CN219676472U - Intelligent extension socket control system - Google Patents

Intelligent extension socket control system Download PDF

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Publication number
CN219676472U
CN219676472U CN202223267424.3U CN202223267424U CN219676472U CN 219676472 U CN219676472 U CN 219676472U CN 202223267424 U CN202223267424 U CN 202223267424U CN 219676472 U CN219676472 U CN 219676472U
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module
control
intelligent
control system
control module
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张少林
丘春辉
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Shenzhen Weifu Smart Home Technology Co ltd
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Shenzhen Weifu Smart Home Technology Co ltd
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Abstract

The utility model provides an intelligent extension socket control system, which relates to the technical field of intelligent home, and comprises the following components: the CAT1 module is used for receiving the base station signals and sending the base station signals to the main control module; the main control module generates corresponding control instructions according to the base station signals; and the relay control module receives the control instruction to control the output of each path of socket. The intelligent control system solves the technical problem that intelligent household equipment or electric equipment connected to the power strip cannot be controlled correspondingly under the condition that no WIFI equipment and corresponding WIFI signals exist in a home, and in addition, intelligent control of the electric equipment connected to the power strip is achieved through the main control module and the relay module. Compared with a traditional extension socket adopting a traditional mechanical structure, the intelligent extension socket control system provided by the embodiment of the utility model has the advantages of intelligence and convenience.

Description

Intelligent extension socket control system
Technical Field
The utility model relates to the technical field of intelligent home, in particular to an intelligent extension socket control system.
Background
The socket is a multi-position socket with wires, also called a patch board, which integrates a plurality of sockets together, and the socket can be connected with more than one power plug, so that the space is saved and the circuit is saved.
Along with the development of the internet of things, intelligent household equipment is increasingly widely applied to daily life, and in the current intelligent household application scene, besides the general requirement of controlling the intelligent household equipment through a mobile phone terminal, the intelligent household equipment has personalized requirements of intelligent and automatic control according to personal preference of a user.
The existing row of adopting traditional mechanical structure inserts only can be according to the user press plug action come to be connected to row inserts on the consumer and control, consequently can't satisfy user's individualized demand, lacks a row of inserting that can carry out intelligent control to the consumer that is connected to row and inserts, satisfies the intelligent demand of growing house.
Disclosure of Invention
The utility model aims to solve the problem that a socket with a traditional mechanical structure cannot intelligently control electric equipment connected to the socket in the prior art, and provides an intelligent socket control system.
In order to achieve the above object, the present utility model provides an intelligent extension socket control system, including:
the CAT1 module is used for receiving the base station signals and sending the base station signals to the main control module; the main control module generates corresponding control instructions according to the base station signals; and the relay control module receives the control instruction to control the output of each path of socket.
Optionally, the method further comprises: and the wireless communication module receives a corresponding control instruction of the main control module to control the intelligent household equipment.
Optionally, the wireless communication module includes: at least one of a Bluetooth module, a WIFI module and a ZigBee module.
Optionally, the method further comprises: and the standby battery module is used for providing electric energy for the intelligent extension socket control system when power failure occurs.
Optionally, the relay control module further includes: and the delay control module receives delay information in the control instruction to control the on time of each path of socket output.
Optionally, the method further comprises: and the external key control module is used for controlling the opening or closing of the relay module according to the key operation of a user.
Optionally, the method further comprises: and the lightning protection module is used for protecting the output of each path of socket from lightning.
The utility model has the beneficial effects that:
the embodiment of the utility model provides a structure of an intelligent extension socket control system, which receives a base station signal from a base station through a CAT1 module, so that the technical problem that intelligent household equipment or electric equipment connected to the extension socket cannot be controlled correspondingly under the condition that no WIFI equipment and corresponding WIFI signals exist in a home is solved, and in addition, intelligent control of the electric equipment connected to the extension socket is realized through a main control module and a relay module. Compared with a traditional extension socket adopting a traditional mechanical structure, the intelligent extension socket control system provided by the embodiment of the utility model has the advantages of intelligence and convenience.
Drawings
In order to more clearly illustrate the technical solution of the embodiments of the present utility model, the drawings that are required to be used in the embodiments of the present utility model will be briefly described below.
Fig. 1 is a system block diagram of an intelligent extension socket control system according to a first embodiment of the present utility model;
fig. 2 is a schematic circuit diagram of an intelligent extension socket control system according to a first embodiment of the present utility model;
fig. 3 is a system block diagram of an intelligent extension socket control system according to a second embodiment of the present utility model;
fig. 4 is a system block diagram of an intelligent extension socket control system according to a third embodiment of the present utility model;
fig. 5 is a system block diagram of an intelligent extension socket control system according to a fourth embodiment of the present utility model.
Detailed Description
The technical solutions in the embodiments of the present utility model will be described below with reference to the accompanying drawings in the embodiments of the present utility model.
Like reference numerals and letters denote like items in the following figures, and thus once an item is defined in one figure, no further definition or explanation thereof is necessary in the following figures. Meanwhile, in the description of the present utility model, the terms "first", "second", and the like are used only to distinguish the description, and are not to be construed as indicating or implying relative importance.
Fig. 1 is a block diagram of a system architecture according to a first embodiment of the present utility model, where an intelligent patch panel control system includes: CAT1 module 1, main control module 2, relay control module 3.
The CAT1 module 1, also called a CAT1 internet of things module, is configured to receive a base station signal and send the base station signal to the main control module, where the base station signal may be a control signal sent by a terminal control device, for example, a smart phone, to a base station through a mobile communication network, or may be a control signal sent by other smart home devices to the base station.
The main control module 2 generates a corresponding control instruction according to the base station signal, the base station signal comprises control information for correspondingly controlling the relay control module, the main control module 2 processes the base station signal after receiving the base station signal, extracts the corresponding control information in the base station signal and generates the control instruction according to the control information, wherein the main control module processes the base station signal, extracts the control information and generates the corresponding control instruction according to the control information, and the specific details of the control instruction belong to the prior art and are not repeated herein.
And the relay control module 3 receives the control instruction to control the output of each path of socket, specifically, the relay control module 3 sends a relay control signal to the corresponding relay according to the control instruction after receiving the control instruction, and the relay controls the on-off of the output of each path of socket according to the relay control signal after receiving the relay control signal, thereby realizing the control of electric equipment connected to the socket.
Fig. 2 is a schematic circuit diagram of a wireless forwarding device according to a first embodiment of the present utility model.
Specifically, the wireless forwarding device includes: CAT1 module U8A, main control module U14, relay control module CC2530.
Referring to fig. 2, the usb_dp and usb_dm pins of the cat1 module U8A are configured to receive a base station signal, the main_txd pin is electrically connected to the PA00 pin of the master control module U14, and is configured to send the base station signal to the master control module U8A, and the main_rxd pin is electrically connected to the PA01 pin of the master control module U14, and is configured to receive a corresponding feedback signal of the master control module U8A.
Referring to fig. 2, a DVCC1 pin, a DVCC2 pin, an AVCC pin, a DVSS1 pin, a DVSS2 pin, and an AVSS pin of the main control module U14 are respectively connected to a crystal oscillator, and are configured to receive a standard time signal of the crystal oscillator. The PA00 pin sends the base station signal to the main control module U14 to process the base station signal, extracts corresponding control information in the base station signal, generates a control instruction according to the control information, and sends the control instruction to the RX pin of the relay control module CC2530 through the PA04 pin.
Referring to fig. 2, the VCC pin of the relay control module CC2530 is connected to the power supply terminal and is configured to receive an external power supply voltage, the GND pin of the relay control module CC2530 is connected to the reference voltage terminal, and the TX pin of the relay control module CC2530 is connected to the PA05 pin of the main control module U14.
Referring to fig. 2, a TestTX pin of a relay control module CC2530 is connected to a relay, and after receiving a control instruction, the relay control module sends a relay control signal to a corresponding relay through the TestTX pin according to the control instruction, and after receiving the relay control signal, the relay controls on-off of output of each socket according to the relay control signal, thereby realizing control of electric equipment connected to the socket.
Specifically, the chip model of the CAT1 module U8A is ML305, the chip model of the main control module U14 is HC32L130, and the chip model of the relay control module CC2530 is DL-LN33.
The embodiment provides a structure of intelligent extension socket control system, receives the base station signal from the base station through CAT1 module 1 to solve the technical problem that intelligent household equipment or the consumer connected to the extension socket can not be correspondingly controlled under the condition that there is no WIFI equipment and corresponding WIFI signal in home, in addition, the intelligent control of the consumer connected to the extension socket is realized through main control module 2 and relay control module 3. Compared with a traditional extension socket adopting a traditional mechanical structure, the intelligent extension socket control system provided by the embodiment of the utility model has the advantages of intelligence and convenience.
Fig. 3 is a system structural block diagram of a second embodiment of the present utility model, where the intelligent extension socket system includes, in addition to a CAT1 module, a main control module 2, and a relay control module 3: a wireless communication module 4. The wireless communication module 4 may include at least one of a bluetooth module, a WIFI module, and a ZigBee module.
The working mechanisms of the CAT1 module, the main control module 2 and the relay control module 3 in this embodiment are the same as those in the previous embodiment, and will not be described here again. The wireless communication module 4 is in wireless connection with other controlled intelligent household devices and is used for controlling the intelligent household devices, such as controlling the wind speed of an intelligent electric fan.
The specific mechanism is as follows: the base station signals comprise control information for controlling other intelligent home furnishings correspondingly, the main control module 2 processes the base station signals after receiving the base station signals, extracts corresponding control information in the base station signals, generates control instructions according to the control information, and the wireless communication module 4 sends intelligent home equipment control signals to corresponding controlled intelligent home equipment according to the control instructions after receiving the control instructions of the main control module 2, and the intelligent home equipment realizes intelligent control of the intelligent home equipment according to the intelligent home equipment control signals after receiving the intelligent home equipment control signals.
The embodiment provides a structure of an intelligent extension socket control system, which receives corresponding control instructions of a main control module 2 through a wireless communication module 4 to control intelligent household equipment, not only intelligent control of electric equipment connected to an extension socket is realized, but also the function of serving as a repeater is realized, the purpose of controlling other intelligent household equipment is realized, and the intelligent extension socket control system has the advantage that flexible control of the intelligent household equipment can be realized under the condition of weak wireless signals.
Fig. 4 is a system structural block diagram of a third embodiment of the present utility model, where the intelligent extension socket system includes, in addition to a CAT1 module 1, a main control module 2, and a relay control module 3: and a spare battery module 5.
The working mechanisms of the CAT1 module, the main control module 2 and the relay control module 3 in this embodiment are the same as those in the previous embodiment, and will not be described here again. And the standby battery module 5 is electrically connected with the CAT1 module 1, the main control module 2 and the relay control module 3 and is used for providing electric energy for the intelligent extension socket control system during power failure.
In normal times, the standby battery module 5 is in a non-working state, once power is cut off, an external 220V power supply cannot be converted into voltage for electric equipment connected to the power strip through the intelligent power strip system, and in addition, the CAT1 module 1, the main control module 2 and the relay control module 3 inside the intelligent power strip system cannot work normally due to power cut, and at the moment, the standby battery module 5 is in a working state, provides electric energy for the CAT1 module 1, the main control module 2 and the relay control module 3, and also outputs electric energy to the outside to supply power for the electric equipment connected to the power strip.
The embodiment provides a control system's structure is inserted to intelligence row, inserts control system and provides the electric energy for intelligence row when having a power failure through battery module 5, has realized also can having the advantage that also can use under the power failure state outside the intelligent control of the consumer that is connected to row and inserts when having a power failure.
Fig. 5 is a block diagram of a system structure according to a fourth embodiment of the present utility model, wherein the relay control module 3 further includes: the delay control module 31.
The working mechanisms of the CAT1 module 1, the main control module 2 and the relay control module 3 in this embodiment are the same as those in the previous embodiment, and are not described here again. The relay control module 3 further includes: the delay control module 31. The delay control module 31 receives the delay information in the control instruction to control the on time of each outlet output.
Specifically, after receiving the control instruction, the delay control module 31 sends a relay control signal to the corresponding relay according to delay information in the control instruction, and after receiving the relay control signal, the relay controls the on-off time of each path of socket according to the relay control signal, thereby realizing control of the on-time of the electric equipment connected to the power strip. The specific details of sending the relay control signal to the corresponding relay according to the delay information in the control command after the delay control module 31 receives the control command belong to the prior art, and are not described herein.
The intelligent extension socket control system structure provided by the embodiment realizes control of the on time through the delay control module 31 and has the advantages of individuation and multifunctionality.
In other embodiments, an intelligent patch panel control system may further include: and the external key control module and the lightning protection module.
The lightning protection module is used for protecting each path of socket output from lightning, and the external key control module can control the relay module to be opened or closed according to key operation of a user.
Specifically, the main control module 2 detects the working state of the lightning protection module and controls the relay of the relay module to be turned on or turned off. The main control module 2 detects the working state of the lightning protection module, and when the lightning protection module fails, the main control module 2 controls the relay control module 3 to avoid damage to the electric appliance caused by lightning stroke. The mechanism of action of the lightning protection module belongs to the prior art and is not described in detail here.
And the external key control module is used for controlling the opening or closing of the relay through keys by a user. For example, when the wireless communication module 4 fails, the user cannot control the electric energy output of the intelligent power strip control system, and at this time, the user can control the electric energy output of the intelligent power strip control system through the external key control module, so as to ensure the working reliability of the intelligent power strip control system.
In summary, according to the intelligent extension socket control system provided by the utility model, the intelligent remote control of the electric equipment connected to the extension socket is realized through the CAT1 module, the main control module and the relay module, namely when the electric equipment is not required to be powered, the intelligent extension socket control system sends a corresponding base station signal to disconnect the power supply of the electric equipment connected to the extension socket, for example, through a smart phone; when the electric appliance needs to be powered, the intelligent power strip control system is connected to the power supply of the electric appliance on the power strip by sending corresponding base station signals to the intelligent power strip control system. The technical problem that intelligent household equipment or electric equipment connected to the power strip cannot be controlled correspondingly under the condition that no WIFI equipment and corresponding WIFI signals exist in the household is solved.
It should be noted that, without conflict, the embodiments of the present utility model and features of the embodiments may be combined with each other. It will be apparent that the described embodiments are merely some, but not all embodiments of the utility model. Based on the embodiments of the present utility model, other embodiments that may be obtained by those of ordinary skill in the art without making any inventive effort should fall within the scope of the present utility model.

Claims (7)

1. An intelligent extension socket control system, which is characterized by comprising:
the CAT1 module is used for receiving the base station signals and sending the base station signals to the main control module;
the main control module generates corresponding control instructions according to the base station signals;
and the relay control module receives the control instruction to control the output of each path of socket.
2. The intelligent patch panel control system of claim 1, further comprising:
and the wireless communication module receives a corresponding control instruction of the main control module to control the intelligent household equipment.
3. The intelligent power strip control system of claim 2, wherein said wireless communication module comprises: at least one of a Bluetooth module, a WIFI module and a ZigBee module.
4. The intelligent patch panel control system of claim 1, further comprising:
and the standby battery module is used for providing electric energy for the intelligent extension socket control system when power failure occurs.
5. The intelligent power strip control system of claim 1, wherein said relay control module further comprises: and the delay control module receives delay information in the control instruction to control the on time of each path of socket output.
6. The intelligent patch panel control system of claim 1, further comprising: and the external key control module is used for controlling the relay control module to be opened or closed according to the key operation of a user.
7. The intelligent patch panel control system of claim 1, further comprising: and the lightning protection module is used for protecting the output of each path of socket from lightning.
CN202223267424.3U 2022-12-06 2022-12-06 Intelligent extension socket control system Active CN219676472U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202223267424.3U CN219676472U (en) 2022-12-06 2022-12-06 Intelligent extension socket control system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202223267424.3U CN219676472U (en) 2022-12-06 2022-12-06 Intelligent extension socket control system

Publications (1)

Publication Number Publication Date
CN219676472U true CN219676472U (en) 2023-09-12

Family

ID=87896338

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202223267424.3U Active CN219676472U (en) 2022-12-06 2022-12-06 Intelligent extension socket control system

Country Status (1)

Country Link
CN (1) CN219676472U (en)

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