantly learn about relevant information.
  • the device 20 is implemented as a charging device 24A that can communicate with the cloud 30 and/or interact with a user. More preferably, charging device 24A is communicatively connected to other devices 20 .
  • the storage and power supply system includes a base 10, at least two charging devices 24A and a communication device 23A.
  • the communication device 23A and at least two charging devices 24A are disposed on the remote end surface of the base main body 111 . That is to say, the communication device 23A and at least two charging devices 24A are disposed on the top surface of the base main body 111 .
  • the two charging devices 24A are implemented as a battery pack 24C accommodating at least two batteries 24B and at least two batteries 24B.
  • the receiving portion 12 of the base 10 includes a first receiving body 121 , a second receiving body 122 , a third receiving body 123 , a fourth receiving body 124 and a fifth receiving body 125 .
  • the cleaning robot 22B is housed in the first housing body 121
  • the grip portion 221C of the vacuum cleaner 22C is housed in the second housing body 122
  • the communication device 23A is housed in the third housing body 123
  • the battery pack 24C is housed in the fourth housing body 124
  • the batteries 24B are housed in the fifth housing body 125 respectively.
  • the sweeping robot 22B is powered by the first charging terminal 131
  • the grip portion 221C of the vacuum cleaner 22C is powered by the second charging terminal 132 in a manner of being accommodated in the second storage body 122
  • the communication device 23A is accommodated in the third charging terminal 132.
  • the storage body 123 is powered by the third charging terminal 133
  • the battery pack 24C is supplied with power by the fourth charging terminal 134 in the form of being stored in the fourth storage body 124 .
  • the battery 24B is housed in the fifth housing body 125 and powered by the fifth charging terminal 135 .
  • the power supply means is a circuit connection.
  • the battery 24B is communicatively connected to the other device 20 .
  • the battery 24B can receive regulation commands from the device 20, and then the device 20 can be intelligently controlled.
  • the devices 20 in the home can be communicatively connected through the adapter battery 24B to form a home control system.
  • the battery 24B has a battery processing module 241B that is communicatively connected to other devices 20 and interacts with the user.
  • the implementations of multiple embodiments can be freely combined, and the present application is not limited in this respect.
  • the storage power supply system of another modified embodiment of the preferred embodiment shown in Figure 10A is disclosed and explained in detail, and the first modified embodiment shown in Figure 10A
  • the device 20 with communication function is implemented as a battery pack 24C containing a battery 24B
  • the battery pack 24C is implemented as a mobile device.
  • the battery pack 24C can not only communicate with different devices 20, but also interact with users.
  • the battery pack 24C has a battery pack processing module 241C, wherein the battery pack processing module 241C is communicatively connected to other devices 20 and interacts with the user. It is worth mentioning that the communication method is not limited in this application, and should be understood and known by those skilled in the art.
  • the battery pack 24C can also control the device 20 charged by the battery 24B through the battery 24B, and the type of the device 20 is not limited in any way.
  • the battery pack 24C can be used as an intelligent control device to facilitate the user's life.
  • the preferred embodiment shown in Fig. 10A accommodates at least two power supply systems of another modified embodiment, which is disclosed and interpreted in detail, and the first preferred embodiment shown in Fig. 10A
  • the device 20 with communication function is implemented as a communication device 23A
  • the communication device 23A is implemented as a mobile device. Not only can communication with different devices 20 be possible via the communication device 23A, but also interaction with the user is possible.
  • the storage and power supply system of another modified embodiment of the preferred embodiment shown in Figure 10A of the present application is disclosed and explained in detail, and the first embodiment of the preferred embodiment shown in Figure 10A
  • the device 20 with communication function is implemented as a cleaning device 22A
  • the cleaning device 22A is communicably connected to different devices 20, and the cleaning device 22A is implemented as a vacuum cleaner 22C, wherein the cleaning processing module of the vacuum cleaner 221A is implemented as a vacuum processing module 223C.
  • the vacuum processing module 223C is preferably capable of not only communicating with different devices 20, but also interacting with users.
  • the cleaning device 22A is implemented as other devices, for example, a sweeping robot 22B and a floor washing machine 22D, and this application is not limited thereto. That is to say, the cleaning processing module 221A can be integrated into the cleaning robot 22B, the washing machine 22D, and the vacuum cleaner 22C.
  • the base 10 accommodates and supplies power to at least two cleaning equipment 22A, and more than two cleaning equipment 22A are provided with a cleaning processing module 221A.
  • the processing module, the cleaning processing module of the cleaning robot 22B and the cleaning processing module of the cleaning machine 22D are communicatively connected, so that at least two cleaning devices 22A can cooperate to clean at least one area.
  • the cleaning device 22A is communicatively connected to the other device 20 , and the cleaning device 22A is conductively connected to the other device 20 and/or the base 22 . More preferably, the cleaning device 22A is communicably connected to the cloud 30 , so that the cleaning device 22A can send at least one device-related information 201 and/or receive at least one instruction 202 from the user.
  • the devices 20 in the home can be communicatively connected through the cleaning processing module 221A of the cleaning device 22A to form a home control system.
  • the storage power supply system is different from the preferred embodiment shown in Figure 10A, the storage power supply system can be communicatively connected to At least one of other systems, the cloud 30 and/or the mobile device 25A; or the containment power supply system may interact with the user.
  • At least one of the base 10 accommodating the power supply system, the smart device 21A, the cleaning device 22A, the communication device 23A, the charging device 24A, and the mobile device 25A is communicatively connected to other systems, the cloud 30 and/or the mobile device 25A. At least one of them; or at least one of the base 10 containing the power supply system, the smart device 21A, the cleaning device 22A, the communication device 23A, the charging device 24A, and the mobile device 25A can interact with the user.
  • the user can obtain device-related information 201 through at least one of the devices 20 and/or the base 10 of the power supply system.
  • an instruction 202 issued by the user is received by at least one of the devices 20 and/or the base 10 of the power supply system.
  • the storage power supply system has a processing module, wherein the processing module is integrated in at least one device 20 and/or the base 10, wherein the processing module can communicate with at least one of the devices 20 and/or interact with user.
  • the type of the device 20 is not limited by the present application, and the storage and power supply system can also be powered by the base 10 in a manner that the device 20 is accommodated in the base 10 .
  • the mobile device 25A acquires information such as light, sound, and electricity, and further, the base 10 and/or device 20 containing the power supply system acquires user instructions.
  • the base 10 and/or the device 20 containing the power supply system send commands to the cloud 30 .
  • At least one of the cleaning equipment 22A, the communication equipment 23A, the charging equipment 24A and the base 10 of the storage power supply system is communicably connected to the cloud 30, so as to obtain the instructions sent by the cloud 30, so that the cleaning equipment of the storage power supply system
  • At least one of the device 22D, the communication device 23A, the charging device 24A, and the base 10 acquires the instruction 202 and then executes the instruction 202 and/or feeds back at least one device-related information 201 .
  • the equipment-related information 201 includes but is not limited to an instruction-related information, a power supply-related information, and a device status information.
  • the instruction-related information includes but is not limited to instruction completion information, instruction operation information, and coordination of other information.
  • Device-related information, power supply-related information includes but is not limited to power information and battery loss, and device status information includes but not limited to device operating status, location information, and navigation information.
  • the device-related information 201 may be information about any device 20 and/or base 10 that accommodates the power supply system, and the present application is not limited in this respect.
  • the device-related information 201 includes, but is not limited to, power remaining information, cleaning path, uncleaned area, cleaning information, cleaning mode, and interaction information.
  • the device-related information 201 of the mobile device 25A includes, but is not limited to, power remaining information, playback selection/switching information, communication information, and interaction information.
  • the device-related information 201 of the charging device 24 includes, but is not limited to, power remaining information, power seeking path, power supply data information, and device-related information 201 of the device 20 being powered.
  • the device-related information 201 of the cooking device 27 includes, but is not limited to, power remaining information, cooking information, operation information, interaction information, and cooking purchase information.
  • the instruction 202 may be an instruction 202 to any device 20 and/or the base 10 that accommodates the power supply system, and the present application is not limited in this respect.
  • the instruction 202 can be implemented as an operation instruction, and can also be implemented as a charging instruction, which is not limited in this application.
  • the operation instruction may be making an appointment, moving to a specific place, selecting an operation type to operate, stopping, terminating, and starting.
  • the charging instruction can be implemented as charging, supplying power, and turning on automatic charging, and this application is not subject to any limitation here.
  • the base 10 and/or the device 20 communicatively acquires the user's instruction 202 , so that at least one of the cleaning device 22A, the communication device 23A, the charging device 24A and the base 10 accommodating the power supply system executes the instruction.
  • the base 10 can obtain the device-related information 201 of other devices 20 and send it to the cloud 30 and/or the user's mobile device 25A, so that the user can check it conveniently.
  • the base 10 uploads to the cloud 30 to realize long-distance wireless communication.
  • the pedestal 10 may also implement information transmission by means of short-distance communication, which is not subject to any limitation in this application.
  • the short-distance communication mode of the base 10 is selected from at least one of Bluetooth, NFC, ultra-wideband (UWB), 60GHz wireless communication, WIFI, and ZigBee.
  • the base 10 includes a processing module 15 , wherein the processing module 15 of the base 10 is communicably connected to other devices 20 .
  • the processing module 15 of the base 10 is communicatively connected to the device 20 .
  • the type of the device 20 is not limited by the present application, and the device 20 is powered by the base 10 in a manner of being housed in the base 10 .
  • the processing module 15 of the base 10 is communicably connected to the device 20, and the type of the device is selected from at least one of the smart device 21A, the cleaning device 22A, the communication device 23A, the charging device 24A and the mobile device 25A.
  • the processing module 15 of the base 10 may also be communicatively connected to a cloud 30 where information is stored and retrieved.
  • the cleaning equipment 22A is implemented as a floor washing machine 22D, where the cleaning equipment 22A can also be implemented as other equipment, such as a sweeping robot 22B, a vacuum cleaner 22C, an integrated vacuum cleaner 22C', a mite removal instrument, etc.
  • a sweeping robot 22B a vacuum cleaner 22C
  • an integrated vacuum cleaner 22C' a mite removal instrument
  • the processing module 15 of the base 10 can be communicatively connected to the washing machine 22D, the communication device 23A, the charging device 24A and the mobile device 25A, wherein the processing module 15 can also be communicatively connected to the cloud 30, wherein the cloud 30 obtains, stores and sends information.
  • the mobile device 25A obtains information such as light, sound, and electricity, and further, the mobile device 25A obtains instructions from the user.
  • the mobile device 25A sends an instruction to the cloud 30, and the base 10 containing the power supply system is communicably connected to the cloud 30 to obtain the instruction sent by the cloud 30, so that the washing machine 22D, the communication device 23A, and the charging device 24A of the power supply system are accommodated.
  • at least one of the bases 10 receives the instruction 202 sent by the processing module 15 of the base 10 .
  • the base 10 is communicably connected to the mobile device 25A, and the mobile device 25A obtains the user's instruction and sends it to the base 10, so that the storage and power supply system obtains the user's instruction.
  • the base 10 can interact with the user, wherein the base 10 can obtain the user's voice, action, image and other information and convert it into an electrical signal, so as to obtain the user's instruction. After obtaining the user's instruction, the base 10 communicates with other devices 20 containing the power supply system, so as to execute the command according to the user's instruction.
  • the base 10 obtains the command 202 sent by the cloud 30 , so that at least one of the washing machine 22D, the communication device 23A, the charging device 24A and the base 10 that accommodates the power supply system executes the command.
  • the base 10 can obtain the device-related information 201 of other devices 20 and send it to the cloud 30 and/or the user's mobile device 25A, so that the user can check it conveniently.
  • the base 10 uploads to the cloud 30 to realize long-distance wireless communication.
  • the pedestal 10 can also use short-distance communication to send information, and this application is not limited in any way.
  • the short-distance communication mode of the base 10 is selected from at least one of Bluetooth, NFC, ultra-wideband (UWB), 60GHz wireless communication, WIFI, and ZigBee.
  • the storage power supply system can be communicatively connected to the external device 20 and/or interact with the user, and the power supply system shown in Figure 13A
  • the device 20 housing the power supply system can be connected to the external cleaning device 22A and/or interact with the user.
  • the cleaning device 22A in the storage power supply system feeds back the device-related information 201 of the storage power supply system, and further, the cleaning device 22A communicates with other systems and/or interacts with users.
  • the cleaning device 22A may also communicate with the mobile device 25A for viewing by the user.
  • the device 20 containing the power supply system includes at least one device processing module for communication, wherein the cleaning device 22A containing the power supply system can communicate with the base 10, the smart device 21A, the communication device 23A, the charging device 24A and the mobile device At least one of 25A.
  • the cleaning device 22A is implemented as a scrubber 22D, and the scrubber 22D is communicatively connected to the cloud 30 and/or interacts with the user.
  • the scrubber 22D sends the device-related information 201 of the scrubber 22D to the cloud 30 or the mobile device 25A for the user to obtain the device-related information 201 .
  • the scrubber 22D can obtain the user's instruction 202 .
  • the type of the instruction 202 includes and is not limited to power on, power off, display device-related information 201 , self-cleaning, enable communication mode, disable communication mode, etc., and this application is not limited in any way.
  • Equipment-related information 201 includes but not limited to instruction-related information, power supply-related information, and equipment status information. Further, instruction-related information includes but not limited to instruction completion information, instruction operation information, and coordination of other equipment-related information. Information includes but is not limited to power information and battery consumption, and device status information includes but not limited to device operating status, location information, and navigation information.
  • the device-related information 201 includes, but is not limited to, power remaining information, cleaning path, uncleaned area, cleaning information, cleaning mode, and interaction information.
  • the device-related information 201 of the mobile device 25A includes, but is not limited to, power remaining information, playback selection/switching information, communication information, and interaction information.
  • the device-related information 201 of the charging device 24 includes, but is not limited to, power remaining information, power seeking path, power supply data information, and device-related information 201 of the device 20 being powered.
  • the device-related information 201 of the cooking device 27 includes, but is not limited to, power remaining information, cooking information, operation information, interaction information, and cooking purchase information.
  • the number of cleaning equipment 22A is more than two, and the cleaning equipment 22A is implemented as at least two of a sweeping robot 22B, a vacuum cleaner 22C, an integrated vacuum cleaner 22C′, and a floor washing machine 22D.
  • one of the cleaning equipment 22A is a semi-automatic cleaning equipment, such as a vacuum cleaner, a scrubber, etc.
  • the other cleaning equipment 22A is implemented as a scrubber 22D or a vacuum cleaner 22C
  • the scrubber 22D or the vacuum cleaner 22C according to the processing
  • the relevant information of the surface, the target cleaning area, the uncleaned area of the cleaning target, and the guiding route are sent to other cleaning equipment 22A and/or equipment 20 containing the power supply system.
  • the other of the cleaning equipment 22A is a fully automatic cleaning equipment, such as a sweeping robot 22B, then the sweeping robot 22B obtains relevant information on the surface processed by the floor washing machine 22D or the vacuum cleaner 22C, the target cleaning area, the uncleaned area of the cleaning target, and Directions.
  • the cleaning robot 22B is automatically guided to the cleaning target area for secondary cleaning.
  • the type of cleaning device 22 is not limited in any way.
  • the cleaning equipment 22A may be implemented as all fully automatic cleaning equipment, or may be implemented as all this automatic cleaning equipment, and this application is not subject to any limitation.
  • one of the cleaning devices 22A sends its cleaned uncleaned area to another cleaning device 22A, and the other cleaning device 22A can automatically perform secondary cleaning after acquiring one of the uncleaned areas of the cleaning device 22 .
  • the two cleaning devices 22A can perform secondary cleaning between the cleaning devices 22A according to the device-related information sent by the other cleaning device 22A, without active judgment and thinking of the user. In order to better serve users and reduce the cleaning pressure of users.
  • the storage power supply system can be communicatively connected to the external device 20 and/or interact with the user, and the power supply system shown in Figure 13A
  • the device 20 containing the power supply system can be connected to the external mobile device 25A and/or interact with the user.
  • the mobile device 25A obtains information such as light, sound, and electricity, and further, the mobile device 25A obtains instructions from the user.
  • the mobile device 25A sends instructions to the cloud 30 , and the base 10 accommodating the power supply system is communicably connected to the cloud 30 to obtain the instructions sent by the cloud 30 .
  • the mobile device 25A in the storage power supply system feeds back the device-related information 201 of the storage power supply system. Further, the mobile device 25A communicates with the external mobile device 25A and/or interacts with the user, and the mobile device 25A of the storage power supply system can communicate At least one of the cleaning device 22A, the smart device 21A, the communication device 23A, the charging device 24A and other mobile devices 25A.
  • the mobile device 25A can communicate with the cloud 30 so that the mobile device 25A can receive relevant information from the cloud 30 .
  • the instructions 202 and/or device-related information 201 acquired by the mobile device 25A can be sent to the cloud 30, so that the cloud 30 can not only receive and store the device-related information 201 and instructions 202 of the power supply system, but also receive system-related information of other systems , this application is not subject to any limitation.
  • the mobile processing module 251A of the mobile device 25A can communicate with other devices 20, not only through the cloud 30, but also by near-field wireless communication and/or contact communication, and this application is not subject to any limitation.
  • the type of the instruction 202 includes and is not limited to power on, power off, display device-related information 201 , self-cleaning, enable communication mode, disable communication mode, etc., and this application is not limited in any way.
  • the instruction 202 not only includes the instruction 202 for the mobile device 25A, the instruction 202 may include but is not limited to the instruction 202 for the cleaning device 22A, the smart device 21A, the communication device 23A, the charging device 24A, and other mobile devices 25A that house the power supply system.
  • the device-related information 201 includes not only the mobile device 25A but also other devices 20 that house the power supply system.
  • Equipment-related information 201 includes but not limited to instruction-related information, power supply-related information, and equipment status information. Further, instruction-related information includes but not limited to instruction completion information, instruction operation information, and coordination of other equipment-related information. Information includes but is not limited to power information and battery consumption, and device status information includes but not limited to device operating status, location information, and navigation information.
  • the device-related information 201 includes, but is not limited to, power remaining information, cleaning path, uncleaned area, cleaning information, cleaning mode, and interaction information.
  • the device-related information 201 of the mobile device 25 includes, but is not limited to, power remaining information, playback selection/switching information, communication information, and interaction information.
  • the device-related information 201 of the charging device 24 includes, but is not limited to, power remaining information, power seeking path, power supply data information, and device-related information 201 of the device 20 being powered.
  • the device-related information 201 of the cooking device 27 includes, but is not limited to, power remaining information, cooking information, operation information, interaction information, and cooking purchase information.
  • the storage power supply system can communicate with external devices and/or interact with users, and the power supply system shown in Figure 13A
  • the equipment 20 in the storage and power supply system feeds back equipment-related information 201 of the storage and power supply system and/or receives instructions 202 from users.
  • the charging device 24A feeds back the device-related information 201 of the storage and power supply system. Further, the charging device 24A communicates with the external mobile device 25A and/or interacts with the user.
  • the charging device 24A has a power supply processing module 241A, wherein the power supply processing module 241A processes and analyzes the obtained instruction 202 and/or device-related information 201, the power supply processing module 241 of the charging device 24A, and the power supply processing module 241A of the charging device 24A is communicatively connected to At least one of the base 10 , the cleaning device 22A, and the communication device 23A of the power supply system is accommodated.
  • the charging device 24A controls the device 20 to perform work by being circuit-connected to the other device 20 . After the power supply processing module 241A of the charging device 24A obtains a control command from the user, the charging device 24A controls the device 20 connected to the circuit to perform work.
  • the way the device 20 performs work is not subject to any restrictions.
  • the device 20 may perform work by converting electrical energy into mechanical energy, or converting electrical energy into thermal energy, etc., without any restrictions here.
  • the power supply processing module 241A is communicatively connected to the cloud 30, so that the cloud 30 can store and communicate the instruction 202 and/or the device-related information 201 in real time.
  • the storage power supply system can communicate with external devices and/or interact with users, and the power supply system shown in Figure 13A
  • the charging device 24A is implemented as a power-holding device 24D, wherein the power-holding device 24D is a communicable intelligent battery pack 24C that can accommodate at least two batteries 24B, wherein the power-holding device 24D can not only It is used to supply power to other devices 20, and can also be used as an intelligent robot to interact with users
  • the battery pack 24C in Figure 12C of the accompanying drawings is substantially the same as the battery pack 24D, and the power-holding device 24D can communicate with other devices 20 and interact with users , the battery pack 24C can communicate with other devices 20 and interact with the user.
  • the power-holding device 24D can communicate with other devices 20 and/or interact with the user in real time, so that the user can directly control other devices 20 in the home and/or interact to obtain other information.
  • the storage and power supply system of another variant embodiment of the preferred embodiment shown in Fig. 13A is disclosed and explained in detail, and the first variant implementation of the preferred embodiment shown in Fig. 13A
  • the device 20 with a communication function is implemented as a communication device 23A
  • the communication device 23A is communicably connected to a different device 20
  • the battery pack 24C is implemented as a mobile device. Not only communication with different devices 20 is possible through device 24C, but also interaction with users is possible.
  • the communication device 23A can be implemented as a 4G/5G mobile signal device and/or a local area network signal expansion device, and the communication device 23A can provide the device 20 within a certain distance to provide a local area network signal. More optionally, the communication device 23A has its own battery, so that the communication device 23A can be moved to other areas for providing a local area network.
  • the communication device 23A has a communication processing module 231A, wherein the communication processing module 231A is communicatively connected to other devices 20 and interacts with the user.
  • the information transfer power supply method includes the following steps:
  • At least two of the at least one device 20 , the relay base 10 , and the cloud 30 are communicatively connected.
  • the device 20 can be implemented as a cleaning device 22 , a communication device 23 , a power supply device 24 , a mobile device 25 , a travel device 26 or a cooking device 27 .
  • the step (a) of the information transfer power supply method includes the following steps:
  • step (a) of the information transfer power supply method includes the following steps:
  • the number of devices 20 is selected from the number group of 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18 , here, the application is not subject to any restrictions.
  • the way of storage can be implemented as different implementation modes of support storage, hanging storage, fitting storage, and accommodation storage.
  • storage here does not mean being stored therein.
  • storage means that the device and the power supply device 24 are stored in one place, and the two do not necessarily have a relationship of mutual force.
  • the power supply in the step (a.1) of the information transfer power supply method, can be implemented as a circuit connection in a wired contact manner.
  • the connection mode of the wired power supply is further implemented as a contact contact, for example, at least one of a USB interface, a TYPE C interface, and a Lightning interface.
  • the power supply may be implemented as a circuit connection in a wireless contact manner.
  • the wireless power supply connection mode is further implemented as at least one of electromagnetic induction, magnetic resonance, and microwave electrical transmission, which can be understood and known by those skilled in the art.
  • step (a.2) of the information transfer power supply method the number of power supply devices 24 is not limited by the present application, and those skilled in the art should understand that the number of power supply devices 24 for the device 20 is selected from 1, 2, 3, 4, 5, 6, 7 quantity groups.
  • the power supply device 24 can be charged and discharged multiple times, and when the power supply device 24 is placed in the device 20 , the device 20 and the power supply device 24 are electrically connected. Further, the circuit connection between the power supply device 24 and the device 20 may be implemented as a wireless circuit connection, or may be implemented as a wired circuit connection, which is not limited in this application. Further, the device 20 and the power supply device 24 may be connected in wireless communication and/or in wired communication.
  • the power supply equipment 24 is suitable for different types of equipment 20, and the type of equipment 20 is selected from the combination of a cleaning equipment 22, a smart equipment 28, a communication equipment 23, a At least one of the cooking equipment 27.
  • the cleaning equipment 22 includes and is not limited to at least one of a sweeping robot, a vacuum cleaner, and a washing machine.
  • the smart device 28 includes but is not limited to at least one of a mobile phone, an ipad, a game console, an AR device, and an electric entertainment device.
  • the communication device 23 includes and is not limited to at least one of a relay router, a wireless router, and a mobile router.
  • the cooking device 27 can be implemented as at least one of an automatic cooking machine, a roaster, a thermos pot, and a kettle.
  • step (b) of the information transfer power supply method includes the following steps:
  • Step (c) of the information transfer power supply method occurs in step (b).
  • the device related information 201 includes but not limited to a command related information 2011 , a power supply related information 2012 and a device status information 2013 .
  • the device-related information 201 includes and is not limited to power remaining information, cleaning path, uncleaned area, cleaning information, cleaning mode, and interaction information.
  • the device-related information 201 of the smart device 28 includes, but is not limited to, power remaining information, playback selection/switching information, communication information, and interaction information.
  • the device-related information 201 of the power supply device 24 includes, but is not limited to, power remaining information, power seeking path, power supply data information, and device-related information 201 of the device 20 being powered.
  • the device-related information 201 of the cooking device 27 includes, but is not limited to, power remaining information, cooking information, operation information, interaction information, and cooking purchase information.
  • the step (c) of the information transfer power supply method includes the following steps:
  • the step (c.1) of the information relay power supply method occurs in the step (a.1) of the information relay power supply method.
  • Step (c.2) of the information transfer power supply method occurs during step (a.2) or step (a.3).
  • the step (c.2) of the information transfer power supply method includes the following steps:
  • step (c.2.1) of the information transfer power supply method includes the following steps:
  • the step (c) of the information transfer power supply method includes the following steps:
  • the step (c.3) of the information transfer power supply method includes the following steps:
  • the device-related information 201 of the devices 20 is communicated with each other.
  • step (c.3.1) of the information transfer power supply method includes the following steps:
  • the device-related information 201 of the devices 20 is communicated in real time by the power supply devices 24 respectively circuit-connected to each device 20 .
  • the step (c.3) of the information transfer power supply method includes the following steps:
  • the step (c.3.2) of the information transfer power supply method includes the following steps:
  • At least one of the devices 20 is housed in the relay base 10 with a communication module, and the acquired device-related information 201 of another device 20 is sent to the device 20 in a direct contact manner.
  • step (c.3.2.1) of the information transfer power supply method can also be implemented as a step (c.3.2.1 ⁇ ), and the step (c.3.2.1 ⁇ ) includes the following steps:
  • the acquired device-related information 201 of one device 20 is sent to another device 20 in a wireless communication manner through the relay base 10 .
  • the device-related information 201 of at least one of the devices 20 is acquired through the transfer base 10 through wireless communication.
  • the device-related information 201 of at least one of the devices 20 is obtained through direct contact with the transfer base 10 .
  • the step (c.3) of the information transfer power supply method includes the following steps:
  • one of the devices 20 has a communication module, and uploads device-related information 201 to the cloud 30;
  • the device-related information 201 of the device 20 is sent to another device 20 via the cloud 30 .
  • the equipment-related information 201 is preferably equipment processing information, processing status and processing requirements of the processed object.
  • the device-related information 201 is connected from one of the devices 20 to one of the charging devices
  • the device-related information 201 sent by the cleaning device 22 is the target cleaning area, the uncleaned area of the cleaning target, the cleaning status, the related information of the treated surface, and Directions.
  • the device 20 When another device 20 is implemented as a cleaning device 22, if the device 20 is a fully automatic cleaning device, such as a sweeping robot, the device 20 acquires relevant information on the surface being processed, the target cleaning area, the uncleaned area of the cleaning target, and the guiding route . The device 20 is automatically directed to clean the target area.
  • a fully automatic cleaning device such as a sweeping robot
  • the device 20 When another device 20 is implemented as a cleaning device 22, if the device 20 is a semi-automatic cleaning device, such as a vacuum cleaner, a floor scrubber, etc., the device 20 acquires relevant information on the surface being processed, the target cleaning area, and the uncleaned area of the cleaning target. Areas and guiding routes, the device 20 is driven by people and under the guidance issued by the device 20, the device 20 is driven to the uncleaned target area.
  • a semi-automatic cleaning device such as a vacuum cleaner, a floor scrubber, etc.
  • the smart device 28 When another device 20 is implemented as a smart device 28 , after the smart device 28 obtains the device-related information 201 , it directly interacts with the user in a manner that can present the device-related information 201 .
  • the smart device 28 interacts with the user in a manner of directly acquiring the user's instruction 202 .
  • the step (c.2) of the information transfer power supply method includes the following steps before:
  • step (c.2.1.2) of the information transfer power supply method can be implemented as the following steps:
  • the information relay power supply method includes the following steps after step (b):
  • the step (d) of the information transfer power supply method occurs in the step (b).
  • Step (c) of the information transfer power supply method occurs in step (b).
  • Step (d) and step (c) of the information transfer power supply method can occur simultaneously or sequentially, and the sequence of step (d) and step (c) is not subject to any restrictions.
  • Step (d) and step (c) of the information transfer power supply method may be selected to occur, or may not occur.
  • Steps (d) and (c) of the information relay power supply method may occur independently.
  • the step (d) of the information transfer power supply method includes the following steps before:
  • the local area network is provided by the communication device 23 of the relay base 10 .
  • both the relay base 10 and the device 20 in the step (d.0 ⁇ ) of the information transfer power supply method are equipped with 4G/5G communication modules.
  • the step (d) of the information relay power supply method includes the following steps:
  • the step (d) of the information transfer power supply method includes the following steps:
  • At least one of steps (d.1) and (d.2) of the information relay power supply method is selected to occur.
  • the instruction 202 can be implemented as an operation instruction, and can also be implemented as a charging instruction, which is not limited in this application.
  • the operation instruction may be making an appointment, moving to a specific place, selecting an operation type to operate, stopping, terminating, and starting.
  • the charging instruction can be implemented as charging, supplying power, and turning on automatic charging, and this application is not subject to any limitation here.
  • the step (d.1) of the information relay power supply method occurs in the step (a.1) of the information relay power supply method.
  • Step (d.2) of the information relay power supply method occurs during step (a.2).
  • the step (d.1) of the information transfer power supply method includes the following steps:
  • the step (d.1) of the information transfer power supply method includes the following steps:
  • At least one of steps (d.1.1) and (d.1.2) of the information relay power supply method is selected to occur.
  • the step (d.1.1) of the information transfer power supply method includes the following steps:
  • the step (d.2) of the information transfer power supply method includes the following steps:
  • the command 202 is communicatively sent to the device 20 by being communicatively connected to a power supply element 210 circuit-connected to the device 20 .
  • the power supply device 24 is implemented as an external battery 211, a battery pack 212 accommodating at least two external batteries 211, and a smart device 28 with at least two external batteries 211.
  • the present application does not subject to any restrictions.
  • the power supply element 210 can be placed in the power supply device 24 to be powered, and can also be directly powered by an external circuit/power supply, wherein the power supply element 210 can be implemented as an external battery 211, and can also be implemented to accommodate at least two
  • the battery pack 212 with the external battery 211 and the smart device 28 with at least two external batteries 211 are not limited by this application.
  • the power supply element 210 is implemented as an external battery 211 . That is to say, in the step (d.2.2) of the information transfer power supply method, the external battery 211 is powered by the external battery 211 of the device 20, and the external battery 211 obtains the instruction 202 of the power supply device 24 and communicates with the device 20, so that The device 20 can be controlled remotely, which is more convenient for the user's life. Further, the power supply device 24 may acquire information of multiple devices 20 . The power supply device 24 obtains information related to the user's usage habits, usage time, smart recommendation, user population distribution, power demand, and power statistics based on multiple devices 20 .
  • the step (d.2.2) of the information transfer power supply method includes the following steps:
  • the cloud 30 sends the instruction 202 to the power supply device 24, the instruction 202 is sent to the power supply element 210 through direct contact with the power supply equipment 24.
  • the power supply element 210 is electrically connected to the device 20, the communication ground Instructions are sent 202 to device 20 .
  • the power supply device 24 can be directly used by other devices 20 to supply power to the device 20 .
  • the power supply device 24 can supply power to the device 20 by selecting one of the power supply elements 210 .
  • the communication mode of the power supply device 24 and the device 20 is selected from wired communication and wireless communication, and this application does not accept any limitation in this respect.
  • the information transfer power supply method includes the following steps:
  • step (e) occurs after step (c) of the information transfer power supply method.
  • step (e) of the information transfer power supply method occurs before step (d).
  • interaction methods include and are not limited to voice, button, display, fingerprint, and face recognition, and this application is not subject to any limitation in this respect.
  • the step (e) of the information transfer power supply method includes the following steps:
  • interaction methods include and are not limited to voice, button, display, fingerprint, and face recognition, and this application is not subject to any limitation in this respect.
  • step (e.1) or step (e.2) of the information transfer power supply method occurs in step (c) or step (d).
  • the step (e.1) of the information transfer power supply method includes the following steps:
  • At least two of the communicable power supply equipment 24, the equipment 20, the transfer base 10 and other power supply equipment 24 communicated with the power supply equipment 24 are in a local area network Inside.
  • step (e.1.1) of the information transfer power supply method the communication between at least two of the communicable power supply equipment 24, the equipment 20, the transfer base 10 and other power supply equipment 24 communicated with the power supply equipment 24
  • the way is 4G/5G communication.
  • the step (e.2) of the information transfer power supply method includes the following steps:
  • At least two of the communicable power supply equipment 24, the equipment 20, the transfer base 10 and other power supply equipment 24 communicated with the power supply equipment 24 are in a local area network Inside.
  • step (e.1.1) of the information transfer power supply method the communication between at least two of the communicable power supply equipment 24, the equipment 20, the transfer base 10 and other power supply equipment 24 communicated with the power supply equipment 24
  • the way is 4G/5G communication.
  • the step (e.3) of the information transfer power supply method includes the following steps:
  • the power supply device 24 is circuit-connected to other power supply devices 24 of the power supply device 24, and transmits the device-related information 201 of the device 20 to other power supply devices 24;
  • the power supply device 24 can be implemented as a power supply element 210 , and when the power supply element 210 is powered by other power supply equipment 24 , the power supply element 210 is communicatively connected to the other power supply equipment 24 .
  • the power supply device 24 can be implemented as a battery pack 212 capable of supplying power to at least one power supply element 210, and the power supply device 24 supplies power to the device 20.
  • the power supply element 210 is circuit-connected to the power supply element 210
  • the power supply element 210 is communicatively connected to the power supply device 24 . In other words, only one of the multiple power supply devices 24 can be selected to be provided with the wireless communication module.
  • the power supply device 24 that receives the device-related information 201 of the device 20 interacts directly with the user.
  • the power supply device 24 and the device 20 to be powered are communicatively connected in a circuit connection manner.
  • the device 20 communicates wirelessly with the power supply device 24 , the transfer base 10 , other power supply devices 24 , other devices 20 or the cloud 30 .
  • the relay base 10 may include a base body 11 and at least one device 20 .
  • the relay base 10 includes a base body 11 and at least one communication device 23 , the communication device 23 is continuously powered by the base body 11 , wherein the communication device 23 provides a local area network.
  • the step (e.2) of the information transfer power supply method includes the following steps:
  • a local area network is provided.
  • the step (d.2) of the information transfer power supply method includes the following steps before:
  • the local area network is provided by the communication device 23 of the relay base 10 .
  • the device 20 can be implemented as a walking device 26 .
  • the running device 26 can be controlled to operate, for example, the running device 26 transports the meals and drinks prepared by the cooking device 27 to the target area.
  • the walking device 26 can be implemented as an intelligent conveying device, such as a balance car, a skateboard, an intelligent delivery robot, or an electric vehicle, and this application is not limited thereto.
  • an auxiliary power supply system based on a basic device according to another preferred embodiment of the present application is disclosed and explained in detail, wherein the auxiliary power supply system based on a basic device is compared with the existing base, On the basis of not wasting the charging terminal, power is further supplied to at least two devices, so that the devices can be better stored.
  • the auxiliary power supply system based on the basic device includes at least one basic device 100D and at least one other device 20, wherein the basic device 100D includes at least one basic base 10D and a basic electric device 40D, wherein the basic electric device 40D and the basic base 10D are suitably connected to the electrical circuit, and the basic electric device 40D is adapted to be detachably mounted on the basic base 10D, so that after the basic electric device 40D is powered by the basic base 10D, the basic electric device 40D can be moved away from Work is done, in particular, for the base electric device 40D to serve the domestic space.
  • the device 20 is detachably installed on the basic base 10D, wherein the device 20 is powered by the basic device 100D, so that the user does not need to occupy other household sockets to supply power to the device 20, thereby alleviating the power supply shortage problem of the family, and also reducing Because of the accidental risks caused by the extended power supply of the power strip, such as the power strip accidentally detached from the socket, children running and tripping, and the socket of the power strip being splashed by water, etc.
  • the basic electric device 40D and the equipment 20 can be jointly disposed on the basic base 10D, and can also be commonly powered by the basic electric device 40D.
  • the application is not limited in this respect by at least one of the base motor 40D and the device 20 being selected to provide power.
  • any one of the basic electric device 40D and the equipment 20 can be placed on the basic base 10D to perform work, and any one of the basic electric device 40D and the equipment 20 can perform work in a way away from the basic base 10D. any restrictions.
  • the equipment 20 is powered by the basic base 10D of the basic electric device 40D, which effectively reduces the number of required sockets. More preferably, the basic electric device 40D and the device 20 are wirelessly accommodated by the basic base 10D, so that the basic electric device 40D and the device 20 can be powered without messy wires connected to the plug board, further improving the cleanliness of home storage Degree, improve the safety of home power supply.
  • the electrical connection between the base base 10D and the base electric device 40D is a wired connection
  • the electrical connection between the base base 10D and the base electric device 40D is further implemented as contact contact, for example, USB interface, TYPE C At least one of the interface and the Lightning interface.
  • the electrical connection between the basic base 10D and the basic electric device 40D is a wireless connection
  • the electrical connection between the basic base 10D and the basic electric device 40D is further implemented as at least one of electromagnetic induction, magnetic resonance, and microwave electric transmission. , those skilled in the art can understand and know.
  • the basic electric device 40D is placed on the basic base 10D to realize electrical connection. That is to say, the basic electric device 40D is placed in the basic base 10D and connected to the circuit of the basic base 10D, which is more convenient and concise.
  • the basic electric device 40D and the device 20 do not need to be connected to the basic base 10D through other wires, and the basic electric device 40D and the device 20 can be connected by a circuit after being respectively placed on the basic base 10D, making the charging method more convenient.
  • the basic electric device 40D is powered by the basic base 10D with higher priority than the equipment 20 is powered by the basic base 10D.
  • the basic electric device 40D is powered by wires from the basic base 10D, thereby ensuring that the basic electric device 40D is powered with priority.
  • the basic electric device 40D when the power supply percentage of the basic electric device 40D is lower than the first threshold value, the basic electric device 40D is preferentially powered, so as to ensure that the basic electric device 40D is preferentially powered.
  • the basic electric device 40D is suspended from power supply, so as to keep the basic base 10D supplying power to other devices 20, and the basic base 10D gives power to the device 20 with secondary priority .
  • the first threshold is implemented as 70% of the total charge of the base electric device 40D.
  • the first threshold is implemented as 75% of the total charge of the base electric device 40D.
  • the first threshold is implemented as 80% of the total charge of the base electric device 40D. More preferably, the first threshold is implemented as 85% of the total charge of the base electric device 40D. Further preferably, the first threshold is implemented as 90% of the total charge of the base electric device 40D.
  • the second threshold is lower than the first threshold.
  • the second threshold is implemented as 30% of the total charge of the base electric device 40D.
  • the first threshold is implemented as 25% of the total charge of the base electric device 40D.
  • the first threshold is implemented as 20% of the total charge of the base electric device 40D. More preferably, the first threshold is implemented as 15% of the total charge of the base electric device 40D. Further preferably, the first threshold is implemented as 10% of the total charge of the base electric device 40D.
  • the base electric device 40D is powered in a power-prioritized manner. That is to say, the output power of the basic electric device 40D powered by the basic base 10D is greater than the output power of the equipment 20 powered by the basic base 10D.
  • the base electric device 40D and the equipment 20 can perform work away from the base base 10D. Doing work refers to the process of converting energy from one form to another. Any one of the basic electric device 40D and the device 20 can be implemented to convert electrical energy into different types of energy such as mechanical energy, light energy, and thermal energy. Herein This application is not subject to any restrictions.
  • the base device 100D can always be powered in real time.
  • the basic base 10D supplies power to the power supply device 44D in a contained manner, and the power supply device 44D is accommodated by the basic base 10D in a power supply manner.
  • the basic base 10D that always has electricity, the basic base 10D supplies power to other devices 20, so that after the basic base 10D is powered by the power supply device 44D, the basic base 10D supplies power to other devices 20, so as to reduce the pressure on the number of sockets, making the family more tidy.
  • the basic base 10D is suitable for supplying power to house the cleaning device 42D, wherein the cleaning device 42D is accommodated and powered by the basic base 10D and is also suitable for supplying power to other equipment 20, wherein the cleaning device 42D is communicatively connected with other equipment 20, wherein the cleaning device 42D and the equipment 20 are adaptively housed and powered by the basic base 10D. Furthermore, since the cleaning device 42D originally needs an adapted basic base 10D, by increasing the expansion function of the basic base 10D, at least one charging position is added to supply power to other devices 20, so as to expand the power supply of the basic base 10D to accommodate ability.
  • the basic base 10D is suitable for power supply and receiving the mobile device 45D.
  • the mobile device 45D is powered in a housed manner, and the basic base 10D expands at least one power supply position to supply power to other devices 20 .
  • the base is powered to at least one other device 20 , so that the at least one device 20 and the basic electric device 40D are jointly housed and powered.
  • the type of the base electric device 40D is implemented as a communication device 43D, wherein the communication device 43D means that the communication device 43D provides a local area network, so that the communication device 43D is powered by the base base 10D, while the base base 10D supplies power to other devices 20, It reduces the need for a large number of sockets and connected lines for many devices 20 to be powered.
  • the type of basic electric device 40D is implemented as a cooking device, wherein the cooking device can be conductively connected to the cooking device.
  • the base base 10D can supply power to other equipment 20 . That is, the cooking device and the appliance 20 are housed in the basic base 10D, respectively.
  • the type of base electric device 40D may also be implemented as a running device 46D, without any limitation of this application.
  • the traveling device 46D transports the meals and drinks prepared by the cooking equipment to the target area.
  • the walking device 46D can be implemented as an intelligent conveying device, such as a balance car, a skateboard, an intelligent delivery robot, or an electric vehicle, and this application is not limited thereto.
  • FIG. 20B of the accompanying drawings Another preferred embodiment of the present application is disclosed and explained in detail with reference to Fig. 20B of the accompanying drawings, wherein the basic electric device 40D of the basic device 100D is implemented as a power supply device 44D, and the types of the power supply device 44D and the power supply equipment 24D are different .
  • the power supply device 44D includes at least one external battery 441D.
  • the power supply device 44D can be embedded to supply power to other devices 20 , and the power supply device 44D can also be connected to other devices 20 by wires, where the type of the device 20 is suitable for circuit connection by the power supply device 44D.
  • the number of power supply devices 44D is two or more.
  • the type of the power supply device 44D is not limited by this application, and the power of the power supply device 34D is designed according to specific conditions.
  • At least one of the power supply devices 44D is a battery pack 342D having at least two external batteries 441D.
  • the external external battery 441D and the battery pack 342D are respectively built-in to supply power to other devices 20, and the external external battery 441D and the battery pack 342D can also be connected to other devices 20 by wires respectively.
  • the type can be circuit connected to the external external battery 441D and the battery pack 342D.
  • the battery pack 342D is implemented as an intelligent battery pack with at least two external batteries 441D, and the external external batteries 441D and the intelligent battery pack can be respectively built-in to supply power to other devices 20, and the external external batteries
  • the 441D and the smart battery pack can also be connected to other devices 20 by wires respectively.
  • the type of the device 20 can be connected to the external external battery 441D and the smart battery pack by circuit.
  • a smart battery pack refers to a device that can realize intelligent interaction or communication. For example, in a home environment, a smart battery pack can receive user instructions and be communicatively connected to other devices 30D or other devices 20 , the smart battery pack can not only realize intelligent interaction, but also provide power for other devices 20 .
  • the device 20 can also be powered for a long time by means of the basic base 10D of the basic device 100D. Further, the power supply device 44D and the device 20 are powered at any time through the same basic base 10D.
  • the priority of the power supply device 44D being powered by the basic base 10D is higher than that of the device 20 being powered by the basic base 10D.
  • the power supply device 44D is powered by wires from the base base 10D, thereby ensuring that the power supply device 44D is powered with priority.
  • the basic electric device 40D is preferentially powered to ensure that the power supply device 44D is preferentially powered.
  • the power supply device 44D is suspended to supply power to keep the basic base 10D supplying power to other devices 20, and the basic base 10D supplies power to the device 20 with secondary priority.
  • the first threshold is implemented as 70% of the total power of the power supply device 44D.
  • the first threshold is implemented as 75% of the total charge of the power supply device 44D.
  • the first threshold is implemented as 80% of the total charge of the power supply device 44D. More preferably, the first threshold is implemented as 85% of the total charge of the power supply device 44D. Further preferably, the first threshold is implemented as 90% of the total power of the power supply device 44D.
  • the power supply device 44D is embedded for power supply, wherein the base base 10D includes a base main body 11D, a housing portion 12D and at least one charging portion 13D, and the base base 10D has at least one power supply space 110D, wherein the power supply space 110D of the base base 10D is bounded by the base body 11D, wherein the charging part 13D is set in the power supply space 110D, so that the power supply device 44D is placed in the power supply space 110D and is charged by the charging part 13D of the base base 10D powered by.
  • the electrical connection manner between the charging unit 13D and the power supply device 44D may be a wired connection or a wireless connection.
  • the electrical connection mode of the charging part 13D and the power supply device 44D is a wired connection
  • the electrical connection mode of the charging part 13D and the power supply device 44D is further implemented as contact contact, for example, USB interface, TYPE C interface, Lightning interface at least one of the .
  • the electrical connection between the charging part 13D and the power supply device 44D is a wireless connection
  • the electrical connection between the charging part 13D and the power supply device 44D is further implemented as at least one of electromagnetic induction, magnetic resonance, and microwave electrical transmission , those skilled in the art can understand and know.
  • the power supply device 44D is electrically connected to the charging unit 13D in such a manner as to be inserted. It is worth mentioning that the electrical connection direction of the power supply device 44D is along the extension direction of the insertion direction.
  • the electrical connection direction of the power supply device 44D is maintained in the radial direction of the direction in which the power supply device 44D is placed, that is, the power supply device 44D is electrically connected in a manner that it is attached to the charging portion 13D.
  • the number of power supply devices 44D is more than two. Further, the number of power supply devices 44D may be 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, At least one of 21, 22, 23, 24, 25, 26, 27, 28, 29, 30, 31, 32, 33, 34, 35, 36, when multiple power supply devices 44D are simultaneously powered by the base base 10D The quantity is not subject to any limitation of this application.
  • the type of the power supply device 44D is not limited by the present application, and at least one of the power supply device 44D is selected from at least one battery pack that combines an external external battery 441D and includes at least two external external batteries 441D. one of.
  • the present application is not limited thereto.
  • a plurality of power supply devices 44D originally requires at least one basic base 10D for centralized power supply, and the basic base 10D further supplies power to the equipment 20, so that the power supply equipment 24D and the multiple power supply devices 44D are always powered in real time without looking for charging
  • the terminal and data line can be directly powered, which is more concise and convenient.
  • the type of the device 20 is not subject to any limitation.
  • the device 20 can be implemented as a cleaning device 22D, a communication device 23D, a power supply device 24D, a mobile device 25D, a walking device 26D or 1. Cooking equipment.
  • the device 20 is preferably a device 20 that needs to be recharged frequently.
  • the basic electric device 40D is implemented as a communication device 43D. Since the communication device 43D needs to be powered for a long time, the basic base of the communication device 43D 10D, capable of supplying power to at least one other type of device in real time. In other words, the basic electric device 40D and at least one device 20 are always powered by the basic base 10D that needs to be powered, and the basic electric device 40D and the device 20 can operate better.
  • the communication device 43D refers to a device that provides a communication network.
  • the communication device 43D can use 4G/5G to provide a local area network, or expand the local area network signal of other communication devices 43D to provide a local area network. This application is not subject to any restrictions.
  • the communication device 43D is wirelessly connected to the base base 10D.
  • the communication device 43D can be electrically connected by the basic base 10D without wires.
  • the communication device 43D Since the communication device 43D is powered for a long time, the communication device 43D can continuously provide the local area network. Further, the communication device 43D and the device 20 are powered for a long time by means of the basic base 10D for power supply of the communication device 43D.
  • the communication device 43D has power storage capability.
  • the communication device 43D can continuously provide a local area network.
  • the 43D can be portable to provide LAN, which is convenient for users to always have LAN even in spaces where the LAN signal is weak.
  • the communication device 43D is a 4G/5G communication signal, wherein the communication device 43D is continuously powered by the base base 10D, and when the communication device 43D is away from the base base 10D, the communication device 43D is used as a portable WiFi to provide a local area network .
  • the communication device 43D is a WiFi signal amplifier, and the communication device 43D is continuously powered by the basic base 10D.
  • the communication device 43D is away from the basic base 10D, when the communication device 43D is within the range of the WiFi signal, to provide a local area network .
  • the priority of power supply of the communication device 43D by the charging part 13D of the basic base 10D is higher than that of the device 20 by the power supply of the basic base 10D.
  • the communication device 43D is powered by wire by the basic base 10D, thereby ensuring that the communication device 43D is powered with priority.
  • the charging part 13D of the basic base 10D includes a first charging terminal 131D, a second charging terminal 132D and at least one power supply terminal 130D, and the first charging terminal 131D and the second charging terminal 132D are respectively connected to the power supply terminal by circuits 130D, the power supply terminal 130D of the charging part 13D is circuit-connected to the base body 11D, so that at least one device 20 is circuit-connected to the charging part 13D.
  • the basic electric device 40D is preferentially powered to ensure that the communication device 43D is preferentially powered.
  • the power supply of the communication device 43D is suspended to keep the basic base 10D supplying power to other devices 20 , and the basic base 10D supplies power to the device 20 with a second priority.
  • the power supply percentage of the communication device 43D is lower than the second threshold, at least one of the devices 20 is suspended from power supply.
  • the second threshold is lower than the first threshold.
  • the first threshold is implemented as 70% of the total power of the communication device 43D.
  • the first threshold is implemented as 75% of the total charge of the communication device 43D.
  • the first threshold is implemented as 80% of the total charge of the communication device 43D. More preferably, the first threshold is implemented as 85% of the total charge of the communication device 43D. Further preferably, the first threshold is implemented as 90% of the total power of the communication device 43D.
  • the second threshold is implemented as 30% of the total charge of the communication device 43D.
  • the first threshold is implemented as 25% of the total charge of the communication device 43D.
  • the first threshold is implemented as 20% of the total charge of the communication device 43D. More preferably, the first threshold is implemented as 15% of the total charge of the communication device 43D. Further preferably, the first threshold is implemented as 10% of the total power of the communication device 43D.
  • FIG. 20D of the accompanying drawings another preferred embodiment of the present application is disclosed and explained in detail based on an auxiliary power supply system based on a basic device.
  • the type of the basic device 100D is different from that of the previous preferred embodiment and becomes New embodiment, wherein the type of base device 100D is a clean power supply device. Further, the type of the basic electric device 40D of the basic device 100D is a cleaning device 42D, and the basic base 10D supplies power to the cleaning device 42D in real time.
  • the cleaning device 42D is generally bulky, the basic base 10D is adapted to the cleaning device 42D and is connected to the socket by default, so the basic base 10D and the cleaning device 42D always need to occupy a socket.
  • the at least two charging parts 13D preset by the basic base 10D, the cleaning device 42D and other devices 20 can be connected by a circuit only through the basic base 10D. Further, due to the preset charging part 13D of the basic base 10D, the cleaning device 42D and the device 20 do not need to be connected by other wires, and the cleaning device 42D and the device 20 can be connected by a circuit when they are respectively placed on the basic base 10D, so that charging way more convenient.
  • the cleaning device 42D is placed on the base base 10D to achieve electrical connection. That is to say, the cleaning device 42D is connected to the circuit of the basic base 10D in a manner of being inserted, which is more convenient and concise.
  • the basic electric device 40D is implemented as a mobile device 45D. Since the mobile device 45D needs to be charged frequently, the mobile device 45D can be charged for a long time by the basic base 10D, and the service cannot be provided all the time. . More preferably, the mobile device 45D can be implemented as a control device of a smart home, which serves the user only if it is kept within a certain distance from the user.
  • the mobile device 45D and the device 20 are preferably of different types, and by means of the base base 10D, the mobile device 45D and the device 20 are powered at all times.
  • the priority of mobile device 45D being powered by base pedestal 10D is higher than the priority of device 20 being powered by base pedestal 10D.
  • the mobile device 45D is wired powered by the base base 10D, thereby ensuring that the mobile device 45D is powered preferentially.
  • the power supply percentage of the mobile device 45D is lower than the first threshold, at least one of the devices 20 is suspended from power supply.
  • the mobile device 45D is suspended from power supply, so as to keep the basic base 10D supplying power to other devices 20 , and the basic base 10D gives power to the device 20 with a second priority.
  • the first threshold is implemented as 70% of the total charge of the mobile device 45D.
  • the first threshold is implemented as 75% of the total charge of the mobile device 45D.
  • the first threshold is implemented as 80% of the total charge of the mobile device 45D. More preferably, the first threshold is implemented at 85% of the total charge of the mobile device 45D. Further preferably, the first threshold is implemented as 90% of the total charge of the mobile device 45D.
  • the power supply device 24D is suspended.
  • a second threshold is implemented as 30% of the total charge of the mobile device 45D.
  • the second threshold is implemented as 25% of the total charge of the mobile device 45D.
  • the second threshold is implemented as 20% of the total charge of the mobile device 45D. More preferably, the second threshold is implemented as 15% of the total charge of the mobile device 45D. Further preferably, the second threshold is implemented as 10% of the total charge of the mobile device 45D.
  • the auxiliary power supply system based on the basic device includes a basic device 100D and at least one device 20, wherein the basic device 100D includes a basic base 10D and at least one cleaning Apparatus 42D in which device 20 is electrically connected to base base 10D in such a manner as to be disposed on base base 10D, wherein cleaning device 42D and at least one device 20 are jointly and continuously powered by base base 10D.
  • the basic device-based auxiliary power supply system includes two devices 20 and a basic device 100D, wherein the devices 20 are at least one charging device 24D and at least one communication device 23D respectively. Since the charging device 24D, communication device 23D, charging device 24D and cleaning device 42D all need to be powered for a long time, the charging device 24D, communication device 43D and cleaning device 42D can be directly powered by the basic base 10D matched with the cleaning device 42D. The base 10D provides power for extended periods of time.
  • the charging device 24D is at least one detachable battery, and the cleaning device 42D is preferably implemented as a scrubber 420D.
  • the scrubber 420D is self-cleaning or charged by the base 10D to keep it clean automatically, wherein the scrubber 420D is continuously powered by the basic base 10D. Since the basic base 10D needs to be charged for a long time in order to meet other functions of the scrubber 420D, the basic base 10D, which needs to be connected to the mains for a long time, is used for other needs.
  • the device 20 that is powered for a long time in a preferred embodiment of the present application, the device 20 is at least a charging device 24D and a communication device 23D.
  • the scrubber 420D includes at least one operation head 421D and a machine body 422D, wherein the operation head 421D extends from the machine body 422D, and the operation head 421D defines an operation surface 4210D, wherein the operation surface 4210D of the operation head 421D can fit surface being cleaned.
  • the operation surface 4210D of the operation head 421D is attached to the surface to be cleaned, wherein the operation head 421D is driven by the main body 422D to roll on the operation surface 4210D, wherein the operation head 421D is driven by the main body 422D to clean the surface to be cleaned.
  • the cleaning surface is the floor.
  • the operation head 421D is used for cleaning the floor.
  • the operation head 421D will have water pollution.
  • the power supply device 24D and the communication device 23D are kept at intervals, and then the operation head 421D, the power supply device 24D and the communication device 23D are arranged on the
  • the position of the basic base 10D is higher than the operating surface 4210D of the washing machine 3210D held on the basic base 10D, and the power supply device 24D and the communication device 23D are powered by the basic base 10D in a manner of being placed in the basic base 10D, and then The likelihood of the communication device 23D and the power supply device 24D being splashed is reduced.
  • the communication device 23D and the power supply device 24D can be stably accommodated by the basic base 10D.
  • the communication device 23D and the power supply device 24D are embedded in the base 10D to provide power, wherein the communication device 23D, the power supply 24D and the washing machine 420D can be continuously powered by the base 10D.
  • the storage body 12D includes a first storage body 121D and at least two second storage bodies 122D, and the charging part 13D is respectively arranged on the first storage body 121D and the second storage body 121D.
  • the first housing body 121D of the foundation base 10D is vertically upwardly disposed.
  • the first housing body 121D is set on one side of the base body 11D away from the base body 11D, so that the washing machine 420D can be supported by the foundation base 10D, and the power supply is formed on the base body 11D
  • the side wall and is suitable for a charging port 4220D of the washing machine 420D to directly contact and charge.
  • the washing machine 420D will keep part of the sewage in the first storage body 121D, and the base body 11D can supply power to the communication device 23A and the charging device 24D when the first storage body 121D receives water.
  • the scrubber 420D can self-clean in the first housing body 121D, and the first housing body 121D collects the liquid flowing out of the scrubber 420D to prevent the sewage from the scrubber 420D from polluting the ground.
  • the first receiving body 121D is provided with a corresponding self-cleaning cleaning component to assist the cleaning of the scrubber 420D.
  • the foundation base 10D when the cleaning device 42D is implemented as a floor scrubber 420D, preferably, the foundation base 10D includes an auxiliary cleaning part, wherein the auxiliary cleaning part 14D is arranged in the first storage chamber 1210D, wherein the function
  • the auxiliary cleaning part is suitable for cleaning an operation head 421D of the scrubber 420D, and then the foundation base 10D cleans the scrubber 420D without human intervention.
  • the charging device 24D is accommodated in the second accommodation cavity 1220D, and the basic base 10D can continuously charge the charging device 24D and the washing machine 420D during the self-cleaning process of the washing machine 420D by the basic base 10D.
  • the power supply device 24D can also supply power to the washing machine 420D in the form of battery exchange, so that the washing machine 420D can be continuously powered even if it is far away from the charging position, ensuring that the washing machine 420D always has power.
  • the floor scrubber 420D can always clean with power without interrupting charging.
  • the operation surface 4210D of the scrubber 420D is provided at a position of the foundation base 10D lower than a position where other devices 20 are electrically connected to the base base 10D. That is to say, the position of the second receiving body 122D is higher than that of the first receiving body 121D.
  • the base electric device 40D and the equipment 20 can perform work away from the base base 10D.
  • Work refers to the process of converting energy from one form to another.
  • the basic electric device 40D can be implemented to convert electrical energy into different types of energy such as mechanical energy, light energy, and thermal energy. This application is not subject to any restrictions.
  • the power supply device 24D stores the electric energy in a way that can be far away from the foundation base 10D and then releases the electric energy.
  • the scrubber 420D can be converted into at least one of mechanical energy, heat energy, and light energy in a manner that can be separated from the foundation base 10D.
  • the priority of the washing machine 420D being powered by the basic base 10D is higher than that of the equipment 20 being powered by the basic base 10D.
  • the scrubber 420D is powered by wires from the foundation base 10D, thereby ensuring that the scrubber 420D is powered with priority.
  • the basic electric device 40D is preferentially powered to ensure that the scrubber 420D is powered preferentially.
  • the washing machine 420D is suspended from power supply, so as to keep the basic base 10D supplying power to other equipment 20, and the basic base 10D supplies power to the equipment 20 with secondary priority .
  • the first threshold is implemented as 70% of the total power of the scrubber 420D.
  • the first threshold is implemented as 75% of the total power of the scrubber 420D.
  • the first threshold is implemented as 80% of the total power of the scrubber 420D. More preferably, the first threshold is implemented as 85% of the total power of the scrubber 420D. Further preferably, the first threshold is implemented as 90% of the total power of the scrubber 420D.
  • the power supply device 24D is suspended.
  • a second threshold is implemented as 30% of the total charge of the scrubber 420D.
  • the second threshold is implemented as 25% of the total power of the scrubber 420D.
  • the second threshold is implemented as 20% of the total power of the scrubber 420D. More preferably, the second threshold is implemented as 15% of the total power of the scrubber 420D. Further preferably, the second threshold is implemented as 10% of the total power of the scrubber 420D.
  • the scrubber 420D when the scrubber 420D has no task reservation, the scrubber 420D, the communication device 23D and the power supply device 24D are powered simultaneously.
  • the communication device 23D is below the first threshold and above the second threshold, the communication device 23D is preferentially powered.
  • the power supply of the power supply device 24D is suspended. That is, the power supply device 24D is powered with a second priority.
  • the scrubber 420D, the communication device 23D and the power supply device 24D is far away from the foundation base 10D, other devices 20 and/or the foundation electric device 40D are commonly powered.
  • the priority of the basic electric device 40D and the equipment 20 is specifically designed according to the types of the two.
  • a containment power supply system of another preferred embodiment of the present application is disclosed and explained in detail, and the difference from the preferred embodiment shown in Figure 1A is that the containment power supply system is suitable for It is applied to at least two types of equipment 20, further speaking, the storage and power supply system includes at least one cleaning equipment and at least one charging equipment.
  • the first device 2001 is implemented as a cleaning device 22A
  • the second device 2002 is implemented as a charging device 24A
  • the cleaning device 22A and the charging device 24A are jointly accommodated by the base 10 .
  • at least one of the cleaning device 22A and the charging device 24A is selected to be powered by the base 10 .
  • the cleaning device 22A can be implemented as at least one of the cleaning robot 22B, the vacuum cleaner 22C and the floor washing machine 22D.
  • the charging device 24A since the charging device 24A is stored by the base 10 for a long time, the charging device 24A will not be piled up in various corners, and can be stored more concisely.
  • the cleaning device 22A is held in the first storage portion 121 , and the charging device 24A is held in the second storage portion 122 .
  • the cleaning device 22A is preferably placed in the first storage part 121 to be electrically connected to the charging part 13.
  • the circuit can be connected to the charging part 13.
  • the cleaning device 22A Both the charger and the charging device 24A can be electrically connected to the base 10 with one operation.
  • the first cleaning device 22A is preferably an automatic cleaning device.
  • the first cleaning device 22A is housed in the first storage cavity 1210 of the first storage body 121
  • the cleaning device 22A is housed in the second storage cavity 1220 of the second storage body 122 .
  • the cleaning device 22A is implemented as a cleaning robot 22B.
  • the type of cleaning equipment 22A is not limited by this embodiment, and the type of cleaning equipment 22A can be implemented as cleaning equipment such as a sweeping robot integrating sweeping and dragging, a washing machine integrating suction and dragging, and a vacuum cleaner integrating suction and dragging. Not subject to any restrictions.
  • the cleaning device 22A is electrically connected to the first charging terminal 131 in a contact connection manner.
  • the cleaning robot 22B is electrically connected to the first charging terminal 131 in a contact connection manner.
  • the first charging end 131 is set close to the remote end surface 112 and is provided with the first receiving cavity 1210.
  • the cleaning robot 22B is moving, it is held by the first charging end 131 in a limited position, so that the cleaning robot 22B is moving. can be snugly adsorbed.
  • the first charging end 131 is implemented as two contacts, which are directly connected to a charging port of the cleaning robot 22B, and the first charging end 131 is protruded from the surface defining the first receiving cavity 1210. , in such a way that the first charging end 131 can be directly contacted by the cleaning robot 22B for charging.
  • the first charging end 131 has certain magnetism, so that the cleaning robot 22B can be attracted to the first charging end 131 during the moving process.
  • the first housing body 121 includes a first bottom surface 1211, a first side wall 1212 and a first top surface 1213, wherein the first side wall 1212 extends from the first bottom surface 1211 to the first top surface 1213 to define the first housing Cavity 1210.
  • the first charging end 131 is formed on the first bottom surface 1211 of the first receiving body 121 , and when the cleaning robot 22B moves on the first bottom surface 1211 , it can be contacted and connected to the first charging end 131 .
  • the distance between the first charging end 131 and the first side wall 1212 is adapted to the distance between the surrounding wall of the cleaning robot 22B and the charging port of the cleaning robot 22B.
  • the first charging end 131 has a certain length, so that robots 211 of different sizes can be adaptively charged.
  • the first charging end 131 is disposed on the first side wall 1212 defining the first receiving cavity 1210 . More optionally, the first charging end 131 is protruded from the first side wall 1212 of the first receiving body 121 , so as to be suitable for a charging position on the surrounding wall of the cleaning robot 22B.
  • the first cleaning device 22A is electrically connected to the first charging end 131 in a non-contact manner.
  • the charging device 24A is electrically connected to the first charging end 131 in a plug-in connection manner.
  • the charging device 24A is electrically connected to the first charging end 131 in a non-contact manner.
  • the method of non-contact connection is selected from the types of electromagnetic induction, magnetic resonance, and microwave electrical transmission, and the present application is not limited in this respect.
  • the supporting body 111 has a proximal end and a distal end, the first receiving cavity 1210 of the receiving portion 12 is formed in the radial direction of a proximal end of the supporting main body 111, and the first receiving cavity 1210 is at least A first opening leading to the external space is formed at the lower end of the supporting body 111 .
  • the distal end and the proximal end of the support body 111 are defined by the vertical extension direction of the support body 111 , and the proximal end of the support body 111 is closer to the ground than the distal end.
  • the sweeping robot 22B can automatically enter the first receiving chamber 1210 and keep the sweeping robot 22B with a sweeping robot charging port 2210B, the charging port and the charging port of the sweeping robot of the sweeping robot 22B.
  • the first charging end 131 of the part 13 is in direct contact, and when the charging end 2210B of the cleaning robot is in direct contact with the first charging end 131 , the cleaning robot 22B is charged by the base 10 .
  • the base body 11 is circuit-connected to at least one charging device 24A and/or an external circuit, the device 20 powered by the base body 11 is always circuit-connected to prevent a power failure from running or charging. That is, the charging device 24A is connected to the base body 11 by a circuit. When the base body 11 is connected to an external circuit, the charging device 24A is powered by the base body 11. When the base body 11 is not connected to an external circuit, the charging device 24A can reversely supply power to the base body 11, so that the base body 11 can always supply power to the device 20, especially the cleaning device 22A.
  • the cleaning equipment 22A Since the self-cleaning of the cleaning equipment 22A can effectively reduce the user's trouble in dealing with stains, sewage, and garbage, the cleaning equipment 22A is kept on the base 11 for self-cleaning, so as to prevent the cleaning equipment 22A from scattering stains, sewage, and garbage on other surfaces. Places need secondary cleaning to reduce secondary pollution.
  • the base 10 when the base body 11 is not connected to an external circuit, the base 10 is back-powered by the charging device 24A, and the base body 11 can be moved to the vicinity of the cleaning device 22A to be used for cleaning the device 22A in real time. self-cleaning. Even if the cleaning device 22A is located away from the original base body 11 , it can be self-cleaned by the movable base body 11 in place. That is, the base 10 can be moved in situ for self-cleaning of the cleaning device 22A.
  • the base 10 is powered by the charging device 24A to other devices 20 , such as the cleaning device 22A, the communication device 23A, the smart device 28 and other charging devices 24A.
  • the base 10 includes an information processing part 15, wherein the information processing part 15 performs information processing for power supply storage, and the information processing part 15 includes a communication module 153, and the communication module 153 is arranged in the first storage cavity 1210 of the first storage part 121, The communication module 153 communicates with the cleaning device 22A through a contact connection.
  • the cleaning device 22A is moved to the corresponding position of the communication module 153, the communication module 153 of the powered base 10 is communicatively connected to the cleaning device 22A, and the cleaning device 22A obtains a self-cleaning signal, the cleaning device 22A is accommodated in the first
  • the storage part 121 is self-cleaning in a manner.
  • the base 10 since the base 10 is always powered by the charging device 24A and/or the external circuit, the base 10 can be used for self-cleaning by the cleaning device 22A in real time. Further, the base 10 is continuously powered by the charging device 24A and/or the external circuit, even if the base 10 is not connected to the external circuit, for at least one cleaning device 22A to be held in the first receiving portion 121 Keep communicating with the base 10 .
  • the communication module 153 of the powered base 10 is communicatively connected to the sweeping robot 22B, and when the sweeping robot 22B obtains a self-cleaning signal, the sweeping robot 22B is accommodated
  • the first housing part 121 is self-cleaning.
  • the base 10 since the base 10 is always powered by the charging device 24A and/or the external circuit, the base 10 can be used for self-cleaning by the cleaning robot 22B in real time.
  • the battery 24B can be used to supply power to the cleaning robot 22B, so that the cleaning robot 22B is always powered.
  • the sweeping robot 22B can automatically open the mode to release the received garbage to continue the operation, and the expansion is limited by the fact that the operation cannot be performed after the garbage collection is full.
  • the auxiliary cleaning part 14 is held on the first supporting surface 1211 of the first receiving part 121. It is worth mentioning that the first supporting surface 1211 is extended in the horizontal direction and is held facing the ground, and then the cleaning robot 22B is held on the In the vertical direction of the first support surface 1211 .
  • the sweeping robot 22B is a sweeping robot 22B integrated with suction and dragging.
  • the sweeping robot 22B with integrated suction and dragging includes a dust collection main body 212B and at least one detachable mopping main body 213B.
  • the mopping-integrated sweeping robot 22B is communicatively connected to the communication module 153 of the base 10, and then the suction-drag integrated sweeping robot 22B can obtain a self-cleaning signal and be automatically cleaned by the base 10. clean. That is to say, the auxiliary cleaning unit 14 rotates and cleans the mopping main body 213B of the cleaning robot 22B integrated with suction and mopping.
  • the auxiliary cleaning part 14 is held on the first supporting surface 1211 of the first receiving part 121. It is worth mentioning that the first supporting surface 1211 is extended along the horizontal direction and held toward the ground, and then the mopping main body 213B is held by the second A support surface 1211 is snugly cleaned.
  • the charging device 24A is implemented as a battery pack 24C accommodating at least two batteries 24B.
  • the communication device 23A and the charging device 24A are provided on the remote end surface of the base main body 111 . That is, the communication device 23A and the charging device 24A are provided on the top surface of the base main body 111 .
  • the battery 24B can be taken out from the battery pack 24C and used for other devices 20 .
  • the battery pack 24C is inserted into the base 10 to be charged.
  • the battery pack 24C is powered by the base body 11.
  • the base body 11 is not connected to an external circuit, the base body 11 is powered back by the battery pack 24C, that is, the base body 11 is always powered by the battery pack 24C and/or external circuits, so as to prevent other devices 20 powered by the base body 11 from being powered and unable to operate normally. That is to say, the communication device 23A can always be kept on the base 10 with power, and then keep the communication device 23A to provide a local area network all the time, effectively maintaining the user's network security.
  • the storage and power supply system includes a base 10 and at least two devices 20 that are continuously powered by the continuous base 10 .
  • the storage power supply system includes a base 10 and at least two devices 20 that are continuously powered by the continuous base 10 .
  • the storage and power supply system includes at least one cleaning device 22A, a communication device 23A and a base 10 .
  • the cleaning device 22A and the charging device 24A are commonly housed in the base 10 and charged by the base 10.
  • the cleaning device 22A treats water pollution, and the base 10 can charge the cleaning device 22A and the charging device 24A when there is water.
  • the cleaning device 22A is first accommodated in the first storage cavity 1210 of the main body 121 and is always used for floor cleaning, so the base 10 is placed on the ground so that the cleaning device 22A can be placed.
  • the charging device 24A is accommodated in the second receiving cavity 1220 .
  • the second receiving portion 122 is held on the distal end surface of the base body 111 .
  • the charging device 24A provides reverse power to the base 10 to keep the base 10 powered all the time, so as to prevent the equipment 20 that needs power from the base 10 from malfunctioning.
  • the charging device 24A is implemented as at least two batteries 24B, and the batteries 24B are held above the base body 111 by being supported by the third receiving body 123 .
  • the battery 24B can be accessed directly, and the battery 24B can be used to power other devices 20 independently.
  • the battery 24B is charged by the base 10 in a built-in manner.
  • the battery 24B provides reverse power to the base 10 to keep the base 10 powered all the time, so as to prevent the equipment 20 that needs power from the base 10 from malfunctioning.
  • the second receiving body 122 is provided with an ejection mechanism, so that the battery 24B can be ejected with one key.
  • At least two batteries 24B can be ejected simultaneously with one key.
  • the cleaning equipment 22A is implemented as a scrubber 22D, and the scrubber 22D is limitedly held by the first receiving body 121 .
  • the first receiving body 121 of the base 10 is arranged vertically upward.
  • the first receiving body 121 is set on one side of the base body 111 in a manner away from the base body 111, so that the washing machine 22D can be supported by the base 10, and the first power supply end 131 is formed on the base body 111.
  • the side wall of the seat main body 111 is suitable for direct contact charging with the charging port of the washing machine 22D.
  • the washing machine 22D will keep part of the sewage in the first storage body 121 , and the base body 111 can supply power to the communication device 23A and the charging device 24A when the first storage body 121 receives water.
  • the battery 24B can be used to power the scrubber 22D, so that the scrubber 22D is always powered.
  • the scrubber 22D can self-clean in the first housing body 121, and the first housing body 121 collects the liquid flowing out of the scrubber 22D to prevent the sewage from the scrubber 22D from polluting the ground.
  • the first receiving body 121 is provided with a corresponding self-cleaning cleaning component to assist the cleaning of the scrubber 22D.
  • the base 10 includes an auxiliary cleaning part 14, wherein the auxiliary cleaning part 14 is arranged in the first accommodation cavity 1210, and the washing machine 22D includes a working head 220D and at least one scrubbing main body 222D, wherein the auxiliary cleaning part 14 is suitable for cleaning a working head 220D of the scrubber 22D, and then the base 10 cleans the scrubber 22D without human intervention.
  • the charging device 24A is accommodated in the second accommodation cavity 1220 , and the base 10 can continuously charge the charging device 24A and the washing machine 22D during the self-cleaning process of the washing machine 22D by the base 10 .
  • the auxiliary cleaning part 14 is formed in the first receiving cavity 1210 .
  • the receiving part 12 further has a first supporting surface 1211 and at least one first extending surface 1212, wherein the first supporting surface 1211 and the first extending surface 1212 define the first receiving cavity 1210, wherein the auxiliary cleaning part 14 is formed in The first supporting surface 1211, when the cleaning equipment 21 is accommodated in the first accommodation cavity 1210 of the housing portion 12, the washing machine 22D is supported by the first supporting surface 1211, and the washing machine 22D is radially supported by the first extending surface 1212 The position is limited so that the working head 220D of the washing machine 22D is closely supported by the first support surface 1211.
  • the first storage chamber defined by the first extension surface 1212 and the first support surface 1211 1210 can carry the outflowing water and dirt, and prevent the water and dirt flowing out from the cleaning equipment 21 from contaminating the ground.
  • the auxiliary cleaning part 14 is preferably arranged on the first support surface 1211, and then when the working head 220D is driven to rotate During cleaning, the auxiliary cleaning part 14 can be adapted to self-clean the working head 220D.
  • the auxiliary cleaning portion 14 is a triangular protrusion formed on the first support surface 1211 , so that the working head 220D can better discharge sewage and dirt when it rotates.
  • the auxiliary cleaning part 14 can also be an automatic rolling brush to cooperate with the relative rotation and rolling of the working head 220D, so as to drive the working head 220D to discharge water and sewage.
  • the auxiliary cleaning unit 14 can be electrically connected to the charging unit 13 , which should be understood and known by those skilled in the art.
  • the auxiliary cleaning part 14 can also be implemented as a type group selected from various forms of grooves, gears, automatic vibrating elements, and automatic rolling brush elements, and the present application is not limited thereto.
  • the cleaning equipment 22A Since the self-cleaning of the cleaning equipment 22A can effectively reduce the user's trouble in dealing with stains, sewage, and garbage, the cleaning equipment 22A is kept on the base 11 for self-cleaning, so as to prevent the cleaning equipment 22A from scattering stains, sewage, and garbage on other surfaces. Places need secondary cleaning to reduce secondary pollution.
  • the base body 11 when the base body 11 is not connected to an external circuit, the base body 11 can be moved to the vicinity of the cleaning device 22A for real-time self-cleaning of the cleaning device 22A. Even if the cleaning device 22A is located away from the original base body 11 , it can be self-cleaned by the movable base body 11 in place.
  • the base 10 includes an information processing part 15, wherein the information processing part 15 can transmit communication signals, and a communication module 153 of the information processing part 15 is arranged in the first storage cavity 1210 of the first storage part 121, and the communication module 153 is connected by contact communicate with the cleaning device 22A in the same way.
  • the cleaning device 22A When the cleaning device 22A is moved to the corresponding position of the communication module 153, the communication module 153 of the powered base 10 is communicatively connected to the cleaning device 22A, and the cleaning device 22A obtains a self-cleaning signal, the cleaning device 22A is accommodated in the first
  • the storage part 121 is self-cleaning in a manner. That is, since the base 10 is always powered by the charging device 24A and/or the external circuit, the base 10 can be used for self-cleaning by the cleaning device 22A in real time.
  • the information processing unit 15 in this embodiment is the same component as the processing module 15 in other embodiments.
  • the information processing unit 15 can be used to be communicatively connected to at least one device 20 and/or the cloud, so that the base 10 can be communicatively connected to other devices 20 and/or the cloud, wherein the type of device 20
  • the type of the device 20 is selected from at least one of a cleaning device, a power supply device, a smart device, a communication device, and a cooking device.
  • the communication module 153 of the powered base 10 is communicatively connected to the washing machine 22D, and when the washing machine 22D acquires a self-cleaning signal, the washing machine 22D is self-cleaning so as to be accommodated in the first housing portion 121 .
  • the base 10 since the base 10 is always powered by the charging device 24A and/or the external circuit, the base 10 can be used for self-cleaning of the scrubber 22D in real time.
  • the washing machine 22D can be automatically opened to release the clean water cleaning head 220D, and continuously absorb the sewage, and absorb the sewage released in the first receiving part 121 of the base 10 to automatically clean the working head 220D, reducing user handling. The trouble with stains.
  • the auxiliary cleaning part 14 is held on the first supporting surface 1211 of the first receiving part 121. It is worth mentioning that the first supporting surface 1211 is extended along the horizontal direction and is held facing the ground, and then the washing machine 22D is held In the vertical direction of the first supporting surface 1211, the first receiving chamber 1210 defined by the first supporting surface 1211 and the first extending surface 1212 contains sewage to prevent the sewage from splashing during the self-cleaning process and causing secondary pollution. At the same time, the relatively airtight space defined by the scrubber 22D and the first receiving chamber 1210 facilitates the sewage being absorbed by a scrubber body 222D of the scrubber 22D.
  • the washing machine 22D After the washing machine 22D is kept at the corresponding position of the base 10, it is communicatively connected to the communication module 153 of the base 10, and then the washing machine 22D integrated with suction and drag can be self-cleaned by the base 10 after obtaining the self-cleaning signal , that is, the scrubbing main body 222D automatically cleans the working head 220D.
  • the auxiliary cleaning part 14 is held on the first supporting surface 1211 of the first receiving part 121. It is worth mentioning that the first supporting surface 1211 is extended along the horizontal direction and held toward the ground, and then the scrubbing main body 222D is held by the second A support surface 1211 is snugly cleaned.
  • the storage power supply system includes the base 10 and at least two charging devices 24A and communication devices 23A.
  • the communication device 23A and at least two charging devices 24A are disposed on the remote end surface of the base main body 111 . That is to say, the communication device 23A and at least two charging devices 24A are disposed on the top surface of the base main body 111 .
  • the two charging devices 24A are implemented as a battery pack 24C accommodating at least two batteries 24B and at least two batteries 24B.
  • the battery 24B can be taken out from the battery pack 24C and used for other devices 20 .
  • the battery 24B is supported above the base main body 111 .
  • the battery 24B can be accessed directly, and the battery 24B can be used to power other devices 20 independently.
  • the battery 24B is charged by the base 10 in a built-in manner.
  • the battery 24B is powered by the base body 11.
  • the base body 11 is not connected to an external circuit, the base body 11 is powered by the battery 24B. That is to say, the base body 11 is always Powered by the battery 24B and/or external circuits to prevent other devices 20 powered by the base body 11 from being powered and unable to operate normally. That is to say, the communication device 23A can always be kept on the base 10 with power, and then keep the communication device 23A to provide a local area network all the time, effectively maintaining the user's network security.
  • the base 10 is provided with an ejection mechanism, so that the battery 24B can be ejected with one key.
  • the base 10 is provided with an ejection mechanism so that the battery pack 24C can be ejected with one key.
  • At least two batteries 24B can be ejected simultaneously with one key.
  • the communication device 23A is implemented as a 4G/5G signal device or a LAN signal expansion device, so that the communication device 23A can provide a local area network to different devices 20 with network signals. More preferably, the device 20 housing the charging device can communicate under the provided local area network.
  • the battery pack 24C has at least one charging device wireless charging part 240C, and the charging device wireless charging part 240C of the battery pack 24C and the plugging surface of the battery 24B are covered Keep the wrong side. In other words, the exposed surfaces of the charging device wireless charging portion 240C of the battery pack 24C and the battery 24B are held oppositely.
  • the battery pack 24C is a battery pack 24C that can be charged wirelessly, when the base 10 is connected to an external circuit, the battery pack 24C is charged while discharging to wirelessly charge other devices 20.
  • the battery pack 24C only discharges to charge other devices 20 wirelessly. That is to say, other devices 20 can always be wirelessly charged by the battery pack 24C, even if there is no power supply from an external circuit, the charging requirements of other devices 20 are guaranteed, and the wireless charging requirements of the device 20 are prevented in an emergency without electricity.
  • the battery 24B of the battery pack 24C can be taken out of the battery pack 24C and connected to the device 20 in a circuit, so that the device 20 can be placed on the base 10 to be charged, or can be moved away from the base 10 after taking out the battery 24B.
  • the way to be charged makes the charging way of the device 20 more flexible.
  • the battery pack 24C is held on one side of the base 10 such that at least two surfaces of the battery pack 24C housed in the base 10 are exposed to the external space.
  • the battery pack 24C can be accommodated in the second accommodating chamber 122 by being pushed in from one side of the base 10, and can also be accommodated in the second accommodating chamber 122 by being inserted from above the base 10. subject to any restrictions,
  • the battery 24B and the charging device wireless charging part 240C are exposed in the external space.
  • the wireless charging part 240C of the charging device is flat to be kept on the upper surface of the base 10, and then when other devices 20 are placed on the upper surface of the base 10, only one action is required to connect the device 20 and the circuit.
  • Charging device wireless charging unit 240C That is to say, as long as the device 20 is held on the base 10 corresponding to the battery pack 24C, it can be wirelessly charged by the battery pack 24C, reducing the use of various charging cables.
  • the battery pack 24C is placed on the base 10 in a supported manner. That is, the battery pack 24C is held above the base 10 . Further, device 20 may be held above battery pack 24C to be wirelessly charged by battery pack 24C.
  • the battery pack 24C when the base 10 is connected to an external circuit, the battery pack 24C is connected to the base 10 by the circuit, and the device 20 is wirelessly charged by the battery pack 24C.
  • the battery pack 24C can not only provide reverse power to the base 10, but also wirelessly charge the device 20, so that the user can still use the battery stably even when the mains power fails. 24C charging, reducing the trouble caused by power outages.
  • device 20 is implemented as a smart device 28A.
  • the smart device 28A includes and is not limited to a mobile phone, an ipad, a game device, and a smart watch.
  • the type of device 20 is not limited by this application.
  • the containment and power supply system is different from the preferred embodiment shown in Fig. 1A and Fig. 1B in that , the power supply storage device of the power supply storage system includes a base 10 and at least two different types of equipment 20 .
  • devices 20 are respectively at least one cleaning device and at least one charging device 24A, the cleaning device being embodied as cleaning device 22A.
  • the cleaning device 22A is a grip portion 221C of a vacuum cleaner 22C.
  • the base 10 accommodates and supplies power to the cleaning device 22A and the charging device 24A, wherein the charging device 24A can be used for the cleaning device 22A after being away from the base 10, and the charging device 24A is preferably adapted to the cleaning device 22A for continuous power supply in cleaning equipment 22A.
  • the support body 111 includes a distal end portion 1001 and a proximal end portion 1002, wherein the proximal end portion 1002 and the distal end portion 1001 are respectively defined by the vertical extension direction of the support body 111, And the proximal end 1002 of the support body 111 is closer to the ground than the distal end 1001 .
  • the charging device 24A is exposed to the distal end surface 1001 of the supporting body 111 .
  • the supporting body 111 further has a radial side wall 1003 to connect the proximal end 1002 and the distal end 1001 .
  • the handle portion 221C is accommodated in the base 10 at the side. That is to say, the first receiving body 121 is formed on the radial sidewall 1003 of the base 10 .
  • the charging device 24A of the power supply containment system is implemented as a battery and/or a battery pack.
  • the charging device 24A can be charged by the base 10 for alternately powering the cleaning device 22A. That is to say, the charging device 24A is directly charged by the base 10, so that the cleaning device 22A can be replaced by replacing the charging device 24A in real time, so that the cleaning device 22A can be used for a long time. In the cleaning process that is required to deal with a large area, the cleaning device 22A can stand by for a long time without the need to suspend charging due to limited battery capacity, which improves the cleaning needs of users when they urgently need to clean the surface.
  • the charging device 24A can also be implemented as a power holding device, and the charging device 24A refers to a device that can store electricity after obtaining current, and can discharge it to other devices.
  • the charging device 24A is a battery pack 24C containing at least two batteries 24B, and the battery pack 24C is held above the base body 111 in a manner supported by the second receiving body 122 .
  • the battery 24B housed in the battery pack 24C can be taken out to independently power other devices 20 .
  • the battery pack 24C can power other devices 20 as a whole.
  • the battery pack 24C can be directly installed behind the cleaning device 22A, and the battery pack 24C is electrically connected to the cleaning device 22A to supply power to the cleaning device 22A.
  • the battery pack 24C includes at least one battery 24B, so that the battery taken out from the battery pack 24C can be installed in the cleaning device 22A to provide power for the cleaning device 22A.
  • the battery pack 24C includes a charging device wireless charging part 240C, the second charging end 132 is formed on the second receiving body 122, wherein the second charging end 132 can be wirelessly connected to the charging device of the battery pack 24C in a contactable manner.
  • the wireless charging part 240C of the charging device is formed on the bottom of the battery pack 24C, so that the battery pack 24C accommodates the battery 24B and can be placed on the base body 111 for charging.
  • the cleaning device 22A is implemented as a sweeping robot, a mite remover and other cleaning devices, and this application is not limited in any way here.
  • the cleaning device 22A refers to a device for surface cleaning or deep cleaning, which may have other multiple functions, and this application does not limit the type of the cleaning device 22A.
  • the battery pack 24C may be externally installed in at least one of the vacuum cleaner 22C and the integrated vacuum cleaner 22C'.
  • the battery pack 24C can be plugged into different devices 20 in real time after being charged by the base 10 to directly supply power to the devices, and the battery pack 24C can improve the running time of the device 20 and make the device 20 last longer.
  • the battery pack 24C Since the battery pack 24C is electrically connected to the three batteries 24B received, the capacity of the battery pack 24C is expanded, increasing the capacity of the three batteries 24B. Since the battery pack 24C itself has a battery, that is to say, when the three batteries 24B are taken out, the battery pack 24C can also supply power, but the capacitance is relatively small.
  • the battery pack 24C can provide power for the device 20 with a longer battery life, which is suitable for some devices 20 with higher power and longer use time, and improves user safety. Use experience.
  • the second receiving portion 122 is formed at the distal end portion 1001 , wherein the charging device 24A accommodated in the second receiving portion 122 is flush with the end surface of the distal end portion 1001 of the base 10 .
  • the charging device 24A housed in the second housing portion 122 is held so as to protrude from the end surface of the distal end portion 1001 of the base 10 .
  • the second accommodating cavity 1220 is disposed upwardly in the radial direction of the supporting body 111 in such a manner that at least one second opening leads to the external space.
  • the first accommodation cavity 1210 of the first accommodation portion 121 is formed on the radial side 1003 of the support body 111 in the radial direction
  • the second accommodation cavity 1220 of the second accommodation portion 122 is formed on an axial direction of the support body 111.
  • the direction on the distal end 1001 defines the end surface.
  • the battery pack 24C is supported by the support body 111 in such a manner as to protrude from an end surface defined by the distal end portion 1001 of the support body 111 .
  • the housing portion 12 includes at least one third housing portion 123, wherein the third housing portion 123 is arranged adjacent to the first housing portion 122, and the mobile device 25A can be accommodated in the third housing portion 123, so that it is The battery pack 24C accommodated in the second housing portion 122 is attached to the mobile device 25A, and then the mobile device 25A can be wirelessly charged by the battery pack 24C.
  • the charging part 13 includes a third charging end 133 , and the third charging end 133 is placed in the third receiving body 123 , and the mobile device 25A is connected to the third charging end 133 in a way of being placed in the third receiving part 123 .
  • the plugging and unplugging direction of the charging device 25A is the setting direction of the circuit connection interface.
  • the plugging and unplugging direction of the mobile device 25A and the setting direction of the circuit connection interface are kept out of plane.
  • the mobile device 25A is powered by the third charging terminal 133 in a wireless communication manner.
  • the battery pack 24C is housed in the base 10 so as to be supported by an end surface defined by the distal end surface 1001 of the base 10 .
  • the battery pack 24C is placed on the end surface of the base 10 and is contact-connected to the base 10. Since the mobile device 25A is held in a manner perpendicular to the end surface defined by the remote end surface 1001 of the base 10, the mobile device 25A The side walls and mobile device 25A may be snugly held over the end face of the base 10 .
  • the battery pack 24C and the mobile device 25A may wirelessly communicate to provide power. Since the battery pack 24A always has power by replacing at least one battery 24B, being connected to the base 10 and storing power, the mobile device 25A can always be connected to the battery pack 24C by one-key insertion into the base 10 .
  • the position of the battery pack 24C can be relatively movable, so that the confined mobile device 25A can be attached by the battery pack 24C through the movement of the position of the battery pack 24C.
  • the battery pack 24C and the mobile device 25A can be electrically connected wirelessly, wherein the mobile phone 25B can always be electrically connected by the battery pack 24C, so that the mobile phone 25B is always powered.
  • the battery pack 24C is placed on the base 10 in a supported manner. That is, the battery pack 24C is held above the base 10 . Further, device 20 may be held above battery pack 24C to be wirelessly charged by battery pack 24C.
  • the battery pack 24C includes at least two replaceable and pluggable batteries 24B, wherein the insertion and extraction direction of the battery pack 24C is kept on the same side as the wireless charging part 240C of the charging device.
  • the mobile phone 25B is placed in the battery pack 24C and powered wirelessly by the charging device wireless charging section 240C, the mobile phone 25B is kept covered with the battery 24B.
  • the cell phone 25B is supported by the battery pack 24C and does not cover the battery 24B.
  • a containment power supply system of another preferred embodiment of the present application is disclosed and explained in detail, the containment power supply system is suitable for being applied to at least two types of equipment 20, further ,
  • the storage power supply system includes at least one cleaning device and at least one charging device.
  • the first device 2001 is implemented as a cleaning device 22A
  • the second device 2002 is implemented as a charging device 24A
  • the cleaning device 22A and the charging device 24A are jointly accommodated by the base 10 .
  • at least one of the cleaning device 22A and the charging device 24A is selected to be powered by the base 10 .
  • the cleaning device 22A can be implemented as at least one of the cleaning robot 22B, the vacuum cleaner 22C and the floor washing machine 22D.
  • the charging device 24A since the charging device 24A is stored by the base 10 for a long time, the charging device 24A will not be piled up in various corners, and can be stored more concisely.
  • the cleaning device 22A is held in the first storage portion 121 , and the charging device 24A is held in the second storage portion 122 .
  • the cleaning device 22A is preferably placed in the first storage part 121 to be electrically connected to the charging part 13.
  • the circuit can be connected to the charging part 13.
  • the cleaning device 22A Both the charger and the charging device 24A can be electrically connected to the base 10 with one operation.
  • the cleaning device 22A is preferably an automatic cleaning device.
  • the cleaning device 22A is accommodated in the first accommodation chamber 1210 of the first accommodation body 121
  • the charging equipment 24A is accommodated in the second accommodation chamber 1220 of the second accommodation body 122 .
  • the cleaning device 22A is matingly connected by one of the base charging parts 1300 .
  • the charging device 24A is accommodated in the second accommodation chamber 1220 of the second accommodation body 122 .
  • the cleaning device 22A is implemented as a cleaning robot 22B.
  • the type of cleaning equipment 22A is not limited by this embodiment, and the type of cleaning equipment 22A can be implemented as cleaning equipment such as a sweeping robot integrating sweeping and dragging, a washing machine integrating suction and dragging, and a vacuum cleaner integrating suction and dragging. Not subject to any restrictions.
  • the charging device 24A is implemented as a battery 24B, accommodates at least one battery pack 24C electrically connected to at least two batteries 24B, and at least one power-holding device, wherein the battery 24B refers to an external battery that can be used to power other devices, for example,
  • the battery 24B can provide power for mobile devices such as mobile phones and other electric devices such as cleaning equipment 22A and cooking equipment in an embedded manner.
  • the battery pack 24C can be electrically connected to the battery 24B accommodated therein, and the battery pack 24C can also integrally supply power to other electric devices, such as small monitors, electric fans, refrigeration fans, and the like.
  • the power-holding device can also be implemented as a smart battery pack 24C capable of processing information and communicating or a smart battery 24B capable of processing information and communicating.
  • the charging part 13 includes at least two base charging parts 1300 and the power supply terminals 130 respectively connected to the base charging part 1300.
  • the electrical connection manner of 1300 may be implemented as a contact point interface or a non-contact point interface, which is not limited in this application. Further, the contact point interface can be implemented as electromagnetic induction, magnetic resonance, microwave electric transmission , those skilled in the art can understand and know.
  • the cleaning device 22A is electrically connected to the first base charging part 131 in a contact connection manner.
  • the charging device 24A is electrically connected to the second base charging part 132 in a contact connection manner.
  • the cleaning robot 22B is electrically connected to the first base charging part 131 in a contact connection manner.
  • the first base charging part 131 is arranged near the far end surface (top surface) and is provided with the first accommodation cavity 1210. When the cleaning robot 22B is moving, it is limitedly held by the first base charging part 131, so that The cleaning robot 22B can be snugly adsorbed during the movement.
  • the first base charging part 131 is implemented as two contacts to be directly connected to a charging port of the cleaning robot 22B, and the first base charging part 131 is protruded from the surface defining the first receiving cavity 1210 It is set in such a manner that the first base charging part 131 can be charged in such a manner that it can be directly contacted by the cleaning robot 22B.
  • the first base charging part 131 has certain magnetism, so that the cleaning robot 22B can be attracted to the first base charging part 131 during the moving process.
  • the first housing body 121 includes a first bottom surface 1211, a first side wall 1212 and a first top surface 1213, wherein the first side wall 1212 extends from the first bottom surface 1211 to the first top surface 1213 to define the first housing Cavity 1210.
  • the first base charging part 131 is formed on the first bottom surface 1211 of the first receiving body 121 , and when the cleaning robot 22B moves on the first bottom surface 1211 , it can be contacted and connected to the first base charging part 131 .
  • the distance between the first base charging portion 131 and the first side wall 1212 is adapted to the distance between the surrounding wall of the cleaning robot 22B and the charging port of the cleaning robot 22B.
  • the first base charging part 131 has a certain length, so as to be adaptively charged for robots 211 of different sizes.
  • the first base charging portion 131 is disposed on the first side wall 1212 defining the first receiving cavity 1210 . More optionally, the first base charging portion 131 is protruded from the first side wall 1212 of the first receiving body 121 , so as to be suitable for charging on the surrounding wall of the cleaning robot 22B.
  • the cleaning device 22A is electrically connected to the first base charging part 131 in a non-contact manner.
  • the charging device 24A is electrically connected to the first base charging unit 131 in a plug-in manner.
  • the charging device 24A is electrically connected to the first base charging part 131 in a non-contact manner.
  • the method of non-contact connection is selected from the types of electromagnetic induction, magnetic resonance, and microwave electrical transmission, and the present application is not limited in this respect.
  • the supporting body 111 has a proximal end and a distal end, the first receiving cavity 1210 of the receiving portion 12 is formed in the radial direction of a proximal end of the supporting main body 111, and the first receiving cavity 1210 is at least A first opening leading to the external space is formed at the lower end of the supporting body 111 .
  • the distal end and the proximal end of the support body 111 are defined by the vertical extension direction of the support body 111 , and the proximal end of the support body 111 is closer to the ground than the distal end.
  • the sweeping robot 22B can automatically enter the first receiving chamber 1210 and keep the sweeping robot 22B with a sweeping robot charging port 2210B, the charging port and the charging port of the sweeping robot of the sweeping robot 22B.
  • the first base charging part 131 of the part 13 is in direct contact, and when the cleaning robot charging end 2210B is in direct contact with the first base charging part 131 , the cleaning robot 22B is charged by the base 10 .
  • the battery 24B can be used to supply power to the cleaning robot 22B, so that the cleaning robot 22B is always powered.
  • the sweeping robot 22B can automatically open the mode to release the received garbage to continue the operation, and the expansion is limited by the fact that the operation cannot be performed after the garbage collection is full.
  • the auxiliary cleaning part 14 is held on the first supporting surface 1211 of the first receiving part 121. It is worth mentioning that the first supporting surface 1211 is extended in the horizontal direction and is held facing the ground, and then the cleaning robot 22B is held on the In the vertical direction of the first support surface 1211 .
  • the sweeping robot 22B is a sweeping robot 22B integrated with suction and dragging.
  • the sweeping robot 22B with integrated suction and dragging includes a dust collection main body 212B and at least one detachable mopping main body 213B.
  • the suction-and-drag sweeping robot 22B can obtain the self-cleaning signal and be cleaned by the base 10. self-cleaning. That is to say, the auxiliary cleaning unit 14 rotates and cleans the mopping main body 213B of the cleaning robot 22B integrated with suction and mopping.
  • the auxiliary cleaning part 14 is held on the first supporting surface 1211 of the first receiving part 121. It is worth mentioning that the first supporting surface 1211 is extended along the horizontal direction and held toward the ground, and then the mopping main body 213B is held by the second A support surface 1211 is snugly cleaned.
  • the base body 11 is circuit-connected to at least one charging device 24A and/or an external circuit, the device 20 powered by the base body 11 is always circuit-connected to prevent a power failure from running or charging. That is, the charging device 24A is connected to the base body 11 by a circuit. When the base body 11 is connected to an external circuit, the charging device 24A is powered by the base body 11. When the base body 11 is not connected to an external circuit, the charging device 24A can reversely supply power to the base body 11, so that the base body 11 can always supply power to the device 20, especially the cleaning device 22A.
  • the cleaning equipment 22A Since the self-cleaning of the cleaning equipment 22A can effectively reduce the user's trouble in dealing with stains, sewage, and garbage, the cleaning equipment 22A is kept on the base 11 for self-cleaning, so as to prevent the cleaning equipment 22A from scattering stains, sewage, and garbage on other surfaces. Places need secondary cleaning to reduce secondary pollution.
  • the base 10 when the base body 11 is not connected to an external circuit, the base 10 is back-powered by the charging device 24A, and the base body 11 can be moved to the vicinity of the cleaning device 22A to be used for cleaning the device 22A in real time. self-cleaning. Even if the cleaning device 22A is located away from the original base body 11 , it can be self-cleaned by the movable base body 11 in place. That is, the base 10 can be moved in situ for self-cleaning of the cleaning device 22A.
  • the base 10 is powered by the charging device 24A to other devices 20 , such as the cleaning device 22A, the communication device 23A, the smart device 28 and other charging devices 24A.
  • the base 10 includes an information processing unit 15, wherein the information processing unit 15 includes at least one communication module 153, at least one control module 152 and a selection module 154, the communication module 153 and the charging unit 13 are communicably connected to the selection module 154
  • the selection module 154 selects the charging mode of each device, and the control module 152 controls the charging unit 13 to supply power in the selected charging mode and power-off mode after receiving the charging mode sent by the selection module 154 .
  • the device 20 is powered by the base 10 in the manner in which the charging mode and the power-off mode are selected.
  • the charging unit 13 supplies power to the device 20 in a manner that a charging mode and a power-off mode are selected.
  • the charging modes include a fast charging mode and a slow charging mode. That is to say, the charging unit 13 supplies power to the device 20 in a manner in which the fast charging mode, the slow charging mode and the power-off mode are selected.
  • each base charging unit 1300 of the charging unit 13 supplies power in the fast charging mode, the slow charging mode and the power-off mode with respective preset output powers. In other words, the output power of the first base charging unit 131 and the second base charging unit 132 of the charging unit 13 are different, and the fast charging mode and the slow charging mode of the first base charging unit 131 and the second base charging unit 132 are different. .
  • the selection module 154 is further circuit-connected to the communication module 153, wherein when the communication module 153 is communicatively connected to the device 20, the selection module 154 obtains the circuit trigger information obtained by the communication module 153, and according to the circuit trigger information sent by the communication module 153,
  • the system selection mechanism 1543 selects one of the charging mode and the power-off mode as the initial result of the system selection, and the user trigger mechanism 1540 sends the initial result of user selection whether the user triggers the charging mode and the power-off mode, and the control module 152 receives the user's initial result.
  • the trigger mechanism 1540 processes the user selection initial result and the system selection mechanism 1543 to obtain a selection result after processing, and the control module 152 controls different base charging units of the charging unit 13 to output corresponding currents.
  • the control module 152 controls different base charging parts of the charging part 13 to output corresponding currents.
  • the selection module 154 includes a user trigger mechanism 1540 and a system selection mechanism 1543 , and the user trigger mechanism 1540 includes a first device trigger mechanism 1541 and at least one second device trigger mechanism 1542 . Further, the user trigger mechanism 1540 and the system selection mechanism 1543 are connected to the control module 152 through communication, so that the control module 152 can select at least one of a fast charging mode, a slow charging mode and a power-off mode as an option. Depending on the result, the device 20 is fast-charged, slow-charged, or powered off by the base 10.
  • the communication module 153 includes at least two communication units 1530 , and each communication unit 1530 can be communicatively connected to the control module 152 and the selection module 154 respectively.
  • the communication module 153 includes at least one first communication unit 1531 and at least one second communication unit 1532, wherein the first communication unit 1531 and the second communication unit 1532 are respectively communicatively connected to the control module 152 and selected modules 154 .
  • the communication module 153 is communicatively connected via the charging interface, wherein the first device 2001 and the second device 2002 circuit-connected to the base 10 are respectively communicatively connected to the corresponding communication unit 1530 .
  • the first communication unit 1531 is disposed in the first receiving portion 121 .
  • the first communication unit 1531 is communicatively connected to the first device 2001 in a contact communication manner.
  • the first communication unit 1531 may transmit a communication signal.
  • the first communication unit 1531 communicates with the cleaning robot 22B by connecting the first base charging part 131 to the charging interface of the cleaning robot 22B.
  • the second communication unit 1532 is disposed on the second base charging part 132 .
  • the second communication unit 1532 is communicatively connected to the second device 2002 in a contact communication manner.
  • the second communication unit 1532 may transmit a communication signal.
  • the second communication unit 1532 communicates with the battery 24B by connecting the second base charging unit 132 to the charging interface of the battery 24B.
  • the first device 2001 is embodied as a cleaning device 22A.
  • the cleaning device 22A is moved to the corresponding position of the first communication unit 1531, the first communication unit 1531 of the powered base 10 is communicatively connected to the cleaning device 22A, and when the cleaning device 22A obtains the self-cleaning signal, the cleaning device 22A is The way of being accommodated in the first housing portion 121 is self-cleaning.
  • the second communication unit 1532 is disposed in the second housing portion 122 .
  • the second communication unit 1532 is connected to the second device 2002 in contact communication.
  • the second communication unit 1532 may transmit a communication signal.
  • the second device 2002 is implemented as a power supply device 24A.
  • the power supply device 24A is moved to the corresponding position of the second communication unit 1532 , the second communication unit 1532 of the base 10 being powered is communicatively connected to the power supply device 24A.
  • the information processing unit 15 includes a selection module 154, wherein the selection module 154 can be selected by the user/automatically selected by the base 10 to select at least one device 20 for fast charging, slow charging or power off.
  • the control module 152 is communicatively connected to the selection module 154, wherein the device 20 can be selected to flow currents of at least three current levels through the same charging port. That is to say, the device 20 can be selected to be fast charged, slow charged or powered off through the same charging port.
  • control module 152 obtains the electrical signals of the user trigger mechanism 1540 and the system selection mechanism 1543 , and controls the circuit current of the charging part 13 after selecting the final selection result.
  • the power related information of the device 20 can be used by the system selection mechanism 1543 to select the charging mode of the device 20 .
  • the system selection mechanism 1543 selects the device 20 in the fast charging mode as the initial result of system selection; when the power level of the device 20 is lower than the preset power level of 100%, The system selection mechanism 1543 selects the device 20 as the initial result of the system selection in the slow charging mode.
  • the first device 2001 is implemented as a cleaning robot 22B.
  • the cleaning robot 22B is circuit-connected to the first base charging part 131 of the base 10 with the electric current of the first device slow charging current.
  • the selection module 154 obtains the circuit trigger information of the sweeping robot 22B obtained by the communication module 153, and according to the device-related information and the first communication unit 1531 sent by the sweeping robot 22B.
  • the system selection mechanism 1543 selects one of the first device slow charging mode, the first device fast charging module, and the power-off mode as the initial result of the system selection
  • the control module 152 controls the charging unit 13 to output a corresponding current. That is to say, the first device 2001 is circuit-connected to the base 10 with a current of the first device slow charging current or the first device fast charging current. The fast charging current of the first device is higher than the slow charging current of the first device.
  • the second communication unit 1532 is communicatively connected to the electrical signal of the device-related information of the second device 2002 .
  • the second base charging unit 132 obtains the power related information of the second device 2002 through communication.
  • the system selection mechanism 1543 receives the device-related information sent by the second communication unit 1532 and the power-related information sent by the second base charging unit 132 to obtain an initial result of system selection of the second device, and the second device trigger mechanism 1542 obtains The device triggered by the user triggers the mode to obtain a second device user selection initial result, and the control module 152 receives the second device user selection initial result sent by the second device trigger mechanism 1542 and the second device user selection result sent by the system selection mechanism 1543 After the system selects the initial result, one of the first device slow charging mode, the first device fast charging module, and the power-off mode is processed to obtain the second device system selected initial result to obtain a second device selection result, The control module 152 controls the second base charging unit 132 to output current in a mode corresponding to the second device selection result.
  • the second communication unit 1532 is an electrical signal of the device-related information of the battery 24B.
  • the second base charging unit 132 communicatively acquires information on the power level of the battery 24B.
  • the system selection mechanism 1543 receives the device-related information sent by the second communication unit 1532 and the power-related information sent by the second base charging unit 132 to obtain an initial result of system selection of the second device, and the second device trigger mechanism 1542 obtains
  • the device trigger mode triggered by the user is to obtain the initial result of user selection of a charging device, and the control module 152 receives the initial result of user selection of the second device sent by the second device trigger mechanism 1542 and the second device system information sent by the system selection mechanism 1543.
  • the two-base charging unit 132 outputs current.
  • the priority of the user trigger mechanism 1540 is higher than that of the system selection mechanism 1543 .
  • the sweeping robot 22B is connected to the base 10 by a circuit
  • the first communication unit 1531 receives the electrical signal of the device-related information of the sweeping robot 22B
  • the first device trigger mechanism 1541 is connected to the control module 152 in a circuit.
  • the first device trigger mechanism 1541 is selected by the user as the first device fast charging mode, and the system selection mechanism 1543 selects the first device fast charging mode after receiving the electrical signal of the cleaning-related information of the cleaning robot 22B of the first communication unit 1531, After the control module 152 receives the selection information from the system selecting mechanism 1543 and the first device triggering mechanism 1541, since the first device triggering mechanism 1541 is selected by the user as the first device fast charging mode, the user's selection priority is higher than that of the system. Selected, the control module 152 controls the first base charging unit 131 of the charging unit 13 to output the first device fast charging current. That is to say, the cleaning robot 22B is circuit-connected to the first base charging part 131 with the magnitude of the first device fast charging current.
  • the control module 152 when the sweeping robot 22B is connected to the first base charging part 131, the control module 152 does not receive a notification that the first device trigger mechanism 1541 is triggered by the user.
  • the system selection mechanism 1543 receives the first device power ratio t1 of the cleaning robot 22B sent by the first base charging part 131 ⁇ the first threshold t01 , the control module 152 receives that the system selection mechanism 1543 selects a cleaning device fast charging mode.
  • the control module 152 when the sweeping robot 22B is connected to the first base charging part 131, the control module 152 does not receive a notification that the first device trigger mechanism 1541 is triggered by the user.
  • the system selection mechanism 1543 receives the electric quantity of the cleaning robot 22B sent by the first base charging part 131 greater than the first threshold t01 and less than 100%, The control module 152 receives that the system selection mechanism 1543 selects a cleaning device slow charging mode.
  • the control module 152 controls the first base charging unit 131 to output the first device slow charging current. That is to say, the first device 2001 is connected to the base 10 with a current magnitude circuit in the slow charging mode of the first device.
  • the control module 152 controls The first base charging part 131 outputs zero current.
  • the sweeping robot 22B is connected to the base 10 by a circuit, the first communication unit 1531 receives the electrical signal of the device-related information of the sweeping robot 22B, the first device triggering mechanism 1541 is connected to the control module 152, and the first device triggering mechanism 1541 is controlled by the user.
  • the system selection mechanism 1543 selects the first device fast charge after receiving the electrical signal of the device-related information of the sweeping robot 22B in the first communication unit 1531 and the power-related information sent by the first base charging part 131 mode or the slow charging mode of the first device as the initial result of the system selection, the first device trigger mechanism 1541 is selected by the user, and the power-off mode is the initial result of the user selection of the first device, and the control module 152 receives the system selection mechanism 1543 and the second After a device trigger mechanism 1541 is selected, the control module 152 controls the first base charging part 131 of the charging part 13 to output zero current because the first device trigger mechanism 1541 is selected as a power-off mode by the user. That is, the cleaning robot 22B is not electrically connected to the first base charging part 131 .
  • the control module 152 receives a power-off mode selected by the system selection mechanism 1543 .
  • the sweeping robot 22B communicates and sends a self-cleaning state electric signal to the first communication unit 1531, and the system selection mechanism 1543 receives the self-cleaning state electric signal of the sweeping robot 22B and selects the power-off mode as the initial result of cleaning equipment system selection .
  • the system selection mechanism 1543 receives the electric signal of the self-cleaning state of the sweeping robot 22B sent by the first communication unit 1531, and the control module 152 receives the signal selected by the system selection mechanism 1543. Set a power-off mode.
  • the first device selection mechanism 1511 selects one of the fast charging mode of the first device or the slow charging mode of the first device as the initial result of the user selection of the first device.
  • the priority of the power-off mode selected by the system selection mechanism 1543 is higher than that of the user selection mechanism 1531 .
  • the way that the first device trigger mechanism 1541 is selected as the power-off mode and the first device fast charge mode is not subject to any restrictions.
  • the trigger mechanism 1541 When the trigger mechanism 1541 is pressed for more than 3 seconds, it is the fast charging mode of the first device.
  • the triggering mechanism 1541 of the first device is toggled to one side to indicate the fast charging mode of the first device, and the triggering mechanism 1541 of the first device is toggled away from the preset fast charging position and the preset slow charging position, so as to The first device trigger mechanism 1541 is selected as the first device fast charging mode.
  • the user trigger mechanism 1540 can also be implemented in the form of voice, action, face recognition, or touch screen, and the type of the user trigger mechanism 1540 is not limited in any way.
  • the first device triggering mechanism 1541 is also the cleaning device triggering mechanism. Further, the triggering mechanism 1541 of the first device is also the triggering mechanism of the cleaning robot.
  • system selection mechanism 1543 receives the self-cleaning electrical signal of the sweeping robot 22B sent by the communication module 153, the power-off mode of the system selection mechanism 1543 is triggered, and the control module 152 receives the power-off mode selected by the system selection mechanism 1543 mode, the control module 152 controls the current of the first base charging unit 131 to be zero.
  • the charging and discharging of the second device 2002 is not affected by the circuit connection state of the first device 2001 .
  • the sweeping robot 22B is powered off at the same time during self-cleaning, and the circuit of the sweeping robot 22B and the base 10 is disconnected, so that the battery 24B powered by the sweeping robot 22B does not need to be charged and discharged at the same time , reducing the maximum power of the battery 24B.
  • the base 10 When the base 10 actively detects or communicates to obtain the self-cleaning of the cleaning device 22A, the base 10 and the cleaning device 22A are powered off, and the power-off instruction can come from the base or from the user, the cloud, other devices or other systems.
  • the cleaning robot 22B can be charged during self-cleaning, and the circuit between the cleaning robot 22B and the base 10 will not be disconnected, so that the battery 24B powered by the cleaning robot 22B can be charged and discharged at the same time. It is worth mentioning that the present application is not subject to any limitation in this regard, and different charging and discharging modes can be selected according to the self-cleaning power of the cleaning robot 22B.
  • the second device 2002 is implemented as a power supply device 24A.
  • the second device 2002 is electrically connected to the second base charging part 132 .
  • the power supply device 24A is implemented as a battery 24B.
  • the battery 24B is circuit-connected to the second base charging part 132 of the base 10, and each second communication unit 1532 communicates to obtain the battery-related information of the corresponding battery 24B and then sends it to the system selection mechanism 1543, wherein the control module 152 obtains After the selection information from the system selection mechanism 1543 and the second device trigger mechanism 1542, the control module 152 selects one of the slow charging mode, the fast charging mode and the power-off mode.
  • the control module 152 controls the charging unit 13 to output a corresponding mode of current.
  • the battery 24B is circuit-connected to the base 10 with a current of the second device slow charging current or the second device fast charging current. Further, the current magnitude of the slow charging current of the second device is smaller than the current magnitude of the fast charging current of the second device.
  • the number of batteries 24B is four, and the number of second base charging units 132 corresponding to the batteries 24B is four.
  • the number of second device trigger mechanisms 1542 corresponding to battery 24B is four. The user may select the second device trigger mechanism 1542 corresponding to the battery 24B.
  • the control module 152 obtains the user selection information of the second device trigger mechanism 1542
  • the second communication unit 1532 obtains the corresponding battery-related information and the battery power information sent by each second base charging unit 132
  • the control module 152 respectively controls
  • Each second base charging unit 132 is connected to each battery 24B with one of a second device slow charging current, a second device fast charging current and zero current.
  • the control module 152 can respectively control the respective current levels of multiple devices 20 of the same type.
  • the base 10 can not only provide different devices 20 with different current levels, but also the base 10 can provide multiple devices 20 of the same type with different current levels. It is worth mentioning that the base 10 can only power off at least one of the devices 20 to supply power to different devices 20 .
  • the base 10 can supply power to different devices 20 by only supplying at least one device 20 with fast power.
  • the number of second device triggering mechanisms 1542 corresponding to the battery 24B is one. After the control module 152 obtains the battery-related information of the triggering mechanism 1542 of the second device, the control module 152 obtains the capacitance information of the batteries 24B of each second base charging part 132 and processes to obtain power for the batteries 24B with low power.
  • the second device fast charging mode of the second device triggering mechanism 1542 when the second device fast charging mode of the second device triggering mechanism 1542 is triggered by the user, the second device triggering mechanism 1542 is electrically connected to the control module 152, and the control module 152 compares the system selection mechanism 1543 with the first The second device trigger mechanism 1542 selects the fast charging mode of the second device after processing.
  • the control module 152 controls the second base charging unit 132 of the charging unit 13 to output the second device fast charging current. That is to say, the power supply device 24A is circuit-connected to the second base charging unit 132 with the current magnitude of the second device fast charging current.
  • the control module 152 When the battery 24B is connected to the second base charging part 131, the control module 152 does not receive the electrical signal that the second device trigger mechanism 1542 is triggered by the user, and the control module 152 receives the system selection mechanism 1543 to select a first In the two-device slow charging mode, the control module 152 controls the second base charging unit 132 of the charging unit 13 to output the second device slow charging current. That is, the battery 24B is electrically connected by the base 10 at the current level of the second device slow charging current.
  • the second device triggering mechanism 1542 when the power-off mode of at least one second device triggering mechanism 1542 is triggered by the user, the second device triggering mechanism 1542 is electrically connected to the control module 152, and the control module 152 compares the system selection mechanism 1543 with the second The device trigger mechanism 1542 post-processes the selected power down mode.
  • the control module 152 controls the second base charging part 132 of the charging part 13 to output zero current. That is to say, the power supply device 24A is circuit-connected to the second base charging unit 132 in a zero-current manner.
  • the at least one second device activation mechanism 1542 is not activated by the user.
  • Each battery 24B is connected to the base 10 in one of different charging modes and power-off modes.
  • the second device trigger mechanism 1542 When one of the second communication units 1532 acquires the second device power ratio t2 of the corresponding battery 24B ⁇ the second threshold t02, the second device trigger mechanism 1542 is connected to the control module 152, and the control module 152 compares the system selection mechanism 1543 with the first The second device trigger mechanism 1542 selects the fast charging mode of the second device after processing.
  • the control module 152 controls the second base charging unit 132 of the charging unit 13 to output the second device fast charging current. That is to say, the battery 24B is circuit-connected to the second base charging unit 132 in the second device fast charging current mode.
  • One of the second communication units 1532 obtains the second device power ratio t2 of the corresponding battery 24B>the second threshold t02, and when the second device power ratio t2 ⁇ 100%, the second device trigger mechanism 1542 is circuit-connected to the control module 152,
  • the control module 152 compares the system selecting mechanism 1543 and the second device triggering mechanism 1542 to select the slow charging mode of the second device after processing.
  • the control module 152 controls the second base charging unit 132 of the charging unit 13 to output the second device slow charging current. That is to say, the power supply device 24A is circuit-connected to the second base charging unit 132 in the second device slow charging current mode.
  • the control module 152 controls the second base charging part 132 of the charging part 13 to output zero current. That is to say, the power supply device 24A is not electrically connected to the second base charging unit 132 .
  • the charging device 24A is implemented as a battery pack 24C accommodating at least two batteries 24B.
  • the communication device 23A and the charging device 24A are provided on the remote end surface of the base main body 111 . That is, the communication device 23A and the charging device 24A are provided on the top surface of the base main body 111 .
  • the power supply device 24A can also be implemented as a smart battery pack 24C capable of processing information and communicating or a smart battery 24B capable of processing information and communicating, that is, the power supply device 24A can also be implemented as a power holding device 24D.
  • Applications are not subject to any restrictions.
  • the battery 24B can be taken out from the battery pack 24C and used for other devices 20 .
  • the battery pack 24C is inserted into the base 10 to be charged.
  • the battery pack 24C is powered by the base body 11.
  • the base body 11 is not connected to an external circuit, the base body 11 is powered back by the battery pack 24C, that is, the base body 11 is always powered by the battery pack 24C and/or external circuits, so as to prevent other devices 20 powered by the base body 11 from being powered and unable to operate normally. That is to say, the communication device 23A can always be kept on the base 10 with power, and then keep the communication device 23A to provide a local area network all the time, effectively maintaining the user's network security.
  • the storage and power supply system includes a base 10 and at least two devices 20 that are continuously powered by the continuous base 10 .
  • Each device 20 can be electrically connected to the base 10 in different charging modes and power-off modes, respectively.
  • the housing power supply system includes a base 10 and at least three different types of devices 20 that are continuously powered by the persistent base 10 .
  • the storage and power supply system includes at least a first device 2001 , a second device 2002 , a third device and the base 10 .
  • the base 10 includes an information processing unit 15, wherein the information processing unit 15 includes at least one communication module 153, at least one control module 152 and a selection module 154, the communication module 153 and the charging unit 13 are communicably connected to the selection module 154
  • the selection module 154 selects the charging mode of each device, and the control module 152 controls the charging unit 13 to supply power in the selected charging mode and power-off mode after receiving the charging mode sent by the selection module 154 .
  • the device 20 is powered by the base 10 in the manner in which the charging mode and the power-off mode are selected.
  • the selection module 154 includes a user trigger mechanism 1540 and a system selection mechanism 1543
  • the user trigger mechanism 1540 includes a first device trigger mechanism 1541, at least one second device trigger mechanism 1542 and a third device trigger mechanism 1544 .
  • the user trigger mechanism 1540 and the system selection mechanism 1543 are connected to the control module 152 through communication, so that the control module 152 can select at least one of a fast charging mode, a slow charging mode and a power-off mode as an option.
  • the device 20 is fast-charged, slow-charged, or powered off by the base 10.
  • the communication module 153 includes at least three communication units 1530, and each communication unit 1530 can be communicatively connected to the control module 152 and the selection module 154, respectively.
  • the communication module 153 includes at least one first communication unit 1531, at least one second communication unit 1532 and at least one third communication unit 1533, wherein the first communication unit 1531, the second communication unit 1532 And the third communication unit 1533 is communicatively connected to the control module 152 and the selection module 154 respectively.
  • the selection module 154 includes at least one third device communication unit 1534 and at least one system selection mechanism 1543 .
  • the third device communication unit 1534 includes at least one first device selection unit 1531 , at least one second device selection unit 1532 and at least one third device communication unit 1534 .
  • the first device selection unit 1531 , at least one second device selection unit 1532 and at least one third device communication unit 1534 are circuit-connected to the control module 152 respectively.
  • the charging unit 13 includes a plurality of base charging units 1300 , wherein the base charging unit 1300 includes at least one first base charging unit 131 , at least one second base charging unit 132 and at least one third base charging unit 133 .
  • the first base charging part 131 , at least two second base charging parts 132 and at least one third base charging part 133 are respectively disposed on the base main body 111 at intervals.
  • the communication unit 1530 of the communication module 153 is communicatively connected via a charging interface, wherein the first device 2001, the second device 2002, and the third device 2003 that are circuit-connected to the base 10 are respectively communicatively connected to the corresponding communication unit 1530.
  • the first device 2001 is embodied as a cleaning device 22A.
  • the cleaning device 22A is moved to the corresponding position of the first communication unit 1531, the first communication unit 1531 of the powered base 10 is communicatively connected to the cleaning device 22A, and when the cleaning device 22A obtains the self-cleaning signal, the cleaning device 22A is The way of being accommodated in the first housing portion 121 is self-cleaning.
  • the second communication unit 1532 is disposed in the second housing portion 122 .
  • the second communication unit 1532 is connected to the second device 2002 in contact communication.
  • the second communication unit 1532 may transmit a communication signal.
  • the second device 2002 is implemented as a power supply device 24A.
  • the power supply device 24A is moved to the corresponding position of the second communication unit 1532 , the second communication unit 1532 of the base 10 being powered is communicatively connected to the power supply device 24A.
  • the third device is implemented as a communication device 23A.
  • the communication device 23A is moved to the corresponding position of the third communication unit 1533 , the third communication unit 1533 of the powered base 10 is communicatively connected to the communication device 23A.
  • the cleaning device 22A, the communication device 23A, and the charging device 24A are commonly housed in the base 10 and charged by the base 10 .
  • the cleaning device 22A treats water pollution, and the base 10 can charge the cleaning device 22A and the communication device 23A when there is water.
  • the cleaning device 22A is first accommodated in the first receiving portion 121 of the main body 121 and is always used for floor cleaning, so the base 10 is placed on the ground so that the cleaning device 22A can be placed.
  • the charging device 24A is housed in the second housing portion 122 .
  • the second receiving portion 122 is held on the distal end surface of the base body 111 .
  • the charging device 24A provides reverse power to the base 10 to keep the base 10 powered all the time, so as to prevent the equipment 20 that needs power from the base 10 from malfunctioning.
  • the communication device 23A is accommodated in the third housing portion 123 .
  • the third receiving portion 123 is held on the distal end surface of the base body 111 , and the third receiving portion 123 and the second receiving portion 122 are held on the distal end surface at intervals.
  • the communication device 23A is powered by the base 10 .
  • the cleaning device 22A is implemented as a scrubber 22D, and the scrubber 22D is limitedly held by the first receiving body 121 .
  • the first receiving body 121 is set on one side of the base body 111 so as to be far away from the base body 111, so that the washing machine 22D can be supported by the base 10, and the first power supply end 131 is formed on the base body 111.
  • the side wall of the seat main body 111 is suitable for direct contact charging with the charging port of the washing machine 22D.
  • the washing machine 22D will keep part of the sewage in the first storage body 121 , and the base body 111 can supply power to the communication device 23A and the charging device 24A when the first storage body 121 receives water.
  • the charging device 24A is implemented as at least two batteries 24B, and the batteries 24B are held above the base body 111 in a manner supported by the third receiving body 123 .
  • the battery 24B can be accessed directly, and the battery 24B can be used to power other devices 20 independently.
  • the battery 24B is charged by the base 10 in a built-in manner.
  • the battery 24B provides reverse power to the base 10 to keep the base 10 powered all the time, so as to prevent the equipment 20 that needs power from the base 10 from malfunctioning.
  • the second receiving body 122 is provided with an ejection mechanism, so that the battery 24B can be ejected with one key.
  • At least two batteries 24B can be ejected simultaneously with one key.
  • the communication device 23A is implemented as a mobile WIFI signal booster, that is, a relay router, for other devices 20 to always remain in the local area network environment to facilitate communication. It is worth mentioning that the communication device 23A can also be implemented as a router, which is directly connected to a network cable to provide WIFI signals.
  • the first communication unit 1531 is disposed in the first receiving portion 121 .
  • the first communication unit 1531 is communicatively connected to the first device 2001 in a contact communication manner.
  • the first communication unit 1531 may transmit a communication signal.
  • the first communication unit 1531 communicates with the scrubber 22D by connecting the first base charging part 131 to the charging interface of the scrubber 22D.
  • the second communication unit 1532 is disposed on the second base charging part 132 .
  • the second communication unit 1532 is communicatively connected to the second device 2002 in a contact communication manner.
  • the second communication unit 1532 may transmit a communication signal.
  • the second communication unit 1532 communicates with the battery 24B by connecting the second base charging unit 132 to the charging interface of the battery 24B.
  • the third communication unit 1533 is disposed on a third base charging part 133 of the charging part 13 .
  • the third communication unit 1533 is communicatively connected to the power supply device 24A in a contact communication manner.
  • the third communication unit 1533 may transmit a communication signal.
  • the third communication unit 1533 communicates with the communication device 23A by connecting the third base charging unit 133 to the charging interface of the communication device 23A.
  • the charging device 24A can also be implemented as a battery pack 24C, a smart battery pack 24C capable of processing information and communicating, or a smart battery 24B capable of processing information and communicating, that is, the power supply device 24A can also be implemented as Implemented as a holding device.
  • the battery 24B can provide power for mobile devices such as mobile phones and other electric devices such as cleaning equipment 22A and cooking equipment in an embedded manner. Furthermore, it can be electrically connected to the battery 24B contained therein, and the battery pack 24C can also integrally supply power to other electric devices, such as small monitors, electric fans, refrigeration fans, and the like.
  • the information processing unit 15 includes a selection module 154, wherein the selection module 154 can be selected by the user/automatically selected by the base 10 to select at least one device 20 for fast charging, slow charging or power off.
  • the control module 152 is communicatively connected to the selection module 154, wherein the device 20 can be selected to flow currents of at least three current levels through the same charging port. That is to say, the device 20 can be selected to be fast charged, slow charged or powered off through the same charging port.
  • control module 152 obtains the electrical signals of the user trigger mechanism 1540 and the system selection mechanism 1543 , and controls the circuit current of the charging part 13 after selecting the final selection result.
  • the power related information of the device 20 may be used by the system selection mechanism 1543 to select the charging mode of the device 20 .
  • the system selection mechanism 1543 selects the device 20 to use the fast charging mode as the initial result of system selection; At this time, the system selection mechanism 1543 selects the device 20 to select the initial result of the system in the slow charging mode.
  • the first device 2001 is implemented as a scrubber 22D.
  • the scrubber 22D is circuit-connected to the first base charging part 131 of the base 10 with a current of the first equipment slow charging current.
  • the selection module 154 obtains the circuit trigger information of the scrubber 22D obtained by the communication module 153, and according to the device-related information of the scrubber 22D sent by the first communication unit 1531 Information and the circuit-related information of the scrubber 22D sent by the first base charging unit 131, the system selection mechanism 1543 selects one of the slow charging mode of the first device, the fast charging module of the first device and the power-off mode as the system selection
  • the control module 152 controls the charging unit 13 to output a corresponding current. That is to say, the first device 2001 is circuit-connected to the base 10 with a current of the first device slow charging current or the first device fast charging current. The fast charging current of the first device is higher than the slow charging current of the first device.
  • the second communication unit 1532 is communicatively connected to the electrical signal of the device-related information of the second device 2002 .
  • the second base charging unit 132 obtains the power related information of the second device 2002 through communication.
  • the system selection mechanism 1543 receives the device-related information sent by the second communication unit 1532 and the power-related information sent by the second base charging unit 132 to obtain an initial result of system selection of the second device, and the second device trigger mechanism 1542 obtains The device triggered by the user triggers the mode to obtain a second device user selection initial result, and the control module 152 receives the second device user selection initial result sent by the second device trigger mechanism 1542 and the second device user selection result sent by the system selection mechanism 1543 After the system selects the initial result, one of the first device slow charging mode, the first device fast charging module, and the power-off mode is processed to obtain the second device system selected initial result to obtain a second device selection result, The control module 152 controls the second base charging unit 132 to output current in a mode corresponding to the second device selection result.
  • the third communication unit 1533 is an electrical signal of device-related information of the communication device 23A.
  • the third base charging unit 133 acquires information related to the power level of the battery 24B by communication.
  • the system selection mechanism 1543 receives the device-related information sent by the third communication unit 1533 and the power-related information sent by the third base charging unit 133 to obtain an initial result of system selection of the third device, and the third device trigger mechanism 1544 obtains
  • the device trigger mode triggered by the user is to obtain the initial result of the user selection of a communication device, and the control module 152 receives the initial result of the third device user selection sent by the third device trigger mechanism 1533 and the third device system information sent by the system selection mechanism 1543.
  • the two-base charging unit 132 outputs current.
  • the priority of the user trigger mechanism 1540 is higher than that of the system selection mechanism 1543 .
  • the priority of the system selecting mechanism 1543 is higher than that of the user triggering mechanism 1540 .
  • the scrubber 22D is connected to the base 10 by a circuit
  • the first communication unit 1531 receives the electrical signal of the equipment-related information of the scrubber 22D
  • the first device trigger mechanism 1541 is connected to the circuit
  • the first device trigger mechanism 1541 is selected by the user as the fast charging mode of the first device
  • the system selection mechanism 1543 selects the first device after receiving the electric signal of the cleaning-related information of the washing machine 22D of the first communication unit 1531.
  • One device fast charging mode after the control module 152 receives the selection information from the system selection mechanism 1543 and the first device triggering mechanism 1541, since the first device triggering mechanism 1541 is selected by the user as the first device fast charging mode, the user selects The priority is higher than the system selection, and the control module 152 controls the first base charging unit 131 of the charging unit 13 to output the first device fast charging current. That is to say, the scrubber 22D is circuit-connected to the first base charging part 131 with the magnitude of the first device fast charging current.
  • the control module 152 when the washing machine 22D is connected to the first base charging part 131 in a contact connection manner, the control module 152 does not receive the first device trigger
  • the mechanism 1541 is triggered by an electrical signal from the user, it is connected to the scrubber 22D according to the circuit of the first base charging part 131, and the system selection mechanism 1543 receives the first device of the scrubber 22D sent by the first base charging part 131
  • the power ratio range is the first threshold t01 ⁇ the first device power ratio t1 ⁇ 100%, and the control module 152 receives the system selection mechanism 1543 to select a cleaning device slow charging mode.
  • the system selection mechanism 1543 receives the second device power ratio range of the battery 24B sent by the second base charging unit 132 is the second threshold t02 ⁇ the second device power ratio t2 ⁇ 100%, and the control module 152 receives The system selection mechanism 1543 selects a charging device slow charging mode.
  • the system selection mechanism 1543 receives the power ratio range of the third device 23A of the communication device 23A sent by the first base charging unit 133 is the third threshold t03 ⁇ the third device power ratio t3 ⁇ 100%, the control module 152 The system selection mechanism 1543 selects a slow charging mode of a communication device upon receipt.
  • the control module 152 when the scrubber 22D is self-cleaning, the control module 152 receives a power-off mode selected by the system selection mechanism 1543 .
  • the washing machine 22D communicates and sends a self-cleaning state electric signal to the first communication unit 1531, and the system selection mechanism 1543 receives the self-cleaning state electric signal of the washing machine 22D and selects the power-off mode as the cleaning equipment system selection. initial results.
  • the system selection mechanism 1543 receives the self-cleaning status electrical signal of the scrubber 22D sent by the first communication unit 1531, and the control module 152 receives the signal from the system selection mechanism 1543 selects a power down mode.
  • the first device selection mechanism 1511 selects one of the fast charging mode of the first device or the slow charging mode of the first device as the initial result of the user selection of the first device.
  • the priority of the power-off mode selected by the system selection mechanism 1543 is higher than that of the user selection mechanism 1531 .
  • the way that the first device trigger mechanism 1541 is selected as the power-off mode and the first device fast charge mode is not subject to any restrictions.
  • the trigger mechanism 1541 When the trigger mechanism 1541 is pressed for more than 3 seconds, it is the fast charging mode of the first device. That is, the first device trigger mechanism 1541 is toggled to one side for the first device fast charging mode, and the first device trigger mechanism 1541 is toggled away from the preset fast charging position and the preset slow charging position to set the first device The device trigger mechanism 1541 is selected as the first device fast charging mode.
  • the user trigger mechanism 1540 can also be implemented in the form of voice, action, face recognition, or touch screen, and the type of the user trigger mechanism 1540 is not limited in any way.
  • the first device trigger mechanism 1541 is a cleaning device trigger mechanism. That is, the first device trigger mechanism 1541 is also the scrubber trigger mechanism.
  • system selection mechanism 1543 receives the self-cleaning electrical signal of the sweeping robot 22B sent by the communication module 153, the power-off mode of the system selection mechanism 1543 is triggered, and the control module 152 receives the power-off mode selected by the system selection mechanism 1543 mode, the control module 152 controls the current of the first base charging unit 131 to be zero.
  • the charging and discharging of the second device 2002 is not affected by the circuit connection status of the first device 2001 .
  • the sweeping robot 22B is powered off at the same time during self-cleaning, and the circuit of the sweeping robot 22B and the base 10 is disconnected, so that the battery 24B powered by the sweeping robot 22B does not need to be charged and discharged at the same time , reducing the maximum power of the battery 24B.
  • the cleaning robot 22B can be charged during self-cleaning, and the circuit between the cleaning robot 22B and the base 10 will not be disconnected, so that the battery 24B powered by the cleaning robot 22B can be charged and discharged at the same time. It is worth mentioning that the present application is not subject to any limitation in this aspect, and different charging and discharging modes may be selected according to the self-cleaning power of the cleaning robot 22B.
  • the battery 24B can be used to supply power to the base 10 so that the base 10 is always powered. Further, the base 10 can be continuously powered by the battery 24B and an external power source.
  • the washing machine 22D can be connected to the washing machine 22D in a communicative manner all the time when the first receiving body 121 is self-cleaning, so that the washing machine 22D can receive the self-cleaning electrical signal to start the self-cleaning mode.
  • the control module 152 when the scrubber 22D is connected to the first base charging part 131, the control module 152 does not receive that the first device trigger mechanism 1541 is triggered by the user
  • the system selection mechanism 1543 receives the first equipment power ratio t1 of the scrubber 22D sent by the first base charging part 131 ⁇ the first A threshold t01, the control module 152 receives a fast charging mode for cleaning equipment selected by the system selection mechanism 1543 .
  • the first threshold t01 is a charging percentage, and the first threshold t01 is preferably 70%. More preferably, the first threshold t01 is 75%. More preferably, the first threshold t01 is 80%. More preferably, the first threshold t01 is 85%. Further, the first threshold t01 is 90%.
  • the control module 152 controls at least one of the second base charging parts 132 to disconnect, so as to stop charging the charging device 24A.
  • the control module 152 controls at least one of the charging parts of the second base 132 to disconnect, so as to stop charging the battery 24B, thereby reducing the total power output.
  • the control module 152 when the scrubber 22D is connected to the first base charging part 131, the control module 152 does not receive that the first device trigger mechanism 1541 is triggered by the user
  • the control module 152 receives a power-off mode selected by the system selection mechanism 1543 .
  • the first device triggering mechanism 1541 when the power-off mode of at least one first device triggering mechanism 1541 is triggered by the user, the first device triggering mechanism 1541 is electrically connected to the control module 152, and the control module 152 compares the system selection mechanism 1543 with the first The device trigger mechanism 1541 post-processes the selected power down mode.
  • the control module 152 controls the second base charging part 132 of the charging part 13 to output zero current. That is to say, the power supply device 24A is circuit-connected to the second base charging unit 132 in a zero-current manner.
  • the number of scrubbers 22D is one.
  • the user may select the first device trigger mechanism 1541 of the corresponding scrubber 22D.
  • the first device triggering mechanism 1541 is electrically connected to the control module 152, and the control module 152 obtains the user selection information of the first device triggering mechanism 1541, the first communication unit
  • the control module 152 respectively controls each A first base charging part 131 supplies a power-off current to the scrubber 22D. That is to say, the power supply device 24A is circuit-connected to the second base charging unit 132 in a zero-current manner.
  • the modified embodiment of the storage and power supply system of the above-mentioned preferred embodiment of the present application is disclosed and explained in detail.
  • the difference between the storage and power supply system and the above-mentioned preferred embodiment is that the first communication unit 1531 obtains Corresponding to the work appointment of the scrubber 22D, wherein the first device triggering mechanism 1541 is circuit-connected to the control module 152, and the system selection mechanism 1543 receives the first communication unit 1531, the first device selection module 1541 and the first base charging After the first communication unit 1531 obtains a work reservation instruction, the control module 152 compares the system selection mechanism 1543 with the first device trigger mechanism 1541 and selects the cleaning device fast charging mode after processing. The control module 152 controls the first base charging unit 131 of the charging unit 13 to output the fast charging current of the cleaning device.
  • the first communication unit 1531 can obtain device-related information such as fast charging instructions, work appointment instructions, power-off instructions, and self-cleaning instructions.
  • the scrubbing machine 22D includes a scrubbing processing module 223D, and the scrubbing processing module 223D is communicably connected to the first communication unit 1531, and the scrubbing processing module 223D can obtain other systems or equipment to send to the scrubbing machine 22D instructions.
  • the first communication unit 1531 obtains equipment-related information such as fast charging instructions, work appointment instructions, power-off instructions, and self-cleaning instructions sent by the washing machine processing module 223D, and sends them to the system selection mechanism 1543 to select the first equipment system Select the initial result.
  • equipment-related information such as fast charging instructions, work appointment instructions, power-off instructions, and self-cleaning instructions sent by the washing machine processing module 223D
  • the scrubbing processing module 223D includes a scrubbing control unit 2231D and a scrubbing communication unit 2232D, the scrubbing control unit 2231D and the scrubbing communication unit 2232D are communicably connected, and the scrubbing control unit 2231D sends the scrubbing communication unit 2232D At least one device-related information, so that the scrubbing communication unit 2232D can be communicatively connected to the first device communication unit 1531 .
  • the scrubbing control unit 2231D can process fast charging instructions, work appointment instructions, power-off instructions, and self-cleaning instructions.
  • the scrubbing communication unit 2232D can communicatively acquire fast charging instructions, work appointment instructions, power-off instructions, and self-cleaning instructions from other devices 20, other systems, or the cloud.
  • the control module 152 when the battery 24B is connected to the second base charging part 132, and the control module 152 does not receive the electrical signal that the second device trigger mechanism 1542 is triggered by the user, according to the second base charging part 132
  • the circuit is connected to the battery 24B, the system selection mechanism 1543 receives the second device power ratio t2 of the battery 24B sent by the second base charging unit 132 ⁇ the second threshold t02, and the control module 152 receives the system selection mechanism 1543 selected A charging device fast charging mode.
  • the control module 152 compares the system selecting mechanism 1543 and the second device triggering mechanism 1542 to select the fast charging mode of the second device after processing.
  • the control module 152 controls the second base charging unit 132 of the charging unit 13 to output the second device fast charging current. That is to say, the power supply device 24A is circuit-connected in the second device fast charging current mode.
  • the second threshold t02 is a charging percentage, and the second threshold t02 is preferably 70%. More preferably, the second threshold t02 is 75%. More preferably, the second threshold t02 is 80%. More preferably, the second threshold t02 is 85%. Further, the second threshold t02 is 90%.
  • the power supply device 24A can also be implemented as a smart battery pack 24C capable of processing information and communicating or a smart battery 24B capable of processing information and communicating, that is, the power supply device 24A can also be implemented as a power holding device 24D.
  • Applications are not subject to any restrictions.
  • the battery 24B can be taken out from the battery pack 24C and used for other devices 20 .
  • the manner in which the battery pack 24C is inserted is charged by the base 10 .
  • the battery pack 24C is powered by the base body 11.
  • the base body 11 is not connected to an external circuit, the base body 11 is powered back by the battery pack 24C, that is, the base body 11 is always powered by the battery pack 24C and/or external circuits, so as to prevent other devices 20 powered by the base body 11 from being powered and unable to operate normally. That is to say, the communication device 23A can always be kept on the base 10 with power, and then keep the communication device 23A to provide a local area network all the time, effectively maintaining the user's network security.
  • the number of batteries 24B is more than 2.
  • the control module 152 does not receive the triggering mechanism of each second device.
  • 1542 is an electrical signal triggered by the user, according to the circuit connection of each second base charging unit 132 to one of the corresponding batteries 24B, the system selection mechanism 1543 receives the corresponding battery 24B sent by one of the second base charging units 132.
  • the range of the power ratio of the second device at 24B is the second threshold t02 ⁇ the second device power ratio t2 ⁇ 100%, and the control module 152 receives a slow charging mode selected by the system selection mechanism 1543 for the charging device.
  • the control module 152 compares the system selecting mechanism 1543 and the second device triggering mechanism 1542 to select the slow charging mode of the second device after processing.
  • the control module 152 controls the second base charging unit 132 of the charging unit 13 to output the second device slow charging current. That is to say, the power supply device 24A is circuit-connected in the second device slow charging current mode.
  • the system selection mechanism 1543 receives the second device power level of the corresponding battery 24B sent by another second base charging part 132
  • the control module 152 receives the power-off mode selected by the system selection mechanism 1543 .
  • the control module 152 compares the system selection mechanism 1543 and the second device trigger mechanism 1542 to post-process the selected power-down mode.
  • the control module 152 controls the second base charging part 132 of the charging part 13 to output zero current.
  • the second device triggering mechanism 1542 when the power-off mode of at least one second device triggering mechanism 1542 is triggered by the user, the second device triggering mechanism 1542 is electrically connected to the control module 152, and the control module 152 compares the system selection mechanism 1543 with the second The device trigger mechanism 1542 post-processes the selected power down mode.
  • the control module 152 controls the second base charging part 132 of the charging part 13 to output zero current. That is to say, the power supply device 24A is circuit-connected to the second base charging unit 132 in a zero-current manner.
  • the number of batteries 24B is more than two.
  • the user may select the second device trigger mechanism 1542 corresponding to the battery 24B.
  • the second device triggering mechanism 1542 is electrically connected to the control module 152, and the control module 152 obtains the user selection information of the second device triggering mechanism 1542, and the second communication unit
  • the control module 152 controls each The two base charging parts 132 supply a cut-off current to the battery 24B. That is to say, the power supply device 24A is circuit-connected to the second base charging unit 132 in a zero-current manner.
  • the second communication unit 1532 obtains Corresponding to the work reservation of the battery 24D, wherein the second device triggering mechanism 1542 is circuit-connected to the control module 152, and the system selection mechanism 1543 receives the second communication unit 1532, the second device selection module 1542 and the second base charging part 132
  • the control module 152 compares the system selection mechanism 1543 with the second device trigger mechanism 1542 to process and select the fast charging mode of the cleaning device.
  • the control module 152 controls the second base charging unit 132 of the charging unit 13 to output the fast charging current of the charging device.
  • the control module 152 when the communication device 23A is connected to the charging part 133 of the third base, and the control module 152 does not receive the electrical signal that the triggering mechanism 1544 of the third device is triggered by the user, it will charge according to the third base.
  • the part 133 is connected to the communication device 23A
  • the system selection mechanism 1543 receives the third device power ratio t3 of the communication device 23A sent by the third base charging part 133 ⁇ the third threshold t03
  • the control module 152 receives the system selection mechanism 1543 Select a communication device fast charging mode.
  • the control module 152 compares the system selecting mechanism 1543 and the third device triggering mechanism 1544 to select the fast charging mode of the third device after processing.
  • the control module 152 controls the third base charging unit 133 of the charging unit 13 to output the third device fast charging current. That is to say, the communication device 23A is circuit-connected in a third-device fast charging current manner.
  • the system selection mechanism 1543 receives the third device power ratio t3 ⁇ the third threshold t03 of the communication device 23A sent by the third base charging unit 133 , and the control module 152 receives the system selection mechanism 1543 to select a communication device Fast charge mode.
  • the control module 152 compares the system selecting mechanism 1543 and the third device triggering mechanism 1544 to select the fast charging mode of the third device after processing.
  • the control module 152 controls the third base charging unit 133 of the charging unit 13 to output the third device fast charging current. That is to say, the communication device 23A is circuit-connected in a third-device fast charging current manner.
  • the range of the third device power ratio t3 of the communication device 23A received by the system selection mechanism 1543 from the third base charging unit 133 is the third threshold t03 ⁇ the third device power ratio t3 ⁇ 100%, and the control module 152
  • the system selection mechanism 1543 selects a slow charging mode of a communication device upon receipt.
  • the control module 152 compares the system selecting mechanism 1543 and the third device triggering mechanism 1544 to select the slow charging mode of the third device after processing.
  • the control module 152 controls the third base charging unit 133 of the charging unit 13 to output the third device slow charging current. That is, the communication device 23A is circuit-connected in a third-device slow charge current manner.
  • the third communication unit 1533 is communicably connected to the communication device 23A, and the third communication unit 1533 can receive the fast charging instruction, the work reservation instruction, and the power-off instruction sent by the communication device 23A. and other equipment-related information to send to the system selection agency 1543 to select the initial results of the system selection.
  • the system selection mechanism 1543 can select the fast charging mode of the third device, the slow charging mode and the power-off mode of the third device according to the device-related information sent by the third communication unit 1533 and the power-related information sent by the third base charging unit 133 At least one of the third device systems selects initial results.
  • the communication device 23A can communicate to send a work reservation instruction, the third communication unit 1533 sends the system selection mechanism 1543, and the system selection mechanism 1543 according to the equipment related information of the work reservation instruction of the third communication unit 1533,
  • the system selection mechanism 1543 selects a third device fast charging mode
  • the control module sends the third device system selection initial result sent by the system selection mechanism 1543 and the third device date user selection sent by the third device selection mechanism 1534.
  • the third device selection result of the third device fast charging mode is selected, and then the communication device 23A is circuit connected to the base 10 in the manner of the third device fast charging current corresponding to the third device fast charging mode.
  • the communication device 23A is implemented as a 4G/5G signal device or a LAN signal expansion device, so that the communication device 23A can provide a local area network to different devices 20 with network signals. More preferably, the device 20 housing the charging device can communicate under the provided local area network.
  • device 20 is implemented as a smart device 28A.
  • the smart device 28A includes and is not limited to a mobile phone, an ipad, a game device, and a smart watch.
  • the type of device 20 is not limited by this application.
  • the base 10 includes at least one detection module 16, and the detection module 16 is arranged in the first accommodating part 121, and the detection module 16 It can be directly detected whether the cleaning device 24A is self-cleaning.
  • the detection module 16 includes at least one detection unit.
  • the detection module 16 can be implemented as electromagnetic wave detection, such as at least one of infrared detection, microwave detection, and radar detection.
  • the detection module 16 can also be implemented as visible light detection. Such as camera.
  • the detection module 16 may also be implemented as a sound detection.
  • the detection module 16 detects at least one of a large amount of water output from the cleaning device 24A or rapid rotation, the detection module 16 directly detects that the cleaning device 24A is self-cleaning, so that the detection module 16 sends detection-related information to the system selection mechanism 1543, so that The base 10 may directly detect the self-cleaning of the cleaning device 24A without communication, and then the system selection mechanism 1543 of the base 10 may select the cleaning device 24A to be powered off.
  • the system selection mechanism 1543 receives the detection-related information sent by the detection module 16, the device-related information sent by the communication module 153, and the power-related information of the device sent by the base charging unit 1300, to process and obtain an initial result of the system selection of the first device .

Abstract

本申请公开了一基于基座的收容供电系统,包括至少一基座和一个或一个以上设备,其中所述基座具有至少一收容部、一充电部以及至少一基座主体,所述充电部被电路连接于所述基座主体,所述基座主体被供电,其中所述设备被收容于所述收容部,并且所述设备的至少其中一个被所述充电部供电,所述设备获取至少一指令;或所述设备反馈至少一设备相关信息。

Description

基于基座的收容供电系统 技术领域
本申请涉及一工具的收纳供电领域,尤其涉及一基于基座的收容供电系统。
背景技术
随着生活水平的提高,一些智能产品逐渐地被人们接受,举例来说,手机、平板电脑、扫地机器人、吸尘器、拖地机、自动洗衣机、自动烘焙机、自动烹饪机等智能装置。智能装置的充电问题成为了较大的难题。每款装置所适配的充电器和充电方式不一,使得装置充电需要多个充电位以充电,进而占用用户家庭多个插座,不仅造成用户家庭的插座紧缺,而且多种充电器和充电方式也造成用户的清洁负担。特别对于没有较多插座的用户家庭,用户就需要连接在地面墙面拖着一个排插来提供更多的插座,不仅存在发生磕绊的可能性,更可能造成电器过载发生的火灾意外。
值得一提的是,移动设备被应用于不同的空间。因此,移动设备很容易被随手放置于某个角落,进而被用户遗忘,下次寻找的时候就需要花费一些功夫才能找到。不同的移动设备被分别地堆放在各个角落,占用了非常多的空间,而且容易变得凌乱。
如果由于充电位或者外部电路故障的问题,所述充电器无法正常接电,所述智能设备不能电路连接于所述充电头,可能会影响到智能设备的运作。
申请内容
本申请的一个目的在于提供一基于基座的收容供电系统,其中,收容供电系统包括至少一基座和至少一个设备,其中设备被基座收容。
本申请的另一个目的在于提供一基于基座的收容供电系统,其中,收容供电系统包括至少一基座和至少二个设备,其中设备被基座收容。
本申请的另一个目的在于提供一基于基座的收容供电系统,其中,包括至少一基座和至少二个设备,其中设备被基座充电。
本申请的另一个目的在于提供一基于基座的收容供电系统,其中,基座适于不同类型的至少二个设备被收容,其中类型指的是具有共同特征的事物所形成的种类,举例来说,扫地机器人和吸尘器属于用于清洁表面的清洁设备,手机和ipad属于用于交互通讯的移动设备,自动炒菜机和烘焙机属于用于烹饪的烹饪设备。
本申请的另一个目的在于提供一基于基座的收容供电系统,其中,收容供电系统适于同一类型的至少二个设备被收容。
本申请的另一个目的在于提供一基于基座的收容供电系统,其中,基座收容用于清洁表面的至少一个清洁设备,举例来说,清洁设备被实施为扫地机器人、吸尘器、洗地机的至少其中一个。
本申请的另一个目的在于提供一基于基座的收容供电系统,其中,基座收容用于交互通讯的至少一个移动设备,举例说,移动设备可以被实施为手机、ipad、游戏机、AR设备、娱乐电动设备的至少其中一个。
本申请的另一个目的在于提供一基于基座的收容供电系统,其中,基座收容于至少一个烹饪设备,举例来说,烹饪设备可以被实施为自动炒菜机、烘焙机、保温壶、烧水壶的至少其中一个。
本申请的另一个目的在于提供一基于基座的收容供电系统,其中,收容供电系统可充电收容不同类型的至少二个设备。
本申请的另一个目的在于提供一基于基座的收容供电系统,其中,基座供电于至少一个清洁设备,举例来说,清洁设备被实施为扫地机器人、吸尘器、洗地机的至少其中一个。
本申请的另一个目的在于提供一基于基座的收容供电系统,其中,基座供电于至少一个移动设备,举例来说,移动设备可以被实施为手机、ipad、游戏机、AR设备、娱乐电动设备的至少其中一个。
本申请的另一个目的在于提供一基于基座的收容供电系统,其中,基座供电于至少一个烹饪设备,举 例来说,烹饪设备可以被实施为自动炒菜机、烘焙机、保温壶、烧水壶的至少其中一个。
本申请的另一个目的在于提供一基于基座的收容供电系统,其中,基座可持续给设备供电,以免去用户的给设备充电的过程以及寻找适配的充电线充电头充电端的压力。
本申请的另一个目的在于提供一基于基座的收容供电系统,其中,基座可持续给至少二个设备供电,以减少家庭的充电端负荷,有效减缓由于电动设备的增加而造成的充电端紧张的问题。
本申请的另一个目的在于提供一基于基座的收容供电系统,其中,收容供电系统可提供给设备交替使用的外置电池,可更换的外置电池可延长设备的使用时间,防止电动设备的电容量不足无法持续清洁的问题。值得一提的是,外置电池指的是外置的电源设备(持电设备),其可存储电量,供电于其他设备。
本申请的另一个目的在于提供一基于基座的收容供电系统,其中,基座充电于外置电池,能够有效地减少由于电池损坏造成电动设备无法长时间运行的问题,减少了电动设备更换的成本,提高了电动设备的使用寿命,降低了电动设备的的运维成本。
本申请的另一个目的在于提供一基于基座的收容供电系统,其中,收容供电系统实现了不同类型的设备之间的外置电池互换。
本申请的另一个目的在于提供一信息中转供电方法,其中信息中转供电方法减少用户家庭的所需的供电座数量。
本申请的另一个目的在于提供一信息中转供电方法,其中信息中转供电方法集中供电于至少二个充电设备,其中供电方式包括且不限于直接供电和换电供电。
本申请的另一个目的在于提供一信息中转供电方法,其中信息中转供电方法以可交替一供电设备的方式供电于其他设备。值得一提的是,本申请的充电设备和供电设备都指的是外置的电源设备(持电设备),其可存储电量,供电于其他设备。
本申请的另一个目的在于提供一信息中转供电方法,其中信息中转供电方法直接供电的方式包括有线供电和无线供电。
本申请的另一个目的在于提供一信息中转供电方法,其中信息中转供电方法包括至少一中转基座,中转基座被电路连接于外部电路,其中中转基座不仅可供电于至少二个设备,还可通信地连接于至少二个设备。
本申请的另一个目的在于提供一信息中转供电方法,其中中转基座与至少二个设备通信地连接,其通信内容包括且不限于设备的至少一设备相关信息和至少一指令。
本申请的另一个目的在于提供一信息中转供电方法,其中信息中转供电方法通信的设备的设备相关信息包括且不限于一指令相关信息、一供电相关信息以及一设备状况信息,进一步的,设备指令相关信息包括且不限于指令完成度信息、指令操作信息以及协调其他设备相关信息,设备供电相关信息包括且不限于电量信息和电池损耗,设备状况信息包括且不限于设备运行状态和位置信息、导航信息。
本申请的另一个目的在于提供一信息中转供电方法,其中信息中转供电方法实现设备和中转基座处于同一局域网,中转基座通过局域网与至少二个设备通信地连接。
本申请的另一个目的在于提供一信息中转供电方法,其中信息中转供电方法的中转基座包括至少一基座主体和的至少一设备,其中设备被基座主体电连接,藉由供电设备,被供电的其他设备被通信地导通。
本申请的另一个目的在于提供一基于基础装置的辅助供电系7统,其中,辅助供电系统可提供给设备交替使用的外置电池,可更换的外置电池可延长设备的使用时间,防止电动设备的电容量不足无法持续清洁的问题。
本申请的另一个目的在于提供一基于基础装置的辅助供电系统,其中,辅助供电系统实现了不同类型的设备之间的外置电池互换。
本申请的另一个目的在于提供一基于基础装置的辅助供电系统,其中,藉由本就需要长时间供电的基础供电设备的基础基座,供电于至少一其他设备。
本申请的另一个目的在于提供一基于基础装置的辅助供电系统,其中,藉由本就需要长时间供电于基础供电设备的基础基座,集中供电于至少一其他设备和基础电动装置。
本申请的另一个目的在于提供一基于基础装置的辅助供电系统,其中,藉由供电设备和/或其他设备被置入的一个动作触发,以实现电路连接。
本申请的另一个目的在于提供一基于基础装置的辅助供电系统,其中,供电设备和/其他设备被置于基础基座的方式电路连接,以共同地供电于供电设备和其他设备。
本申请的另一个目的在于提供一基于基础装置的辅助供电系统,其中,藉由基础电动装置和/或其他设备被置入的方式电路连接,以共同地供电于基础电动装置和其他设备。
本申请的另一个目的在于提供一基于基础装置的辅助供电系统,其中,其他设备被实施为供电设备,供电设备和基础电动装置被基础基座直接供电,当基础电动装置被远离基础基座时,供电设备被换电的方式供电于基础电动装置,其中供电设备不仅解决了被长时间供电的困难,更加适于被换电于基础电动装置,以保证基础电动装置被始终供电。
本申请的另一个目的在于提供一基于基础装置的辅助供电系统,其中,基础电动装置被基础基座的供电方式包括且不限于直接供电和换电供电,进而基础电动装置被置于基础基座被供电,基础电动装置和基础基座被保持一定距离时,基础电动装置以换取供电设备的方式被持续供电,使基础电动装置被始终供电。
本申请的另一个目的在于提供一基于基础装置的辅助供电系统,其中基于基础装置的辅助供电系统以可交替更换一供电设备的方式供电于其他设备。
本申请的另一个目的在于提供一基于基础装置的辅助供电系统,其中基础基座直接供电的方式包括有线供电和无线供电。
本申请的另一个目的在于提供一基于基础装置的辅助供电系统,其中基础电动装置被基础基座供电的优先级高于其他设备被基础基座供电的优先级。
本申请的另一个目的在于提供一收容供电系统,其中,基座可持续给供电于至少一清洁设备和至少一充电设备,其中清洁设备和基座通信地连接,藉由被置于基座的充电设备,即使基座没有被电路连接于外部电路,基座仍然可以被连接于清洁设备,以防止在断电情况下,基座无法通信地连接于清洁设备。
本申请的另一个目的在于提供一收容供电系统,其中,清洁设备被实施为洗地机时,为防止清洗过程中污水四溢,洗地机只有被保持于基座时可自清洁,通过洗地机和基座接触连接后,洗地机和基座通信地连接后,洗地机被保持于基座后自清洁。
本申请的另一个目的在于提供一收容供电系统,其中,其他设备可藉由被置于基座的的设备的无线充电部被无线地供电,也就是说,基座无需预留适配尺寸大小的收容空间,也不需要适配设备的充电线端口,藉由被基座电路连接的设备,就可以无线供电于其他设备。
本申请的另一个目的在于提供一收容供电系统,其中,设备可被基座无线地供电,以使得设备只需要被放置这一个动作就可以电路连接于基座。
本申请的另一个目的在于提供一收容供电系统,其中,外置于基座的无线充电端口,增加了基座的供电设备的数量。
本申请的另一个目的在于提供一收容供电系统,其中,收容供电系统智能地优先供电于电量较低、用户选定、有预约工作任务的其中至少一个的设备。
本申请的另一个目的在于提供一收容供电系统,其中,至少二个不同类型的设备被基座独立供电。
本申请的另一个目的在于提供一收容供电系统,其中,收容供电系统可给大功率充放电的设备断电,并且不影响其他设备的供电。
本申请的另一个目的在于提供一收容供电系统,其中,收容供电系统断电于自清洁的设备,而不影响其他设备被充电。
本申请的另一个目的在于提供一收容供电系统,其中,当基座主动检测或者通信获取清洁设备自清洁时,基座和清洁设备断电,断电的指令可以来自基座也可以来自用户、云端、其他设备或者其他系统。
本申请的另一个目的在于提供一收容供电系统,其中,收容供电系统可根据设备相关信息、电量相关信息、用户选定、直接检测得到的信息来选定至少一个充电模式或断电模式。
本申请的另一个目的在于提供一收容供电系统,其中,藉由外部电路和/或充电装置不间断供电于基座, 基座收容清洁设备,基座在未电路连接于外部电路时,也可以通信地连接于清洁设备,使清洁设备自清洁。
本申请的其它优势和特点通过下述的详细说明得以充分体现并可通过所附图特地指出的手端和装置的组合得以实现。
依本申请的一个方面,能够实现前述目的和其他目的和优势的本申请的一基于基座的收容供电系统,包括:
一基座,其中基座具有至少一充电部和至少一基座主体,其中充电部被电路连接于基座主体,其中基座主体被供电;
至少一第一设备;以及
至少一第二设备,并且第一设备和第二设备的至少其中一个被充电部电路连接。
根据一个实施例,基座包括至少其中一个收容部,其中第一设备和第二设备被收容于收容部,收容部包括至少一第一收容主体和一第二收容主体,第一设备可被收容于第一收容主体,其中第二设备可被收容于第二收容主体。
根据一个实施例,充电部包括至少一第一充电端、一第二充电端以及一供电端,其中第一充电端和第二充电端被导通地连接于供电端,其中第一充电端被形成于第一收容主体,其中第二充电端被形成于第二收容主体,供电端被基座主体供电。
根据一个实施例,第一设备的类型选自组合清洁设备、通信设备、充电设备、移动设备、烹饪设备的至少其中一个,其中第二设备的类型选自组合清洁设备、通信设备、充电设备、移动设备、烹饪设备的至少其中一个。
根据一个实施例,清洁设备被选自组合扫地机器人、吸尘器、洗地机的至少其中一个。
根据一个实施例,充电设备被选自组合可插拔的电池、收容至少二电池的电池包、持电装置的至少其中一个。
依本申请的另一个方面,能够实现前述目的和其他目的和优势的本申请的一基于基座的收容供电系统,包括:
一基座,其中基座具有至少一收容部、一充电部以及至少一基座主体,其中充电部被电路连接于基座主体,其中基座主体被供电;
至少一设备,其中设备被收容于收容部,并且设备的至少其中一个被充电部供电,其中设备获取至少一指令;或设备反馈至少一设备相关信息。
根据一个实施例,设备的类型选自组合清洁设备、通信设备、充电设备、移动设备、烹饪设备的至少其中一个。
根据一个实施例,充电设备是一持电装置、一电池或一电池包。
依本申请的另一个方面,能够实现前述目的和其他目的和优势的本申请的一基于基座的收容供电系统,其中基于基座的收容供电系统适于供电于至少一设备,包括:
一基座,其中基座具有至少一收容部、至少一充电部以及一基座主体,充电部电路连接于基座主体,以供设备以收容于收容部的方式被充电部电路连接;和
至少一充电设备,其中充电设备可插拔地远离基座,以供充电设备和其他设备被间隔地收容于收容部,并且充电设备和其他设备分别被充电部电路连接,充电设备以远离基座的方式供电于至少一其他设备,被远离基座的设备可被充电设备供电。
根据一个实施例,充电设备是电池、收容至少二个可拆卸的电池的电池包或者一持电装置。
根据一个实施例,充电设备具有一充电通信模块,其中充电通信模块可通信至少一设备相关信息和/或至少一指令,以供用户、设备藉由充电设备通信。
根据一个实施例,充电设备以被电路连接于其他设备的方式获取设备的设备相关信息;和/或充电设备以被电路连接于其他设备的方式发送用户的指令于设备。
根据一个实施例,充电设备以被电路连接于其他设备的方式控制设备做功。
依本申请的另一个方面,能够实现前述目的和其他目的和优势的本申请的一基于基座的收容供电系 统,包括:
一基座,其中基座具有至少一收容部、一充电部以及至少一基座主体,其中充电部被电路连接于基座主体,其中基座主体被供电;和
至少一设备,其中设备被收容于收容部,并且设备的至少其中一个被充电部电路连接,其中基座和/或设备通信至少一设备相关信息。
根据一个实施例,设备具有至少一设备处理模块,其中设备处理模块可通信至少一设备相关信息和/或一指令。
根据一个实施例,设备的数量是两个以上,两个设备之间可通信地至少一设备相关信息和/或一指令。
根据一个实施例,基座包括至少一处理模块,基座的处理模块可通信至少一设备相关信息和/或一指令。
根据一个实施例,设备的类型选自清洁设备、通信设备、充电设备、移动设备、烹饪设备的类型组。
根据一个实施例,充电设备是电池、收容至少二个可拆卸的电池的电池包或者一持电装置。
依本申请的一个方面,能够实现前述目的和其他目的和优势的本申请的一基于基础装置的辅助供电系统,包括:
至少一基础装置,其中基础装置包括至少一基础基座和至少一基础电动装置,基础电动装置可以被置于基础基座的方式电连接,基础电动装置以可远离基础基座的方式做功;和
至少一设备,其中基础基座本就可电路连接于基础电动装置,设备可被基础基座供电,设备以可远离基础基座的方式做功。
根据一个实施例,清洁装置是一洗地机,洗地机包括至少一操作头和至少一机主体,其中洗地机的操作头被置于基础基座的位置低于其他设备被电路连接于基础基座的位置。
依本申请的一个方面,能够实现前述目的和其他目的和优势的本申请的一收容供电系统,其中供电系统适于供电于至少一设备,包括:
一基座,其中基座包括一基座主体、至少一收容部以及至少一充电部,其中充电部被电路连接于基座主体,其中基座主体被电路连接于外部电路,充电部被设置于收容部,其中收容部进一步地包括至少一第一收容部和至少一第二收容部,以供设备以被设置于第一收容部的方式被电路连接于充电部;以及
至少一充电设备,其中充电设备以被设置于第二收容部的方式被电路连接于充电部,基座主体始终被充电设备和/或外部电路电路连接。
依本申请的一个方面,能够实现前述目的和其他目的和优势的本申请的一收容供电系统,其中供电系统适于供电于至少一设备,包括:
一基座,其中基座包括一基座主体、至少一收容部以及至少一充电部,其中充电部被电路连接于基座主体,其中基座主体被电路连接于外部电路,充电部被设置于收容部,其中收容部进一步地包括至少一第一收容部和至少一第二收容部,以供设备被收容于充电部;以及
至少一充电设备,其中充电设备以被设置于第二收容部的方式被电路连接于充电部,以存储电量和被基座主体电路连接的至少其中一个的方式保持有电。
根据本申请的一个实施例,藉由充电设备电路连接于电池,充电设备始终以存储电量、被基座主体电路连接的方式以及置换可插拔电池中的至少其中一个的方式始终保持有电。
根据本申请的另一个方面,本申请提供一收容供电系统,包括:
一基座,其中基座包括一基座主体、至少一收容部以及至少一充电部,其中充电部被电路连接于基座主体,其中基座主体被电路连接于外部电路,充电部被设置于收容部,其中收容部进一步地包括至少一第一收容部和至少一第二收容部;
至少一第一设备,其中第一设备被收容于第一收容部,以及
至少一充电设备,其中充电设备以被设置于第二收容部的方式被电路连接于充电部,以存储电量和被基座主体电路连接的至少其中一个的方式保持有电。
根据一个实施例,所述设备包括至少一第一设备和至少一第二设备,并且所述第一设备和所述第二设备的至少其中一个被所述充电部电路连接,其中所述基座包括至少其中一个收容部,所述第一设备和所述 第二设备被收容于所述收容部,所述收容部包括至少一第一收容主体和一第二收容主体,所述第一设备可被收容于所述第一收容主体,所述第二设备可被收容于所述第二收容主体。
根据一个实施例,所述充电部包括至少一第一充电端和至少一第二充电端,所述第一充电端被设置于所述第一收容主体,所述第二充电端被设置于所述第二收容主体,所述第一充电端和所述第二充电端被电路连接于所述基座主体,并且所述第一充电端和所述第二充电端可输出电流,以分别供电于所述第一设备和/或所述第二设备。
根据一个实施例,所述第一设备的类型选自组合智能设备、清洁设备、通信设备、充电设备、移动设备、烹饪设备的至少其中一个,其中所述第二设备的类型选自组合智能设备、清洁设备、通信设备、充电设备、移动设备、烹饪设备的至少其中一个。
根据一个实施例,所述设备是2个以上,所述设备包括至少一充电设备,所述充电设备被选自组合可插拔的电池、收容至少二电池的电池包、持电装置的至少其中一个。
根据一个实施例,所述第一设备是充电设备,其中所述充电设备可插拔于所述基座,以供所述充电设备和所述第二设备被间隔地收容于所述收容部,并且所述充电设备和所述第二设备分别被所述充电部电路连接,被远离所述基座的所述第二设备可被所述充电设备供电。
根据一个实施例,所述设备包括至少一充电设备,所述充电设备具有一充电通信模块,所述充电通信模块可通信至少一设备相关信息和/或至少一指令,以供用户、其他设备藉由所述充电设备通信。
根据一个实施例,所述设备包括至少一充电设备,所述充电设备以被电路连接于其他所述设备的方式获取所述设备的所述设备相关信息;和/或所述充电设备以被电路连接于其他所述设备的方式发送用户的所述指令于所述设备。
根据一个实施例,所述基座包括至少一处理模块,其中所述处理模块被电路连接于所述充电部,所述基座的所述处理模块可通信地至少一设备相关信息和/或一指令,所述基座和所述设备通信至少一设备相关信息/或一指令。
根据一个实施例,所述设备包括至少一清洁设备,所述基座不间断地被所述充电设备和/或外部电路供电,即使基座未连接于外部电路,其中至少一所述清洁设备以被保持于所述第一收容部的方式保持通信于所述基座。
根据一个实施例,所述设备包括至少一第一设备和至少一第二设备,第一设备被基座以一第一设备充电模式、第一设备慢充模式和一断电模式的其中一个被供电,第二设备被基座以一第二设备充电模式、第二设备慢充模式和一断电模式的其中一个被供电。
根据一个实施例,所述设备包括至少一第一设备和至少一第二设备,第一设备被基座以一第一设备充电模式、第一设备慢充模式和一断电模式的其中一个被供电,第二设备被基座以一第二设备充电模式、第二设备慢充模式和一断电模式的其中一个被供电。
根据一个实施例,所述收容部包括至少一第一收容主体,所述基座进一步地包括一辅助清洁部,其中所述辅助清洁部被设置于所述第一收容部的支撑面,以供所述清洁设备具有至少一工作头,所述清洁设备的所述工作头被对应地保持于所述辅助清洁部,其中所述辅助清洁部被用于辅助所述工作头自清洁。
根据一个实施例,所述设备包括一第一设备,所述基座包括至少一信息处理部,信息处理部包括一通信模块、至少一控制模块以及一选定模块,所述充电部包括一第一基座充电部,所述系统选定机构发送的第一设备充电模式、第一设备慢充模式和一断电模式的其中一个的系统初结果至所述控制模块,所述控制模块根据系统选定初结果和所述用户选定初结果处理得到以第一设备充电模式、第一设备慢充模式和一断电模式的其中一个的选定结果,所述第一基座充电部被所述控制模块控制选定充电模块
根据一个实施例,所述基座包括一基座主体、至少一收容部、至少一充电部以及一信息处理部,所述信息处理部被可通信地连接于所述充电部,其中所述充电部包括至少二基座充电部以及分别电路连接于两个所述基座充电部的所述供电端,其中所述供电端电路连接于所述基座主体,其中所述基座主体被电路连接于外部电路,每个所述基座充电部被所述信息处理部控制地输出对应于所述充电模式和所述断电模式中的至少其中一个电路模式的电流,至少二个所述设备分别被收容于所述收容部,其中所述设备的其中至少 一个以被设置于所述收容部的方式被电路连接于所述充电部,所述设备被所述电路连接于至少一基座充电部,所述设备被基座以一充电模式和一断电模式的其中一个被电路连接。
根据一个实施例,所述信息处理部包括一通信模块、至少一控制模块以及一选定模块,其中所述充电部和所述通信模块可通信地连接于所述选定模块,所述选定模块包括至少一用户选定机构和一系统选定机构,其中所述控制模块接收到所述用户选定机构的一用户选定初结果和所述系统选定机构发送的系统选定初结果,所述通信模块获取至少一个所述设备的设备相关信息以及所述充电部获取对应所述设备的设备电量信息后,处理得到一选定结果,以控制所述充电部的每个基座充电部输出对应于选定结果的所述充电模式和所述断电模式中的至少其中一个电路模式的电流。
根据一个实施例,所述用户选定机构被用户选定地快充、慢充或者断电,根据所述通信模块发送设备相关信息和所述充电部发送的所述设备电量信息,所述系统选定模块选定所述充电模式和所述断电模式中的至少其中一个电路模式。
根据一个实施例,所述通信模块可通信地获取所述设备的设备相关状态,其中所述设备相关状态选自大电流放电状态、预约任务状态的类型组,每个所述基座充电部根据电路连接的所述设备的电流大小获取所述设备的的电量相关信息,当所述设备的电量小于第一阈值,所述系统选定模块接收到所述基座充电部提供的所述设备的电量小于所述第一阈值,所述系统选定模块选定的所述系统选定初结果是所述快充模式;当所述设备的电量大于第一阈值并且小于100%,所述系统选定模块接收到所述基座充电部提供的所述设备的电量大于第一阈值并且小于100%,所述系统选定模块选定的所述系统选定初结果是所述慢充模式。
根据一个实施例,所述基座充电部包括一第一基座充电部和一第二基座充电部,所述设备包括至少一第一设备和至少一第二设备,其中所述第一基座充电部可被电路连接于所述第一设备,所述第二基座充电部可被电路连接于所述第二设备,其中所述第一基座充电部根据电路连接的所述第一设备和所述第二设备的电流大小获取所述第一设备和所述第二设备的的电量信息,所述第二基座充电部根据电路连接的所述第二设备的电流大小获取所述设备的的电量信息。
根据一个实施例,所述设备包括一第一设备,所述第一设备的设备相关信息是一大电流放电状态,所述通信模块接收到所述第一设备的所述大电流放电状态,所述基座充电部包括一第一基座充电部,其中所述系统选定机构发送的第一设备断电模式的系统初结果至所述控制模块,所述控制模块根据系统选定初结果和所述用户选定初结果处理得到以第一设备断电模式的选定结果,所述第一基座充电部被所述控制模块控制地断电。
根据一个实施例,所述第一设备是清洁设备,所述清洁设备需要自清洁时,所述通信模块发送接收到所述清洁设备的设备自清洁的电信号至所述系统选定模块,其中所述系统选定模块选定一第一设备断电模式,其中所述控制模块接收到所述系统选定模块发送的第一设备断电模式,所述控制模块处理并控制所述基座充电部以所述第一设备断电模式的电路模式断电。
根据一个实施例,所述设备包括一第二设备,所述第二设备被所述第二基座充电部以第二设备快充模式、第二设备慢充模式以及断电模式的其中一个电路模式输出对应的电流,其中当所述信息处理部处理所述第一设备处于大电流放电状态,所述第二设备被所述第二基座充电部供电的电路模式不受其影响,所述控制模块分别选定所述第二设备和所述第一设备的供电电路模式。
根据一个实施例,所述设备包括至少一第二设备,所述第二设备被所述第二基座充电部以第二设备快充模式、第二设备慢充模式以及断电模式的其中一个电路模式输出对应的电流,其中当所述控制模块接收到所述第一设备处于第一设备快充模式后,所述控制模块控制所述第二设备的至少其中一个被断电。
根据一个实施例,所述第二设备是充电设备,其中所述充电设备被选自组合一电池、收容电连接至少二个电池的一电池包、一持电装置的类型组。
根据一个实施例,所述通信模块包括至少一通信单元,每个所述通信单元以接触通信的方式通信于对应的所述设备。
根据一个实施例,至少一充电设备,其中所述充电设备以被置于所述收容部的方式被电路连接于其中一个所述基座充电部,所述基座充电部被所述信息处理部控制地输出对应于所述设备的所述充电模式和所 述断电模式中的至少其中一个电路模式的电流。
根据一个实施例,所述信息处理部包括一通信模块、至少一控制模块以及一选定模块,其中所述充电部和所述通信模块可通信地连接于所述选定模块,所述选定模块包括至少一用户选定机构和一系统选定机构,其中所述控制模块接收到所述用户选定机构的一用户选定初结果和所述系统选定机构发送的系统选定初结果,所述通信模块获取至少一个所述设备的设备相关信息以及所述充电部获取对应所述设备的设备电量信息后,处理得到一选定结果,以控制所述充电部的每个基座充电部输出对应于选定结果的所述充电模式和所述断电模式中的至少其中一个电路模式的电流。
根据一个实施例,所述基座进一步地包括至少一检测模块,其中所述检测模块直接检测所述至少一设备的设备状态以得到一检测相关信息,所述系统选定机构接收到所述检测模块发送的检测相关信息、所述通信模块发送的所述设备相关信息、所述基座充电部发送的设备的电量相关信息,以处理得到一第一设备系统选定初结果。
通过对随后的描述和附图的理解,本申请进一步的目的和优势将得以充分体现。
附图说明
图1A是本申请的一个较佳实施例的基于基座的收容供电系统的基座和设备分离状态下的立体示意图及其左视示意图。
图1B是上述较佳实施例的基于基座的收容供电系统的设备被基座收容状态下的立体示意图。
图2A是另一个较佳实施例的基于基座的收容供电系统的立体示意图。
图2B是上述较佳实施例的基于基座的收容供电系统的另一个立体示意图。
图2C是上述较佳实施例的变形实施例中基于基座的收容供电系统的局部示意图。
图2D是上述较佳实施例的根据图2A的基座的局部俯视示意图。
图2E是上述较佳实施例的变形实施例中的根据图2A的基于基座的收容供电系统的变形实施例的立体示意图及其局部放大示意图。
图3A是另一个较佳实施例的基于基座的收容供电系统的左视示意图及其局部放大示意图。
图3B是上述较佳实施例的基于基座的收容供电系统的另一个立体示意图及其局部放大示意图。
图4是另一较佳实施例的基于基座的收容供电系统的立体示意图。
图5A是另一较佳实施例的基于基座的收容供电系统的基座的立体示意图。
图5B是上述较佳实施例的基于基座的收容供电系统的立体示意图及其清洁设备的局部示意图。
图5C是上述较佳实施例的基于基座的收容供电系统的右侧示意图。
图5D是上述较佳实施例的基于基座的收容供电系统的立体示意图及其清洁设备被置于基座自清洁的局部示意图。
图6A是另一个较佳实施例的基于基座的收容供电系统的基座的立体示意图。
图6B是上述较佳实施例的基于基座的收容供电系统的基座的另一个立体示意图。
图7A是上述较佳实施例的变形实施例的基于基座的收容供电系统的基座的立体示意图。
图7B和图7C是上述较佳实施例的基于基座的收容供电系统的应用示意图。
图8A是另一较佳实施例的基于基座的收容供电系统的俯视示意图。
图8B是上述较佳实施例的基于基座的收容供电系统的立体示意图。
图8C是上述较佳实施例的基于基座的收容供电系统的右视示意图。
图8D是上述较佳实施例的基于基座的收容供电系统的另一个立体示意图。
图9A是另一较佳实施例的基于基座的收容供电系统的另一个立体示意图。
图9B是上述较佳实施例的基于基座的收容供电系统的立体示意图。
图9C是上述较佳实施例的变形实施例的基于基座的收容供电系统的立体示意图。
图10A是另一较佳实施例的基于基座的收容供电系统的立体示意图。
图10B是上述较佳实施例的基于基座的收容供电系统的示意图。
图11A至图11D是基于基座的收容供电系统的应用场景示意图。
图12A是另一个较佳实施例的变形实施例的基于基座的收容供电系统的立体示意图。
图12B是上述较佳实施例的另一个变形实施例的基于基座的收容供电系统的立体示意图。
图12C是本申请的上述较佳实施例的另一个变形实施例的基于基座的收容供电系统的立体示意图。
图12D是上述较佳实施例的另一个变形实施例的基于基座的收容供电系统的立体示意图。
图12E是上述较佳实施例的另一个变形实施例的基于基座的收容供电系统的立体示意图。
图13A是另一个较佳实施例的变形实施例的基于基座的收容供电系统的立体示意图。
图13B是上述较佳实施例的另一个变形实施例的基于基座的收容供电系统的立体示意图。
图13C是上述较佳实施例的另一个变形实施例的基于基座的收容供电系统的立体示意图。
图13D是上述较佳实施例的另一个变形实施例的基于基座的收容供电系统的立体示意图。
图13E是上述较佳实施例的另一个变形实施例的基于基座的收容供电系统的立体示意图。
图13F是上述较佳实施例的另一个变形实施例的基于基座的收容供电系统的立体示意图。
图13G是上述较佳实施例的另一个变形实施例的基于基座的收容供电系统的立体示意图。
图16A是根据本申请的上述较佳实施例的信息中转供电方法的中转设备相关信息和/或指令的示意图。
图16B是上述较佳实施例的信息中转供电方法中中转设备相关信息的方法示意图。
图16C是上述较佳实施例的信息中转供电方法的中转基座和设备通信以中转设备相关信息的示意图。
图16D是上述较佳实施例的信息中转供电方法的设备和中转基座通过供电设备中转设备相关信息的示意图。
图16E是上述较佳实施例的信息中转供电方法中充电设备和中转基座通过被电路连接于中转基座的至少一外置电池中转设备相关信息的示意图。
图16F是上述较佳实施例的信息中转供电方法的充电设备和中转基座藉由被电路连接于设备的至少一外置电池中转设备相关信息的示意图。
图17A是上述较佳实施例的信息中转供电方法的充电设备和设备藉由电路连接于设备的外置电池中转设备相关信息的示意图。
图17B是上述较佳实施例的信息中转供电方法的两个所述设备20分别被电路连接于中转基座时中转设备相关信息的示意图。
图17C是上述较佳实施例的信息中转供电方法的两个所述设备被通信于中转基座的示意图。
图17D是上述较佳实施例的信息中转供电方法的两个设备之间通信连接的示意图。
图18是上述较佳实施例的信息中转供电方法的另一设备相关信息中转的示意图。
图19A是上述较佳实施例的信息中转供电方法的指令中转的示意图。
图19B是上述较佳实施例的信息中转供电方法的另一方法示意图。
图20A是另一个较佳实施例的基于基础装置的辅助供电系统的基座的立体示意图。
图20B是另一个较佳实施例的基于基础装置的辅助供电系统的基座的另一个立体示意图。
图20C是另一个较佳实施例的变形实施例的基于基础装置的辅助供电系统的基座的立体示意图。
图20D是另一个较佳实施例的变形实施例的基于基础装置的辅助供电系统的基座的立体示意图。
图21是另一个较佳实施例的基于基础装置的辅助供电系统的应用示意图。
图22A是另一个较佳实施例的收容供电系统的立体示意图。
图22B是上述较佳实施例的收容供电系统的的基座在连接于外部电路的示意图。
图22C是上述较佳实施例的收容供电系统的基座没有连接于外部电路的示意图。
图22D是上述较佳实施例的变形实施例的收容供电系统的的立体示意图。
图23A是另一个较佳实施例的收容供电系统状态下的立体的立体示意图。
图23B是上述较佳实施例的收容供电系统的另一个立体示意图。
图24A是根据本申请的另一个较佳实施例的收容供电系统的基座的一个状态示意图。
图24B是上述较佳实施例的收容供电系统的基座另一个状态的立体示意图。
图24C是上述较佳实施例的收容供电系统的基座另一个状态的立体示意图。
图25A至图25C是另一个较佳实施例的收容供电系统的立体示意图。
图25D是上述较佳实施例的变形实施例的收容供电系统的立体示意图。
图26A至图26C是另一个较佳实施例的收容供电系统的立体示意图。
图26D是上述较佳实施例的变形实施例的收容供电系统的另一立体示意图。
图26E是上述较佳实施例的变形实施例的收容供电系统的另一立体示意图。
图26F是上述较佳实施例的变形实施例的收容供电系统的另一立体示意图。
图26G是上述较佳实施例的变形实施例的收容供电系统的另一立体示意图。
图26H是上述较佳实施例的变形实施例的收容供电系统的另一立体示意图。
图26I是上述较佳实施例的变形实施例的收容供电系统的另一立体示意图。
图26J是上述较佳实施例的变形实施例的收容供电系统的另一立体示意图。
图27A至图27N是另一个较佳实施例的收容供电系统的基座的立体示意图。
图27O是另一较佳实施例的收容供电系统的另一立体示意图。
具体实施方式
以下描述用于揭露本申请以使本领域技术人员能够实现本申请。以下描述中的较佳实施例只作为举例,本领域技术人员可以想到其他显而易见的变型。在以下描述中界定的本申请的基本原理可以应用于其他实施方案、变形方案、改进方案、等同方案以及没有背离本申请的精神和范围的其他技术方案。
本领域技术人员应理解的是,在本申请的揭露中,术语“纵向”、“横向”、“上”、“下”、“前”、“后”、“左”、“右”、“竖直”、“水平”、“顶”、“底”、“内”、“外”等指示的方位或位置关系是基于附图所示的方位或位置关系,其仅是为了便于描述本申请和简化描述,而不是指示或暗示所指的装置或元件必须具有特定的方位、以特定的方位构造和操作,因此上述术语不能理解为对本申请的限制。
可以理解的是,术语“一”应理解为“至少一”或“一个或多个”,即在一个实施例中,一个元件的数量可以为一个,而在另外的实施例中,该元件的数量可以为多个,术语“一”不能理解为对数量的限制。
对“一个实施例”、“实施例”、“示例实施例”、“各种实施例”、“一些实施例”等的引用指示这样的描述本发明的实施例可包括特定特征、结构或特性,但是不是每个实施例必须包括该特征、结构或特性。此外,一些实施例可具有对其它实施例的描述的特征中的一些、全部或没有这样的特征。
这里将详细地对示例性实施例进行说明,其示例表示在附图中。下面的描述涉及附图时,除非另有表示,不同附图中的相同数字表示相同或相似的要素。以下示例性实施例中所描述的实施方式并不代表与本申请相一致的所有实施方式。
在本申请使用的术语是仅仅出于描述特定实施例的目的,而非旨在限制本申请。在本申请所使用的单数形式的“一种”、“所述”和“该”也旨在包括多数形式,除非上下文清楚地表示其他含义。还应当理解,本文中使用的术语“和/或”是指并包含一个或多个相关联的列出项目的任何或所有可能组合。
应当理解,尽管在本申请可能采用术语第一、第二、第三等来描述各种信息,但这些信息不应限于这些术语。这些术语仅用来将同一类型的信息彼此区分开。例如,在不脱离本申请范围的情况下,第一信息也可以被称为第二信息,类似地,第二信息也可以被称为第一信息。取决于语境,如在此所使用的词语“如果”可以被解释成为“在……时”或“当……时”或“响应于确定”。
参考说明书附图的图1,本申请的一个较佳实施例的一基于基座的收容供电系统被详细地揭露并诠释,其中基于基座的收容供电系统包括至少一基座10,其中基座10收容至少一设备20,基座10包括一基座主体11、一收容部12并界定至少一收容空间120,其中收容部12被设置于基座主体11以界定收容空间120,当设备20被置于收容部12时,设备20被收容于收容部12的收容空间120,以使得至少一个设备20被收容供电系统收容。
优选地,设备20的数量是两个以上。也就是说,至少二个设备20分别被置于二个收容空间120,至 少二个设备20被共同地收容于基座10。
基座10包括基座主体11、收容部12以及至少一充电部13,其中充电部13被电路连接于基座主体11,当设备20被置于充电部13时,设备20被充电部13供电,进而收容供电系统收容供电于至少一个设备20。
值得一提的是,当至少二个设备20被收容于基座10时,其中至少一个设备20被基座10供电。
值得一提的是,在本申请的其他变形实施例中,基座10可以收容至少三个设备20,在此本申请不受到任何限制。
在本申请的其他变形实施例中,基座10可以充电于至少三个设备20,在此本申请不受到任何限制。
参考本申请的上述较佳实施例,2个设备20被共同地置于充电部13的对应位置时,至少二个设备20共同地被基座10充电,以使得基座10收容供电于至少二个设备20,以减少不同的设备20通过不同的充电头占用至少二个充电端的充电压力。
进一步地,基座10的基座主体11包括一支撑主体111和一供电部112,供电部112被设置于支撑主体111,供电部112可以被连接AC电源或者DC电源,以使得基座10给至少二个设备20供电。充电部13接收到供电部112的电流,并且输出电流。供电部112可将输入的交流电整流,以输出DC电流。
优选地,设备20分别是一第一设备2001和一第二设备2002,其中第一设备2001和第二设备2002可以被分别地置于不同腔的收容部12。
收容部12包括一第一收容主体121和一第二收容主体122。第一设备2001被第一收容主体121支撑,第二收容主体122被第二收容主体122支撑地收容。
更优选地,收容部12具有至少一第一收容腔1210和一第二收容腔1220,第一收容腔1210被收容主体121界定,第二收容腔1220被第二收容主体122界定。第一设备2001被收容于第一收容腔1210,第二设备2002被收容于第二收容腔1220。
进一步地,充电部13被设置于第一收容主体121和第二收容主体122的至少其中一个。
优选地,当充电部13给至少一个设备20充电,充电部13包括一第一充电端131、一第二充电端132以及至少一供电端130,第一充电端131和第二充电端132分别被电路连接于供电端130,充电部13的供电端130被电路连接于供电部112,以使得至少一个设备20被电路连接于供电部112。第一充电端131和第二充电端132被电路连接于供电部112,以使得当供电部112被市电和/或电源供电时,第一充电端131、一第二充电端132可输出电流。
第一充电端131被设置于第一收容腔1210第二充电端132被设置于第二收容腔1220,第一充电端131被电路连接于第一设备2001,第二充电端132被电路连接于第二设备2002。
优选地,第一收容腔1210和第二收容腔1220被分别环绕地设置于基座主体11的侧部。也就是说,收容部12收容的第一设备2001和第二设备2002分别被间隔地保持,减少了产品之间的相互干扰。
充电部13的第一充电端131被电路连接于第一设备2001的电连接方式、第二充电端132被电路连接于第二设备2002的电连接方式可以相同也可以不同,根据设备20的类型选定。本领域技术人员应当可以理解并知晓,电连接方式可以被实施为接触电连接和非接触电连接,本申请不在此做任何限定。进一步地,接触电连接可以通过触点接触、插电头接触(举例来说,如USB接口、TYPE C接口、Lightning接口),非接触电连接可以被实施为电磁感应、磁共振、微波电传输,本领域技术人员可以理解并知晓。
第一设备2001选自组合一智能设备21A、一清洁设备22A、一通信设备23A、一充电设备24A、一移动设备25A、一行走设备26A以及一烹饪设备的至少其中一个。举例来说,清洁设备22A被实施为至少一扫地机器人22B、一吸尘器22C、至少一洗地机22D的至少其中一个。移动设备25A可以被实施为一手机25B、ipad25C、游戏机、AR设备、娱乐电动设备的至少其中一个。举例来说,烹饪设备可以被实施为自动炒菜机、烘焙机、保温壶、烧水壶的至少其中一个。
第二设备2002选自组合一智能设备21A、一清洁设备22A、一通信设备23A、一充电设备24A、一移动设备25A、一行走设备26A以及一烹饪设备的至少其中一个。举例来说,清洁设备22A被实施为至少一扫地机器人22B、一吸尘器22C、至少一洗地机22D的至少其中一个。移动设备25A可以被实施为一手机25B、ipad25C、游戏机、AR设备、娱乐电动设备的至少其中一个。举例来说,烹饪设备可以被实施为 自动炒菜机、烘焙机、保温壶、烧水壶的至少其中一个。
在本申请的上述较佳实施例中,第一充电端131被实施为触点。以使得第一设备2001被收容于第一收容腔1210时,第一设备2001以直接接触连接于第一充电端131的方式实现电气连接。
优选地,第二充电端132被实施为触点。以使得第二设备2002被收容于第二收容腔1220时,第二设备2002以直接接触连接于第二充电端132的方式实现电气连接。
在本申请的其他变形实施例中,第一充电端131被实施为USB接口、TYPE C接口、Lightning接口的至少其中一个,第一充电端131被实施第一设备2001直接接触连接的方式被电气连接。
可选地,第二充电端132被实施为被实施为USB接口、TYPE C接口、Lightning接口的至少其中一个。以使得第二设备2002被收容于第二收容腔1220时,第二设备2002以直接接触连接于第二充电端132的方式实现电气连接。
值得一提的是,第一充电端131和第二充电端132还可以被实施为其他接口,如VGA数据线、DVI数据线、HDMI数据线,以不仅用于电气连接,还用于其他信息的传输,以使得基座10可通信地连接于其他设备20,在此,本申请不受任何限制。
在本申请的其他变形实施例中,第一充电端131被实施为非接触连接,举例来说,电磁感应、磁共振、微波电传输,举例来说,第一充电端131和第一设备2001以磁共振的方式电气连接,在此本申请不受到任何限制。
可选地,第二充电端132被实施为非接触连接,举例来说,电磁感应、磁共振、微波电传输,举例来说,第二充电端132和第一设备2001以磁共振的方式电气连接,在此本申请不受到任何限制。
优选地,第一设备2001具有一第一充电口20010,第二设备2002具有一第二充电口20020,其中第一设备2001的第一充电口20010和基座10的第一充电端131接触连接,第二设备2002的第二充电口20020和基座10的第二充电端132接触连接。第一设备2001的第一充电口20010和第二设备2002的第二充电口20020充电类型在此不收任何限制,可根据具体情况进行设计。
参考图1A和图1B,第一充电口20010被设置于第一设备2001的底部,第二充电口20020被设置于第二设备2002的底部,在此本申请不收任何限制,可根据第一设备2001和第二设备2002的类型进行具体设计。
值得一提的是,收容供电系统被应用于居家环境中,第一设备2001和第二设备2002被收容于基座10后被应用于居家环境中。第一设备2001和第二设备2002的类型不受到本申请的限制。
当收容供电系统被应用于居家环境中的客厅时,收容供电系统可优选地被设置于远离地面的一定高度上,以使得用户可以直接取放被容置于收容供电系统的至少二个设备20,其中收容供电系统可以供用户舒适地拿取。当收容供电系统的基座10被放置于茶几上时,用户伸手就能够获取被容置于收容供电系统的设备20。
参考说明书附图之图2A至图2E,本申请另一个较佳实施例的一收容供电系统被详细地揭露并诠释,收容供电系统适于被应用于同一类型的设备20,进一步地说,收容供电系统适于被应用于至少二个清洁设备22A。设备20包括二个清洁设备22A,两个清洁设备22A的至少一部分被共同地收容于基座10。
2个清洁设备22A的类型不受到本申请的限制,2个清洁设备22A可以是不同类型,也可以是同一类型,在此本申请不受到任何限制。
优选地,清洁设备22A的其中一个由于是全自动的,且始终用于地面清洁,因此基座10被放置于地面,以便于不同的表面清洁的清洁设备22A放置。
优选地,清洁设备22A的其中一个被收容于第一收容主体121的第一收容腔1210,清洁设备22A的其中另一个被收容于第二收容主体122的第二收容腔1220。
优选地,清洁设备22A的其中一个被实施为扫地机器人22B,清洁设备22A的其中另一个被实施为吸尘器22C。吸尘器包括被可拆卸的握持部221C和被可拆卸地连接于握持部221C的一吸尘主体222C,握持部221C驱动吸尘主体222C吸尘。优选地,吸尘主体222C和握持部221C被拆卸地设置。吸尘器22C的握持部221C被可拆卸地设置于第二收容腔1220。
第一清洁设备22A被以接触连接的方式电气连接于第一充电端131。清洁设备22A的握持部221C被以接触连接的方式电气连接于第一充电端131。
参考说明书附图之图2B,扫地机器人22B被以触点连接的方式电气连接于第一充电端131。第一充电端131被设置于朝向远地端面112的方式被设置第一收容腔1210,当扫地机器人22B移动过程中被第一充电端131限位地保持,以使得扫地机器人22B在移动过程中就能够被贴合地吸附。
优选地,第一充电端131被实施为2个触点,以直接连接于扫地机器人22B的一充电口,且第一充电端131被凸出于界定第一收容腔1210的表面的方式被设置,以使得第一充电端131可被扫地机器人22B直接接触的方式充电。
可选地,第一充电端131具有一定磁性,以使得扫地机器人22B在移动过程中就可以被吸附于第一充电端131。
第一收容主体121包括一第一底面1211、一第一侧壁1212以及一第一顶面1213,其中第一侧壁1212自第一底面1211延伸至第一顶面1213,以界定第一收容腔1210。
参考说明书附图之图2B,第一充电端131被形成于第一收容主体121的第一底面1211,当扫地机器人22B在第一底面1211移动,即可被接触连接于第一充电端131。
优选地,第一充电端131和第一侧壁1212之间的距离和扫地机器人22B的周壁和扫地机器人22B的充电口的距离适配。进一步地,第一充电端131具有一定的长度,以适于不同尺寸的机器人211被适配地充电。
参考说明书附图之图2C,在本申请的变形实施例中,第一充电端131被设置于界定第一收容腔1210的第一侧壁1212。更可选地,第一充电端131被凸出于第一收容主体121的第一侧壁1212的方式被设置,以适于被设置于扫地机器人22B的周壁的充电位。
在本申请的变形实施例中,第一充电端131被设置于界定第一收容腔1210的第一顶面1213。更可选地,第一充电端131被凸出于第一收容主体121的第一顶面1213的方式被设置。
优选地,吸尘器22C的握持部221C被以触点连接的方式电气连接于第二充电端132。
第二充电端132被设置于第二收容主体122的第二收容腔1220。第二收容主体122界定一第二支撑面1221以及一第二侧壁1222,其中第二侧壁1222自第二支撑面1221轴向地延伸以界定第二收容腔1220。
优选地,第二充电端132被设置于第二支撑面1221,以电连接于被第二支撑面1221支撑的清洁设备22A。
可选地,在本申请的变形实施例中,第二充电端132被设置于第二侧壁1222,以贴合第二侧壁1222的方式电连接于的清洁设备22A。
可选地,第一清洁设备22A、清洁设备22A以插口和插头的方式电气连接于第一充电端131。
可选地,第一清洁设备22A被以非接触连接的方式电气连接于第一充电端131。清洁设备22A被非接触连接的方式电气连接于第一充电端131,进一步地,非接触连接的方式选自电磁感应、磁共振、微波电传输的类型组,本申请在此方面不受任何限制。
支撑主体111具有一近地端部和一远地端部,收容部12的第一收容腔1210被形成于支撑主体111的一近地端部的径向方向,并且第一收容腔1210以至少一个第一开口导通于外部空间的方式被形成于支撑主体111的下端部。
值得一提的是,支撑主体111的远地端部和近地端部是以支撑主体111的垂直延伸方向上界定,并且支撑主体111的近地端部相对于远地端部靠近地面。
由于扫地机器人22B适于在地面上进行全自动的清洁,扫地机器人22B可自动进入第一收容腔1210并保持扫地机器人22B具有一扫地机器人充电端2210B,扫地机器人22B的扫地机器人的充电口和充电部13的第一充电端131接直接接触,进而扫地机器人充电端2110和第一充电端131直接接触时,扫地机器人22B被基座10充电。
由于握持部221C被可拆卸地设置于第二收容腔1220。因此第二收容腔1220被形成于支撑主体111的远地端部,握持部221C被搭挂于支撑主体111,并且被限位于第二收容腔1220。
值得一提的是,第二收容腔1220以至少一个第二开口导通于外部空间的方式被向上敞开地设置于支撑主体111的径向方向。
优选地,第一收容部121的第一收容腔1210被形成于支撑主体111的径向方向。
参考说明书的说明书附图之图3A和图3B,本申请的另一较佳实施例被详细地揭露并诠释,和图2A所示的较佳实施例不同的是,收容供电系统包括至少二个清洁设备22A以及一基座10,清洁设备22A的其中一个被实施为扫地机器人22B,清洁设备22A被实施为一体式吸尘器22C`,一体式吸尘器22C`整体地被基座10充电,扫地机器人22B被基座10收容且充电。进一步地,一体式吸尘器22C`和扫地机器人22B被安装于基座10的径向侧壁。换句话说,第一收容腔1210和第二收容腔1220被相对地形成于支撑主体111的径向侧壁。第一收容腔1210的第一开口被保持于支撑主体111的径向方向。第二收容腔1220的第二开口被保持于支撑主体111的轴向方向并且第二收容腔1220的第二开口被向上地保持。
优选地,第二充电端132被形成于基座10的侧壁,以使得一体式吸尘器22C`可整体贴合于基座10的第二充电端132的方式被充电。扫地机器人22B被置于第一收容主体121的方式被第一充电端131供电。
值得一提的是,可选地,基座10可收容并充电于至少一个一体式吸尘器22C`和其他设备20,且基座10被保持于一较高位置,以使得一体式吸尘器22C`的充电口被形成于一体式吸尘器22C`的一握持部221C时,基座10可适配于一体式吸尘器22C`的握持部221C`的高度,并且为之充电。
可选地,第一收容腔1210和第二收容腔1220被相对地形成于支撑主体111的径向方向。进一步地说,第一收容腔1210和第二收容腔1220被相邻地形成于支撑主体111的径向侧壁。第一收容腔1210的第一开口被保持于支撑主体111的径向方向。第二收容腔1220的第二开口被保持于支撑主体111的轴向方向并且第二收容腔1220的第二开口被向上地保持。
参考说明书附图之图4,本申请的另一个较佳实施例被详细地揭露并诠释,图4所示的本较佳实施例和图2所示的较佳实施例不同的是,收容供电系统包括一至少一个清洁设备22A和至少一个通信设备23A以及一基座10,清洁设备22A被实施为一体式吸尘器22C`的握持部221C`。第一收容腔1210和第二收容腔1220被形成于支撑主体111的远地端部的轴向方向。换句话说,第二收容腔1220被形成于支撑主体111的轴向端面,进而以垂直支撑的方式支撑清洁设备22A,一体式吸尘器22C`的握持部221C`可以被支撑主体111支撑地被保持。清洁设备22A被置于第一收容主体121的方式被第一充电端131电路连接。通信设备23A被置于第二收容主体122的方式被第二充电端132电路连接。清洁设备22A和通信设备23A分别被基座10供电。
通信设备23A优选地被实施为局域网信号扩大器,其中通信设备23A持续被基座10充电,当通信设备23A可被连接于短距离内的局域网,以对保持一定距离内的设备20提供局域网信号。
值得一提的是,通信设备23A自带电池,通信设备23A可以被拿取至其他位置,以使得通信设备23A被移动至其他位置提供局域网信号。
可选地,通信设备23A可被实施为4G/5G移动信号设备,通信设备23A可提供一定距离内的设备20提供局域网信号。更可选地,通信设备23A自带电池,使得通信设备23A可被移动地移动至其他区域用于提供局域网。
在其他变形实施例中,通信设备23A的自带电池可充电于一移动设备,通信设备23A可持续提供局域网和电量。
可选地,第一收容腔1210被形成于支撑主体111的近地端部,且第一收容腔1210被形成于支撑主体111的径向侧壁,以适于自动行走的清洁设备22A被收容。
在本申请的其他变形实施例中,基座10可以被保持于远离地面的一定高度,如被设置于一定高度的墙面或者被放置于一定高度的支撑面上,如桌面、柜子等。可选地,第二收容腔1220和第一收容腔1210分别被形成于支撑主体111的近地端部,且第二收容腔1220和第一收容腔1210被间隔地设置于支撑主体111的径向侧壁。第一收容腔1210和第二收容腔1220的形态不受到本申请的任何限制,本领域技术人员应当可以理解并知晓。
参考说明书附图之图5B和图5D,在本申请的另一个较佳实施例中,收容供电系统包括基座10和被 持续基座10持续供电的至少二个设备20。
优选地,收容供电系统包括基座10和被持续基座10持续供电的至少三个设备20。
收容供电系统包括至少一清洁设备22A、通信设备23A、充电设备24A和基座10。清洁设备22A、通信设备23A以及充电设备24A被共同地收容于基座10并且被基座10充电。清洁设备22A处理水污,基座10可在有水情况下给清洁设备22A和通信设备23A充电。
清洁设备22A被第一收容主体121的第一收容腔1210,且始终用于地面清洁,因此基座10被放置于地面,以便于清洁设备22A被放置。
通信设备23A被容置于第二收容腔1220。通信设备23A被保持于第二收容主体122的方式被第二充电端132充电。即,通信设备23A被基座10供电。
基座10进一步地具有一第三收容主体123并具有一第三收容腔1230,设备20被实施为一充电设备24A,充电设备24A被容置于第三收容腔1230。第三收容主体123和第二收容主体122被保持于基座主体111的远地端面。也就是说,第三收容主体123和第二收容主体122被形成于基座主体111的顶面。
优选地,充电设备24A被实施为一至少二个电池24B,电池24B被以第三收容主体123支撑的方式被保持于基座主体111的上方。电池24B可被直接存取,且电池24B可以被单独地给其他设备20供电。
优选地,电池24B被置入地方式被基座10充电。
更优选地,第三收容主体123设有弹出机构,以使得电池24B可被一键弹出。
可选地,至少二个电池24B可被同时一键弹出。
优选地,充电部13包括一第三充电端133,第三充电端133被电路连接于基座主体11,第三充电端133被连接于供电端130,并且第三充电端133可输出电流,第三充电端133被置于第三收容主体123,以使得被收容于第三收容主体123的电池24B可以被第三充电端133供电。即,被收容于基座10的电池24B可以被基座10供电。
清洁设备22A被实施为一洗地机22D,洗地机22D被第一收容主体121限位地保持。
参考说明书附图之图5A,基座10的第一收容主体121被垂直地向上地设置。优选地,第一收容主体121被远离基座主体111的方式被设置于基座主体111的一侧,以使得洗地机22D可以被基座10支撑,且第一供电端131被形成于基座主体111的侧壁,且适于洗地机22D的充电口直接接触充电。
洗地机22D会有部分污水保持与第一收容主体121,基座主体111的第一收容主体121承接水的情况下供电于通信设备23A和充电设备24A。
在本实施例的变形实施例中,洗地机22D可以在第一收容主体121自清洁,第一收容主体121收集洗地机22D流出的液体,以防止洗地机22D的污水污染地面。
更可选地,第一收容主体121设有对应自清洁的清洁组件,以辅助洗地机22D清洁。
参考说明书附图之图5A,当清洁设备22A的其中一个被实施为洗地机时,优选地,基座10包括一辅助清洁部14,其中辅助清洁部14被设置于第一收容腔1210,其中功能辅助清洁部14适于清洁洗地机22D的一工作头220D,进而基座10给洗地机22D清洁,而不需要人为地参与清洁。进一步地,充电设备24A被收容于第二收容腔1220,并且在洗地机22D被基座10自清洁的过程中,基座10可以持续给充电设备24A和洗地机22D充电。
值得一提的是,辅助清洁部14被形成于第一收容腔1210。进一步地第一收容主体121进一步地具有一第一底面1211和至少一第一侧壁1212,其中第一底面1211和第一侧壁1212界定第一收容腔1210,其中辅助清洁部14被形成于第一底面1211,当清洁设备21被收容于第一收容主体121的第一收容腔1210时,洗地机22D被第一底面1211支撑,并且洗地机22D被第一侧壁1212径向地限位,使得洗地机22D的工作头220D被第一底面1211贴合地支撑,当工作头220D自清洁的过程中,第一侧壁1212和第一底面1211界定的第一收容腔1210可以承载流出的水和污渍,防止自清洁设备22A流出的水和污渍沾染到地面,进一步地,辅助清洁部14被优选地设置于第一侧壁1212,进而当工作头220D被驱动地转动清洁时,辅助清洁部14可以适配于工作头自清洁。
优选地,辅助清洁部14是形成于第一底面1211的三角凸起,以使得工作头220D旋转时可以更好地 排出掉污水和污渍。
值得一提的是,辅助清洁部14还可以是自动滚刷,以配合工作头220D相对地旋转滚动,以带动工作头220D排水排污。辅助清洁部14可以被充电部13电连接,在此本领域技术人员应当可以理解并知晓。此外,辅助清洁部14还可以被实施为选自各种形态的凹槽、齿轮、自动震动元件、自动滚刷元件的类型组,在此本申请不受到任何限制。
参考说明书的附图之图6A至图6B,本申请另一个较佳实施例的供电收容系统被详细地揭露并诠释,供电收容系统的供电收容装置包括一基座10和至少二个不同类型的设备20。优选地,设备20分别是至少一清洁设备清洁设备22A和至少一个充电设备24A。进一步地,清洁设备22A是吸尘器22C的握持部221C。基座10收容且供电于清洁设备22A和充电设备24A,其中充电设备24A可被远离基座10后被用于清洁设备22A,充电设备24A优选地被适配于清洁设备22A以用于持续供电于清洁设备22A。
握持部221C被侧部收容于基座10。也就是说,第一收容主体121被形成于基座10的径向侧壁。
值得一提的是,供电收容系统的充电设备24A被实施为电池和/或电池组。充电设备24A可被基座10充电,以用于交替供电于清洁设备22A。也就是说,充电设备24A被基座10直接充电,以使得清洁设备22A可通过实时更换充电设备24A实现交替换电,进而是的清洁设备22A可以被长时间地使用,进一步地说,清洁设备22A在被要求处理较大区域的清洁过程中,清洁设备22A可以长时间地待机工作而不会因为电池容量的有限而需要暂停充电,提高了用户急需清洁表面时的清洁需要。
优选地,充电设备24A是一收容至少二个电池24B的一电池包24C,电池包24C被以第二收容主体122支撑的方式被保持于基座主体111的上方。被容置于电池包24C的电池24B可被取出后单独地给其他设备20供电。电池包24C可整体地给其他设备20供电。电池包24C可以直接被安装于清洁设备22A后,电池包24C被电连接于清洁设备22A,以供电于清洁设备22A。电池包24C包括至少一电池24B,以使得自电池包24C取出的电池可以被安装于清洁设备22A,进而以供电于清洁设备22A。
值得一提的是,被收容至少二个电池24B和电池包24C可电路连接,以扩容,以延长输出电流的容量。
进一步地,电池包24C包括一电池包充电口240C,第二充电端132被形成于第二收容主体122,其中第二充电端132可接触连接的方式被连接于电池包24C的电池包充电口240C。电池包充电口240C被形成于电池包24C的底部,以使得电池包24C收容电池24B的就可以被置于基座主体111充电。
可选地,清洁设备22A被实施为扫地机器人、除螨仪等其他清洁设备,在此,本申请不受到任何限制。
值得一提的是,清洁设备22A指的是用于表面清洁或者深度清洁的设备,其可以有其他多种功能的用途,在此本申请不限定清洁设备22A的类型。
参考说明书附图之图7A和图7B,在图6A和图6B所示的较佳实施例的其他变形实施例中,充电设备24A被实施为电池24B,两个电池24B被单独地被保持于二收容部122,电池24B被置入地方式被基座10充电。优选地,第二收容主体122设有弹出机构,以使得电池24B可被一键弹出。
可选地,至少二个电池24B可被同时一键弹出。
参考说明书附图之图7C,电池24B可被外置于吸尘器22C和其他设备20的至少其中一个,且电池24B被实时地更换。
电池24B可被外置于吸尘器22C和一体式吸尘器22C`的至少其中一个。电池24B可以通过基座10充电后实时地被插拔于吸尘器22C和一体式吸尘器22C`的至少其中一个,进而电池24B可提高设备20的运行时间,使得设备20的续航时间更久。
值得一提的是,电池24B被置于吸尘器22C和一体式吸尘器22C`的至少其中一个的方式被基座10充电,以使得电池24B藉由被置于设备24的方式被基座10充电,也可以随时被取出后用于其他用途。
参考说明书附图之图8A至图8D,本申请的另一个较佳实施例的基于基座的收容供电系统被详细地揭露并诠释,收容供电系统和图6A和图6B所示的较佳实施例不同的是,收容供电系统包括基座10和至少二个充电设备24A以及通信设备23A。通信设备23A和至少二个充电设备24A被设置于基座主体111的远地端面。也就是说,通信设备23A和至少二个充电设备24A被设置于基座主体111的顶面。
两个充电设备24A被实施为至少容置至少二个电池24B的电池包24C和至少二个电池24B。
优选地,基座10的收容部12包括第一收容主体121、第二收容主体122、一第三收容主体123、第四收容主体124以及第五收容主体125。扫地机器人22B被收容于第一收容主体121,吸尘器22C的握持部221C被收容于第二收容主体122,通信设备23A被收容于第三收容主体123,电池包24C被收容于第四收容主体124,电池24B被收容于第五收容主体125。
优选地,充电部13包括一第三充电端133,第三充电端133被电路连接于基座主体11,第三充电端133被连接于供电端130,并且第三充电端133可输出电流,以使得被收容于第三收容主体123的通信设备23A可以被第三充电端133供电。即,被收容于基座10的通信设备23A可以被基座10供电。
值得一提的是,电池24B被以支撑的方式被保持于基座主体111的上方。电池24B可被直接存取,且电池24B可以被单独地给其他设备20供电。
优选地,电池24B被置入地方式被基座10充电。
优选地,充电部13包括一第四充电端134,第四充电端134被电路连接于基座主体11,第四充电端134被置于第四收容主体124。优选地,第四充电端134被连接于供电端130,并且第四充电端134可输出电流,以使得被收容于第四收容主体124的电池包24C可以被第四充电端134供电。即,被收容于基座10的电池包24C可以被基座10供电。
值得一提的是,电池24B被以支撑的方式被保持于基座主体111的上方。电池24B可被直接存取,且电池24B可以被单独地给其他设备20供电。
优选地,电池24B被置入地方式被基座10充电。
优选地,充电部13包括一第五充电端135,第五充电端135被电路连接于基座主体11,第五充电端135被置于第五收容主体125。优选地,第五充电端135被连接于供电端130,并且第五充电端135可输出电流,以使得被收容于第五收容主体125的电池24B可以被第五充电端135供电。即,被收容于基座10的电池24B可以被基座10供电。
优选地,第四收容主体124设有弹出机构,以使得电池包24C可被一键弹出。第五收容主体125设有弹出机构,以使得电池24B可被一键弹出。
可选地,至少二个电池24B可被同时一键弹出。
通信设备23A被实施为4G/5G信号设备或者局域网信号扩大设备,以使得通信设备23A可提供局域网于具有网络信号的不同的设备20。更优选地,收容充电设备的设备20可被提供的局域网下通信。
参考说明书附图之图9A,本申请的另一个较佳实施例被详细地揭露并诠释,收容供电系统和图8A所示的较佳实施例不同的是,收容供电系统包括基座10和至少二个充电设备24A以及通信设备23A。通信设备23A和至少一个充电设备24A被设置于基座主体111的远地端面。也就是说,通信设备23A和至少一个充电设备24A被设置于基座主体111的顶面。
充电设备24A被实施为至少二个电池24B。
移动设备25A选自手机、平板电脑、娱乐设备、游戏设备、显示器、智能手环、智能手表、智能机器人的类型组,在此本申请不受任何限制。
充电设备24A可被子基座10取出的方式供电于移动设备25A或者其他清洁设备21等不同的设备中,由于充电设备24A的电连接方式可以被实施为接触电连接,进一步地充电设备24A可以通过触点接触、插电头接触供电于其他设备20,举例来说,插电头接触可以被实施为USB接口、TYPE C接口、Lightning接口。充电设备24A也可以通过非接触电连接供电于其他设备20,举例来说,非接触连接包括电磁感应、磁共振、微波电传输,本领域技术人员可以理解并知晓。
充电设备24A可以被供电于不同类型、不同功率的设备20。更优选地,充电设备24A可根据设备20的类型选定充电设备24A输出的功率和电压,以使得充电设备24A可以被供电于不同类型、不同功率的设备20。
优选地,基座10的收容部12包括第一收容主体121、第二收容主体122、一第三收容主体123、第四收容主体124以及第五收容主体125。
平板电脑25C被收容于收容部12的第一收容腔1210。收容部12的第二收容腔1220被形成于支撑主 体111的远地端部,手机25B和充电设备24A优选地以朝向远离地面的方向被保持。
电池24B被收容于第二收容主体122,第三收容主体123可以用于收容其他设备,通信设备23A被收容于第四收容主体124,一手机25B被收容于第五收容主体125。
优选地,平板电脑25C、电池24B、手机25B、通信设备23A被基座10收容地供电。进一步地,基座10可以设有预设的收容空间,而不用于供电,可以用于用户收纳物品。
优选地,充电部13包括一第五充电端135,第五充电端135被置于第五收容主体125,第五充电端135被连接于基座主体11,以使得被供电,并且第五充电端135可输出电流,使被收容于第五收容主体125的手机25B可以被第五充电端135供电。
当收容供电系统被应用于居家环境中的客厅时,收容供电系统可优选地被设置于远离地面的一定高度上,以使得用户可以直接取放被容置于收容供电系统的至少二个设备20,其中收容供电系统可以供用户舒适地拿取。当收容供电系统的基座10被放置于茶几上时,用户伸手就能够获取被容置于收容供电系统的设备20。
参考说明书附图之图9B,本较佳实施例的变形实施例被详细地揭露,收容供电系统包括基座10和至少一个充电设备24A以及通信设备23A。通信设备23A和至少一个充电设备24A被设置于基座主体111的远地端面。也就是说,通信设备23A和至少一个充电设备24A被设置于基座主体111的顶面。
可选地,充电设备24A被实施为至少二个电池包24C。
优选地,基座10的收容部12包括第一收容主体121、第二收容主体122、一第三收容主体123、第四收容主体124以及第五收容主体125。移动设备25A被收容于第一收容主体121。更优选地,一平板电脑25C被收容于第一收容主体121,电池包24C被收容于第二收容主体122,通信设备23A被收容于第三收容主体123,一手机25B被收容于第四收容主体124。
优选地,平板电脑25C、电池包24C、手机25B、通信设备23A被基座10收容地供电。即,平板电脑25C被第一充电端131供电,电池包24C被收容于第二收容主体122的方式被第二充电端132供电,通信设备23A被收容于第三收容主体123的方式被第三充电端133供电,手机25B被收容于第四收容主体124的方式被第四充电端134供电。
参考说明书附图之图9C,本较佳实施例的变形实施例中,收容供电系统包括基座10和至少二个充电设备24A以及通信设备23A。通信设备23A和至少二个充电设备24A被设置于基座主体111的远地端面。也就是说,通信设备23A和至少二个充电设备24A被设置于基座主体111的顶面。
两个充电设备24A被实施为至少容置至少二个电池24B的电池包24C和至少二个电池24B。
值得一提的是,电池24B、电池包24C分别指的是电池装置,也就是可存储电量,以输出电流的充电设备24A。在本申请中,电池24B、电池包24C的类型不受到类型上的限制。
平板电脑25C被收容于收容部12的第一收容腔1210,充电设备24A被设置于收容部12的第二收容腔1220。收容部12的第一收容腔1210和第二收容腔1220被形成于支撑主体111的远地端部,手机25B和充电设备24A优选地以朝向远离地面的方向被保持。
电池24B被收容于第二收容主体122,电池包24C被收容于第三收容主体123,通信设备23A被收容于第四收容主体124,一手机25B被收容于第五收容主体125。即,平板电脑25C被第一充电端131供电,电池24B以被收容于第二收容主体122的方式被第二充电端132供电,电池包24C以被收容于第三收容主体123的方式被第三充电端133供电,通信设备23A以被收容于第四收容主体124的方式被第四充电端134供电。手机25B以被收容于第五收容主体125被第五充电端135供电。更优选地,供电方式是电路连接。
参考附图之图10A,本申请的另一个较佳实施例的收容供电系统1被详细地揭露并诠释,和图1A和图1B所示的较佳实施例不同的是,收容供电系统的基座10包括至少一处理模块15,其中处理模块15包括至少一交互单元151、一控制单元152以及一通信单元153,其中交互单元151和通信单元153被控制单元控制,其中交互单元151获取用户的指令后发送至控制单元152和通信单元153,其中通信单元153可通信地连接于其他家庭的智能设备21A,如一空调21B、一电视21C等不同的家庭所需的设备20,其中当用户发出控制不同设备20的指令时,基座10的交互单元151接收到用户的控制指令后发送给控制单元152, 其中控制单元152处理分析得到一调控设备20的一调控指令并发送至通信单元153调控设备20的调控指令,以使得通信单元153被可通信地连接于不同的设备20的一通信部(图中未标出),其中设备20被调控至用户所需的条件。
处理模块15被电路连接于基座主体11和充电部13。处理模块15被电路连接于供电部112和支撑主体111。处理模块15通信地连接于充电部13的各个充电端,以使得处理模块15可通信设备20的设备相关信息和/或指令。在充电端的数量不受到本申请的限制,可选地,充电部13可以包括第一充电端131、第二充电端132、第三充电端133、第四充电端134、第五充电端135以及更多的充电端。第一充电端131、第二充电端132、第三充电端133、第四充电端134、第五充电端135可分别电路连接于处理模块15的控制单元152以及通信单元153。
参考说明书附图之图11A,用户处于客厅空间时,用户发出调节空调21B到一指定温度(如26℃)的语音指令,基座10的处理模块的交互单元151接收到语音指令后发送给控制单元152,控制单元152处理分析以得到调节空调21B到指定温度(如26℃),通信单元153接收到控制单元152的调节空调21B到指定温度(如26℃)的调控指令后发送给空调21B,以使得空调21B调节至指定温度(如26℃)。
参考说明书附图之图11B,用户处于客厅空间时,用户发出播放一影片的语音指令,基座10的处理模块15的交互单元151接收到语音指令后发送给控制单元152,控制单元152处理分析以得到控制电视21C播放影片的调控指令,通信单元153接收到控制单元152的控制电视21C播放影片的调控指令后发送给电视21C,以使得电视21C播放影片。
用户处于厨房空间时,用户发出播放一音乐的语音指令,基座10的处理模块15的交互单元151接收到语音指令后发送给控制单元152,控制单元152处理分析以得到直接播放音乐的交互指令并处理播放音乐,通过交互单元151将播放音乐的电信号转化为声信号,以使得基座10播放音乐。
参考说明书附图之图11C,用户处于客厅空间时,用户发出清洁特定区域的语音指令,基座10的处理模块15的交互单元151接收到语音指令后发送给控制单元152,控制单元152处理分析以得到控制扫地机器人22B清洁特定区域(如次卧)的调控指令,通信单元153接收到控制单元152的控制扫地机器人22B清洁特定区域(如次卧)的调控指令后发送给扫地机器人22B,以使得扫地机器人22B清洁特定区域(如次卧)。
参考说明书附图之图11D,用户处于客厅空间时,用户发出清洁全屋的语音指令,基座10的处理模块15的交互单元151接收到语音指令后发送给控制单元152,控制单元152处理分析以得到控制扫地机器人22B清洁全屋的调控指令,通信单元153接收到控制单元152的控制扫地机器人22B清洁全屋的调控指令后发送给扫地机器人22B,以使得扫地机器人22B清洁全屋。
收容供电系统可被用于智能地服务用户。进一步地,反馈可以以图像、文字、语言的方式提供于用户。
用户处于厨房空间时,用户发出购买一物品的语音指令,如购买扫地机器人的滤芯一组,基座10的处理模块15的交互单元151即受到语音指令后发送给控制单元152,控制单元152处理分析以得到一购物指令,并将购物车的购买信息和一识别信息反馈至交互单元151,其中交互单元151发送接收到用户的授权的识别码后发送至处理模块15以购买完成,交互单元151发送“下单成功,送货时间为***,订单详情请使用移动设备查阅”至用户。
值得一提的是,交互单元151可以将电信号转化为声信号、光信号以及其他交互信号,在此本申请不受到任何限制。交互单元151可以主动获取语音、光、指纹等信息,在此不受到任何限制,本领域技术人员应当可以理解并知晓。
用户可以通过基座10通信于其他移动设备,以实现用户之间的沟通需求。用户A处于厨房空间,用户C处于阳台空间时,用户A发出“发微信给C让他过来”的语音指令至基座10,基座10的处理模块15的交互单元151接收到语音指令后发送给控制单元152,控制单元152处理分析以得到发微信给C让他过来的调控指令,通信单元153接收到控制单元152的发微信给C让他过来的调控指令后发送给用户C的移动设备,用户C可以及时去往用户A的地址。
用户可以通过基座10控制特定家电,以使得用户可以更加舒适地享受。用户A处于厨房空间,用户 A发出调节主卧空调21B到一指定温度(如26℃)的语音指令,基座10将调节主卧空调21B到一指定温度(如26℃)的调控指令后发送给主卧的空调,用户A可以享受一进入主卧就有指定的温度。
用户可以通过基座10控制特定家电,以使得用户可以更加舒适地享受。用户A处于客厅空间,用户A发出控制烹饪设备烹饪一菜肴的语音指令,基座10将控制烹饪设备烹饪一菜肴的调控指令(目标菜品:红烧肉,烹饪时间xxx,烹饪时长xxx)后发送给厨房的烹饪设备,以使得烹饪设备自动地烹饪。
参考说明书附图之图12A,图10A所示的较佳实施例的变形实施例的收容供电系统被详细地揭露并诠释,和图10A所示的较佳实施例不同的是,基座10的处理模块15可以被设置于设备20。设备20可通信地连接于其他设备20以及交互于用户。设备20具有一设备处理模块2010,设备处理模块2010可通信地连接于其他设备20以及交互于用户。
设备20的设备处理模块2010可通信地连接于其他的设备20,以控制其他的设备20。
参考说明书附图之图12B,本申请的图10A所示的较佳实施例的变形实施例的收容供电系统被详细地揭露并诠释,和图10A所示的较佳实施例不同的是,基座10的处理模块15可以被设置于设备20。设备20可通信地连接于其他设备20以及交互于用户。设备20具有一设备处理模块2010,设备处理模块2010可通信地连接于其他设备20以及交互于用户。
进一步地,基座10收容供电多个设备20,其中设备20的至少其中一个可通信于云端30和/或交互于用户。设备20的至少二个之间可通信,使得设备20可反馈至少一设备相关信息201和/或获取用户的至少一指令202。设备20能够更好地服务于用户,以使得用户可即使地了解相关信息。
优选地,设备20被实施为充电设备24A,充电设备24A可通信于云端30和/或交互于用户。更优选地,充电设备24A可通信地连接于其他设备20。
收容供电系统包括基座10和至少二个充电设备24A以及通信设备23A。通信设备23A和至少二个充电设备24A被设置于基座主体111的远地端面。也就是说,通信设备23A和至少二个充电设备24A被设置于基座主体111的顶面。
两个充电设备24A被实施为至少容置至少二个电池24B的电池包24C和至少二个电池24B。
优选地,基座10的收容部12包括第一收容主体121、第二收容主体122、一第三收容主体123、第四收容主体124以及第五收容主体125。扫地机器人22B被收容于第一收容主体121,吸尘器22C的握持部221C被收容于第二收容主体122,通信设备23A被收容于第三收容主体123,电池包24C被收容于第四收容主体124,电池24B分别被收容于第五收容主体125。
更优选地,扫地机器人22B被第一充电端131供电,吸尘器22C的握持部221C以被收容于第二收容主体122的方式被第二充电端132供电,通信设备23A以被收容于第三收容主体123的方式被第三充电端133供电,电池包24C以被收容于第四收容主体124的方式被第四充电端134供电。电池24B以被收容于第五收容主体125被第五充电端135供电。更优选地,供电方式是电路连接。
优选地,电池24B可通信地连接于其他设备20。当电池24B被置于不同的设备20时,电池24B可接收调控命令于设备20,继而设备20可被智能地控制。进一步地,家庭内部的设备20可通过适配电池24B可通信地连接,以构成一家庭控制系统。
电池24B具有一电池处理模块241B,电池处理模块241B可通信地连接于其他设备20并且交互于用户。多个实施例的实施方式是可以自由组合的,本申请在此方面不受任何限制。
参考说明书附图之图12C,图10A所示的较佳实施例的收容供电系统的另一个变形实施例的收容供电系统被详细地揭露并诠释,和图10A所示的第一个变形实施例不同的是,具有通信功能的设备20被实施为收容电池24B的电池包24C,电池包24C被实施为一移动设备。通过电池包24C不仅能够通信于不同的设备20,还可以交互于用户。
电池包24C具有一电池包处理模块241C,其中电池包处理模块241C可通信地连接于其他设备20并且交互于用户。值得一提的是,通信方式在本申请中不受任何限制,本领域技术人员应当理解并知晓。
在本实施例的其他变形实施例中,电池包24C还可以通过电池24B控制藉由电池24B充电的设备20,在此设备20的类型不受任何限制。电池包24C可作为智能控制设备更加便利用户的生活。
参考说明书附图之图12D,图10A所示的较佳实施例收容至少二的另一个变形实施例的收容供电系统被详细地揭露并诠释,和图10A所示的较佳实施例的第一个变形实施例不同的是,具有通信功能的设备20被实施为通信设备23A,通信设备23A被实施为一移动设备。通过通信设备23A不仅能够通信于不同的设备20,还可以交互于用户。
参考说明书附图之图12E,本申请的图10A所示的较佳实施例的另一个变形实施例的收容供电系统被详细地揭露并诠释,和图10A所示的较佳实施例的第一个变形实施例不同的是,具有通信功能的设备20被实施为清洁设备22A,清洁设备22A可通信地连接于不同的设备20,清洁设备22A被实施为一吸尘器22C,其中吸尘器的清洁处理模块221A被实施为一吸尘处理模块223C。吸尘处理模块223C优选地不仅能够通信于不同的设备20,还可以交互于用户。
值得一提的是,清洁设备22A被实施为其他设备,举例来说,扫地机器人22B、洗地机22D,在此本申请不受到任何限制。也就是说,清洁处理模块221A可以被集成于扫地机器人22B、洗地机22D、吸尘器22C。对于基座10收容供电于至少二个清洁设备22A,2个以上的清洁设备22A设有清洁处理模块221A,举例俩说,扫地机器人22B具有至少一扫地处理模块,洗地机22D具有一洗地处理模块,扫地机器人22B的扫地处理模块和洗地机22D的洗地处理模块可通信地导通,以使得至少二个清洁设备22A可合作地清洁至少一区域。
清洁设备22A可通信地连接于其他设备20,清洁设备22A可导通地连接于其他设备20和/或基座22。更优选地,清洁设备22A可通信地连接于云端30,以使得清洁设备22A可发送至少一设备相关信息201和/或接收用户的至少一指令202。
进一步地,家庭内部的设备20可通过清洁设备22A的清洁处理模块221A可通信地连接,以构成一家庭控制系统。
参考说明书附图之图13A,本申请的另一较佳实施例的收容供电系统被详细地揭露并诠释,和第图10A所示的较佳实施例不同是,收容供电系统可通信地连接于其他系统、云端30和/或移动设备25A的至少其中一个;或者收容供电系统可交互于用户。
进一步地,收容供电系统的基座10、智能设备21A、清洁设备22A、通信设备23A、充电设备24A以及移动设备25A的至少其中一个通信地连接于其他系统、云端30和/或移动设备25A的至少其中一个;或者收容供电系统的基座10、智能设备21A、清洁设备22A、通信设备23A、充电设备24A、移动设备25A的至少其中一个可交互于用户。
用户可以藉由收容供电系统的至少其中一个设备20和/或基座10获取设备相关信息201,此外,用户发出的指令202被收容供电系统的至少其中一个设备20和/或基座10接收。进一步地,收容供电系统具有一处理模块,其中处理模块被集成于组合于至少一设备20和/或基座10,其中处理模块可通信地导通于设备20的至少其中一个和/或交互于用户。
值得一提的是,设备20的类型不受到本申请的限制,收容供电系统还可以设备20以被收容于基座10的方式被基座10供电。
参考说明书附图之图13A,移动设备25A获取光、声、电等信息,进一步地,收容供电系统的基座10和/或设备20获取用户的指令。收容供电系统的基座10和/或设备20发送指令至云端30。
优选地,收容供电系统的清洁设备22A、通信设备23A、充电设备24A以及基座10的至少其中一个可通信地连接于云端30,以获取云端30发送的指令,以使得收容供电系统的洗地机22D、通信设备23A、充电设备24A以及基座10的至少其中一个获取到的指令202后执行指令202和/或反馈至少一设备相关信息201。
值得一提的是,设备相关信息201包括且不限于一指令相关信息、一供电相关信息以及一设备状况信息,进一步的,指令相关信息包括且不限于指令完成度信息、指令操作信息以及协调其他设备相关信息,供电相关信息包括且不限于电量信息和电池损耗,设备状况信息包括且不限于设备运行状态和位置信息、导航信息。
设备相关信息201可以是收容供电系统的任意一设备20和/或基座10的相关信息,本申请在此方面不 受到任何限制。
更优选地,设备相关信息201包括且不限于电量剩余信息、清洁路径、未清洁区域、清洁信息、清洁模式、交互信息。当设备20是移动设备25A时,移动设备25A的设备相关信息201包括且不限于电量剩余信息、播放选定/切换信息、通信信息、交互信息。当设备20是充电设备24时,充电设备24的设备相关信息201包括且不限于电量剩余信息、寻电路径、供电数据信息、被供电的设备20的设备相关信息201。烹饪设备27的设备相关信息201包括且不限于电量剩余信息、烹饪信息、操作信息、交互信息、烹饪购买信息。
指令202可以是对收容供电系统的任意一设备20和/或基座10的指令202,本申请在此方面不受到任何限制。
优选地,指令202可以被实施为操作指令,也可以被实施为充电指令,在此本申请不受任何限制。进一步地,操作指令可以是预约、移动至特定地点、选定操作类型进行操作、停止、终止、开始。充电指令可以被实施为充电、供电、开启自动充电,在此本申请不受到任何限制。
基座10和/或设备20通信地获取用户的指令202,以使得收容供电系统的清洁设备22A、通信设备23A、充电设备24A以及基座10的至少其中一个执行指令。
基座10可获取其他设备20的设备相关信息201,以发送给云端30和/或用户的移动设备25A,以使得用户可以方便地查阅。
基座10上传云端30的方式以实现远距离的无线通信。基座10也可以采用短距离通信的方式实现信息地发送,在此本申请不受任何限制。基座10短距离通信的方式选自蓝牙、NFC、超宽带(UWB)、60GHz无线通信、WIFI、ZigBee的类型组的至少其中一个。
参考说明书附图之图13B,本申请的图13A所示的较佳实施例的变形实施例的收容供电系统被详细地揭露并诠释,和图13A所示的上述较佳实施例不同的是,基座10包括一处理模块15,其中基座10的处理模块15可通信地连接于其他设备20。优选地,基座10的处理模块15可通信地连接于设备20。设备20的类型不受到本申请的限制,设备20以被收容于基座10的方式被基座10供电。
优选地,基座10的处理模块15可通信地连接于设备20,且设备的类型选自智能设备21A、清洁设备22A、通信设备23A、充电设备24A以及移动设备25A的至少其中一个。基座10的处理模块15还可以通信地连接于云端30,其中云端30存储和提取信息。
优选地,清洁设备22A被实施为洗地机22D,其中清洁设备22A还可以被实施为其他设备,如扫地机器人22B、吸尘器22C、一体式的吸尘器22C`、除螨仪等,在此本申请不受到任何限制。
基座10的处理模块15可通信地连接于洗地机22D、通信设备23A、充电设备24A以及移动设备25A,其中处理模块15还可以通信地连接于云端30,其中云端30获取、存储以及发送信息。
移动设备25A获取光、声、电等信息,进一步地,移动设备25A获取用户的指令。移动设备25A发送指令至云端30,收容供电系统的基座10可通信地连接于云端30,以获取云端30发送的指令,以使得收容供电系统的洗地机22D、通信设备23A、充电设备24A以及基座10的至少其中一个接收到基座10的处理模块15发送的指令202。
优选地,基座10可通信地连接于移动设备25A,移动设备25A获取用户的指令后发送给基座10,以使得收容供电系统获取用户的指令。
优选地,基座10可交互于用户,其中基座10可获取用户的声、动作、图像以及其他信息后转变成电信号,以获取用户的指令。基座10获取用户的指令后通信于收容供电系统的其他设备20,以根据用户的指令执行命令。
基座10以获取云端30发送的指令202,以使得收容供电系统的洗地机22D、通信设备23A、充电设备24A以及基座10的至少其中一个执行指令。
基座10可获取其他设备20的设备相关信息201,以发送给云端30和/或用户的移动设备25A,以使得用户可以方便地查阅。
基座10上传云端30的方式以实现远距离的无线通信。基座10也可以采用短距离通信的方式实现信 息地发送,在此本申请不受任何限制。基座10短距离通信的方式选自蓝牙、NFC、超宽带(UWB)、60GHz无线通信、WIFI、ZigBee的类型组的至少其中一个。参考说明书附图之图13C,在图13A所示的较佳实施例的另一个变形实施例中,收容供电系统可通信地连接于外部设备20和/或交互于用户,和图13A所示的较佳实施例不同的是,收容供电系统的设备20可导通于外部的清洁设备22A和/或交互于用户。和上述变形实施例不同的是,收容供电系统中的清洁设备22A反馈收容供电系统的设备相关信息201,进一步地,清洁设备22A通信于其他系统和/或交互于用户。
清洁设备22A还可以通信于移动设备25A,以供用户查看。
优选地,收容供电系统的设备20包括至少一设备处理模块,以用于通信,其中收容供电系统的清洁设备22A可通信于基座10、智能设备21A、通信设备23A、充电设备24A以及移动设备25A的至少其中一个。
优选地,清洁设备22A被实施为洗地机22D,洗地机22D可通信地连接于云端30和/或交互于用户。洗地机22D发送洗地机22D的设备相关信息201至云端30或者移动设备25A,以供用户获取设备相关信息201,此外,洗地机22D可获取用户的指令202。
指令202的类型包括且不限于开机、关机、显示设备相关信息201、自清洁、开启通信模式、关闭通信模式等,在此本申请不受任何限制。
设备相关信息201包括且不限于一指令相关信息、一供电相关信息以及一设备状况信息,进一步的,指令相关信息包括且不限于指令完成度信息、指令操作信息以及协调其他设备相关信息,供电相关信息包括且不限于电量信息和电池损耗,设备状况信息包括且不限于设备运行状态和位置信息、导航信息。
更优选地,设备相关信息201包括且不限于电量剩余信息、清洁路径、未清洁区域、清洁信息、清洁模式、交互信息。当设备20是移动设备25A时,移动设备25A的设备相关信息201包括且不限于电量剩余信息、播放选定/切换信息、通信信息、交互信息。当设备20是充电设备24时,充电设备24的设备相关信息201包括且不限于电量剩余信息、寻电路径、供电数据信息、被供电的设备20的设备相关信息201。烹饪设备27的设备相关信息201包括且不限于电量剩余信息、烹饪信息、操作信息、交互信息、烹饪购买信息。
在本申请的另一个变形实施例中,清洁设备22A的数量是2个以上,清洁设备22A被实施为扫地机器人22B、吸尘器22C、一体式吸尘器22C`、洗地机22D的至少其中二个。
优选地,清洁设备22A的其中一个是半自动清洁设备,如吸尘器、洗地机等,当另一个清洁设备22A被实施为则洗地机22D或吸尘器22C,洗地机22D或吸尘器22C根据处理的表面的相关信息、目标清洁区域、清洁目标的未清洁区域以及指引路线发送至收容供电系统的其他清洁设备22A和/或设备20。
优选地,清洁设备22A的另一个是全自动清洁设备,如扫地机器人22B,则扫地机器人22B获取洗地机22D或吸尘器22C处理的表面的相关信息、目标清洁区域、清洁目标的未清洁区域以及指引路线。扫地机器人22B自动被指引至清洁目标区域以二次清洁。
清洁设备22的类型不受任何限制。清洁设备22A可以被实施为全部是全自动清洁设备,也可以被实施为全部是本自动清洁设备,在此本申请不受到任何限制。优选地,清洁设备22A的其中一个发送其清洁的未清洁区域至另一个清洁设备22A,另一个清洁设备22A获取清洁设备22的其中一个未清洁区域后可自动地进行二次清洁。
进一步地,两个清洁设备22A可以根据另一个清洁设备22A发送的设备相关信息而进行清洁设备22A之间的二次清洁,不需要用户的主动判断和思考。以更好地服务于用户,减轻用户的清洁压力。
参考说明书附图之图13D,在图13A所示的较佳实施例的另一个变形实施例中,收容供电系统可通信地连接于外部设备20和/或交互于用户,和图13A所示的较佳实施例不同的是,收容供电系统的设备20可导通于外部的移动设备25A和/或交互于用户。
移动设备25A获取光、声、电等信息,进一步地,移动设备25A获取用户的指令。移动设备25A发送指令至云端30,收容供电系统的基座10可通信地连接于云端30,以获取云端30发送的指令。
优选地,收容供电系统中的移动设备25A反馈收容供电系统的设备相关信息201,进一步地,移动设 备25A通信于外部的移动设备25A和/或交互于用户,收容供电系统的移动设备25A可通信于清洁设备22A、智能设备21A、通信设备23A、充电设备24A以及其他的移动设备25A的至少其中一个。
移动设备25A可通信于云端30,以使得移动设备25A可接收到云端30的相关信息。移动设备25A获取的指令202和/或设备相关信息201可发送于云端30,使得云端30不仅可接收和存储收容供电系统的设备相关信息201和指令202,还可以接收到其他系统的系统相关信息,在此本申请不受到任何限制。
移动设备25A的移动处理模块251A可通信于其他设备20,不仅可以通过云端30还可以是近距离无线通信和/或接触通信,在此本申请不受到任何限制。
指令202的类型包括且不限于开机、关机、显示设备相关信息201、自清洁、开启通信模式、关闭通信模式等,在此本申请不受任何限制。
指令202不仅包括对移动设备25A的指令202,指令202可以包括且不限于对于收容供电系统的清洁设备22A、智能设备21A、通信设备23A、充电设备24A以及其他的移动设备25A的指令202。设备相关信息201不仅是移动设备25A,还包括收容供电系统的其他设备20。
设备相关信息201包括且不限于一指令相关信息、一供电相关信息以及一设备状况信息,进一步的,指令相关信息包括且不限于指令完成度信息、指令操作信息以及协调其他设备相关信息,供电相关信息包括且不限于电量信息和电池损耗,设备状况信息包括且不限于设备运行状态和位置信息、导航信息。
更优选地,设备相关信息201包括且不限于电量剩余信息、清洁路径、未清洁区域、清洁信息、清洁模式、交互信息。当设备20是移动设备25时,移动设备25的设备相关信息201包括且不限于电量剩余信息、播放选定/切换信息、通信信息、交互信息。当设备20是充电设备24时,充电设备24的设备相关信息201包括且不限于电量剩余信息、寻电路径、供电数据信息、被供电的设备20的设备相关信息201。烹饪设备27的设备相关信息201包括且不限于电量剩余信息、烹饪信息、操作信息、交互信息、烹饪购买信息。
参考说明书附图之图13E,在图13A所示的较佳实施例的另一个变形实施例中,收容供电系统可通信地导通于外部设备和/或交互于用户,和图13A所示的较佳实施例不同的是,收容供电系统中的设备20反馈收容供电系统的设备相关信息201和/或接收到用户的指令202。
在本申请的较佳实施例中,充电设备24A反馈收容供电系统的设备相关信息201,进一步地,充电设备24A通信于外部的移动设备25A和/或交互于用户。
充电设备24A具有一供电处理模块241A,其中供电处理模块241A处理分析获取的指令202和/或设备相关信息201,充电设备24A的供电处理模块241,充电设备24A的供电处理模块241A通信地连接于收容供电系统的基座10、清洁设备22A、通信设备23A的至少其中一个。
充电设备24A以被电路连接于其他设备20的方式控制设备20做功。充电设备24A的供电处理模块241A获取用户的一控制指令后,充电设备24A控制被电路连接的设备20做功。
根据设备20的类型,设备20做功的方式不受任何限制,设备20做功可以将电能转化为机械能,也可以电能转化为热能等,在此不收任何限制。
优选地,供电处理模块241A可通信地连接于云端30,以使得云端30可实时地存储和通信指令202和/或设备相关信息201。
参考说明书附图之图13F,在图13A所示的较佳实施例的另一个变形实施例中,收容供电系统可通信地导通于外部设备和/或交互于用户,和图13A所示的上述实施例不同的是,充电设备24A被实施为一持电装置24D,其中持电装置24D是一可通信的智能的可收容至少二个电池24B的电池包24C,其中持电装置24D不仅可以用于供电于其他设备20,还可以作为一智能机器人交互于用户,其中持电装置24D和附图之图12C的电池包24C实质相同,持电装置24D可通信于其他设备20并且交互于用户,电池包24C可通信于其他设备20并且交互于用户。
由于持电装置24D始终被基座10供电,持电装置24D可实时地通信于其他设备20和/或交互于用户,便于用户直接控制家庭的其他设备20和/或交互得到其他信息。
参考说明书附图之图13G,图13A所示的较佳实施例的另一个变形实施例的收容供电系统被详细地揭 露并诠释,和图13A所示的较佳实施例的第一个变形实施例不同的是,具有通信功能的设备20被实施为通信设备23A,通信设备23A可通信地连接于不同的设备20,电池包24C被实施为一移动设备。通过设备24C不仅能够通信于不同的设备20,还可以交互于用户。
通信设备23A可被实施为4G/5G移动信号设备和/或局域网信号扩大设备,通信设备23A可提供一定距离内的设备20提供局域网信号。更可选地,通信设备23A自带电池,使得通信设备23A可被移动地移动至其他区域用于提供局域网。
通信设备23A具有一通信处理模块231A,其中通信处理模块231A可通信地连接于其他设备20并且交互于用户。参考说明书附图之图14,本申请的另一个较佳实施例被详细地揭露并诠释,其中信息中转供电方法,包括以下步骤:
(a)藉由至少一中转基座10,供电于至少一设备20;和
(b)至少一设备20、中转基座10、云端30的至少其中二个被通信地连接。
设备20可以被实施为一清洁设备22、一通信设备23、一供电设备24、一移动设备25、一行走设备26或者一烹饪设备27。
优选地,信息中转供电方法的步骤(a)包括以下步骤:
(a.1)藉由中转基座10,以收容的方式供电于至少一设备20;和
(a.2)藉由至少一供电设备24,以换电的方式供电于至少一设备20。
优选地,其中信息中转供电方法的步骤(a)包括以下步骤:
(a.3)藉由至少一供电设备24,自其中一个设备20取出供电设备24的方式换电于另一个设备20。
值得一提的是,设备20的数量选自1、2、3、4、5、6、7、8、9、10、11、12、13、14、15、16、17、18的数量组,在此,本申请不受任何限制。
在信息中转供电方法的步骤(a.1)中,收容的方式可以被实施为支撑收容、挂持收容、贴合收容、容置收容的不同实施方式。换句话说,在此收容不只是被容置于其中收纳意思,在本申请中收容仅仅是装置和供电设备24被收容于一处,两者不需要一定有相互受力的关系。
参考说明书附图之图15,在信息中转供电方法的步骤(a.1)中,供电可被实施为以有线接触的方式电路连接。有线供电的连接方式进一步地被实施为触点接触,举例来说,USB接口、TYPE C接口、Lightning接口的至少其中一个。
在信息中转供电方法的步骤(a.1)中,供电可被实施为以无线接触的方式电路连接。无线供电的连接方式进一步地被实施为电磁感应、磁共振、微波电传输的至少其中一个,本领域技术人员可以理解并知晓。
信息中转供电方法的步骤(a.2)中,供电设备24的数量不受本申请的限制,本领域技术人员应当可以理解设备20被供电设备24的数量选自1、2、3、4、5、6、7的数量组。
供电设备24可以多次充放电,当供电设备24被置入设备20后,设备20和供电设备24电路连接。进一步地,供电设备24和设备20的电路连接可以被实施为无线电路连接,也可以被实施为有线电路连接,在此本申请不受任何限制。进一步地,设备20和供电设备24可无线通信连接和/或有线通信连接。
优选地,信息中转供电方法的步骤(a.2)中,供电设备24适于不同类型的设备20,设备20的类型选自组合一清洁设备22、一智能设备28、一通信设备23、一烹饪设备27的至少其中一个。举例来说,清洁设备22包括且不限于扫地机器人、吸尘器、洗地机的至少其中一个。智能设备28包括且不限于手机、ipad、游戏机、AR设备、娱乐电动设备的至少其中一个。举例来说,通信设备23包括且不限于中继路由器、无线路由器、移动路由器的至少其中一个。烹饪设备27可以被实施为自动炒菜机、烘焙机、保温壶、烧水壶的至少其中一个。
参考说明书附图之图16A,信息中转供电方法的步骤(b)之后包括以下步骤:
(c)获取设备20的设备相关信息201。
信息中转供电方法的步骤(c)发生于步骤(b)。值得一提的是,设备相关信息201包括且不限于一指令相关信息2011、一供电相关信息2012以及一设备状况信息2013。举例来说,当设备20是清洁设备22时,设备相关信息201包括且不限于电量剩余信息、清洁路径、未清洁区域、清洁信息、清洁模式、交 互信息。当设备20是智能设备28时,智能设备28的设备相关信息201包括且不限于电量剩余信息、播放选定/切换信息、通信信息、交互信息。当设备20是供电设备24时,供电设备24的设备相关信息201包括且不限于电量剩余信息、寻电路径、供电数据信息、被供电的设备20的设备相关信息201。烹饪设备27的设备相关信息201包括且不限于电量剩余信息、烹饪信息、操作信息、交互信息、烹饪购买信息。
参考说明书附图之图16C至图16E,信息中转供电方法的步骤(c)包括以下步骤:
(c.1)藉由以收容的方式供电于至少一设备20的中转基座10,以直接通信连接的方式获取设备20的设备相关信息201;或
(c.2)藉由被电路连接于设备20的供电设备24,获取设备20的设备相关信息201。
优选地,信息中转供电方法的步骤(c.1)发生在信息中转供电方法的步骤(a.1)。信息中转供电方法的步骤(c.2)发生于步骤(a.2)或步骤(a.3)的过程中。
参考说明书附图之图16C至图16E,信息中转供电方法的步骤(c.2)包括以下步骤:
(c.2.1)藉由供电设备24被换电至中转基座10,获取设备20的设备相关信息201;或
(c.2.2)藉由供电设备24通信地连接于中转基座10,获取设备20的设备相关信息201。
进一步地,信息中转供电方法的步骤(c.2.1)包括以下步骤:
(c.2.1.1)藉由供电设备24被电路连接于设备20时,通信地获取设备20的设备相关信息201;和
(c.2.1.2)藉由供电设备24被电路连接于一中转基座10时,通信地发送设备20的设备相关信息201至中转基座10。
优选地,信息中转供电方法的步骤(c)包括以下步骤:
(c.3)藉由两个设备20,相互通信设备20的设备相关信息201。
参考说明书附图之图17A,信息中转供电方法的步骤(c.3)包括以下步骤:
(c.3.1)藉由两个设备20和具有通信模块的供电设备24,相互通信设备20的设备相关信息201。
可选地,信息中转供电方法的步骤(c.3.1)包括以下步骤:
(c.3.1.1)藉由分别被电路连接于每个设备20的供电设备24,实时地通信设备20的设备相关信息201。
参考说明书附图之图17B,信息中转供电方法的步骤(c.3)包括以下步骤:
(c.3.2)藉由两个设备20被收容于具有通信模块的中转基座10,相互通信设备20的设备相关信息201。
参考说明书附图之图17G,信息中转供电方法的步骤(c.3.2)包括以下步骤:
(c.3.2.1)藉由至少其中一个设备20被收容于具有通信模块的中转基座10,获取的另一个设备20的设备相关信息201以直接接触的方式发送设备20。
参考说明书附图之图18,信息中转供电方法的步骤(c.3.2.1)还可以被实施为步骤(c.3.2.1`),步骤(c.3.2.1`)包括以下步骤:
(c.3.2.1`)藉由中转基座10,获取的一个设备20的设备相关信息201以无线通信的方式发送至另一个设备20。
信息中转供电方法的步骤(c.3.2)中,藉由中转基座10,以无线通信的方式获取至少其中一个设备20的设备相关信息201。
可选地,信息中转供电方法的步骤(c.3.2)中,藉由中转基座10,以直接接触的方式获取至少其中一个设备20的设备相关信息201。
参考说明书附图之图17A,信息中转供电方法的步骤(c.3)包括以下步骤:
(c.3.3)藉由两个设备20和云端30,相互通信设备20的设备相关信息201。
进一步地,信息中转供电方法的步骤(c.3.3)中,其中一个设备20具有通信模块,上传设备相关信息201至云端30;和
藉由云端30,发送设备20的设备相关信息201至另一个设备20。
值得一提的是,设备相关信息201优选地是设备处理信息,被处理物的处理状态和处理需求。
更优选地,设备相关信息201自其中一个设备20被同林地连接于其中一个充电设备
值得一提的是,当设备20的其中一个是清洁设备22时,清洁设备22发送的设备相关信息201是目 标清洁区域、清洁目标的未清洁区域、清洁状况、被处理的表面的相关信息以及指引路线。
另一个设备20被实施为清洁设备22时,如果设备20是全自动清洁设备,如扫地机器人,则设备20获取被处理的表面的相关信息、目标清洁区域、清洁目标的未清洁区域以及指引路线。设备20自动被指引地清洁目标区域。
当另一个设备20被实施为清洁设备22时,如果设备20是半自动清洁设备,如吸尘器、洗地机等,则设备20获取被处理的表面的相关信息、目标清洁区域、清洁目标的未清洁区域以及指引路线,设备20在人的驱动下并且在设备20发出的指引下,设备20被带动至未清洁目标区域。
当另一个设备20被实施为智能设备28时,智能设备28获取设备相关信息201后,以可呈现设备相关信息201的方式直接交互于用户。智能设备28直接获取用户的指令202的方式交互于用户。
信息中转供电方法的步骤(c.2)之前包括以下步骤:
(c.2.0`)藉由中转基座10的通信设备23,提供局域网。
参考说明书附图之图18,信息中转供电方法的步骤(c.2.1.2)可以被实施为以下步骤:
(c.2.1.2.1`)藉由中转基座10的通信设备23,提供局域网;和
(c.2.1.2.2`)藉由可通信的中转基座10的基座主体11和可通信的供电设备24,发送设备20的设备相关信息201至基座主体11。
在本申请的上述较佳实施例中,参考说明书附图之图19A和图19B,信息中转供电方法的步骤(b)之后包括以下步骤:
(d)发送一指令202至设备20,以控制设备20运作。
信息中转供电方法的步骤(d)发生于步骤(b)。信息中转供电方法的步骤(c)发生于步骤(b)。信息中转供电方法的步骤(d)和步骤(c)可以同时发生也可以先后发生,在此步骤(d)和步骤(c)的顺序不受到任何限制。信息中转供电方法的步骤(d)和步骤(c)可以选定其中一个发生,也可以不发生。信息中转供电方法的步骤(d)和步骤(c)可独立地被发生。
在本申请的较佳实施例中,参考附图之图19B,信息中转供电方法的步骤(d)之前包括以下步骤:
(d.0)藉由中转基座10的通信设备23,提供局域网。
值得一提的是,信息中转供电方法的步骤(d.0`)的中转基座10、设备20都设有4G/5G通信模块。
参考说明书附图之图19C,信息中转供电方法的步骤(d)包括以下步骤:
(d.1)藉由通信于至少一设备20的中转基座10,发送指令202至设备20。
参考说明书附图之图19F,信息中转供电方法的步骤(d)包括以下步骤:
(d.2)藉由供电设备24的通信,发送指令202至设备20。
信息中转供电方法的步骤(d.1)和步骤(d.2)被选定至少其中一个发生。
优选地,指令202可以被实施为操作指令,也可以被实施为充电指令,在此本申请不受任何限制。进一步地,操作指令可以是预约、移动至特定地点、选定操作类型进行操作、停止、终止、开始。充电指令可以被实施为充电、供电、开启自动充电,在此本申请不受到任何限制。
优选地,信息中转供电方法的步骤(d.1)发生在信息中转供电方法的步骤(a.1)。信息中转供电方法的步骤(d.2)发生于步骤(a.2)的过程中。
信息中转供电方法的步骤(d.1)包括以下步骤:
(d.1.1)藉由可通信的中转基座10和具有通信模块的至少一设备20,在接收到指令202后,发送指令202至设备20。
信息中转供电方法的步骤(d.1)包括以下步骤:
(d.1.2)藉由可通信的中转基座10和被电路连接于至少一设备20的至少一供电设备24,藉由在中转基座10接收到指令202后,发送至供电设备24;藉由可通信的供电设备24,发送指令202至被电路连接于供电设备24的设备20。
信息中转供电方法的步骤(d.1.1)和步骤(d.1.2)被选定至少其中一个发生。
优选地,信息中转供电方法的步骤(d.1.1)包括以下步骤:
(d.1.1.1)藉由以收容的方式电路连接中转基座10和至少一设备20,发送指令202至设备20;或
(d.1.1.2)藉由可通信的中转基座10和具有通信模块的至少一设备20,在无线地接收到指令202后,无线地发送指令202至设备20。
参考说明书附图之图19E,信息中转供电方法的步骤(d.2)包括以下步骤:
(d.2.1)在云端30发送指令202至供电设备24后,藉由供电设备24,通信地发送指令202至设备20;和
(d.2.2)在云端30发送指令202至供电设备24后,藉由通信地连接于被电路连接于设备20的一供电元件210,通信地发送指令202至设备20。
值得一提的是,供电设备24被实施为外置电池211、容置至少二个外置电池211的电池包212、具有至少二个外置电池211的智能设备28,在此,本申请不受任何限制。
供电元件210可被置入于供电设备24的方式被供电,也可以被外部的电路/电源直接供电,其中供电元件210可以被实施为外置电池211,也可以被实施为容置至少二个外置电池211的电池包212、具有至少二个外置电池211的智能设备28,在此方面本申请不受任何限制。
在本申请的上述较佳实施例中,供电元件210被实施为外置电池211。也就是说,信息中转供电方法的步骤(d.2.2)中,藉由被供电于设备20的外置电池211,外置电池211获取供电设备24的指令202后,通信于设备20,以使得设备20可以被远程地操控,更加便利于用户的生活。进一步地,供电设备24可以获取多个设备20的信息。供电设备24根据多个设备20获取用户的使用习惯、使用时间、智能推荐、使用人群分布、电量需要、电量统计的相关信息。
参考说明书附图之图19E,信息中转供电方法的步骤(d.2.2)包括以下步骤:
(d.2.2.1)在云端30发送指令202至供电设备24后,藉由无线地通信地连接于供电元件210,发送指令202至被电连接于供电元件210的设备20;或
(d.2.2.2)在云端30发送指令202至供电设备24后,藉由供电设备24直接接触的方式发送指令202于供电元件210,当供电元件210被电连接于设备20后,通信地发送指令202至设备20。
也就是说,供电设备24可以直接被用于其他的设备20,以供电于设备20。供电设备24可以选定其中一个供电元件210的方式供电于设备20。供电设备24和设备20的通信方式选自有线通信和无线通信,本申请在这方面不收任何限制。
参考说明书附图之图19F,信息中转供电方法包括以下步骤:
(e)以可呈现设备相关信息201和/或获取指令202的方式交互于用户。
值得一提的是,信息中转供电方法的步骤(c)之后发生步骤(e)。信息中转供电方法的步骤(e)发生在步骤(d)之前。
值得一提的是,交互方式包括且不限于语音、按键、显示、指纹、人脸识别,在此方面本申请不受任何限制。
更优选地,信息中转供电方法的步骤(e)包括以下步骤:
(e.1)藉由具有设备相关信息201的云端30,藉由被通信于云端30的其他设备20,以直接交互于用户;或
(e.2)藉由中转基座10,以直接交互于用户;或
(e.3)藉由被电路连接于供电设备24的其他供电设备24,以直接交互于用户;或
(e.4)藉由可通信的供电设备24,以直接交互于用户;或
(e.5)藉由清洁设备22,以直接交互于用户。
值得一提的是,交互方式包括且不限于语音、按键、显示、指纹、人脸识别,在此方面本申请不受任何限制。
值得一提的是,信息中转供电方法的步骤(e.1)或步骤(e.2)发生在步骤(c)或者步骤(d)。
参考说明书附图之图19D,信息中转供电方法的步骤(e.1)包括以下步骤:
(e.1.1)藉由可通信的供电设备24、设备20、中转基座10或被通信于供电设备24的其他供电设备 24,发送上传设备20的设备相关信息201至云端30;和
(e.1.2)藉由被通信于云端30的其他设备20,以直接交互于用户。
优选地,信息中转供电方法的步骤(e.1.1)中,可通信的供电设备24、设备20、中转基座10以及被通信于供电设备24的其他供电设备24的至少其中二个处于一局域网内。
可选地,信息中转供电方法的步骤(e.1.1)中,可通信的供电设备24、设备20、中转基座10以及被通信于供电设备24的其他供电设备24的至少其中二个的通信方式是4G/5G通信。
优选地,参考说明书附图之图19F,信息中转供电方法的步骤(e.2)包括以下步骤:
(e.2.1)藉由获取设备20的设备相关信息201的供电设备24、设备20、或者被通信于供电设备24的其他供电设备24,发送设备20的设备相关信息201至中转基座10;和
(e.2.2)藉由接收到设备20的设备相关信息201的中转基座10,以直接交互于用户。
优选地,信息中转供电方法的步骤(e.1.1)中,可通信的供电设备24、设备20、中转基座10以及被通信于供电设备24的其他供电设备24的至少其中二个处于一局域网内。
可选地,信息中转供电方法的步骤(e.1.1)中,可通信的供电设备24、设备20、中转基座10以及被通信于供电设备24的其他供电设备24的至少其中二个的通信方式是4G/5G通信。
优选地,信息中转供电方法的步骤(e.3)包括以下步骤:
(e.3.1)藉由接收到设备20的设备相关信息201的供电设备24被电路连接于供电设备24的其他供电设备24,发送设备20的设备相关信息201至其他供电设备24;和
(e.3.2)藉由其他供电设备24,以直接交互于用户。
值得一提的是,供电设备24可以被实施为供电元件210,供电元件210被其他供电设备24供电时,供电元件210通信地连接于其他供电设备24。可选地,供电设备24可以被实施为可供电于至少一供电元件210的电池包212,供电设备24供电于设备20,当供电元件210被电路连接于供电元件210时,藉由供电元件210,通信地连接于供电设备24。换言之,多个供电设备24可以只选取其中一个设有无线通信模块。
优选地,信息中转供电方法的步骤(e.4)中,藉由接收到设备20的设备相关信息201的供电设备24,以直接交互于用户。
值得一提的是,供电设备24和被供电的设备20以电路连接的方式通信连接。
可选地,设备20无线通信于供电设备24、中转基座10、其他供电设备24、其他设备20或者云端30。
参考说明书附图之图19A至图19E,本申请另一个较佳实施例中,中转基座10可以包括一基座主体11和至少一设备20。优选地,中转基座10包括基座主体11和至少一通信设备23,通信设备23被基座主体11持续地供电,其中通信设备23提供局域网。
信息中转供电方法的步骤(e.2)之前包括以下步骤:
(e.2.0`)藉由中转基座10的通信设备23,提供局域网。
在本申请的较佳实施例中,信息中转供电方法的步骤(d.2)之前包括以下步骤:
(d.2.0)藉由中转基座10的通信设备23,提供局域网。
本申请的另一个变形实施例被详细地揭露并诠释,设备20可以被实施为行走设备26。值得一提的是,行走设备26可被控制运作,举例来说,行走设备26运送被烹饪设备27制作好的餐点、饮品至目标区域。
更可选地,行走设备26可以被实施为智能输送设备,如平衡车、滑板、智能送货机器人、电动车,在此本申请不受到任何限制。
参考说明书附图之图20A,本申请的另一个较佳实施例的一基于基础装置的辅助供电系统被详细地揭露并诠释,其中基于基础装置的辅助供电系统相比于现有的基座,在不浪费充电端的基础上进一步地供电于至少二个设备,以便于设备被更好地收纳。
参考说明书附图之图20A,基于基础装置的辅助供电系统包括至少一基础装置100D和至少一其他设备20,其中基础装置100D包括至少一基础基座10D和一基础电动装置40D,其中基础电动装置40D和基础基座10D被适配地电路连接,基础电动装置40D适于被可拆卸地安装于基础基座10D,使得基础电动装置40D被基础基座10D供电后,基础电动装置40D可被远离地做功,特别地,以供基础电动装置40D服 务于家庭空间。设备20被可拆卸地安装于基础基座10D,其中设备20被基础装置100D供电,以使得用户无需占用家庭其他插座的情况下供电于设备20,进而缓解家庭的供电紧张问题,此外,也减少因为排插延伸供电造成的意外风险,如排插意外脱离插座,儿童奔走被绊倒,排插的插孔被水溅到等情况。
基础电动装置40D和设备20可以被共同地设置于基础基座10D,也可以被基础电动装置40D共同地供电。基础电动装置40D和设备20被选定至少其中一个地供电,在此方面本申请不受任何限制。
基础电动装置40D和设备20的任意一个可以被置于基础基座10D的方式做功,基础电动装置40D和设备20的任意一个能够以远离基础基座10D的方式做功,在此方面本申请不受任何限制。
参考说明书附图之图20A,由于基础电动装置40D本就需要基础基座10D收容,设备20藉由基础电动装置40D的基础基座10D供电,有效减少了所需要的插座的数量。更优选地,基础电动装置40D和设备20被基础基座10D无线地收容,使得基础电动装置40D和设备20不需要凌乱的电线连接于插板才能够被供电,进一步地提高了家庭收纳的整洁度,提高了家庭供电的安全性。
当基础基座10D和基础电动装置40D的电连接方式是有线连接时,基础基座10D和基础电动装置40D的电连接方式进一步地被实施为触点接触,举例来说,USB接口、TYPE C接口、Lightning接口的至少其中一个。
当基础基座10D和基础电动装置40D的电连接方式是无线连接时,基础基座10D和基础电动装置40D的电连接方式进一步地被实施为电磁感应、磁共振、微波电传输的至少其中一个,本领域技术人员可以理解并知晓。
参考本申请的较佳实施例,基础电动装置40D被置于基础基座10D就实现电连接。也就是说,基础电动装置40D以被置入于基础基座10D的方式导通于基础基座10D的电路,更加方便简洁。
优选地,基础电动装置40D和设备20无需再通过其他电线连接于基础基座10D,基础电动装置40D和设备20分别被置于基础基座10D就可以被电路连接,使得充电方式更加便捷。
优选地,基础电动装置40D被基础基座10D供电的优先级高于设备20被基础基座10D供电的优先级。基础电动装置40D被基础基座10D有线地供电,进而保证基础电动装置40D被优先级地供电。
进一步地,基础电动装置40D供电百分比低于第一阙值时,基础电动装置40D被优先地供电,以保证基础电动装置40D被优先级地供电。
可选地,基础电动装置40D在供电百分比到达第一阙值后,基础电动装置40D被暂停供电,以保持基础基座10D供电于其他设备20,基础基座10D次优先级地供电于设备20。
值得一提的是,第一阙值被实施为基础电动装置40D总电量的70%。优选地,第一阙值被实施为基础电动装置40D总电量的75%。优选地,第一阙值被实施为基础电动装置40D总电量的80%。更优选地,第一阙值被实施为基础电动装置40D总电量的85%。进一步优选地,第一阙值被实施为基础电动装置40D总电量的90%。
基础电动装置40D的供电百分比低于一第二阙值时,设备20的至少其中一个被暂停供电。第二阙值低于第一阙值。
第二阙值被实施为基础电动装置40D总电量的30%。优选地,第一阙值被实施为基础电动装置40D总电量的25%。优选地,第一阙值被实施为基础电动装置40D总电量的20%。更优选地,第一阙值被实施为基础电动装置40D总电量的15%。进一步优选地,第一阙值被实施为基础电动装置40D总电量的10%。
基础电动装置40D被优先功率的方式被供电。也就是说,基础电动装置40D被基础基座10D供电的输出功率大于设备20被基础基座10D供电的输出功率。
进一步地,基础电动装置40D和设备20可以远离基础基座10D的方式做功。做功是指能量由一种形式转化为另一种的形式的过程,基础电动装置40D和设备20的任意一个可以被实施为将电能转化为机械能、光能、热能等不同类型的能量,在此本申请不受到任何限制。
基础装置100D始终能够被实时地供电。举例来说,基础电动装置40D的类型是至少一供电装置44D时,基础基座10D以收容的方式供电于供电装置44D,供电装置44D被基础基座10D以供电的方式收容,同时,藉由始终有电的基础基座10D,基础基座10D供电于其他设备20,使得基础基座10D被供电装置 44D供电后,基础基座10D供电于其他设备20,以减少插座的数量压力,使得家庭更加整洁。
基础电动装置40D的类型是至少一清洁装置42D时,基础基座10D适于供电收容清洁装置42D,其中清洁装置42D被基础基座10D收容供电的同时适于供电于其他设备20,其中清洁装置42D和其他设备20可通信地连接,其中清洁装置42D和设备20被基础基座10D适配地收容供电。更加由于清洁装置42D本来就需要一个适配的基础基座10D,通过增加基础基座10D的扩展功能,增加至少一充电位的方式供电于其他设备20,以扩展基础基座10D的供电收容的能力。
基础电动装置40D的类型是至少一移动装置45D时,基础基座10D适于供电收容移动装置45D。藉由基础基座10D,移动装置45D被以收容的方式供电,基础基座10D扩展至少一供电位,以供电于其他设备20。基础电动装置40D被基础基座10D供电后,基座被供电于其他至少一设备20,使得至少一设备20和基础电动装置40D被共同地收容供电。
基础电动装置40D的类型被实施为一通信设备43D,其中通信设备43D指的是通信设备43D提供局域网,以使得通信设备43D被基础基座10D供电,同时基础基座10D供电于其他设备20,减少了很多设备20被供电需要大量插座以及连接的线路。
基础电动装置40D的类型被实施为一烹饪装置,其中烹饪装置可导通连接于烹饪装置,烹饪装置被基础基座10D供电收容时,基础基座10D实现对其他设备20供电收容。也就是说,烹饪装置和设备20被分别收容于基础基座10D。
可选地,基础电动装置40D的类型还可以被实施为行走装置46D,在此本申请不受到任何限制。
值得一提的是,行走装置46D运送被烹饪设备制作好的餐点、饮品至目标区域。
更可选地,行走装置46D可以被实施为智能输送设备,如平衡车、滑板、智能送货机器人、电动车,在此本申请不受到任何限制。
参考说明书附图之图20B,本申请的另一个较佳实施例被详细地揭露并诠释,其中基础装置100D的基础电动装置40D被实施为供电装置44D,供电装置44D和供电设备24D的类型不同。
供电装置44D包括至少一外置外置电池441D。供电装置44D可置入式地供电于其他设备20,供电装置44D还可以被电线连接的方式连接于其他设备20,在此设备20的类型适于被供电装置44D电路连接。
更优选地,供电装置44D的数量是2个以上。供电装置44D的类型不受本申请的限制,供电设备34D的功率根据具体情况进行设计。
优选地,供电装置44D的至少其中一个是具有至少二个外置电池441D的电池包342D。外置外置电池441D和电池包342D分别被置入式地供电于其他设备20,外置外置电池441D和电池包342D还可以分别被电线连接的方式连接于其他设备20,在此设备20的类型可电路连接于外置外置电池441D和电池包342D。
优选地,电池包342D被实施为具有至少二个外置电池441D的智能电池包,外置外置电池441D和智能电池包可以分别被置入式地供电于其他设备20,外置外置电池441D和智能电池包还可以分别被电线连接的方式连接于其他设备20,在此设备20的类型可电路连接于外置外置电池441D和智能电池包。值得一提的是,智能电池包指的是可以实现智能交互或者通信的装置,举例来说,在家庭环境中,智能电池包可以接收用户的指令,通信地连接于其他装置30D或者其他设备20,智能电池包不仅能够实现智能交互,更能够提供电力于其他设备20。
值得一提的是,由于基础装置100D被始终电路连接于市电和/或储能,藉由基础装置100D的基础基座10D,设备20也可以被长时间供电。进一步地,供电装置44D和设备20藉由同一基础基座10D被随时地供电。
优选地,供电装置44D被基础基座10D供电的优先级高于设备20被基础基座10D供电的优先级。供电装置44D被基础基座10D有线地供电,进而保证供电装置44D被优先级地供电。
进一步地,供电装置44D供电百分比低于第一阙值时,基础电动装置40D被优先地供电,以保证供电装置44D被优先级地供电。
可选地,供电装置44D在供电百分比到达第一阙值后,供电装置44D被暂停供电,以保持基础基座 10D供电于其他设备20,基础基座10D次优先级地供电于设备20。
值得一提的是,第一阙值被实施为供电装置44D总电量的70%。优选地,第一阙值被实施为供电装置44D总电量的75%。优选地,第一阙值被实施为供电装置44D总电量的80%。更优选地,第一阙值被实施为供电装置44D总电量的85%。进一步优选地,第一阙值被实施为供电装置44D总电量的90%。
参考说明书附图之图20B,供电装置44D置入式地供电,其中基础基座10D包括一基座主体11D、一收容部12D以及至少一充电部13D,并且基础基座10D具有至少一供电空间110D,其中基础基座10D的供电空间110D被基座主体11D界定,其中充电部13D被设置于供电空间110D,以使得供电装置44D被置入供电空间110D后被基础基座10D的充电部13D供电。
优选地,充电部13D和供电装置44D的电连接方式可以是有线连接或无线连接。
当充电部13D和供电装置44D的电连接方式是有线连接时,充电部13D和供电装置44D的电连接方式进一步地被实施为触点接触,举例来说,USB接口、TYPE C接口、Lightning接口的至少其中一个。
可选地,当充电部13D和供电装置44D的电连接方式是无线连接时,充电部13D和供电装置44D的电连接方式进一步地被实施为电磁感应、磁共振、微波电传输的至少其中一个,本领域技术人员可以理解并知晓。
供电装置44D沿着被置入的方式被电连接于充电部13D。值得一提的是,供电装置44D的电连接方向是沿着置入方向的延伸方向上。
可选地,供电装置44D的电连接方向是被保持于供电装置44D被置入方向的径向方向上,也就是说,供电装置44D被贴合于充电部13D的方式被电连接。
值得一提的是,供电装置44D的数量是2个以上。进一步地,供电装置44D的数量可以是1、2、3、4、5、6、7、8、9、10、11、12、13、14、15、16、17、18、19、20、21、22、23、24、25、26、27、28、29、30、31、32、33、34、35、36的至少其中一个,在多个供电装置44D被基础基座10D同时供电的数量不受到本申请的任何限制。
值得一提的是,供电装置44D的类型不受到本申请的限制,供电装置44D的至少其中一个选自组合外置外置电池441D、包括至少二个外置外置电池441D的电池包的至少其中一个。换句话说,被基础基座10D供电的供电装置44D的类型是多种的,在此本申请的不受到任何限制。
多个供电装置44D本就需要至少一基础基座10D用于集中供电,基础基座10D进一步地供电于设备20,以使得供电设备24D和多个供电装置44D被始终实时供电,而无需寻找充电端和数据线就可以被直接供电,更加简洁方便。
值得一提的是,设备20的类型不受到任何限制,举例来说,设备20可以被实施为一清洁设备22D、一通信设备23D、一供电设备24D、一移动设备25D、一行走设备26D或者一烹饪设备。设备20优选地是经常需要充电的设备20。
参考说明书附图之图20C,本申请的另一个较佳实施例中,基础电动装置40D被实施为一通信设备43D,由于通信设备43D需要长时间被供电,藉由通信设备43D的基础基座10D,可实时地供电于至少一其他类型的设备。换句话说,藉由本就需要被供电的基础基座10D,始终供电于至少一基础电动装置40D和至少一设备20,藉由基础电动装置40D和设备20,更佳地运行。
通信设备43D指的是提供通信网络的设备,通信设备43D可以使用4G/5G提供局域网,也可以扩大其他通信设备43D的局域网信号提供局域网,在此本申请不受到任何限制。
优选地,在本申请的较佳实施例中,通信设备43D被无线地连接于基础基座10D。换句话说,通信设备43D无需电线就可以被基础基座10D电路连接。
藉由通信设备43D被长时间供电,通信设备43D可持续提供局域网。进一步地,藉由通信设备43D的供电的基础基座10D,通信设备43D和设备20被长时间供电。
更优选地,通信设备43D具有蓄电能力,当通信设备43D被远离基础基座10D时,通信设备43D可持续提供局域网,通信设备43D可短时间地被远离电源地提供局域网,在此通信设备43D可被随身携带地提供局域网,便于用户需要到局域网信号较弱的空间也能够始终获得局域网。
可选地,通信设备43D是4G/5G通信信号,其中通信设备43D被基础基座10D持续地供电,当通信设备43D被远离基础基座10D后,通信设备43D被作为随身WiFi,以提供局域网。
可选地,通信设备43D是WiFi信号扩大器,通信设备43D被基础基座10D持续地供电,当通信设备43D被远离基础基座10D后,通信设备43D处于WiFi信号范围内时,以提供局域网。
优选地,通信设备43D被基础基座10D的充电部13D的供电的优先级高于设备20被基础基座10D供电的优先级。通信设备43D被基础基座10D有线地供电,进而保证通信设备43D被优先级地供电。
进一步地,基础基座10D的充电部13D包括一第一充电端131D、一第二充电端132D以及至少一供电端130D,第一充电端131D和第二充电端132D分别被电路连接于供电端130D,充电部13D的供电端130D被电路连接基座主体11D,以使得至少一个设备20被电路连接于充电部13D。
进一步地,通信设备43D供电百分比低于第一阙值时,基础电动装置40D被优先地供电,以保证通信设备43D被优先级地供电。
可选地,通信设备43D供电百分比到达第一阙值后,通信设备43D被暂停供电,以保持基础基座10D供电于其他设备20,基础基座10D次优先级地供电于设备20。
优选地,通信设备43D在供电百分比低于第二阙值时,设备20的至少其中一个被暂停供电。第二阙值低于第一阙值。
值得一提的是,第一阙值被实施为通信设备43D总电量的70%。优选地,第一阙值被实施为通信设备43D总电量的75%。优选地,第一阙值被实施为通信设备43D总电量的80%。更优选地,第一阙值被实施为通信设备43D总电量的85%。进一步优选地,第一阙值被实施为通信设备43D总电量的90%。
第二阙值被实施为通信设备43D总电量的30%。优选地,第一阙值被实施为通信设备43D总电量的25%。优选地,第一阙值被实施为通信设备43D总电量的20%。更优选地,第一阙值被实施为通信设备43D总电量的15%。进一步优选地,第一阙值被实施为通信设备43D总电量的10%。
参考说明书附图之图20D,本申请的另一个较佳实施例的一基于基础装置的辅助供电系统被详细地揭露并诠释,基础装置100D的类型和上个较佳实施例的类型不同而成为新的实施例,其中基础装置100D的类型是清洁供电装置。进一步地,基础装置100D的基础电动装置40D的类型是清洁装置42D,基础基座10D实时地供电于清洁装置42D。
值得一提的是,由于清洁装置42D一般体积较大,基础基座10D适配于清洁装置42D而被预设地连接于插座,因此基础基座10D和清洁装置42D始终需要占用一个插座,藉由基础基座10D预设的至少二个充电部13D,清洁装置42D和其他设备20仅需要通过基础基座10D就可以仅占用一个插座被电路连接。进一步地,由于基础基座10D预设的充电部13D,清洁装置42D和设备20无需再通过其他电线连接,清洁装置42D和设备20分别被置于基础基座10D就可以被电路连接,使得充电方式更加便捷。
清洁装置42D被置于基础基座10D就实现电连接。也就是说,清洁装置42D以被置入的方式导通于基础基座10D的电路,更加方便简洁。
可选地,基础电动装置40D被实施为一移动装置45D,由于移动装置45D需要经常被充电,藉由基础基座10D可以长时间地给移动装置45D充电,而不可以时时刻刻地提供服务。更优选地,移动装置45D可以被实施为一智能家居的控制装置,仅被保持于距离用户一定距离内即服务于用户。
进一步地说,移动装置45D和设备20的类型优选地不同,藉由基础基座10D,移动装置45D和设备20被始终供电。
优选地,移动装置45D被基础基座10D供电的优先级高于设备20被基础基座10D供电的优先级。移动装置45D被基础基座10D有线地供电,进而保证移动装置45D被优先级地供电。
进一步地,移动装置45D供电百分比低于第一阙值时,设备20的至少其中一个被暂停供电。
可选地,移动装置45D在供电百分比到达第一阙值后,移动装置45D被暂停供电,以保持基础基座10D供电于其他设备20,基础基座10D次优先级地供电于设备20。
值得一提的是,第一阙值被实施为移动装置45D总电量的70%。优选地,第一阙值被实施为移动装置45D总电量的75%。优选地,第一阙值被实施为移动装置45D总电量的80%。更优选地,第一阙值被实施 为移动装置45D总电量的85%。进一步优选地,第一阙值被实施为移动装置45D总电量的90%。
优选地,洗地机420D在供电百分比低于第二阙值时,供电设备24D被暂停供电。
第二阙值被实施为移动装置45D总电量的30%。优选地,第二阙值被实施为移动装置45D总电量的25%。优选地,第二阙值被实施为移动装置45D总电量的20%。更优选地,第二阙值被实施为移动装置45D总电量的15%。进一步优选地,第二阙值被实施为移动装置45D总电量的10%。
参考说明书附图之图21,本申请的另一个较佳实施例中,基于基础装置的辅助供电系统包括一基础装置100D和至少一设备20,其中基础装置100D包括基础基座10D和至少一清洁装置42D,其中设备20以被置于基础基座10D的方式电路连接于基础基座10D,其中清洁装置42D和至少一设备20被基础基座10D共同地持续供电。
优选地,基于基础装置的辅助供电系统包括两个设备20和基础装置100D,其中设备20分别是至少一充电设备24D和至少一通信设备23D。由于充电设备24D、通信设备23D、充电设备24D以及清洁装置42D都需要被长时间供电,藉由清洁装置42D匹配的基础基座10D,充电设备24D、通信设备43D以及清洁装置42D能够直接被基础基座10D长时间供电。
充电设备24D是至少一可拆卸电池,清洁装置42D优选地被实施为洗地机420D,藉由基础基座10D,洗地机420D自清洁或者被充电,以自动地保持干净,其中洗地机420D被基础基座10D持续供电,由于基础基座10D为了满足洗地机420D的其他功能而需要长时间带电,因此藉由本就需要长时间电路连接于市电的基础基座10D供电于其他需要被长时间供电的设备20,在本申请的较佳实施例中,设备20是至少一充电设备24D和通信设备23D。
进一步地,洗地机420D包括至少一操作头421D和一机主体422D,其中操作头421D自机主体422D延伸,且操作头421D界定一操作面4210D,其中操作头421D的操作面4210D可贴合被清洁表面。换言之,操作头421D的操作面4210D被贴合于被清洁表面,其中操作头421D被机主体422D驱动地在操作面4210D滚动,其中操作头421D被机主体422D驱动地清洗被清洁表面。
优选地,清洁表面是地面。操作头421D用于清洗地面。操作头421D会有水污,为了保证基础基座10D供电于其他设备20的安全性,供电设备24D和通信设备23D被间隔地保持,进而操作头421D和供电设备24D和通信设备23D被设置于基础基座10D的位置高于被保持于基础基座10D的清洗机3210D的操作面4210D,且供电设备24D和通信设备23D以被置入基础基座10D的方式被基础基座10D供电,进而减少通信设备23D和供电设备24D被溅湿的可能性。通信设备23D和供电设备24D能够被基础基座10D稳定地收容。
优选地,通信设备23D和供电设备24D被置于基础基座10D置入式地供电,其中通信设备23D和供电设备24D以及洗地机420D可以被基础基座10D持续地供电。
参考说明书附图之图21,在本申请的较佳实施例中,收容主体12D包括一第一收容主体121D和至少二第二收容主体122D,充电部13D被分别设置于第一收容主体121D和第二收容主体122D。基础基座10D的第一收容主体121D被垂直地向上地设置。优选地,第一收容主体121D被远离基座主体11D的方式被设置于基座主体11D的一侧,以使得洗地机420D可以被基础基座10D支撑,且供电被形成于基座主体11D的侧壁,且适于洗地机420D的一充电口4220D直接接触充电。
洗地机420D会有部分污水保持与第一收容主体121D,基座主体11D可第一收容主体121D承接水的情况下供电于通信设备23A和充电设备24D。
在本实施例的变形实施例中,洗地机420D可以在第一收容主体121D自清洁,第一收容主体121D收集洗地机420D流出的液体,以防止洗地机420D的污水污染地面。
更可选地,第一收容主体121D设有对应自清洁的清洁组件,以辅助洗地机420D清洁。
参考说明书附图之图21,当清洁装置42D被实施为洗地机420D时,优选地,基础基座10D包括一辅助清洁部,其中辅助清洁部14D被设置于第一收容腔1210D,其中功能辅助清洁部适于清洁洗地机420D的一操作头421D,进而基础基座10D给洗地机420D清洁,而不需要人为地参与清洁。进一步地,充电设备24D被收容于第二收容腔1220D,并且在洗地机420D被基础基座10D自清洁的过程中,基础基座10D 可以持续给充电设备24D和洗地机420D充电。
供电设备24D还可以换电的方式供电于洗地机420D,以使得洗地机420D即使远离充电位置还可以被持续供电,保证洗地机420D始终有电,当洗地机420D需要对大面积的清洁表面进行清洗时,洗地机420D无需中途中断充电就可以始终有电地进行清洁。
洗地机420D的操作面4210D被设置于基础基座10D的位置低于其他设备20被电路连接于基础基座10D的位置。也就是说,第二收容主体122D的位置高于第一收容主体121D的位置。
进一步地,基础电动装置40D和设备20可以远离基础基座10D的方式做功。做功是指能量由一种形式转化为另一种的形式的过程,基础电动装置40D可以被实施为电能转化为机械能、光能、热能等不同类型的能量,在此本申请不受到任何限制。进一步地,供电设备24D以可远离基础基座10D的方式存储电能后释放电能。洗地机420D以可远离基础基座10D的方式转化为机械能、热能、光能的至少其中一个。
优选地,洗地机420D被基础基座10D供电的优先级高于设备20被基础基座10D供电的优先级。洗地机420D被基础基座10D有线地供电,进而保证洗地机420D被优先级地供电。
进一步地,洗地机420D供电百分比低于第一阙值时,基础电动装置40D被优先地供电,以保证洗地机420D被优先级地供电。
可选地,洗地机420D在供电百分比到达第一阙值后,洗地机420D被暂停供电,以保持基础基座10D供电于其他设备20,基础基座10D次优先级地供电于设备20。
值得一提的是,第一阙值被实施为洗地机420D总电量的70%。优选地,第一阙值被实施为洗地机420D总电量的75%。优选地,第一阙值被实施为洗地机420D总电量的80%。更优选地,第一阙值被实施为洗地机420D总电量的85%。进一步优选地,第一阙值被实施为洗地机420D总电量的90%。
优选地,洗地机420D在供电百分比低于第二阙值时,供电设备24D被暂停供电。
第二阙值被实施为洗地机420D总电量的30%。优选地,第二阙值被实施为洗地机420D总电量的25%。优选地,第二阙值被实施为洗地机420D总电量的20%。更优选地,第二阙值被实施为洗地机420D总电量的15%。进一步优选地,第二阙值被实施为洗地机420D总电量的10%。
在本较佳实施例中,在洗地机420D没有工作任务预约时,洗地机420D、通信设备23D以及供电设备24D被同时供电。在通信设备23D低于第一阙值并且高于第二阙值时,通信设备23D被优先地供电。在通信设备23D低于第一阙值时,供电设备24D的供电被暂停。也就是说,供电设备24D被次优先级地供电。在洗地机420D、通信设备23D以及供电设备24D的至少其中一个被远离基础基座10D时,其他设备20和/或基础电动装置40D被共同地供电。
基础电动装置40D和设备20的优先级根据两者的类型具体设计。
参考说明书附图之图22A至图22C,本申请另一个较佳实施例的一收容供电系统被详细地揭露并诠释,和图1A所示的较佳实施例不同的是,收容供电系统适于被应用于至少二个类型的设备20,进一步地说,收容供电系统包括至少一清洁设备和至少一充电设备。
优选地,第一设备2001被实施为一清洁设备22A,第二设备2002被实施为充电设备24A,清洁设备22A和充电设备24A被基座10共同地收容。进一步地,清洁设备22A和充电设备24A至少选定其中一个的方式被基座10供电。
值得一提的是,清洁设备22A可以被实施为扫地机器人22B、吸尘器22C和洗地机22D的至少其中一个。
进一步地,由于充电设备24A被基座10长时间地收容,使得充电设备24A不会被杂乱地堆放在各个角落,更简洁地收纳。
清洁设备22A被保持于第一收容部121,充电设备24A被保持于第二收容部122。清洁设备22A优选地以置于第一收容部121的方式即可电路连接于充电部13,当充电设备24A被置于第二收容部122的方式即可电路连接于充电部13,清洁设备22A和充电设备24A都是采用一个动作就可以电路连接于基座10。
进一步地,第一清洁设备22A优选地是自动清洁的设备。
优选地,第一清洁设备22A被收容于第一收容主体121的第一收容腔1210,清洁设备22A被收容于 第二收容主体122的第二收容腔1220。
优选地,清洁设备22A被实施为扫地机器人22B。清洁设备22A的类型不受到本实施例的限制,清洁设备22A的类型可以被实施为扫拖一体的扫地机器人、吸拖一体的洗地机、吸拖一体的吸尘器等清洁设备,在此本申请不受到任何限制。
优选地,清洁设备22A被以接触连接的方式电气连接于第一充电端131。
优选地,扫地机器人22B被以触点连接的方式电气连接于第一充电端131。第一充电端131被设置于靠近远地端面112的方式被设置第一收容腔1210,当扫地机器人22B移动过程中被第一充电端131限位地保持,以使得扫地机器人22B在移动过程中就能够被贴合地吸附。
优选地,第一充电端131被实施为2个触点,以直接连接于扫地机器人22B的一充电口,且第一充电端131被凸出于界定第一收容腔1210的表面的方式被设置,以使得第一充电端131可被扫地机器人22B直接接触的方式充电。
可选地,第一充电端131具有一定磁性,以使得扫地机器人22B在移动过程中就可以被吸附于第一充电端131。
第一收容主体121包括一第一底面1211、一第一侧壁1212以及一第一顶面1213,其中第一侧壁1212自第一底面1211延伸至第一顶面1213,以界定第一收容腔1210。
优选地,第一充电端131被形成于第一收容主体121的第一底面1211,当扫地机器人22B在第一底面1211移动,即可被接触连接于第一充电端131。
优选地,第一充电端131和第一侧壁1212之间的距离和扫地机器人22B的周壁和扫地机器人22B的充电口的距离适配。进一步地,第一充电端131具有一定的长度,以适于不同尺寸的机器人211被适配地充电。
在本申请的变形实施例中,第一充电端131被设置于界定第一收容腔1210的第一侧壁1212。更可选地,第一充电端131被凸出于第一收容主体121的第一侧壁1212的方式被设置,以适于被设置于扫地机器人22B的周壁的充电位。
可选地,第一清洁设备22A被以非接触连接的方式电气连接于第一充电端131。充电设备24A以插拔连接的方式电气连接于第一充电端131。
可选地,充电设备24A以非接触连接的方式电气连接于第一充电端131。进一步地,非接触连接的方式选自电磁感应、磁共振、微波电传输的类型组,本申请在此方面不受任何限制。
支撑主体111具有一近地端部和一远地端部,收容部12的第一收容腔1210被形成于支撑主体111的一近地端部的径向方向,并且第一收容腔1210以至少一个第一开口导通于外部空间的方式被形成于支撑主体111的下端部。
值得一提的是,支撑主体111的远地端部和近地端部是以支撑主体111的垂直延伸方向上界定,并且支撑主体111的近地端部相对于远地端部靠近地面。
由于扫地机器人22B适于在地面上进行全自动的清洁,扫地机器人22B可自动进入第一收容腔1210并保持扫地机器人22B具有一扫地机器人充电端2210B,扫地机器人22B的扫地机器人的充电口和充电部13的第一充电端131接直接接触,进而扫地机器人充电端2210B和第一充电端131直接接触时,扫地机器人22B被基座10充电。
由于基座主体11被电路连接于至少一充电设备24A和/或外部电路,被基座主体11供电的设备20始终被电路连接,以防止断电而无法运行或者充电。即,充电设备24A被电路连接于基座主体11,当基座主体11被连接于外部电路时,充电设备24A被基座主体11供电,当基座主体11没有连接于外部电路时,充电设备24A可反供电于基座主体11,使得基座主体11始终能够供电于设备20,特别地是清洁设备22A。
由于清洁设备22A自清洁能够有效地减少用户处理污渍、污水、垃圾的麻烦,藉由清洁设备22A被保持于基座11的方式自清洁,以防止清洁设备22A将污渍、污水、垃圾散落于其他地方以需要二次清洁,减少二次制污。
值得一提的是,基座主体11未被连接于外部电路时,基座10被充电设备24A反供电,基座主体11 可以被移动至清洁设备22A所在附近,以实时地用于清洁设备22A的自清洁。清洁设备22A即使在远离原来的基座主体11所在的位置,也能够被可移动的基座主体11就地适配地自清洁。也就是说,基座10可以被移动的方式就地用于清洁设备22A的自清洁。
更可选地,基座10以被充电设备24A反供电的方式供电于其他设备20,举例来说是清洁设备22A、通信设备23A、智能设备28以及其他充电设备24A。
基座10包括一信息处理部15,其中信息处理部15进行供电收容的信息处理,信息处理部15包括一通信模块153,通信模块153被设置于第一收容部121的第一收容腔1210,通信模块153以接触连接的方式通信于清洁设备22A。当清洁设备22A被移动至通信模块153的对应位置,被供电的基座10的通信模块153被通信连接于清洁设备22A,清洁设备22A获取自清洁信号时,清洁设备22A以被收容于第一收容部121的方式自清洁。换言之,由于基座10被充电设备24A和/或外部电路始终供电,基座10可实时地用于清洁设备22A自清洁。进一步地,基座10不间断地被充电设备24A和/或外部电路供电,即使基座10未连接于外部电路,以供至少一清洁设备22A以被保持于所述第一收容部121的方式保持通信于所述基座10。
优选地,当扫地机器人22B被移动至通信模块153的对应位置,被供电的基座10的通信模块153被通信连接于扫地机器人22B,扫地机器人22B获取自清洁信号时,扫地机器人22B以被收容于第一收容部121的方式自清洁。换言之,由于基座10被充电设备24A和/或外部电路始终供电,基座10可实时地用于扫地机器人22B自清洁。
更优选地,电池24B可以被用于供电于扫地机器人22B,以使得扫地机器人22B被始终供电。
扫地机器人22B可自动开启的方式下放被收容的垃圾,以持续作业,扩大受到垃圾收集满了以后无法进行作业的限制。
辅助清洁部14被保持于第一收容部121的第一支撑面1211,值得一提的是,第一支撑面1211被沿着水平方向延伸,且朝向地面地保持,继而扫地机器人22B被保持于第一支撑面1211的垂直方向上。
在本申请的另一个较佳实施例中,扫地机器人22B是吸拖一体的扫地机器人22B,吸拖一体的扫地机器人22B包括一吸尘主体212B和至少一可拆卸的拖地主体213B,其中吸拖一体的扫地机器人22B被保持于基座10的对应位置后,以通信地连接于基座10的通信模块153,进而吸拖一体的扫地机器人22B可获取自清洁的信号后被基座10自清洁。也就是说,辅助清洁部14旋转清洗吸拖一体的扫地机器人22B的拖地主体213B。
辅助清洁部14被保持于第一收容部121的第一支撑面1211,值得一提的是,第一支撑面1211被沿着水平方向延伸,且朝向地面地保持,继而拖地主体213B被第一支撑面1211贴合地被清洁。
参考说明书附图之图22D,图22A所示的上述较佳实施例的收容供电系统的变形实施例被详细地揭露并诠释,收容供电系统和图22A所示的上述较佳实施例不同的是,充电设备24A被实施为容置至少二个电池24B的电池包24C。通信设备23A和充电设备24A被设置于基座主体111的远地端面。也就是说,通信设备23A和充电设备24A被设置于基座主体111的顶面。
值得一提的是,当电池包24C被保持于基座10时,电池24B可自电池包24C单独取出后被用于其他设备20。
优选地,电池包24C被置入地方式被基座10充电。在基座主体11有电的情况下,电池包24C被基座主体11供电,当基座主体11没有连接外部电路时,基座主体11被电池包24C反供电,也就是说,基座主体11始终被电池包24C和/或外部电路供电,以防止被基座主体11供电的其他设备20无法被供电而无法正常运行。也就是说,通信设备23A能够始终被保持于有电的基座10,进而保持通信设备23A始终提供局域网,有效地保持用户的网络保障。
参考说明书附图之图23A和图23B,在本申请的另一个较佳实施例中,收容供电系统包括基座10和被持续基座10持续供电的至少二个设备20。
优选地,收容供电系统包括基座10和被持续基座10持续供电的至少二个设备20。
收容供电系统包括至少一清洁设备22A、通信设备23A和基座10。清洁设备22A和充电设备24A被 共同地收容于基座10并且被基座10充电。清洁设备22A处理水污,基座10可在有水情况下给清洁设备22A和充电设备24A充电。
清洁设备22A被第一收容主体121的第一收容腔1210,且始终用于地面清洁,因此基座10被放置于地面,以便于清洁设备22A被放置。
充电设备24A被容置于第二收容腔1220。第二收容部122被保持于基座主体111的远地端面。在基座10没有连接外部电路时,充电设备24A反供电于基座10,以保持基座10始终被供电,以防止需要基座10供电的设备20无法正常运行。
优选地,充电设备24A被实施为一至少二个电池24B,电池24B被以第三收容主体123支撑的方式被保持于基座主体111的上方。电池24B可被直接存取,且电池24B可以被单独地给其他设备20供电。
优选地,电池24B被置入地方式被基座10充电。在基座10没有连接外部电路时,电池24B反供电于基座10,以保持基座10始终被供电,以防止需要基座10供电的设备20无法正常运行。
更优选地,第二收容主体122设有弹出机构,以使得电池24B可被一键弹出。
可选地,至少二个电池24B可被同时一键弹出。
清洁设备22A被实施为一洗地机22D,洗地机22D被第一收容主体121限位地保持。
优选地,基座10的第一收容主体121被垂直地向上地设置。优选地,第一收容主体121被远离基座主体111的方式被设置于基座主体111的一侧,以使得洗地机22D可以被基座10支撑,且第一供电端131被形成于基座主体111的侧壁,且适于洗地机22D的充电口直接接触充电。
洗地机22D会有部分污水保持与第一收容主体121,基座主体111可第一收容主体121承接水的情况下供电于通信设备23A和充电设备24A。
更优选地,在基座10没连接外部电路时,电池24B可以被用于供电于洗地机22D,以使得洗地机22D被始终供电。
在本实施例的变形实施例中,洗地机22D可以在第一收容主体121自清洁,第一收容主体121收集洗地机22D流出的液体,以防止洗地机22D的污水污染地面。
更可选地,第一收容主体121设有对应自清洁的清洁组件,以辅助洗地机22D清洁。
当第一清洁设备22A被实施为洗地机时,优选地,基座10包括一辅助清洁部14,其中辅助清洁部14被设置于第一收容腔1210,其中洗地机22D包括一工作头220D和至少一洗地主体222D,其中辅助清洁部14适于清洁洗地机22D的一工作头220D,进而基座10给洗地机22D清洁,而不需要人为地参与清洁。进一步地,充电设备24A被收容于第二收容腔1220,并且在洗地机22D被基座10自清洁的过程中,基座10可以持续给充电设备24A和洗地机22D充电。
值得一提的是,辅助清洁部14被形成于第一收容腔1210。进一步地收容部12进一步地具有一第一支撑面1211和至少一第一延伸面1212,其中第一支撑面1211和第一延伸面1212界定第一收容腔1210,其中辅助清洁部14被形成于第一支撑面1211,当清洁设备21被收容于收容部12的第一收容腔1210时,洗地机22D被第一支撑面1211支撑,并且洗地机22D被第一延伸面1212径向地限位,使得洗地机22D的工作头220D被第一支撑面1211贴合地支撑,当工作头220D自清洁的过程中,第一延伸面1212和第一支撑面1211界定的第一收容腔1210可以承载流出的水和污渍,防止自清洁设备21流出的水和污渍沾染到地面,进一步地,辅助清洁部14被优选地设置于第一支撑面1211,进而当工作头220D被驱动地转动清洁时,辅助清洁部14可以适配于工作头220D自清洁。
优选地,辅助清洁部14是形成于第一支撑面1211的三角凸起,以使得工作头220D旋转时可以更好地排出掉污水和污渍。
值得一提的是,辅助清洁部14还可以是自动滚刷,以配合工作头220D相对地旋转滚动,以带动工作头220D排水排污。辅助清洁部14可以被充电部13电连接,在此本领域技术人员应当可以理解并知晓。此外,辅助清洁部14还可以被实施为选自各种形态的凹槽、齿轮、自动震动元件、自动滚刷元件的类型组,在此本申请不受到任何限制。
由于清洁设备22A自清洁能够有效地减少用户处理污渍、污水、垃圾的麻烦,藉由清洁设备22A被 保持于基座11的方式自清洁,以防止清洁设备22A将污渍、污水、垃圾散落于其他地方以需要二次清洁,减少二次制污。
值得一提的是,基座主体11未被连接于外部电路时,基座主体11可以被移动至清洁设备22A所在附近,以实时地用于清洁设备22A的自清洁。清洁设备22A即使在远离原来的基座主体11所在的位置,也能够被可移动的基座主体11就地适配地自清洁。
基座10包括一信息处理部15,其中信息处理部15可发射通信信号,信息处理部15的一通信模块153被设置于第一收容部121的第一收容腔1210,通信模块153以接触连接的方式通信于清洁设备22A。
当清洁设备22A被移动至通信模块153的对应位置,被供电的基座10的通信模块153被通信连接于清洁设备22A,清洁设备22A获取自清洁信号时,清洁设备22A以被收容于第一收容部121的方式自清洁。即,由于基座10被充电设备24A和/或外部电路始终供电,基座10可实时地用于清洁设备22A自清洁。
值得一提的是,本实施例中的信息处理部15和其他实施例中的处理模块15是同一元件。
值得一提的是,信息处理部15可被用于通信地连接于至少一设备20和/或云端,以供基座10可通信地连接于其他设备20和/或云端,其中设备20的类型不受任何限制,其中设备20的类型选自组合一清洁设备、一供电设备、一智能设备、一通信设备、一烹饪设备的至少其中一。
优选地,当洗地机22D被移动至通信模块153的对应位置,被供电的基座10的通信模块153被通信连接于洗地机22D,洗地机22D获取自清洁信号时,洗地机22D以被收容于第一收容部121的方式自清洁。换言之,由于基座10被充电设备24A和/或外部电路始终供电,基座10可实时地用于洗地机22D自清洁。
洗地机22D可自动开启的方式释放清水清洁工作头220D,并以持续地吸取污水,将被释放于基座10的第一收容部121的污水吸取,以自动清洁工作头220D,减少用户处理污渍的麻烦。
辅助清洁部14被保持于第一收容部121的第一支撑面1211,值得一提的是,第一支撑面1211被沿着水平方向延伸,且朝向地面地保持,继而洗地机22D被保持于第一支撑面1211的垂直方向上,其中第一支撑面1211和第一延伸面1212共同界定的第一收容腔1210收容污水,以防止自清洁过程中的污水四溅,造成二次污染,同时通过洗地机22D和第一收容腔1210界定的较为密闭的空间,以方便污水被洗地机22D的一洗地主体222D吸取。
洗地机22D被保持于基座10的对应位置后,以通信地连接于基座10的通信模块153,进而吸拖一体的洗地机22D可获取自清洁的信号后被基座10自清洁,即,洗地主体222D自动清洁工作头220D。
辅助清洁部14被保持于第一收容部121的第一支撑面1211,值得一提的是,第一支撑面1211被沿着水平方向延伸,且朝向地面地保持,继而洗地主体222D被第一支撑面1211贴合地被清洁。
参考说明书附图之图24A至图24C,本申请的另一个较佳实施例的收容供电系统被详细地揭露并诠释,收容供电系统和图22A至图22C所示的较佳实施例不同的是,收容供电系统包括基座10和至少二个充电设备24A以及通信设备23A。通信设备23A和至少二个充电设备24A被设置于基座主体111的远地端面。也就是说,通信设备23A和至少二个充电设备24A被设置于基座主体111的顶面。
两个充电设备24A被实施为至少容置至少二个电池24B的电池包24C和至少二个电池24B。当电池包24C被保持于基座10时,电池24B可自电池包24C单独取出后被用于其他设备20。
值得一提的是,电池24B被以支撑的方式被保持于基座主体111的上方。电池24B可被直接存取,且电池24B可以被单独地给其他设备20供电。
优选地,电池24B被置入地方式被基座10充电。在基座主体11有电的情况下,电池24B被基座主体11供电,当基座主体11没有连接外部电路时,基座主体11被电池24B反供电,也就是说,基座主体11始终被电池24B和/或外部电路供电,以防止被基座主体11供电的其他设备20无法被供电而无法正常运行。也就是说,通信设备23A能够始终被保持于有电的基座10,进而保持通信设备23A始终提供局域网,有效地保持用户的网络保障。
优选地,基座10设有弹出机构,以使得电池24B可被一键弹出。基座10设有弹出机构,以使得电池包24C可被一键弹出。
可选地,至少二个电池24B可被同时一键弹出。
通信设备23A被实施为4G/5G信号设备或者局域网信号扩大设备,以使得通信设备23A可提供局域网于具有网络信号的不同的设备20。更优选地,收容充电设备的设备20可被提供的局域网下通信。
参考说明书附图之图24B中,本申请的另一个变形实施例中,电池包24C具有至少一充电设备无线充电部240C,电池包24C的充电设备无线充电部240C和电池24B的插拔面被错面的保持。换句话说,电池包24C的充电设备无线充电部240C和电池24B被显露的表面被错面的保持。
由于电池包24C是可无线充电的电池包24C,当基座10被电路连接于外部电路时,电池包24C边充电边放电,以无线充电于其他设备20,当基座10未电路连接于外部电路时,电池包24C仅放电,以无线充电于其他设备20。也就是说,其他设备20可以始终被电池包24C无线充电,即使没有外部电路的供电,保障了其他设备20的充电需求,防止在没有电的紧急情况下的设备20的无线充电需求。此外,电池包24C的电池24B可被取出于电池包24C的方式电路连接于设备20,使得设备20既可以放置于基座10的方式被充电,也可以以取出电池24B后被远离基座10的方式被充电,使得设备20的充电方式更加灵活。
优选地,电池包24C被保持于基座10的一侧,以使得被收容于基座10的电池包24C的至少二个表面被暴露于外部空间。电池包24C可以自基座10的一侧推入的方式被收容于第二收容腔122,还可以自基座10的上方置入的方式被收容于第二收容腔122,在此本申请不受到任何限制,
进一步地,电池24B和充电设备无线充电部240C被显露于外部空间。优选地,充电设备无线充电部240C被平置以保持于基座10的上表面,进而当其他设备20被置于基座10的上表面时,只需要放置一个动作就可以电路连接设备20和充电设备无线充电部240C。也就是说,只要设备20被保持于基座10对应电池包24C的位置,就可以藉由电池包24C无线充电,减少各种充电线的使用。
可选地,在本申请的其他变形实施例中,电池包24C被支撑的方式置于基座10。也就是说,电池包24C被保持于基座10上方。进一步地,设备20可被保持于电池包24C的上方,以被电池包24C无线充电。
参考说明书附图之图24C,当基座10连接于外部电路时,电池包24C被电路连接于基座10,设备20被电池包24C无线充电。当基座10没有连接于外部电路或者外部电路无电时,电池包24C不仅可反供电于基座10,而且还能够无线充电于设备20,使得用户即使在市电停电时仍然能够稳定使用电池24C充电,减少停电造成的困扰。
优选地,设备20被实施为一智能设备28A。进一步地是,智能设备28A包括且不限于手机、ipad、游戏设备、智能手表。设备20的类型不受到本申请的任何限制。
参考说明书附图之图25A至图25C,本申请的另一个较佳实施例的收容供电系统被详细地揭露并诠释,收容供电系统和图1A和图1B所示的较佳实施例不同的是,供电收容系统的供电收容装置包括一基座10和至少二个不同类型的设备20。优选地,设备20分别是至少一清洁设备和至少一个充电设备24A,清洁设备被实施为清洁设备22A。进一步地,清洁设备22A是吸尘器22C的握持部221C。基座10收容且供电于清洁设备22A和充电设备24A,其中充电设备24A可被远离基座10后被用于清洁设备22A,充电设备24A优选地被适配于清洁设备22A以用于持续供电于清洁设备22A。
值得一提的是,支撑主体111包括一远地端部1001和一近地端部1002,其中是近地端部1002和远地端部1001分别是以支撑主体111的垂直延伸方向上界定,并且支撑主体111的近地端部1002相对于远地端部1001靠近地面。优选地,充电设备24A被暴露于支撑主体111的远地端面1001。
支撑主体111进一步地具有一径向侧壁1003,以连接近地端部1002和远地端部1001。优选地,握持部221C被侧部收容于基座10。也就是说,第一收容主体121被形成于基座10的径向侧壁1003。
值得一提的是,供电收容系统的充电设备24A被实施为电池和/或电池组。充电设备24A可被基座10充电,以用于交替供电于清洁设备22A。也就是说,充电设备24A被基座10直接充电,以使得清洁设备22A可通过实时更换充电设备24A实现交替换电,进而清洁设备22A可以被长时间地使用,进一步地说,清洁设备22A在被要求处理较大区域的清洁过程中,清洁设备22A可以长时间地待机工作而不会因为电池容量的有限而需要暂停充电,提高了用户亟需清洁表面时的清洁需要。值得一提的是,充电装置24A还可以被实施为持电装置,充电装置24A指的是获取电流后能够存储电量,并且可以放电于其他设备的装置。
优选地,充电设备24A是一收容至少二个电池24B的一电池包24C,电池包24C被以第二收容主体 122支撑的方式被保持于基座主体111的上方。被容置于电池包24C的电池24B可被取出后单独地给其他设备20供电。电池包24C可整体地给其他设备20供电。电池包24C可以直接被安装于清洁设备22A后,电池包24C被电连接于清洁设备22A,以供电于清洁设备22A。电池包24C包括至少一电池24B,以使得自电池包24C取出的电池可以被安装于清洁设备22A,进而以供电于清洁设备22A。
进一步地,电池包24C包括一充电设备无线充电部240C,第二充电端132被形成于第二收容主体122,其中第二充电端132可接触连接的方式被连接于电池包24C的充电设备无线充电部240C。充电设备无线充电部240C被形成于电池包24C的底部,使得电池包24C收容电池24B就可以被置于基座主体111充电。
可选地,清洁设备22A被实施为扫地机器人、除螨仪等其他清洁设备,在此,本申请不受到任何限制。
值得一提的是,清洁设备22A指的是用于表面清洁或者深度清洁的设备,其可以有其他多种功能的用途,在此本申请不限定清洁设备22A的类型。
电池包24C可被外置于吸尘器22C和一体式吸尘器22C`的至少其中一个。电池包24C可以通过基座10充电后实时地被插拔于不同的设备20,以直接供电于设备,进而电池包24C可提高设备20的运行时间,使得设备20的续航时间更久。
由于电池包24C电路连接于被收容的三个电池24B,以使得电池包24C被扩容,增加了三个电池24B电容容量。由于电池包24C本身具有电池,也就是说,在三个电池24B都被取出时,电池包24C也可以供电,但是电容容量比较小。
被收容至少三个电池24B的电池包24C被电路连接于其他设备20时,电池包24C为设备20供电的续航时间较长,适合一些功率较大,使用时间较长的设备20,提高用户的使用体验。
第二收容部122被形成于远地端部1001,其中被收容于第二收容部122的充电设备24A和基座10的远地端部1001的端面保持平齐。换句话说,被收容于第二收容部122的充电设备24A以凸出于基座10的远地端部1001的端面的方式被保持。
值得一提的是,第二收容腔1220以至少一个第二开口导通于外部空间的方式被向上敞开地设置于支撑主体111的径向方向。
优选地,第一收容部121的第一收容腔1210被形成于支撑主体111的径向方向的径向侧面1003,第二收容部122的第二收容腔1220被形成一支撑主体111的轴向方向上的远地端部1001界定的端面。电池包24C以凸出于支撑主体111的远地端部1001界定的端面的方式被支撑主体111支撑。
进一步地,收容部12包括至少一个第三收容部123,其中第三收容部123被相邻于第一收容部122地被设置,移动设备25A可被收容于第三收容部123,以使得被收容于第二收容部122的电池包24C和移动设备25A贴合,继而移动设备25A可被电池包24C无线充电。
充电部13包括一第三充电端133,第三充电端133被置于第三收容主体123,移动设备25A以置入于第三收容部123的方式被电路连接于第三充电端133。优选地,充电设备25A插拔方向即电路连接接口设置方向。
可选地,移动设备25A插拔方向和电路连接接口设置方向被错面地保持。移动设备25A以无线通信地被第三充电端133供电。
电池包24C以被基座10的远地端面1001界定的端面支撑的方式被收容于基座10。换言之,电池包24C被置于基座10的端面的方式触点连接于基座10,由于移动设备25A以垂直于基座10的远地端面1001界定的端面的方式被保持,移动设备25A的侧壁和移动设备25A可贴合地被保持于基座10的端面上方。电池包24C和移动设备25A可实现地无线通信地供电。藉由电池包24A以置换至少一电池24B、被基座10电路连接以及存储电量的方式始终有电,移动设备25A能够始终以一键置入基座10的方式被电路连接于电池包24C。
可选地,电池包24C的位置可相对地活动,以使得被限位的移动设备25A可通过电池包24C位置的移动而被电池包24C贴合。电池包24C和移动设备25A可实现地无线地电路连接,其中手机25B能够始终被电池包24C电路连接,以使得手机25B被始终供电。
参考说明书附图之图25D,图25A至图25C所示的上述较佳实施例的变形实施例中,电池包24C被 支撑的方式置于基座10。也就是说,电池包24C被保持于基座10上方。进一步地,设备20可以被保持于电池包24C的上方,以被电池包24C无线充电。
优选地,电池包24C包括可置换的至少二个可插拔的电池24B,其中电池包24C的插拔方向和充电设备无线充电部240C被同侧地保持。换句话说,当手机25B被置于电池包24C并且被充电设备无线充电部240C无线通信地供电时,手机25B被保持覆盖于电池24B。可选地,手机25B被电池包24C支撑且不覆盖于电池24B。
参考说明书附图之图26A至图26J,本申请另一个较佳实施例的一收容供电系统被详细地揭露并诠释,收容供电系统适于被应用于至少二个类型的设备20,进一步地说,收容供电系统包括至少一清洁设备和至少一充电设备。
优选地,第一设备2001被实施为一清洁设备22A,第二设备2002被实施为充电设备24A,清洁设备22A和充电设备24A被基座10共同地收容。进一步地,清洁设备22A和充电设备24A至少选定其中一个的方式被基座10供电。
值得一提,清洁设备22A可以被实施为扫地机器人22B、吸尘器22C和洗地机22D的至少其中一个。
进一步地,由于充电设备24A被基座10长时间地收容,使得充电设备24A不会被杂乱地堆放在各个角落,更简洁地收纳。
清洁设备22A被保持于第一收容部121,充电设备24A被保持于第二收容部122。清洁设备22A优选地以置于第一收容部121的方式即可电路连接于充电部13,当充电设备24A被置于第二收容部122的方式即可电路连接于充电部13,清洁设备22A和充电设备24A都是采用一个动作就可以电路连接于基座10。
进一步地,清洁设备22A优选地是自动清洁的设备。
优选地,清洁设备22A被收容于第一收容主体121的第一收容腔1210,充电设备24A被收容于第二收容主体122的第二收容腔1220。在本申请中,清洁设备22A被其中一个基座充电部1300适配地连接。充电设备24A被收容于第二收容主体122的第二收容腔1220。
优选地,清洁设备22A被实施为扫地机器人22B。清洁设备22A的类型不受到本实施例的限制,清洁设备22A的类型可以被实施为扫拖一体的扫地机器人、吸拖一体的洗地机、吸拖一体的吸尘器等清洁设备,在此本申请不受到任何限制。
充电设备24A被实施为一电池24B、收容电连接至少二个电池24B的至少一电池包24C以及至少一持电设备,其中电池24B指的是可以用于其他设备供电的外置电池,例如,电池24B可供电于手机等移动设备以及以置入式地供电于清洁设备22A、烹饪设备等其他电动设备。电池包24C可电路连接于被收容于其中的电池24B,电池包24C还可以整体地供电于其他电动设备,如小型监控、电风扇、制冷扇等。持电设备还可以被实施为可处理信息可通信的智能电池包24C或可处理信息可通信的智能电池24B。
充电部13包括至少二个基座充电部1300以及分别电路连接于基座充电部1300的供电端130,每个基座充电部1300的充电头类型不受到本申请的任何限制,基座充电部1300的电连接方式可以被实施为接触点接口和非接触点接口,本申请不在此做任何限定。进一步地,接触点接口可以通过触点接口、插电头接口(举例来说,如USB接口、TYPE C接口、Lightning接口),非接触点接口可以被实施为电磁感应、磁共振、微波电传输,本领域技术人员可以理解并知晓。
优选地,清洁设备22A被以接触连接的方式电气连接于第一基座充电部131。充电设备24A被以接触连接的方式电气连接于第二基座充电部132。
优选地,扫地机器人22B被以触点连接的方式电气连接于第一基座充电部131。第一基座充电部131被设置于靠近远地端面(顶面)的方式被设置第一收容腔1210,当扫地机器人22B移动过程中被第一基座充电部131限位地保持,以使得扫地机器人22B在移动过程中就能够被贴合地吸附。
优选地,第一基座充电部131被实施为2个触点,以直接连接于扫地机器人22B的一充电口,且第一基座充电部131被凸出于界定第一收容腔1210的表面的方式被设置,以使得第一基座充电部131可被扫地机器人22B直接接触的方式充电。
可选地,第一基座充电部131具有一定磁性,以使得扫地机器人22B在移动过程中就可以被吸附于第 一基座充电部131。
第一收容主体121包括一第一底面1211、一第一侧壁1212以及一第一顶面1213,其中第一侧壁1212自第一底面1211延伸至第一顶面1213,以界定第一收容腔1210。
优选地,第一基座充电部131被形成于第一收容主体121的第一底面1211,当扫地机器人22B在第一底面1211移动,即可被接触连接于第一基座充电部131。
优选地,第一基座充电部131和第一侧壁1212之间的距离和扫地机器人22B的周壁和扫地机器人22B的充电口的距离适配。进一步地,第一基座充电部131具有一定的长度,以适于不同尺寸的机器人211被适配地充电。
在本申请的变形实施例中,第一基座充电部131被设置于界定第一收容腔1210的第一侧壁1212。更可选地,第一基座充电部131被凸出于第一收容主体121的第一侧壁1212的方式被设置,以适于被设置于扫地机器人22B的周壁的充电位。
可选地,清洁设备22A被以非接触连接的方式电气连接于第一基座充电部131。充电设备24A以插拔连接的方式电气连接于第一基座充电部131。
可选地,充电设备24A以非接触连接的方式电气连接于第一基座充电部131。进一步地,非接触连接的方式选自电磁感应、磁共振、微波电传输的类型组,本申请在此方面不受任何限制。
支撑主体111具有一近地端部和一远地端部,收容部12的第一收容腔1210被形成于支撑主体111的一近地端部的径向方向,并且第一收容腔1210以至少一个第一开口导通于外部空间的方式被形成于支撑主体111的下端部。
值得一提的是,支撑主体111的远地端部和近地端部是以支撑主体111的垂直延伸方向上界定,并且支撑主体111的近地端部相对于远地端部靠近地面。
由于扫地机器人22B适于在地面上进行全自动的清洁,扫地机器人22B可自动进入第一收容腔1210并保持扫地机器人22B具有一扫地机器人充电端2210B,扫地机器人22B的扫地机器人的充电口和充电部13的第一基座充电部131接直接接触,进而扫地机器人充电端2210B和第一基座充电部131直接接触时,扫地机器人22B被基座10充电。
更优选地,电池24B可以被用于供电于扫地机器人22B,以使得扫地机器人22B被始终供电。
扫地机器人22B可自动开启的方式下放被收容的垃圾,以持续作业,扩大受到垃圾收集满了以后无法进行作业的限制。
辅助清洁部14被保持于第一收容部121的第一支撑面1211,值得一提的是,第一支撑面1211被沿着水平方向延伸,且朝向地面地保持,继而扫地机器人22B被保持于第一支撑面1211的垂直方向上。
在本申请的另一个较佳实施例中,扫地机器人22B是吸拖一体的扫地机器人22B,吸拖一体的扫地机器人22B包括一吸尘主体212B和至少一可拆卸的拖地主体213B,其中吸拖一体的扫地机器人22B被保持于基座10的对应位置后,以通信连接于基座10的第一通信单元1531,进而吸拖一体的扫地机器人22B可获取自清洁的信号后被基座10自清洁。也就是说,辅助清洁部14旋转清洗吸拖一体的扫地机器人22B的拖地主体213B。
辅助清洁部14被保持于第一收容部121的第一支撑面1211,值得一提的是,第一支撑面1211被沿着水平方向延伸,且朝向地面地保持,继而拖地主体213B被第一支撑面1211贴合地被清洁。
由于基座主体11被电路连接于至少一充电设备24A和/或外部电路,被基座主体11供电的设备20始终被电路连接,以防止断电而无法运行或者充电。即,充电设备24A被电路连接于基座主体11,当基座主体11被连接于外部电路时,充电设备24A被基座主体11供电,当基座主体11没有连接于外部电路时,充电设备24A可反供电于基座主体11,使得基座主体11始终能够供电于设备20,特别地是清洁设备22A。
由于清洁设备22A自清洁能够有效地减少用户处理污渍、污水、垃圾的麻烦,藉由清洁设备22A被保持于基座11的方式自清洁,以防止清洁设备22A将污渍、污水、垃圾散落于其他地方以需要二次清洁,减少二次制污。
值得一提的是,基座主体11未被连接于外部电路时,基座10被充电设备24A反供电,基座主体11 可以被移动至清洁设备22A所在附近,以实时地用于清洁设备22A的自清洁。清洁设备22A即使在远离原来的基座主体11所在的位置,也能够被可移动的基座主体11就地适配地自清洁。也就是说,基座10可以被移动的方式就地用于清洁设备22A的自清洁。
更可选地,基座10以被充电设备24A反供电的方式供电于其他设备20,举例来说是清洁设备22A、通信设备23A、智能设备28以及其他充电设备24A。
基座10包括一信息处理部15,其中信息处理部15包括至少一通信模块153、至少一控制模块152以及一选定模块154,通信模块153和充电部13可通信地连接于选定模块154,选定模块154选定每个设备的充电模式,控制模块152接收到选定模块154发送的充电模式后控制充电部13以被选定的充电模式和断电模式的方式供电。换言之,设备20被基座10选定充电模式和断电模式的方式供电。
充电部13以被选定一充电模式和一断电模式的方式供电于设备20。充电模式包括一快充模式和一慢充模式。也就是说,充电部13以被选定快充模式、慢充模式和断电模式的方式供电于设备20。进一步地,充电部13的每个基座充电部1300分别以各自预设输出功率的快充模式、慢充模式和断电模式的方式供电。换言之,充电部13的第一基座充电部131和第二基座充电部132的输出功率不同,第一基座充电部131和第二基座充电部132的快充模式和慢充模式不同。
选定模块154进一步地电路连接于通信模块153,其中通信模块153通信地连接于设备20时,选定模块154获取到通信模块153获取的电路触发信息,根据通信模块153发送的电路触发信息,系统选定机构1543选定充电模式和断电模式的其中一个作为系统选定初结果,用户触发机构1540发送用户是否触发充电模式和断电模式的用户选定初结果,控制模块152接收到用户触发机构1540的用户选定初结果和系统选定机构1543的系统选定初结果后处理得到一选定结果,控制模块152控制充电部13的不同的基座充电部输出对应的电流。
优选地,系统选定机构1543选定慢充模式、快充模式以及断电模式的其中一个时,控制模块152控制充电部13的不同的基座充电部输出对应的电流。
参考说明书附图之图26A,选定模块154包括一用户触发机构1540和一系统选定机构1543,用户触发机构1540包括一第一设备触发机构1541和至少一第二设备触发机构1542。进一步地,用户触发机构1540和系统选定机构1543分别通信地连接于控制模块152,以使得控制模块152可选定一快充模式、一慢充模式以及一断电模式的至少其中一个为选定结果,设备20被基座10快充、慢充或者断电。
通信模块153包括至少二个通信单元1530,每个通信单元1530可分别通信地连接于控制模块152和选定模块154。在本申请的较佳实施例中,通信模块153包括至少一第一通信单元1531和至少一第二通信单元1532,其中第一通信单元1531和第二通信单元1532分别通信地连接于控制模块152和选定模块154。
优选地,通信模块153藉由充电接口通信地连接,其中被电路连接于基座10的第一设备2001和第二设备2002分别通信地连接于对应的通信单元1530。
优选地,第一通信单元1531被设置于第一收容部121。第一通信单元1531以接触通信的方式通信地连接于第一设备2001。第一通信单元1531可发射通信信号。进一步地,第一通信单元1531藉由第一基座充电部131和扫地机器人22B充电接口连接的方式通信于扫地机器人22B。
优选地,第二通信单元1532被设置于第二基座充电部132。第二通信单元1532以接触通信的方式通信地连接于第二设备2002。第二通信单元1532可发射通信信号。第二通信单元1532藉由第二基座充电部132和电池24B充电接口连接的方式通信于电池24B。
优选地,第一设备2001被实施为清洁设备22A。当清洁设备22A被移动至第一通信单元1531的对应位置,被供电的基座10的第一通信单元1531被通信连接于清洁设备22A,清洁设备22A获取自清洁信号时,清洁设备22A以被收容于第一收容部121的方式自清洁。
第二通信单元1532被设置于第二收容部122。第二通信单元1532以接触通信地连接于第二设备2002。第二通信单元1532可发射通信信号。
第二设备2002被实施为供电设备24A。当供电设备24A被移动至第二通信单元1532的对应位置,被供电的基座10的第二通信单元1532被通信连接于供电设备24A。
信息处理部15包括一选定模块154,其中选定模块154可被用户选定/基座10自动选定的方式选定至少一设备20快充、慢充或者断电。
控制模块152可通信地连接于选定模块154,其中设备20藉由同一充电口就可以被选定地电路流通至少三个电流大小的电流。也就是说,设备20藉由同一充电口就可以被选定地快充、慢充或者断电。
值得注意的是,控制模块152获取用户触发机构1540和系统选定机构1543的电信号,并选定最终的选定结果后控制充电部13的电路电流。
值得一提的是,设备20的电量相关信息可以被用于系统选定机构1543选定设备20的充电模式。举例,当设备20低于一预设电量后,系统选定机构1543选定设备20以快充模式为系统选定初结果,当设备设备20高于预设电量低于100%的电量时,系统选定机构1543选定设备20以慢充模式为系统选定初结果。
优选地,在本申请的较佳实施例中,的第一设备2001被实施为扫地机器人22B。进一步地,扫地机器人22B以第一设备慢充电流的电流大小电路连接于基座10的第一基座充电部131。
第一通信单元1531通信地连接于扫地机器人22B时,选定模块154获取到通信模块153获取的扫地机器人22B的电路触发信息,根据第一通信单元1531发送的扫地机器人22B的设备相关信息和第一基座充电部131发送的扫地机器人22B的电路相关信息,系统选定机构1543选定第一设备慢充模式、第一设备快充模块以及断电模式的其中一个为系统选定初结果时,控制模块152控制充电部13输出对应的电流。也就是说,第一设备2001以第一设备慢充电流或第一设备快充电流的电流大小电路连接于基座10。第一设备快充电流高于第一设备慢充电流。
第二通信单元1532通信地连接于第二设备2002的设备相关信息的电信号。第二基座充电部132通信地获取第二设备2002的电量相关信息。系统选定机构1543接收到第二通信单元1532发送的设备相关信息和第二基座充电部132发送的电量相关信息,以得到一第二设备系统选定初结果,第二设备触发机构1542获取用户触发的设备触发模式以得到一第二设备用户选定初结果,控制模块152接收到第二设备触发机构1542发送的第二设备用户选定初结果和系统选定机构1543发送的第二设备系统选定初结果后处理得到选自第一设备慢充模式、第一设备快充模块以及断电模式的其中一个为第二设备系统选定初结果,以得到一第二设备选定结果,控制模块152以第二设备选定结果对应的模式控制第二基座充电部132输出电流。
进一步地,第二通信单元1532的电池24B的设备相关信息的电信号。第二基座充电部132通信地获取电池24B的电量相关信息。系统选定机构1543接收到第二通信单元1532发送的设备相关信息和第二基座充电部132发送的电量相关信息,以得到一第二设备系统选定初结果,第二设备触发机构1542获取用户触发的设备触发模式以得到一充电设备用户选定初结果,控制模块152接收到第二设备触发机构1542发送的第二设备用户选定初结果和系统选定机构1543发送的第二设备系统选定初结果,以处理选自第二设备慢充模式、第二设备快充模块以及断电模式的其中一个为充电设备选定结果,控制模块152以充电设备选定结果对应的模式控制第二基座充电部132输出电流。
值得一提的是,控制模块152判断快充模式、慢充模式以及断电模式的其中一个时,用户触发机构1540的优先级高于系统选定机构1543。
参考说明书附图之图26B,扫地机器人22B被电路连接于基座10,第一通信单元1531接收到扫地机器人22B的设备相关信息的电信号,第一设备触发机构1541电路连接于控制模块152,第一设备触发机构1541被用户选定第一设备快充模式,系统选定机构1543接收到第一通信单元1531的扫地机器人22B的清洁相关信息的电信号后选定第一设备快充模式,控制模块152接收到系统选定机构1543和第一设备触发机构1541的选定信息后,由于第一设备触发机构1541被用户选定第一设备快充模式,用户选定的优先级高于系统选定,控制模块152控制充电部13的第一基座充电部131输出第一设备快充电流。也就是说,扫地机器人22B以第一设备快充电流的电流大小被电路连接于第一基座充电部131。
在本申请的较佳实施例中,参考说明书附图之图26C,当扫地机器人22B导通于第一基座充电部131时,控制模块152没有接收到第一设备触发机构1541被用户触发的电信号时,根据第一基座充电部131电路连接于扫地机器人22B,系统选定机构1543接收到第一基座充电部131发送的扫地机器人22B的第一设备电量比例t1<第一阈值t01,控制模块152接收到系统选定机构1543选定一清洁设备快充模式。
在本申请的较佳实施例中,参考说明书附图之图26D,当扫地机器人22B导通于第一基座充电部131时,控制模块152没有接收到第一设备触发机构1541被用户触发的电信号时,根据第一基座充电部131电路连接于扫地机器人22B,系统选定机构1543接收到第一基座充电部131发送的扫地机器人22B的电量大于第一阈值t01并且小于100%,控制模块152接收到系统选定机构1543选定一清洁设备慢充模式。
当第一设备触发机构1541未接收到用户选定一第一设备快充模式或者断电模式的信号,控制模块152控制第一基座充电部131输出第一设备慢充电流。也就是说,第一设备2001被基座10以第一设备慢充模式的电流大小电路连接。
参考说明书附图之图26E,当第一设备触发机构1541接收到用户选定一断电模式的信号,并且第一设备触发机构1541接收到用户选定一断电模式的信号,控制模块152控制第一基座充电部131输出零电流。
扫地机器人22B被电路连接于基座10,第一通信单元1531接收到扫地机器人22B的设备相关信息的电信号,第一设备触发机构1541电路连接于控制模块152,第一设备触发机构1541被用户选定断电模式,系统选定机构1543接收到第一通信单元1531的扫地机器人22B的设备相关信息的电信号和第一基座充电部131发送的电量相关信息后选定第一设备快充模式或者第一设备慢充模式作为系统选定初结果,第一设备触发机构1541被用户选定断电模式为第一设备用户选定初结果,控制模块152接收到系统选定机构1543和第一设备触发机构1541的选定信息后,由于第一设备触发机构1541被用户选定断电模式,控制模块152控制充电部13的第一基座充电部131输出零电流。即,扫地机器人22B未电路连接于第一基座充电部131。
参考说明书附图之图26F,当扫地机器人22B自清洁时,控制模块152接收到系统选定机构1543选定一断电模式。
进一步地,扫地机器人22B通信地发送第一通信单元1531一自清洁状态电信号,系统选定机构1543接收到扫地机器人22B的自清洁状态电信号选定断电模式为清洁设备系统选定初结果。根据第一基座充电部131电路连接于扫地机器人22B,系统选定机构1543接收到第一通信单元1531发送的扫地机器人22B的自清洁状态电信号,控制模块152接收到系统选定机构1543选定一断电模式。
值得一提的是,即使第一设备选定机构1511选定第一设备快充模式或者第一设备慢充模式的其中一个作为第一设备用户选定初结果。换句话说,对于断电模式中,系统选定机构1543选定的断电模式的优先级高于用户选定机构1531。
第一设备触发机构1541被选定断电模式和第一设备快充模式的方式不受任何限制,举例来说,第一设备触发机构1541被按压一次是第一设备快充模式,第一设备触发机构1541被长按3秒以上是第一设备快充模式。举例来说,第一设备触发机构1541被向一侧拨动是第一设备快充模式,第一设备触发机构1541被向远离预设快充位置和预设慢充位置地拨动,以将第一设备触发机构1541选定为第一设备快充模式。
值得一提的是,用户触发机构1540还可以被实施为语音、动作、人脸识别、触屏的方式,在此用户触发机构1540的类型不受任何限制。
第一设备触发机构1541也就是清洁设备触发机构。进一步地,第一设备触发机构1541也就是扫地机器人触发机构。
进一步地,系统选定机构1543接收到通信模块153发送的扫地机器人22B的自清洁电信号,系统选定机构1543的断电模式被触发,控制模块152接收到系统选定机构1543选定断电模式,控制模块152控制第一基座充电部131的电流大小为0。
优选地,在第一设备2001处于断电模式时,第二设备2002的充放电不受到第一设备2001的电路连接状态的影响。
在本申请的其他变形实施例中,扫地机器人22B在自清洁时同时断电,扫地机器人22B和基座10的电路被断开,以使得被供电于扫地机器人22B的电池24B不需要同时充放电,降低电池24B的最高功率。
当基座10主动检测或者通信获取清洁设备22A自清洁时,基座10和清洁设备22A断电,断电的指令可以来自基座也可以来自用户、云端、其他设备或者其他系统。
在本申请的其他变形实施例中,扫地机器人22B在自清洁时可以充电,扫地机器人22B和基座10的电路不会被断开,以使得被供电于扫地机器人22B的电池24B同时充放电。值得一提的是,本申请在此方 面不受任何限制,可以根据扫地机器人22B的自清洁的功率的不同而被选定不同的充放电方式。
优选地,第二设备2002被实施为供电设备24A。第二设备2002被电路连接于第二基座充电部132。本较佳实施例中,供电设备24A被实施为电池24B。
电池24B被电路连接于基座10的第二基座充电部132,每个第二通信单元1532通信地获取对应的电池24B的电池相关信息后发送给系统选定机构1543,其中控制模块152获取系统选定机构1543和第二设备触发机构1542的选定信息后,控制模块152选定慢充模式、快充模式和断电模式的其中一个。控制模块152控制充电部13输出对应模式的电流。
进一步地,电池24B以第二设备慢充电流或第二设备快充电流的电流大小电路连接于基座10。进一步地,第二设备慢充电流的电流大小小于第二设备快充电流的电流大小。
在本申请的较佳实施例中,电池24B的数量是4个,对应电池24B的第二基座充电部132的数量是4个。对应电池24B的第二设备触发机构1542的数量是4个。用户可以选定对应的电池24B的第二设备触发机构1542。控制模块152获取第二设备触发机构1542的用户选定信息、第二通信单元1532获取对应的电池相关信息以及每个第二基座充电部132的发送的电池电量信息后,控制模块152分别控制每个第二基座充电部132以一第二设备慢充电流、一第二设备快充电流以及零电流的其中一个电路连接于每个电池24B。也就是说,控制模块152可以分别控制多个同类的设备20各自的电流大小。进一步地基座10不仅可以提供不同的设备20以不同的电流大小的方式供电,基座10更可以提供同类型的多个设备20以不同的电流大小的方式供电。值得一提的是,基座10可仅给其中至少一个设备20断电的方式供电于不同设备20。基座10可仅给其中至少一个设备20快电的方式供电于不同设备20。
可选地,对应电池24B的第二设备触发机构1542的数量是一个。控制模块152获取第二设备触发机构1542的电池相关信息后,控制模块152获取每个第二基座充电部132的电池24B的电容信息后处理得到对电量较低的电池24B供电。
参考说明书附图之图26G,第二设备触发机构1542的第二设备快充模式被用户触发时,第二设备触发机构1542电路连接于控制模块152,控制模块152对比系统选定机构1543和第二设备触发机构1542后处理选定第二设备快充模式。控制模块152控制充电部13的第二基座充电部132输出第二设备快充电流。也就是说,供电设备24A以第二设备快充电流的电流大小被电路连接于第二基座充电部132。
当电池24B导通于第二基座充电部131时,控制模块152没有接收到第二设备触发机构1542被用户触发的电信号时,并且控制模块152接收到系统选定机构1543选定一第二设备慢充模式,控制模块152控制充电部13的第二基座充电部132输出第二设备慢充电流。也就是说,电池24B被基座10以第二设备慢充电流的电流大小电路连接。
参考说明书附图之图26H,至少一个第二设备触发机构1542的断电模式被用户触发时,第二设备触发机构1542电路连接于控制模块152,控制模块152对比系统选定机构1543和第二设备触发机构1542后处理选定断电模式。控制模块152控制充电部13的第二基座充电部132输出零电流。也就是说,供电设备24A以零电流方式被电路连接于第二基座充电部132。
参考说明书附图之图26I,至少一个第二设备触发机构1542未被用户触发。每个电池24B以不同的充电模式和断电模式的其中一个电路连接于基座10。
其中一个第二通信单元1532获取对应的电池24B的第二设备电量比例t2<第二阈值t02时,第二设备触发机构1542电路连接于控制模块152,控制模块152对比系统选定机构1543和第二设备触发机构1542后处理选定第二设备快充模式。控制模块152控制充电部13的第二基座充电部132输出第二设备快充电流。也就是说,电池24B以第二设备快充电流方式被电路连接于第二基座充电部132。
其中一个第二通信单元1532获取对应的电池24B的第二设备电量比例t2>第二阈值t02,并且第二设备电量比例t2<100%时,第二设备触发机构1542电路连接于控制模块152,控制模块152对比系统选定机构1543和第二设备触发机构1542后处理选定第二设备慢充模式。控制模块152控制充电部13的第二基座充电部132输出第二设备慢充电流。也就是说,供电设备24A以第二设备慢充电流方式被电路连接于第二基座充电部132。
其中一个第二通信单元1532获取对应的电池24B的第二设备电量比例t2=100%,第二设备触发机构1542电路连接于控制模块152,控制模块152对比系统选定机构1543和第二设备触发机构1542后处理选定断电模式。控制模块152控制充电部13的第二基座充电部132输出零电流。也就是说,供电设备24A以未电路连接于第二基座充电部132。
参考说明书附图之图26J,图26A所示的上述较佳实施例的收容供电系统的变形实施例被详细地揭露并诠释,收容供电系统和图26A所示的上述较佳实施例不同的是,充电设备24A被实施为容置至少二个电池24B的电池包24C。通信设备23A和充电设备24A被设置于基座主体111的远地端面。也就是说,通信设备23A和充电设备24A被设置于基座主体111的顶面。
值得一提的是,供电设备24A还可以被实施为可处理信息可通信的智能电池包24C或可处理信息可通信的智能电池24B,即供电设备24A还可以被实施为持电装置24D,本申请不受任何限制。
当电池包24C被保持于基座10时,电池24B可自电池包24C单独取出后被用于其他设备20。
优选地,电池包24C被置入地方式被基座10充电。在基座主体11有电的情况下,电池包24C被基座主体11供电,当基座主体11没有连接外部电路时,基座主体11被电池包24C反供电,也就是说,基座主体11始终被电池包24C和/或外部电路供电,以防止被基座主体11供电的其他设备20无法被供电而无法正常运行。也就是说,通信设备23A能够始终被保持于有电的基座10,进而保持通信设备23A始终提供局域网,有效地保持用户的网络保障。
参考说明书附图之图27A和图27B,在本申请的另一个较佳实施例中,收容供电系统包括基座10和被持续基座10持续供电的至少二个设备20。每个设备20可以被基座10分别以不同的充电模式和断电模式的方式电路连接。
优选地,收容供电系统包括基座10和被持续基座10持续供电的至少三个不同类型的设备20。
收容供电系统包括至少一第一设备2001、第二设备2002以及一第三设备以及基座10。
基座10包括一信息处理部15,其中信息处理部15包括至少一通信模块153、至少一控制模块152以及一选定模块154,通信模块153和充电部13可通信地连接于选定模块154,选定模块154选定每个设备的充电模式,控制模块152接收到选定模块154发送的充电模式后控制充电部13以被选定的充电模式和断电模式的方式供电。换言之,设备20被基座10选定充电模式和断电模式的方式供电。
优选地,选定模块154包括一用户触发机构1540和一系统选定机构1543,用户触发机构1540包括一第一设备触发机构1541、至少一第二设备触发机构1542以及一第三设备触发机构1544。进一步地,用户触发机构1540和系统选定机构1543分别通信地连接于控制模块152,以使得控制模块152可选定一快充模式、一慢充模式以及一断电模式的至少其中一个为选定结果,设备20被基座10快充、慢充或者断电。
通信模块153包括至少三个通信单元1530,每个通信单元1530可分别通信地连接于控制模块152和选定模块154。在本申请的较佳实施例中,通信模块153包括至少一第一通信单元1531、至少一第二通信单元1532以及至少一第三通信单元1533,其中第一通信单元1531、第二通信单元1532以及第三通信单元1533分别通信地连接于控制模块152和选定模块154。
选定模块154包括至少一第三设备通信单元1534和至少一系统选定机构1543。第三设备通信单元1534包括至少一第一设备选定单元1531、至少一第二设备选定单元1532以及至少一第三设备通信单元1534。第一设备选定单元1531、至少一第二设备选定单元1532以及至少一第三设备通信单元1534分别被电路连接于控制模块152。
充电部13包括多个基座充电部1300,其中基座充电部1300包括至少一第一基座充电部131、至少一第二基座充电部132以及至少一第三基座充电部133。第一基座充电部131、至少二个第二基座充电部132以及至少一第三基座充电部133分别被间隔地设置于基座主体111。
优选地,通信模块153的通信单元1530藉由充电接口通信地连接,其中被电路连接于基座10的第一设备2001、第二设备2002以及第三设备2003分别通信地连接于对应的通信单元1530。
优选地,第一设备2001被实施为清洁设备22A。当清洁设备22A被移动至第一通信单元1531的对应位置,被供电的基座10的第一通信单元1531被通信连接于清洁设备22A,清洁设备22A获取自清洁信号 时,清洁设备22A以被收容于第一收容部121的方式自清洁。
第二通信单元1532被设置于第二收容部122。第二通信单元1532以接触通信地连接于第二设备2002。第二通信单元1532可发射通信信号。
第二设备2002被实施为供电设备24A。当供电设备24A被移动至第二通信单元1532的对应位置,被供电的基座10的第二通信单元1532被通信连接于供电设备24A。
第三设备被实施为通信设备23A。当通信设备23A被移动至第三通信单元1533的对应位置,被供电的基座10的第三通信单元1533被通信连接于所通信设备23A。
清洁设备22A、通信设备23A和充电设备24A被共同地收容于基座10并且被基座10充电。清洁设备22A处理水污,基座10可在有水情况下给清洁设备22A和通信设备23A充电。
清洁设备22A被第一收容主体121的第一收容部121,且始终用于地面清洁,因此基座10被放置于地面,以便于清洁设备22A被放置。
充电设备24A被容置于第二收容部122。第二收容部122被保持于基座主体111的远地端面。在基座10没有连接外部电路时,充电设备24A反供电于基座10,以保持基座10始终被供电,以防止需要基座10供电的设备20无法正常运行。
通信设备23A被容置于第三收容部123。第三收容部123被保持于基座主体111的远地端面,并且第三收容部123和第二收容部122被间隔地保持于远地端面。通信设备23A被基座10供电。
参考说明书附图之图27A和图27B,清洁设备22A被实施为一洗地机22D,洗地机22D被第一收容主体121限位地保持。
进一步地,第一收容主体121被远离基座主体111的方式被设置于基座主体111的一侧,以使得洗地机22D可以被基座10支撑,且第一供电端131被形成于基座主体111的侧壁,且适于洗地机22D的充电口直接接触充电。
洗地机22D会有部分污水保持与第一收容主体121,基座主体111可第一收容主体121承接水的情况下供电于通信设备23A和充电设备24A。
优选地,充电设备24A被实施为至少二个电池24B,电池24B被以第三收容主体123支撑的方式被保持于基座主体111的上方。电池24B可被直接存取,且电池24B可以被单独地给其他设备20供电。
优选地,电池24B被置入地方式被基座10充电。在基座10没有连接外部电路时,电池24B反供电于基座10,以保持基座10始终被供电,以防止需要基座10供电的设备20无法正常运行。
更优选地,第二收容主体122设有弹出机构,以使得电池24B可被一键弹出。
可选地,至少二个电池24B可被同时一键弹出。
通信设备23A被实施为移动WIFI信号扩大器,也就是中继路由器,以供于其他设备20始终保持于局域网的环境中,以便于通信。值得一提的是,通信设备23A还可以被实施为路由器,直接连接网线提供WIFI信号。
优选地,第一通信单元1531被设置于第一收容部121。第一通信单元1531以接触通信的方式通信地连接于第一设备2001。第一通信单元1531可发射通信信号。进一步地,第一通信单元1531藉由第一基座充电部131和洗地机22D充电接口连接的方式通信于洗地机22D。
优选地,第二通信单元1532被设置于第二基座充电部132。第二通信单元1532以接触通信的方式通信地连接于第二设备2002。第二通信单元1532可发射通信信号。第二通信单元1532藉由第二基座充电部132和电池24B充电接口连接的方式通信于电池24B。
优选地,第三通信单元1533被设置于充电部13的一第三基座充电部133。第三通信单元1533以接触通信的方式通信地连接于供电设备24A。第三通信单元1533可发射通信信号。第三通信单元1533藉由第三基座充电部133和通信设备23A充电接口连接的方式通信于通信设备23A。
在本申请的其他变形实施例中,充电设备24A还可以被实施为电池包24C、可处理信息可通信的智能电池包24C或可处理信息可通信的智能电池24B,即供电设备24A还可以被实施为持电装置。电池24B可供电于手机等移动设备以及以置入式地供电于清洁设备22A、烹饪设备等其他电动设备。进一步地,可电 路连接于被收容于其中的电池24B,电池包24C还可以整体地供电于其他电动设备,如小型监控、电风扇、制冷扇等。
信息处理部15包括一选定模块154,其中选定模块154可被用户选定/基座10自动选定的方式选定至少一设备20快充、慢充或者断电。
控制模块152可通信地连接于选定模块154,其中设备20藉由同一充电口就可以被选定地电路流通至少三个电流大小的电流。也就是说,设备20藉由同一充电口就可以被选定地快充、慢充或者断电。
值得注意的是,控制模块152获取用户触发机构1540和系统选定机构1543的电信号,并选定最终的选定结果后控制充电部13的电路电流。
设备20的电量相关信息可以被用于系统选定机构1543选定设备20的充电模式。举例来说,当设备20低于一预设电量后,系统选定机构1543选定设备20以快充模式为系统选定初结果,当设备设备20高于预设电量低于100%的电量时,系统选定机构1543选定设备20以慢充模式为系统选定初结果。
优选地,在本申请的较佳实施例中,的第一设备2001被实施为洗地机22D。进一步地,洗地机22D以第一设备慢充电流的电流大小电路连接于基座10的第一基座充电部131。
第一通信单元1531通信地连接于洗地机22D时,选定模块154获取到通信模块153获取的洗地机22D的电路触发信息,根据第一通信单元1531发送的洗地机22D的设备相关信息和第一基座充电部131发送的洗地机22D的电路相关信息,系统选定机构1543选定第一设备慢充模式、第一设备快充模块以及断电模式的其中一个为系统选定初结果时,控制模块152控制充电部13输出对应的电流。也就是说,第一设备2001以第一设备慢充电流或第一设备快充电流的电流大小电路连接于基座10。第一设备快充电流高于第一设备慢充电流。
进一步地,第二通信单元1532通信地连接于第二设备2002的设备相关信息的电信号。第二基座充电部132通信地获取第二设备2002的电量相关信息。系统选定机构1543接收到第二通信单元1532发送的设备相关信息和第二基座充电部132发送的电量相关信息,以得到一第二设备系统选定初结果,第二设备触发机构1542获取用户触发的设备触发模式以得到一第二设备用户选定初结果,控制模块152接收到第二设备触发机构1542发送的第二设备用户选定初结果和系统选定机构1543发送的第二设备系统选定初结果后处理得到选自第一设备慢充模式、第一设备快充模块以及断电模式的其中一个为第二设备系统选定初结果,以得到一第二设备选定结果,控制模块152以第二设备选定结果对应的模式控制第二基座充电部132输出电流。
进一步地,第三通信单元1533的通信设备23A的设备相关信息的电信号。第三基座充电部133通信地获取电池24B的电量相关信息。系统选定机构1543接收到第三通信单元1533发送的设备相关信息和第三基座充电部133发送的电量相关信息,以得到一第三设备系统选定初结果,第三设备触发机构1544获取用户触发的设备触发模式以得到一通信设备用户选定初结果,控制模块152接收到第三设备触发机构1533发送的第三设备用户选定初结果和系统选定机构1543发送的第三设备系统选定初结果,以处理选自第三设备慢充模式、第三设备快充模块以及断电模式的其中一个为通信设备选定结果,控制模块152以通信设备选定结果对应的模式控制第二基座充电部132输出电流。
值得一提的是,控制模块152判断快充模式、慢充模式以及断电模式的其中一个时,用户触发机构1540的优先级高于系统选定机构1543。当系统选定机构1543选定断电模式后,系统选定机构1543的优先级高于用户触发机构1540。
参考说明书附图之图27A至图27C,洗地机22D被电路连接于基座10,第一通信单元1531接收到洗地机22D的设备相关信息的电信号,第一设备触发机构1541电路连接于控制模块152,第一设备触发机构1541被用户选定第一设备快充模式,系统选定机构1543接收到第一通信单元1531的洗地机22D的清洁相关信息的电信号后选定第一设备快充模式,控制模块152接收到系统选定机构1543和第一设备触发机构1541的选定信息后,由于第一设备触发机构1541被用户选定第一设备快充模式,用户选定的优先级高于系统选定,控制模块152控制充电部13的第一基座充电部131输出第一设备快充电流。也就是说,洗地机22D以第一设备快充电流的电流大小被电路连接于第一基座充电部131。
在本申请的较佳实施例中,参考说明书附图之图27C,当洗地机22D以接触连接的方式电路连接于第一基座充电部131时,控制模块152没有接收到第一设备触发机构1541被用户触发的电信号时,根据第一基座充电部131电路连接于洗地机22D,系统选定机构1543接收到第一基座充电部131发送的洗地机22D的第一设备电量比例范围是第一阈值t01<第一设备电量比例t1<100%,控制模块152接收到系统选定机构1543选定一清洁设备慢充模式。
当电池24B以接触连接的方式电路连接于第二基座充电部132时,控制模块152没有接收到第二设备触发机构1542被用户触发的电信号时,根据第二基座充电部132电路连接于电池24B,系统选定机构1543接收到第二基座充电部132发送的电池24B的第二设备电量比例范围是第二阈值t02<第二设备电量比例t2<100%,控制模块152接收到系统选定机构1543选定一充电设备慢充模式。
当通信设备23A以接触连接的方式电路连接于第三基座充电部133时,控制模块152没有接收到第三设备触发机构1544被用户触发的电信号时,根据第三基座充电部133电路连接于电池24B,系统选定机构1543接收到第一基座充电部133发送的通信设备23A的第三设备电量比例范围是第三阈值t03<第三设备电量比例t3<100%,控制模块152接收到系统选定机构1543选定一通信设备慢充模式。
在本申请的较佳实施例中,参考说明书附图之图27D,当洗地机22D自清洁时,控制模块152接收到系统选定机构1543选定一断电模式。
进一步地,洗地机22D通信地发送第一通信单元1531一自清洁状态电信号,系统选定机构1543接收到洗地机22D的自清洁状态电信号选定断电模式为清洁设备系统选定初结果。根据第一基座充电部131电路连接于洗地机22D,系统选定机构1543接收到第一通信单元1531发送的洗地机22D的自清洁状态电信号,控制模块152接收到系统选定机构1543选定一断电模式。
值得一提的是,即使第一设备选定机构1511选定第一设备快充模式或者第一设备慢充模式的其中一个作为第一设备用户选定初结果。换句话说,对于断电模式中,系统选定机构1543选定的断电模式的优先级高于用户选定机构1531。
第一设备触发机构1541被选定断电模式和第一设备快充模式的方式不受任何限制,举例来说,第一设备触发机构1541被按压一次是第一设备快充模式,第一设备触发机构1541被长按3秒以上是第一设备快充模式。即,第一设备触发机构1541被向一侧拨动是第一设备快充模式,第一设备触发机构1541被向远离预设快充位置和预设慢充位置地拨动,以将第一设备触发机构1541选定为第一设备快充模式。
值得一提的是,用户触发机构1540还可以被实施为语音、动作、人脸识别、触屏的方式,在此用户触发机构1540的类型不受任何限制。
第一设备触发机构1541是清洁设备触发机构。即,第一设备触发机构1541也就是洗地机触发机构。
进一步地,系统选定机构1543接收到通信模块153发送的扫地机器人22B的自清洁电信号,系统选定机构1543的断电模式被触发,控制模块152接收到系统选定机构1543选定断电模式,控制模块152控制第一基座充电部131的电流大小为0。
优选地,在第一设备2001处于断电模式时,第二设备2002的充放电不受到第一设备2001的电路连接状态的影响。
在本申请的其他变形实施例中,扫地机器人22B在自清洁时同时断电,扫地机器人22B和基座10的电路被断开,以使得被供电于扫地机器人22B的电池24B不需要同时充放电,降低电池24B的最高功率。
在本申请的其他变形实施例中,扫地机器人22B在自清洁时可以充电,扫地机器人22B和基座10的电路不会被断开,以使得被供电于扫地机器人22B的电池24B同时充放电。值得一提的是,本申请在此方面不受任何限制,可以根据扫地机器人22B的自清洁的功率的不同而被选定不同的充放电方式。
参考说明书附图之图27E,在基座10没连接外部电路时,电池24B可以被用于供电于基座10,以使得基座10被始终供电。进一步地,基座10可以被电池24B和外部电源不间断地供电。
在本实施例的变形实施例中,洗地机22D可以在第一收容主体121自清洁时,基座10始终可通信地连接于洗地机22D,以供洗地机22D接收到可以自清洁的电信号,以开启自清洁模式。
在本申请的较佳实施例中,参考说明书附图之图27F,当洗地机22D导通于第一基座充电部131时, 控制模块152没有接收到第一设备触发机构1541被用户触发的电信号时,根据第一基座充电部131电路连接于洗地机22D,系统选定机构1543接收到第一基座充电部131发送的洗地机22D的第一设备电量比例t1<第一阈值t01,控制模块152接收到系统选定机构1543选定一清洁设备快充模式。
值得一提的是,第一阈值t01是一充电百分比,第一阈值t01优选地是70%。更优选地,第一阈值t01地是75%。更优选地,第一阈值t01地是80%。更优选地,第一阈值t01地是85%。进一步地,第一阈值t01地是90%。
优选地,控制模块152根据功率检测得到的一功率大于预设输出功率后,控制模块152控制第二基座充电部132的至少其中一个断路,以停止给充电设备24A充电。在本申请中,控制模块152根据功率检测得到的一功率大于预设输出功率后,控制模块152控制第二基座充电部132的至少其中一个断路,以停止给电池24B充电,进而减少总功率输出。
在本申请的较佳实施例中,参考说明书附图之图27G,当洗地机22D导通于第一基座充电部131时,控制模块152没有接收到第一设备触发机构1541被用户触发的电信号时,根据第一基座充电部131电路连接于洗地机22D,系统选定机构1543接收到第一基座充电部131发送的洗地机22D的第一设备电量比例t1=100%,控制模块152接收到系统选定机构1543选定一断电模式。
参考说明书附图之图27H,至少一个第一设备触发机构1541的断电模式被用户触发时,第一设备触发机构1541电路连接于控制模块152,控制模块152对比系统选定机构1543和第一设备触发机构1541后处理选定断电模式。控制模块152控制充电部13的第二基座充电部132输出零电流。也就是说,供电设备24A以零电流方式被电路连接于第二基座充电部132。
在本申请的较佳实施例中,洗地机22D的数量是1个。用户可以选定对应的洗地机22D的第一设备触发机构1541。至少一个第一设备触发机构1541的断电模式被用户触发时,第一设备触发机构1541电路连接于控制模块152,控制模块152获取第一设备触发机构1541的用户选定信息、第一通信单元1531获取对应的设备相关信息以及每个第一基座充电部131的发送的电池电量信息后,由于第一设备触发机构1541接收到用户选定的清洁设备快充模式,控制模块152分别控制每个第一基座充电部131以一断电电流于洗地机22D。也就是说,供电设备24A以零电流方式被电路连接于第二基座充电部132。
参考说明书附图之图27I,本申请的上述较佳实施例的收容供电系统的变形实施例被详细地揭露并诠释,收容供电系统和上述较佳实施例不同的是,第一通信单元1531获取对应的洗地机22D的工作预约,其中第一设备触发机构1541电路连接于控制模块152,系统选定机构1543接收到第一通信单元1531和第一设备选定模块1541以及第一基座充电部131的信息后,由于第一通信单元1531获取到一工作预约指令,控制模块152对比系统选定机构1543和第一设备触发机构1541后处理选定清洁设备快充模式。控制模块152控制充电部13的第一基座充电部131输出清洁设备快充电流。
值得一提的是,第一通信单元1531可以获取到快充指令、工作预约指令、断电指令、自清洁指令等设备相关信息,在此方面本申请不收任何限制。详而言之地,洗地机22D包括一洗地处理模块223D,洗地处理模块223D可通信地连接于第一通信单元1531,洗地处理模块223D可获取其他系统或者设备发送至洗地机22D的指令。即,第一通信单元1531获取洗地机处理模块223D发送的快充指令、工作预约指令、断电指令、自清洁指令等设备相关信息,以发送给系统选定机构1543选定第一设备系统选定初结果。
进一步地,洗地处理模块223D包括一洗地控制单元2231D和一洗地通信单元2232D,洗地控制单元2231D和洗地通信单元2232D可通信地连接,洗地控制单元2231D发送洗地通信单元2232D至少一设备相关信息,以使得洗地通信单元2232D可通信地连接于第一设备通信单元1531。洗地控制单元2231D可处理得到快充指令、工作预约指令、断电指令、自清洁指令。洗地通信单元2232D可通信地获取其他设备20、其他系统或者云端的快充指令、工作预约指令、断电指令、自清洁指令。
参考说明书附图之图27J,当电池24B导通于第二基座充电部132时,控制模块152没有接收到第二设备触发机构1542被用户触发的电信号时,根据第二基座充电部132电路连接于电池24B,系统选定机构1543接收到第二基座充电部132发送的电池24B的第二设备电量比例t2<第二阈值t02,控制模块152接收到系统选定机构1543选定一充电设备快充模式。控制模块152对比系统选定机构1543和第二设备触发 机构1542后处理选定第二设备快充模式。控制模块152控制充电部13的第二基座充电部132输出第二设备快充电流。也就是说,供电设备24A以第二设备快充电流方式被电路连接。
值得一提的是,第二阈值t02是一充电百分比,第二阈值t02优选地是70%。更优选地,第二阈值t02地是75%。更优选地,第二阈值t02地是80%。更优选地,第二阈值t02地是85%。进一步地,第二阈值t02地是90%。
值得一提的是,供电设备24A还可以被实施为可处理信息可通信的智能电池包24C或可处理信息可通信的智能电池24B,即供电设备24A还可以被实施为持电装置24D,本申请不受任何限制。
值得一提的是,当电池包24C被保持于基座10时,电池24B可自电池包24C单独取出后被用于其他设备20。
优选地,电池包24C被置入的方式被基座10充电。在基座主体11有电的情况下,电池包24C被基座主体11供电,当基座主体11没有连接外部电路时,基座主体11被电池包24C反供电,也就是说,基座主体11始终被电池包24C和/或外部电路供电,以防止被基座主体11供电的其他设备20无法被供电而无法正常运行。也就是说,通信设备23A能够始终被保持于有电的基座10,进而保持通信设备23A始终提供局域网,有效地保持用户的网络保障。
参考说明书附图之图27K,电池24B的数量是2个以上,当两个电池24B分别导通于对应的第二基座充电部132时,控制模块152没有接收到每个第二设备触发机构1542被用户触发的电信号时,根据每个第二基座充电部132电路连接于对应的其中一个电池24B,系统选定机构1543接收到其中一个第二基座充电部132发送的对应的电池24B的第二设备电量比例的范围是第二阈值t02<第二设备电量比例t2<100%,控制模块152接收到系统选定机构1543选定一充电设备慢充模式。控制模块152对比系统选定机构1543和第二设备触发机构1542后处理选定第二设备慢充模式。控制模块152控制充电部13的第二基座充电部132输出第二设备慢充电流。也就是说,供电设备24A以第二设备慢充电流方式被电路连接。
控制模块152没有接收到每个第二设备触发机构1542被用户触发的电信号时,系统选定机构1543接收到其中另一个第二基座充电部132发送的对应的电池24B的第二设备电量比例的范围是第二设备电量比例t2=100%,控制模块152接收到系统选定机构1543选定断电模式。控制模块152对比系统选定机构1543和第二设备触发机构1542后处理选定断电模式。控制模块152控制充电部13的第二基座充电部132输出零电流。
参考说明书附图之图27L,至少一个第二设备触发机构1542的断电模式被用户触发时,第二设备触发机构1542电路连接于控制模块152,控制模块152对比系统选定机构1543和第二设备触发机构1542后处理选定断电模式。控制模块152控制充电部13的第二基座充电部132输出零电流。也就是说,供电设备24A以零电流方式被电路连接于第二基座充电部132。
在本申请的较佳实施例中,电池24B的数量是2个以上。用户可以选定对应的电池24B的第二设备触发机构1542。至少一个第二设备触发机构1542的断电模式被用户触发时,第二设备触发机构1542电路连接于控制模块152,控制模块152获取第二设备触发机构1542的用户选定信息、第二通信单元1532获取对应的设备相关信息以及每个第二基座充电部132的发送的电池电量信息后,由于第二设备触发机构1542接收到用户选定的断电模式,控制模块152分别控制每个第二基座充电部132以一断电电流于电池24B。也就是说,供电设备24A以零电流方式被电路连接于第二基座充电部132。
参考说明书附图之图27M,本申请的上述较佳实施例的收容供电系统的变形实施例被详细地揭露并诠释,收容供电系统和上述较佳实施例不同的是,第二通信单元1532获取对应的电池24D的工作预约,其中第二设备触发机构1542电路连接于控制模块152,系统选定机构1543接收到第二通信单元1532和第二设备选定模块1542以及第二基座充电部132的信息后,由于第二通信单元1532获取到一工作预约指令,控制模块152对比系统选定机构1543和第二设备触发机构1542后处理选定清洁设备快充模式。控制模块152控制充电部13的第二基座充电部132输出充电设备快充电流。
参考说明书附图之图27N,当通信设备23A导通于第三基座充电部133时,控制模块152没有接收到第三设备触发机构1544被用户触发的电信号时,根据第三基座充电部133电路连接于通信设备23A,系统 选定机构1543接收到第三基座充电部133发送的通信设备23A的第三设备电量比例t3<第三阈值t03,控制模块152接收到系统选定机构1543选定一通信设备快充模式。控制模块152对比系统选定机构1543和第三设备触发机构1544后处理选定第三设备快充模式。控制模块152控制充电部13的第三基座充电部133输出第三设备快充电流。也就是说,通信设备23A以第三设备快充电流方式被电路连接。
进一步地,系统选定机构1543接收到第三基座充电部133发送的通信设备23A的第三设备电量比例t3<第三阈值t03,控制模块152接收到系统选定机构1543选定一通信设备快充模式。控制模块152对比系统选定机构1543和第三设备触发机构1544后处理选定第三设备快充模式。控制模块152控制充电部13的第三基座充电部133输出第三设备快充电流。也就是说,通信设备23A以第三设备快充电流方式被电路连接。
进一步地,系统选定机构1543接收到第三基座充电部133发送的通信设备23A的第三设备电量比例t3的范围是第三阈值t03<第三设备电量比例t3<100%,控制模块152接收到系统选定机构1543选定一通信设备慢充模式。控制模块152对比系统选定机构1543和第三设备触发机构1544后处理选定第三设备慢充模式。控制模块152控制充电部13的第三基座充电部133输出第三设备慢充电流。也就是说,通信设备23A以第三设备慢充电流方式被电路连接。
当通信模块153包括一第三通信单元1533,第三通信单元1533可通信地连接于通信设备23A,第三通信单元1533可接收到通信设备23A发送的快充指令、工作预约指令、断电指令等设备相关信息,以发送给系统选定机构1543选定系统选定初结果。系统选定机构1543可根据第三通信单元1533发送的设备相关信息、第三基座充电部133发送的电量相关信息后选定第三设备快充模式、第三设备慢充模式以及断电模式的至少其中一个第三设备系统选定初结果。
值得一提的是,通信设备23A可通信地发送一工作预约指令,第三通信单元1533发送系统选定机构1543,系统选定机构1543根据第三通信单元1533的工作预约指令的设备相关信息,系统选定机构1543选定一第三设备快充模式,控制模块根据系统选定机构1543发送的第三设备系统选定初结果和第三设备选定机构1534发送的第三设备日用户选定初结果后选定第三设备快充模式的第三设备选定结果,进而通信设备23A被基座10以第三设备快充模式对应的第三设备快充电流的方式电路连接。
通信设备23A被实施为4G/5G信号设备或者局域网信号扩大设备,以使得通信设备23A可提供局域网于具有网络信号的不同的设备20。更优选地,收容充电设备的设备20可被提供的局域网下通信。
可选地,设备20被实施为一智能设备28A。进一步地是,智能设备28A包括且不限于手机、ipad、游戏设备、智能手表。设备20的类型不受到本申请的任何限制。
参考说明书附图之图27O,本申请的另一个较佳实施例被详细地揭露并诠释,其中基座10包括至少一检测模块16,检测模块16被设置于第一收容部121,检测模块16可直接检测清洁设备24A是否自清洁。
值得一提的是,检测模块16包括至少一检测单元,检测模块16可以被实施为电磁波检测,如红外检测、微波检测、雷达检测的至少其中一个,检测模块16还可以被实施为可见光检测,如摄像。检测模块16还可以被实施为声音检测。当检测模块16检测到清洁设备24A大量出水或者快速转动的至少其中一个时,检测模块16直接检测清洁设备24A自清洁,以使得检测模块16发送检测相关信息发送给系统选定机构1543,以使得基座10可以不需要通信也可以直接检测到清洁设备24A的自清洁,进而基座10的系统选定机构1543可选定清洁设备24A被断电。
系统选定机构1543接收到检测模块16发送的检测相关信息、通信模块153发送的设备相关信息、基座充电部1300发送的设备的电量相关信息,以处理得到一第一设备系统选定初结果。
值得一提的是,不同实施例可以进行组合,在此本申请不受到任何限制。
本领域的技术人员应理解,上述描述及附图中所示的本申请的实施例只作为举例而并不限制本申请。本申请的目的已经完整并有效地实现。本申请的功能及结构原理已在实施例中展示和说明,在没有背离原理下,本申请的实施方式可以有任何变形或修改。

Claims (13)

  1. 一基于基座的收容供电系统,其特征在于,包括:
    至少一基座,其中所述基座具有至少一收容部、一充电部以及至少一基座主体,所述充电部被电路连接于所述基座主体,所述基座主体被供电;
    一个或一个以上设备,其中所述设备被收容于所述收容部,并且所述设备的至少其中一个被所述充电部供电,所述设备获取至少一指令;或所述设备反馈至少一设备相关信息。
  2. 根据权利要求1所述的基于基座的收容供电系统,其中所述设备包括至少一第一设备和至少一第二设备,并且所述第一设备和所述第二设备的至少其中一个被所述充电部电路连接,其中所述基座包括至少其中一个收容部,所述第一设备和所述第二设备被收容于所述收容部,所述收容部包括至少一第一收容主体和一第二收容主体,所述第一设备可被收容于所述第一收容主体,所述第二设备可被收容于所述第二收容主体。
  3. 根据权利要求2所述的基于基座的收容供电系统,其中所述充电部包括至少一第一充电端和至少一第二充电端,所述第一充电端被设置于所述第一收容主体,所述第二充电端被设置于所述第二收容主体,所述第一充电端和所述第二充电端被电路连接于所述基座主体,并且所述第一充电端和所述第二充电端可输出电流,以分别供电于所述第一设备和/或所述第二设备。
  4. 根据权利要求1所述的基于基座的收容供电系统,其中所述第一设备的类型选自组合智能设备、清洁设备、通信设备、充电设备、移动设备、烹饪设备的至少其中一个,其中所述第二设备的类型选自组合智能设备、清洁设备、通信设备、充电设备、移动设备、烹饪设备的至少其中一个。
  5. 根据权利要求1所述的基于基座的收容供电系统,其中所述设备是2个以上,所述设备包括至少一充电设备,所述充电设备被选自组合可插拔的电池、收容至少二电池的电池包、持电装置的至少其中一个。
  6. 根据权利要求2所述的基于基座的收容供电系统,其中所述第一设备是充电设备,其中所述充电设备可插拔于所述基座,以供所述充电设备和所述第二设备被间隔地收容于所述收容部,并且所述充电设备和所述第二设备分别被所述充电部电路连接,被远离所述基座的所述第二设备可被所述充电设备供电。
  7. 根据权利要求1所述的基于基座的收容供电系统,其中所述设备包括至少一充电设备,所述充电设备具有一充电通信模块,所述充电通信模块可通信至少一设备相关信息和/或至少一指令,以供用户、其他设备藉由所述充电设备通信。
  8. 根据权利要求7所述的基于基座的收容供电系统,其中所述设备包括至少一充电设备,所述充电设备以被电路连接于其他所述设备的方式获取所述设备的所述设备相关信息;和/或所述充电设备以被电路连接于其他所述设备的方式发送用户的所述指令于所述设备。
  9. 根据权利要求1所述的基于基座的收容供电系统,其中所述基座包括至少一处理模块,其中所述处理模块被电路连接于所述充电部,所述基座的所述处理模块可通信地至少一设备相关信息和/或一指令,所述基座和所述设备通信至少一设备相关信息/或一指令。
  10. 根据权利要求1所述的基于基座的收容供电系统,其特征在于,其中,所述设备包括至少一清洁设备,所述基座不间断地被所述充电设备和/或外部电路供电,即使基座未连接于外部电路,其中至少一所述清洁设备以被保持于所述第一收容部的方式保持通信于所述基座。
  11. 根据权利要求1所述的基于基座的收容供电系统,所述设备包括至少一第一设备和至少一第二设备,第一设备被基座以一第一设备充电模式、第一设备慢充模式和一断电模式的其中一个被供电,第二设备被基座以一第二设备充电模式、第二设备慢充模式和一断电模式的其中一个被供电。
  12. 根据权利要求1所述的基于基座的收容供电系统,其中所述收容部包括至少一第一收容主体,所述基座进一步地包括一辅助清洁部,其中所述辅助清洁部被设置于所述第一收容部的支撑面,以供所述清洁设备具有至少一工作头,所述清洁设备的所述工作头被对应地保持于所述辅助清洁部,其中所述辅助清洁部被用于辅助所述工作头自清洁。
  13. 根据权利要求1所述的基于基座的收容供电系统,其中所述设备包括一第一设备,所述基座包括至少一信息处理部,信息处理部包括一通信模块、至少一控制模块以及一选定模块,所述充电部包括一第一基座充电部,所述选定模块包括至少一系统选定机构,所述系统选定机构发送的第一设备充电模式、第一设备慢充模式和一断电模式的其中一个系统初结果至所述控制模块,所述控制模块根据系统选定初结果和所述用户选定初结果处理得到以第一设备充电模式、第一设备慢充模式和一断电模式的其中一个的选定结果,所述第一基座充电部被所述控制模块控制选定充电模式。
PCT/CN2022/101309 2021-06-24 2022-06-24 基于基座的收容供电系统 WO2022268217A1 (zh)

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