WO2022218094A1 - Multi-head electric tool - Google Patents

Multi-head electric tool Download PDF

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Publication number
WO2022218094A1
WO2022218094A1 PCT/CN2022/081574 CN2022081574W WO2022218094A1 WO 2022218094 A1 WO2022218094 A1 WO 2022218094A1 CN 2022081574 W CN2022081574 W CN 2022081574W WO 2022218094 A1 WO2022218094 A1 WO 2022218094A1
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WO
WIPO (PCT)
Prior art keywords
assembly
working
power
optical fiber
identification information
Prior art date
Application number
PCT/CN2022/081574
Other languages
French (fr)
Chinese (zh)
Inventor
冯继丰
潘丽
郭增冰
漆琴
Original Assignee
南京泉峰科技有限公司
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 CN202110403247.8A external-priority patent/CN115225150A/en
Priority claimed from CN202111394027.XA external-priority patent/CN116138028A/en
Application filed by 南京泉峰科技有限公司 filed Critical 南京泉峰科技有限公司
Publication of WO2022218094A1 publication Critical patent/WO2022218094A1/en

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B25HAND TOOLS; PORTABLE POWER-DRIVEN TOOLS; MANIPULATORS
    • B25FCOMBINATION OR MULTI-PURPOSE TOOLS NOT OTHERWISE PROVIDED FOR; DETAILS OR COMPONENTS OF PORTABLE POWER-DRIVEN TOOLS NOT PARTICULARLY RELATED TO THE OPERATIONS PERFORMED AND NOT OTHERWISE PROVIDED FOR
    • B25F3/00Associations of tools for different working operations with one portable power-drive means; Adapters therefor
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B25HAND TOOLS; PORTABLE POWER-DRIVEN TOOLS; MANIPULATORS
    • B25FCOMBINATION OR MULTI-PURPOSE TOOLS NOT OTHERWISE PROVIDED FOR; DETAILS OR COMPONENTS OF PORTABLE POWER-DRIVEN TOOLS NOT PARTICULARLY RELATED TO THE OPERATIONS PERFORMED AND NOT OTHERWISE PROVIDED FOR
    • B25F5/00Details or components of portable power-driven tools not particularly related to the operations performed and not otherwise provided for

Definitions

  • the present application relates to the technical field of power tools, for example, to a multi-head power tool.
  • the multi-head power tool is a popular power tool in the market.
  • the main body of the tool is a power assembly, and a power assembly can work with a variety of working assemblies, such as with pruning machines, cultivators, edgers, snow shovels machine, hair dryer and chainsaw.
  • the present application provides a multi-head power tool that can match a corresponding target control program for different work components, so that each work component can achieve an optimal working state.
  • a multi-head power tool comprising: a power assembly configured to install at least one working assembly; a working assembly configured to work under the driving of the power assembly; a drive motor configured to drive the working assembly installed on the power assembly to work a power supply device, configured to provide power for the drive motor; a controller, configured to control the rotation of the drive motor according to a target control program matched with the working assembly; wherein the working assembly is provided with an optical signal output device , the optical signal output device is configured to output the component signal carrying the identification information of the working component; the power component is provided with an optical signal receiving device, and the optical signal receiving device is configured to receive the component signal and identify the component the working component identification information in the signal; the controller is configured to: acquire the working component identification information; extract a target control program matching the working component identification information, and control the system according to the target control program The drive motor rotates to drive the working assembly to work.
  • the optical signal output device includes a light wave transmitting device
  • the optical signal receiving device includes a light wave receiving device; the light wave transmitting device transmits an optical signal with a certain frequency or light intensity.
  • the optical signal output device includes an optical fiber transmitting device
  • the optical signal receiving device includes an optical fiber receiving device; the optical fiber transmitting device and the optical fiber receiving device establish a connection based on an optical fiber interface.
  • the optical fiber transmitting device converts the electrical signal carrying the identification information of the working assembly into an optical signal, and outputs the optical signal to the optical fiber receiving device.
  • the optical fiber receiving device receives the optical signal and converts it into an electrical signal, so as to identify the identification information of the working components in the electrical signal.
  • the working assembly includes: a power supply unit capable of supplying power to the optical fiber launching device; the multi-head power tool further includes: a power-on triggering structure arranged on the power assembly to be installed on the working assembly When on the power assembly, the power supply unit on the working assembly is triggered to output power, and the optical fiber launching device is powered on; after the optical fiber launching device is powered on, the electrical signal carrying the identification information of the working assembly is converted into optical signal, and output the optical signal to the optical fiber receiving device.
  • the power assembly includes: a wireless charging and transmitting unit configured to transmit power to the wireless charging receiving unit;
  • the working assembly includes: a wireless charging receiving unit configured to supply power to the optical fiber transmitting device; the wireless charging After receiving power from the unit to the optical fiber transmitting device, the optical fiber transmitting device converts the electrical signal carrying the identification information of the working component into an optical signal, and outputs the optical signal to the optical fiber receiving device.
  • it also includes: connecting terminals, which are arranged on the power assembly, so as to establish electrical connection with the assembly terminals on the working assembly when the working assembly is installed on the power assembly, so that the power supply device
  • the optical signal output device can be powered on based on the electrical connection; after the optical signal output device is powered on, the component signal carrying the identification information of the working component is output to the optical signal receiving device.
  • the working assembly includes: a first working assembly having a first assembly terminal, the first assembly terminal being electrically connected to a first connecting terminal of the power assembly; a second working assembly having a second assembly terminal , the second assembly terminal is electrically connected to the second connection terminal of the power assembly; the number of the first assembly terminal or the number of the second assembly terminal is less than the number of the connection terminals on the power assembly .
  • the sum of the numbers of the first connection terminals and the second connection terminals is less than or equal to three.
  • the number of the first component terminals or the second component terminals is less than or equal to two.
  • the first working assembly includes: a first assembly connecting rod configured to form a mechanical connection with the connecting rod of the power assembly; the first assembly terminal is disposed in the first assembly connecting rod.
  • the inner diameter of the connecting rod of the first component is 20 mm to 40 mm.
  • the first working assembly includes a cutting head; the second working assembly includes other working heads other than the cutting head.
  • the first working assembly is provided with a triggering device for user operation; the second working assembly does not have the triggering device.
  • the working component identification information includes a working component model or type.
  • a multi-head power tool comprising: a power assembly configured to install at least one working assembly; a working assembly configured to work under the driving of the power assembly; a drive motor configured to drive the working assembly installed on the power assembly to work a power supply device, configured to provide power for the drive motor; a controller, configured to control the rotation of the drive motor according to a target control program matched with the working assembly; wherein the working assembly includes a signal output device, and the The signal output device is configured to output a component signal carrying the identification information of the working component; the power component includes a signal receiving device, and the signal receiving device is configured to receive the component signal and identify the work in the component signal. component identification information; the controller is configured to: acquire the work component identification information; extract a target control program matching the work component identification information, and control the drive motor to rotate according to the target control program, to The working components are driven to work.
  • a multi-head power tool comprising: a power assembly configured to install at least one working assembly; a working assembly configured to work under the driving of the power assembly; a drive motor configured to drive the working assembly installed on the power assembly to work a power supply device, configured to provide power for the drive motor; a controller, configured to control the rotation of the drive motor according to a target control program matched with the working assembly; wherein the working assembly includes an optical fiber launching device, and the The optical fiber transmitting device is configured to send an assembly signal carrying identification information of the working assembly; the power assembly includes an optical fiber receiving device, and the optical fiber receiving device is configured to receive the assembly signal and identify the work in the assembly signal. component identification information; the controller is configured to: acquire the work component identification information; extract a target control program matching the work component identification information, and control the drive motor to rotate according to the target control program, to The working components are driven to work.
  • the optical fiber transmitting device converts the electrical signal carrying the identification information of the working assembly into an optical signal, and outputs the optical signal to the optical fiber receiving device.
  • the optical fiber receiving device receives the optical signal and converts it into an electrical signal, so as to identify the identification information of the working components in the electrical signal.
  • it also includes: connecting terminals, which are arranged on the power assembly, so as to establish electrical connection with the assembly terminals on the working assembly when the working assembly is installed on the power assembly, so that the power supply device
  • the optical fiber launching device can be powered on based on the electrical connection; after the optical fiber launching device is powered on, the electrical signal carrying the identification information of the working component is converted into an optical signal, and the optical signal is output to the optical fiber receiving device device.
  • the working assembly includes: a first working assembly having a first assembly terminal, the first assembly terminal being electrically connected to a first connecting terminal of the power assembly; a second working assembly having a second assembly terminal , the second assembly terminal is electrically connected to the second connection terminal of the power assembly; the number of the first assembly terminal or the number of the second assembly terminal is less than the number of the connection terminals on the power assembly .
  • the advantages of the present invention lie in that: by disposing the transceiver devices capable of transmitting optical signals on the working assembly and the power assembly respectively, the power assembly can identify the type or model of the working assembly by means of optical communication, and then output the corresponding target The control program controls the work of the work component, so that the currently installed work component achieves the best working state.
  • FIG. 1 is a schematic diagram of a multi-head power tool according to an embodiment of the present application.
  • FIG. 2 is a schematic circuit diagram of a multi-head power tool in an embodiment
  • FIG. 3 is a schematic circuit diagram of a multi-head power tool in an embodiment
  • FIG. 4 is a schematic circuit diagram of a multi-head power tool in an embodiment
  • FIG. 5 is a flowchart of a control method of a multi-head power tool in an embodiment
  • 6a and 6b are schematic structural diagrams of a connection mode of a power assembly and a working assembly in a multi-head connection tool in an embodiment of the present application;
  • Fig. 7a and Fig. 7b are the structural representation of a kind of connection mode of the power assembly and the working assembly in the multi-head connection tool in the embodiment of the present application;
  • Fig. 8a and Fig. 8b are structural schematic diagrams of a connection mode of the power assembly and the working assembly in the multi-head connection tool in the embodiment of the present application;
  • Figures 9a and 9b are schematic structural diagrams of a connection mode of a power assembly and a working assembly in a multi-head connection tool in an embodiment of the present application;
  • FIG. 10 is a schematic structural diagram of a connection mode of the power assembly and the working assembly in the multi-head connection tool in the embodiment of the present application;
  • FIG. 11 is a schematic structural diagram of a connection mode of the power component and the working component in the multi-head connection tool in the embodiment of the present application.
  • Driving motor 22. Optical signal transmitting device; 23. Driving circuit; 24. Power supply unit; 25. Wireless charging receiving unit; 103. Power supply device; 11. Controller; 12. Optical signal receiving device;
  • 101 holding part; 102, operating switch; 104, first connecting part; 105, connecting rod; 201, second connecting part; 202, connecting rod; 203, working head; 1041, connecting terminal; 1042, first connecting 1043, the second connection terminal; 2011, the component terminal; 2012, the first component terminal; 2013, the second component terminal; 2014, the third component terminal; 2015, the connecting wire.
  • the multi-head power tool of the embodiment includes a power assembly 100 and a working assembly 200.
  • the power assembly 100 includes a grip portion 101, an operation switch 102, a power supply device 103, and a first connection portion 104;
  • the working assembly 200 includes a second connecting part 201 , a connecting rod 202 , and a working head 203 .
  • the working assembly 200 may be the lawn mower assembly shown in FIG. 1 , or may be a pruning assembly, a cultivator assembly, an edging assembly, a snow shovel assembly, a blower assembly, a chainsaw assembly, or the like.
  • the power assembly 100 can be installed in different working areas to achieve different functions, for example, the pruning assembly can be installed to trim branches, the blower assembly can be installed to blow leaves, the grass trimming assembly can be installed to cut grass, etc.
  • the first connecting part 104 and the second connecting part 201 are inside the first connecting part 104 and the second connecting part 201
  • a connection terminal 1041 is also provided to realize electrical connection between the power assembly 100 and the working assembly 200 , and the power output from the battery pack supplies power to the drive motor 21 in the working assembly 200 through the electrical connection.
  • the power supply device 103 in the power assembly 100 supplies power to the controller 11 in the assembly, and at the same time, the signal output device 22 in the working assembly 200 is powered on and The assembly signal is output, and the signal receiving device in the power assembly 100 receives the above assembly signal, and identifies the identification information of the working assembly 200 accordingly.
  • the controller 11 in the power assembly 100 will select a matching target control program according to the identification information of the working assembly 200 to control the drive motor 21 to rotate.
  • the so-called target control program matched with the work assembly 200 is a control program capable of realizing the optimal working state of the work assembly 200 .
  • the working assembly 200 includes a driving motor 21 , an optical signal transmitting device 22 and a driving circuit 23
  • the power assembly 100 includes a power supply device 103 , a controller 11 and an optical signal receiving device 12.
  • the optical signal transmitting device 22 can be powered on by the power supply device 103 in the power assembly 100 when the working assembly 200 and the power assembly 100 are electrically connected, so that the optical signal transmitting device 22 sends a message carrying the identification information of the working assembly.
  • the component signal, the optical signal receiving device 12 in the power component 100 can receive the above component signal, and identify the identification information of the working component in the signal.
  • the action component identification information may include the model or type of the work component 200 or other identification information that can uniquely represent the work component 200 .
  • the power supply device 103 in the power assembly 100 can be a battery pack or AC mains, and the power supply device 103 can supply power to the controller 11 in the power assembly 100, and establish power between the power assembly 100 and the working assembly 200. Power is supplied to the drive motor 21 in the working assembly 200 when connected.
  • the optical signal receiving device 12 can establish a data transmission channel with the optical signal transmitting device 22 , and obtain component information output by the optical signal transmitting device 22 through the data transmission channel.
  • the optical signal transmitting device 22 is an optical fiber transmitting device
  • the optical signal receiving device 12 is an optical fiber receiving device
  • the optical fiber transmitting device can convert the electrical signal carrying the identification information of the working component into an optical signal and then transmit it to the optical fiber receiving device through the optical path.
  • the optical fiber receiving device converts the received optical signal into an electrical signal and then recognizes it.
  • the work component identification information in it. It should be noted that a communication connection between the optical fiber transmitting device and the optical fiber receiving device needs to be established through an optical fiber interface, that is, an optical fiber interface is respectively provided on the power assembly 100 and the working assembly 200 .
  • the optical signal transmitting device 22 is a light wave transmitting device
  • the optical signal receiving device 12 includes a light wave receiving device.
  • the light wave transmitting device can transmit a light wave signal with a certain frequency or light intensity
  • the light wave signal receiving device can receive the above light wave signal, and determine the type or model of the working assembly 200 according to the light information such as the frequency or light intensity of the identified light wave signal. . That is, there is no need to establish optical communication through a hardware interface between the light wave signal transmitting device and the receiving device, but directly transmit and receive light waves, and identify the working components 200 according to information such as the frequency or intensity of the light waves themselves.
  • the driving circuit 23 can receive the control signal output by the controller 11, and control the rotational speed or the rotational direction of the driving motor 21 by changing its own conduction state.
  • the driving circuit 23 may be composed of one or more switching elements.
  • the drive circuit 23 is constituted by a plurality of switching elements Q1-Q6. Each gate terminal of the switching element is electrically connected to the controller 11 and configured to receive a control signal from the controller 11 .
  • Each drain or source of the switching element is connected to the stator winding of the drive motor 21 .
  • the switching elements Q1 - Q6 receive control signals from the controller 11 to change their respective conduction states, thereby changing the current applied by the power supply device to the stator windings of the drive motor 21 .
  • the driver circuit 23 may be a three-phase bridge driver circuit including six controllable semiconductor power devices (eg, FETs, BJTs, IGBTs, etc.). It can be understood that the above-mentioned switching elements can also be other types of solid-state switches, such as insulated gate bipolar transistors (IGBTs), bipolar junction transistors (BJTs), and the like.
  • IGBTs insulated gate bipolar transistors
  • the controller 11 can acquire the identification information of the working components identified by the signal receiving device, that is, the optical fiber receiving device, and search for the target control program matching the identification information in the storage unit according to the identification information.
  • the storage unit stores all control programs corresponding to the working assemblies 200 that the multi-head tool can connect to. Different working assemblies 200 connected to the power assembly 100 have different corresponding target control programs.
  • the controller 11 can control the conduction state of the switching elements in the driving circuit 23 according to the control logic of the target control program, so as to drive the driving motor 21 to work, so that the working assembly 200 can reach the optimal working state.
  • the so-called optimal working state of the working assembly 200 may be that the driving motor 21 in the working assembly 200 has the highest working efficiency and the best user experience effect under corresponding working conditions.
  • the working assembly 200 communicates with the power assembly 100 through optical fiber, and transmits the identification information of the working assembly 200, so that the power assembly 100 can select a corresponding control program according to the identification information to control the working assembly 200 to achieve the best working state.
  • the control circuit block diagram of the multi-head tool is shown in FIG. 3
  • the working assembly 200 includes a driving motor 21 , an optical signal transmitting device 22 , a driving circuit 23 and a power supply unit 24
  • the power assembly 100 includes a power supply device 103 , a control 11 and optical signal receiving device 12.
  • the power-on triggering structure may also be provided on the power assembly 100 , which can trigger the power supply unit 24 on the working assembly 200 to output power when the working assembly 200 is installed on the power assembly 100 The fiber optic launcher is powered.
  • the power supply device 103 in the power assembly 100 does not need to supply power to the optical signal transmitting device 22 of the working assembly 200 , and the optical signal transmitting device 22 is powered by an independent power supply unit 24 as long as the working assembly 200 is installed on the power assembly 100 , the optical signal transmitting device 22 can transmit component information.
  • the optical signal receiving device 12 can identify the identification information of the working assembly 200 in the assembly information, and the controller 11 can obtain the corresponding target control program to control the working assembly 200 to work accordingly. On the basis of having the best working condition, the response time of the tool is improved.
  • the power supply unit 24 may be a button cell or other disposable or rechargeable battery or the like. It can be understood that, the signal receiving device in the power assembly 100 can also adopt an independent power supply mode, and is powered by another power supply unit. Similarly, when the working assembly 200 is installed on the power assembly 100, the power-on triggering structure can simultaneously trigger the power supply unit 24 and another power supply unit to power on, so that the optical signal transmitting device and the optical signal receiving device 12 are powered on at the same time. Therefore, before the user presses the operation switch 102, the optical signal receiving device 12 has recognized the component identification of the currently installed working component 200. When the user presses the operation switch 102, the controller 11 can directly obtain the identification information of the work component, and search for the corresponding target control program to control the work component 200 to work accordingly, which improves the response time of the tool.
  • the control circuit block diagram of the multi-head tool is shown in FIG. 4
  • the working assembly 200 includes a driving motor 21 , an optical signal transmitting device 22 , a driving circuit 23 and a wireless charging receiving unit 25
  • the power assembly 100 includes a power supply device 103 , a controller 11 , an optical signal receiving device 12 and a wireless charging transmitting unit 14 .
  • the wireless charging transmitting unit 14 transmits power to the wireless charging receiving unit 25, so that the wireless charging receiving unit 25 can transmit power for the optical fiber
  • the device 22 is powered.
  • the optical fiber transmitting device After the optical fiber transmitting device is powered on, the electrical signal carrying the identification information of the working component is converted into an optical signal, and the optical signal is output to the optical fiber receiving device.
  • the optical fiber receiving device After the optical fiber receiving device receives the optical signal, it converts it into an electrical signal and recognizes the identification information of the working assembly therein, and then the controller 11 can obtain the identification information, and accordingly search for the corresponding target control program to control the working assembly 200 to work.
  • the wireless charging transmitting unit and the wireless charging receiving unit 25 can complete wireless charging by means of electromagnetic induction, magnetic field resonance, or radio waves.
  • wireless charging unstable transmission of tool information caused by friction of the power-on trigger unit or unstable transmission caused by damage to the connecting terminal 1041 is avoided.
  • the signal transmitting devices are all optical fiber transmitting devices
  • the signal receiving devices are all optical fiber receiving devices.
  • Other optical signal transmitting and receiving devices similar to or capable of realizing the above functions are also within the protection scope of the present application.
  • control method of the multi-head power tool will be described below with reference to FIG. 5, and the method includes the following steps:
  • S101 Acquire an optical signal sent by an optical fiber transmitting device.
  • the first connecting portion 104 of the power assembly 100 may be located at the end of the connecting rod 105 of the power assembly 100 .
  • the connection terminal 1041 of the first connection part 104 may be disposed inside the connection rod 105 .
  • the second connecting portion 201 of the working assembly 200 may be located at the end of the assembly connecting rod 202 of the working assembly 200 .
  • the component terminals 2011 of the second connecting portion 201 may be disposed inside the component connecting rods 202 .
  • connection terminal 1041 of the power assembly 100 also establishes an electrical connection with the assembly terminal 2011 of the working assembly 200 .
  • connection terminal 1041 in FIG. 1 includes the first connection terminal 1042 and the second connection terminal 1043 in FIGS. 6 a to 11
  • assembly terminal 2011 in FIG. 1 includes the first assembly terminal in FIGS. 6 a to 11 . 2012 and the second component terminal 2013.
  • connection terminals 1041 of the first connection part 104 may be arranged outside the connection rod 105 , and the component terminals 2011 of the second connection part 201 may also be arranged at the component connection rods 202 outside.
  • connection terminal 1041 of the first connection part 104 may be arranged inside the connection rod 105, and the component terminal 2011 of the second connection part 201 may be arranged outside the component connection rod 202; or the first connection part 104
  • the connecting terminal 1041 of the second connecting part 201 may be disposed outside the connecting rod 105 , and the component terminal 2011 of the second connecting part 201 may also be disposed inside the assembly connecting rod 202 .
  • the positions of the connecting terminals 1041 and the component terminals 2011 on the connecting rod may also be other positional arrangements or arrangements, for example, the terminals are arranged side by side, arranged next to each other, evenly or non-uniformly distributed, etc. Not to list them one by one.
  • FIG. 6a to FIG. 11 more intuitively list several optional connection or layout modes of the connection terminal 1041 and the component terminal 1041, and other connection modes based on the deformation or combination of the above-mentioned figures are all within the scope of protection of this application.
  • Figures 6a, 6b, 8a, 8b and 10 may be the connection methods of the first working assembly and the power assembly 100;
  • Figures 7a, 7b, 9a, 9b and 11 may be the second How the working assembly is connected to the power assembly 100 .
  • the connection method between the first working assembly and the power assembly 100 can also be shown in Fig. 7a, Fig. 7b, Fig. 9a, Fig. 9b and Fig. 11; 6b, Fig. 8a, Fig. 8b and Fig. 10, the drawings are not provided here.
  • the number of the component connection terminals 2011 on the working component 200 is smaller than the number of the connection terminals 1041 on the power component 100 .
  • the number of the component connection terminals 2011 on the externally displayed working component 200 is the same as the number of the connection terminals 1041 on the power component 100, but there are one or more blind terminals.
  • the so-called blind terminals have no actual connection function. It is only a terminal that matches the connection terminal 1041 on the power assembly 100 in appearance. In one embodiment, blind terminals may not be provided.
  • the third component terminal 2014 in FIGS. 6 a to 11 is a blind terminal.
  • the blind terminal does not correspond to the internal connecting wire 2015 , but can actually establish an electrical connection with the connecting terminal 1041 of the first connecting portion 104 .
  • a connecting wire 2015 is provided inside the connecting terminal.
  • the power supply device 103 in the power assembly 100 supplies power to the controller 11 in the assembly, and at the same time, the signal output device in the working assembly 200 is powered on and The component information is output, and the signal receiving device in the power component 100 receives the above component information, and identifies the working component accordingly.
  • the controller 11 in the power assembly 100 can select a target control program matched with the identified work assembly 200 to control the drive motor 21 to rotate.
  • the so-called target control program matched with the work component is the control program that can realize the optimal working state of the work component.
  • the working assembly 200 may not have a signal output device, and the power assembly 100 is not provided with a signal receiving device.
  • the working assembly 200 is connected with different identification resistors. After the power assembly 100 and the working assembly 200 are electrically connected, the controller 11 in the power assembly 100 can distinguish different working assemblies according to the different resistances.
  • the working assembly 200 may include a first working assembly and a second working assembly.
  • the first working component means that the component has a trigger device 211 for the user to trigger an operation.
  • the grass trimming component is provided with a winding button, and the user can trigger the controller 11 in the power component 100 by pressing the button. Change the control mode to control the grass trimming component to perform automatic winding action.
  • the first working assembly is a working assembly that can be passively driven by the power assembly 100 to work, and can also actively issue functional requirements, and is commonly a grass trimming head capable of automatic winding.
  • the second working assembly refers to an assembly without a triggering device on the assembly.
  • the second working assembly can only be driven by the power assembly 100 to work passively, and cannot actively send out work requirements.
  • whether or not to actively issue functional requirements can be used as a basis for dividing work components.
  • the triggering device on the first working component may be a triggering button or other components that can be freely selected by the user to perform control operations.
  • the first connecting terminal 1042 in the first connecting portion 104 of the power assembly 100 is set to be connected to the first assembly terminal 2012 of the first working assembly
  • the second connection terminal 1043 is arranged to be connected with the second assembly terminal 2013 of the second working assembly.
  • the first connection terminal 1042 and the second connection terminal 1043 belong to the connection terminal 1041 in the first connection part 104 ; the first component terminal 2012 and the second component terminal 2013 are only the component terminals 2011 located on different components .
  • the first assembly terminal 2012 on the first working assembly can be connected to the first connection terminal 1042
  • the second assembly terminal 2013 can be connected to the second connection terminal 1043
  • the number of the first assembly terminals 2012 or the number of the second assembly terminals 2013 is smaller than the connection terminals 1041 on the power assembly 100 .
  • the number of the connection terminals 1041 on the power assembly 100 is three
  • the number of the first assembly terminals 2012 may be one or two
  • the number of the second assembly terminals 2013 may also be one or two. .
  • the working assembly 200 does not need to completely match all the connection terminals of the power assembly 100 , which reduces the number of assembly terminals on the working assembly 200 and reduces the wiring complexity of the connection terminals or the assembly terminals on the connecting rod.
  • the controller 11 in the power component 100 can also identify the working component 200 according to the position of the component terminals 2011 docked with the connection terminals 1041 .
  • the component connection terminals 2011 on different working components may have different arrangements. Assuming that the connection terminals 1041 on the power assembly 100 are 1, 2 and 3 respectively, and the assembly connection terminals of the other first working assemblies such as the cutting head are 1', 2' and 0', and the assemblies of the other second working assemblies such as the hair dryer are connected The terminals are 0', 2' and 3', where 0' is a blind terminal. Then, when the power assembly 100 recognizes that the working assembly 200 is connected, it only needs to determine whether the action assembly 200 is the first working assembly according to the identified identification of the assembly connecting terminal 2011 . Therefore, the first working component can be identified more conveniently and quickly.
  • the inner diameter of the assembly connecting rod 202 of the working assembly 200 is smaller than the inner diameter of the connecting rod 105 of the power assembly 100 . In one embodiment, the inner diameter of the assembly connecting rod 202 of the working assembly 200 is greater than or equal to 20 millimeters and less than or equal to 40 millimeters. In one embodiment, the inner diameter of the assembly connecting rod 202 of the working assembly 200 is greater than or equal to 20 millimeters and less than or equal to 30 millimeters.

Abstract

A multi-head electric tool, comprising: a power assembly (100), which is configured to mount at least one working assembly (200); a working assembly, which is configured to work under the drive of the power assembly; a drive motor (21), which drives the working assembly mounted on the power assembly to work; a power supply device (103), which is configured to provide power to the drive motor; and a controller (11), which is configured to control, according to a target control program that matches the working assembly, the drive motor to rotate. The working assembly is provided with an optical signal transmitting device (22), and an optical signal output device is configured to output an assembly signal carrying working assembly identification information; the power assembly is provided with an optical signal receiving device (11), optical signal receiving device is configured to receive the assembly signal and identify the working assembly identification information in the assembly signal; and the controller can obtain the working assembly identification information, extract the target control program that matches the working assembly identification information, and control, according to the target control program, the drive motor to rotate, so as to drive the working assembly to work.

Description

多头电动工具Multi-head power tool
本公开要求在2021年4月15日提交中国专利局、申请号为202110403247.8的中国专利申请,以及在2021年11月23日提交中国专利局、申请号为202111394027.X的中国专利申请的优先权,上述两个申请的全部内容通过引用结合在本申请中。This disclosure claims the priority of a Chinese patent application with application number 202110403247.8 filed with the China Patent Office on April 15, 2021 and a Chinese patent application with application number 202111394027.X filed with the China Patent Office on November 23, 2021 , the entire contents of the above two applications are incorporated herein by reference.
技术领域technical field
本申请涉及电动工具技术领域,例如涉及一种多头电动工具。The present application relates to the technical field of power tools, for example, to a multi-head power tool.
背景技术Background technique
多头电动工具是一种在市场上备受欢迎的电动工具,该工具主体为一个动力组件,一个动力组件可以搭配多种工作组件工作,例如搭配剪枝机、中耕机、磨边机、铲雪机、吹风机和电锯等使用。The multi-head power tool is a popular power tool in the market. The main body of the tool is a power assembly, and a power assembly can work with a variety of working assemblies, such as with pruning machines, cultivators, edgers, snow shovels machine, hair dryer and chainsaw.
然而,相关技术的动力组件在适配多种工作组件时并不能区分不同的工作组件,均采用相同的控制程序控制不同的工作组件进行工作,从而导致一些工作组件并非处于最佳的工作状态,功能也比较单一。However, when the power components of the related art are adapted to various work components, they cannot distinguish different work components, and the same control program is used to control different work components to work, so that some work components are not in optimal working conditions. The function is also relatively simple.
发明内容SUMMARY OF THE INVENTION
为解决相关技术的不足,本申请提供一种能针对不同工作组件匹配相应的目标控制程序,使每个工作组件均达到最佳工作状态的多头电动工具。In order to solve the deficiencies of the related art, the present application provides a multi-head power tool that can match a corresponding target control program for different work components, so that each work component can achieve an optimal working state.
本申请采用如下的技术方案:This application adopts the following technical solutions:
一种多头电动工具,包括:动力组件,设置为安装至少一个工作组件;工作组件,设置为在所述动力组件的驱动下工作;驱动马达,设置为驱动所述动力组件上安装的工作组件工作;电源装置,设置为为所述驱动马达提供电力;控制器,设置为按照与所述工作组件相匹配的目标控制程序控制所述驱动马达转动;其中,所述工作组件设有光信号输出装置,所述光信号输出装置设置为输出携带工作组件标识信息的组件信号;所述动力组件设有光信号接收装置,所述光信号接收装置设置为接收所述组件信号,并识别出所述组件信号中的所述工作组件标识信息;所述控制器被配置为:获取所述工作组件标识信息;提取与所述工作组件标识信息相匹配的目标控制程序,并按照所述目标控制程序 控制所述驱动马达转动,以带动所述工作组件工作。A multi-head power tool, comprising: a power assembly configured to install at least one working assembly; a working assembly configured to work under the driving of the power assembly; a drive motor configured to drive the working assembly installed on the power assembly to work a power supply device, configured to provide power for the drive motor; a controller, configured to control the rotation of the drive motor according to a target control program matched with the working assembly; wherein the working assembly is provided with an optical signal output device , the optical signal output device is configured to output the component signal carrying the identification information of the working component; the power component is provided with an optical signal receiving device, and the optical signal receiving device is configured to receive the component signal and identify the component the working component identification information in the signal; the controller is configured to: acquire the working component identification information; extract a target control program matching the working component identification information, and control the system according to the target control program The drive motor rotates to drive the working assembly to work.
可选的,所述光信号输出装置包括光波发射装置,光信号接收装置包括光波接收装置;所述光波发射装置发射具有一定频率或者光强的光信号。Optionally, the optical signal output device includes a light wave transmitting device, and the optical signal receiving device includes a light wave receiving device; the light wave transmitting device transmits an optical signal with a certain frequency or light intensity.
可选的,所述光信号输出装置包括光纤发射装置,所述光信号接收装置包括光纤接收装置;所述光纤发射装置和所述光纤接收装置基于光纤接口建立连接。Optionally, the optical signal output device includes an optical fiber transmitting device, and the optical signal receiving device includes an optical fiber receiving device; the optical fiber transmitting device and the optical fiber receiving device establish a connection based on an optical fiber interface.
可选的,所述工作组件安装在所述动力组件上后,所述光纤发射装置将携带所述工作组件标识信息的电信号转化为光信号,并将所述光信号输出至所述光纤接收装置;所述光纤接收装置,接收所述光信号并将其转化为电信号,以识别出所述电信号中的工作组件标识信息。Optionally, after the working assembly is installed on the power assembly, the optical fiber transmitting device converts the electrical signal carrying the identification information of the working assembly into an optical signal, and outputs the optical signal to the optical fiber receiving device. The optical fiber receiving device receives the optical signal and converts it into an electrical signal, so as to identify the identification information of the working components in the electrical signal.
可选的,所述工作组件包括:供电单元,能够向所述光纤发射装置供电;所述多头电动工具还包括:上电触发结构,设置于所述动力组件上,以在所述工作组件安装在所述动力组件上时触发所述工作组件上的供电单元输出电力,使所述光纤发射装置上电;所述光纤发射装置上电后,将携带所述工作组件标识信息的电信号转化为光信号,并将所述光信号输出至所述光纤接收装置。Optionally, the working assembly includes: a power supply unit capable of supplying power to the optical fiber launching device; the multi-head power tool further includes: a power-on triggering structure arranged on the power assembly to be installed on the working assembly When on the power assembly, the power supply unit on the working assembly is triggered to output power, and the optical fiber launching device is powered on; after the optical fiber launching device is powered on, the electrical signal carrying the identification information of the working assembly is converted into optical signal, and output the optical signal to the optical fiber receiving device.
可选的,所述动力组件包括:无线充电发射单元,设置为向无线充电接收单元输送电力;所述工作组件包括:无线充电接收单元,设置为为所述光纤发射装置供电;所述无线充电接收到单元向所述光纤发射装置供电后,所述光纤发射装置将携带所述工作组件标识信息的电信号转化为光信号,并将所述光信号输出至所述光纤接收装置。Optionally, the power assembly includes: a wireless charging and transmitting unit configured to transmit power to the wireless charging receiving unit; the working assembly includes: a wireless charging receiving unit configured to supply power to the optical fiber transmitting device; the wireless charging After receiving power from the unit to the optical fiber transmitting device, the optical fiber transmitting device converts the electrical signal carrying the identification information of the working component into an optical signal, and outputs the optical signal to the optical fiber receiving device.
可选的,还包括:连接端子,设置于所述动力组件上,以在所述工作组件安装在所述动力组件上时与所述工作组件上的组件端子建立电连接,使所述电源装置能基于所述电连接使光信号输出装置上电;所述光信号输出装置上电后,将携带所述工作组件标识信息组件信号输出至所述光信号接收装置。Optionally, it also includes: connecting terminals, which are arranged on the power assembly, so as to establish electrical connection with the assembly terminals on the working assembly when the working assembly is installed on the power assembly, so that the power supply device The optical signal output device can be powered on based on the electrical connection; after the optical signal output device is powered on, the component signal carrying the identification information of the working component is output to the optical signal receiving device.
可选的,所述工作组件包括:第一工作组件,具有第一组件端子,所述第一组件端子与所述动力组件的第一连接端子电连接;第二工作组件,具有第二组件端子,所述第二组件端子与所述动力组件的第二连接端子电连接;所述第一组件端子的数量或所述第二组件端子的数量小于所述动力组件上的所述连接端子的数量。Optionally, the working assembly includes: a first working assembly having a first assembly terminal, the first assembly terminal being electrically connected to a first connecting terminal of the power assembly; a second working assembly having a second assembly terminal , the second assembly terminal is electrically connected to the second connection terminal of the power assembly; the number of the first assembly terminal or the number of the second assembly terminal is less than the number of the connection terminals on the power assembly .
可选的,所述第一连接端子与所述第二连接端子的数量之和小于或等于3。Optionally, the sum of the numbers of the first connection terminals and the second connection terminals is less than or equal to three.
可选的,所述第一组件端子或所述第二组件端子的数量小于或等于2。Optionally, the number of the first component terminals or the second component terminals is less than or equal to two.
可选的,所述第一工作组件包括:第一组件连接杆,设置为与所述动力组件的连接杆构成机械连接;所述第一组件端子设置在所述第一组件连接杆内。Optionally, the first working assembly includes: a first assembly connecting rod configured to form a mechanical connection with the connecting rod of the power assembly; the first assembly terminal is disposed in the first assembly connecting rod.
可选的,所述第一组件连接杆的内径为20毫米-40毫米。Optionally, the inner diameter of the connecting rod of the first component is 20 mm to 40 mm.
可选的,所述第一工作组件包括打草头;所述第二工作组件包括除所述打草头之外的其他工作头。Optionally, the first working assembly includes a cutting head; the second working assembly includes other working heads other than the cutting head.
可选的,所述第一工作组件上设有供用户操作的触发装置;所述第二工作组件上不具有所述触发装置。Optionally, the first working assembly is provided with a triggering device for user operation; the second working assembly does not have the triggering device.
可选的,所述工作组件标识信息包括工作组件型号或者种类。Optionally, the working component identification information includes a working component model or type.
一种多头电动工具,包括:动力组件,设置为安装至少一个工作组件;工作组件,设置为在所述动力组件的驱动下工作;驱动马达,设置为驱动所述动力组件上安装的工作组件工作;电源装置,设置为为所述驱动马达提供电力;控制器,设置为按照与所述工作组件相匹配的目标控制程序控制所述驱动马达转动;其中,所述工作组件包括信号输出装置,所述信号输出装置设置为输出携带工作组件标识信息的组件信号;所述动力组件包括信号接收装置,所述信号接收装置设置为接收所述组件信号,并识别出所述组件信号中的所述工作组件标识信息;所述控制器被配置为:获取所述工作组件标识信息;提取与所述工作组件标识信息相匹配的目标控制程序,并按照所述目标控制程序控制所述驱动马达转动,以带动所述工作组件工作。A multi-head power tool, comprising: a power assembly configured to install at least one working assembly; a working assembly configured to work under the driving of the power assembly; a drive motor configured to drive the working assembly installed on the power assembly to work a power supply device, configured to provide power for the drive motor; a controller, configured to control the rotation of the drive motor according to a target control program matched with the working assembly; wherein the working assembly includes a signal output device, and the The signal output device is configured to output a component signal carrying the identification information of the working component; the power component includes a signal receiving device, and the signal receiving device is configured to receive the component signal and identify the work in the component signal. component identification information; the controller is configured to: acquire the work component identification information; extract a target control program matching the work component identification information, and control the drive motor to rotate according to the target control program, to The working components are driven to work.
一种多头电动工具,包括:动力组件,设置为安装至少一个工作组件;工作组件,设置为在所述动力组件的驱动下工作;驱动马达,设置为驱动所述动力组件上安装的工作组件工作;电源装置,设置为为所述驱动马达提供电力;控制器,设置为按照与所述工作组件相匹配的目标控制程序控制所述驱动马达转动;其中,所述工作组件包括光纤发射装置,所述光纤发射装置设置为发送携带工作组件标识信息的组件信号;所述动力组件包括光纤接收装置,所述光纤接收装置设置为接收所述组件信号,并识别出所述组件信号中的所述工作组件标识信息;所述控制器被配置为:获取所述工作组件标识信息;提取与所述工作组件标识信息相匹配的目标控制程序,并按照所述目标控制程序控制所述 驱动马达转动,以带动所述工作组件工作。A multi-head power tool, comprising: a power assembly configured to install at least one working assembly; a working assembly configured to work under the driving of the power assembly; a drive motor configured to drive the working assembly installed on the power assembly to work a power supply device, configured to provide power for the drive motor; a controller, configured to control the rotation of the drive motor according to a target control program matched with the working assembly; wherein the working assembly includes an optical fiber launching device, and the The optical fiber transmitting device is configured to send an assembly signal carrying identification information of the working assembly; the power assembly includes an optical fiber receiving device, and the optical fiber receiving device is configured to receive the assembly signal and identify the work in the assembly signal. component identification information; the controller is configured to: acquire the work component identification information; extract a target control program matching the work component identification information, and control the drive motor to rotate according to the target control program, to The working components are driven to work.
可选的,所述工作组件安装在所述动力组件上后,所述光纤发射装置将携带所述工作组件标识信息的电信号转化为光信号,并将所述光信号输出至所述光纤接收装置;所述光纤接收装置,接收所述光信号并将其转化为电信号,以识别出所述电信号中的工作组件标识信息。Optionally, after the working assembly is installed on the power assembly, the optical fiber transmitting device converts the electrical signal carrying the identification information of the working assembly into an optical signal, and outputs the optical signal to the optical fiber receiving device. The optical fiber receiving device receives the optical signal and converts it into an electrical signal, so as to identify the identification information of the working components in the electrical signal.
可选的,还包括:连接端子,设置于所述动力组件上,以在所述工作组件安装在所述动力组件上时与所述工作组件上的组件端子建立电连接,使所述电源装置能基于所述电连接使光纤发射装置上电;所述光纤发射装置上电后,将携带所述工作组件标识信息的电信号转化为光信号,并将所述光信号输出至所述光纤接收装置。Optionally, it also includes: connecting terminals, which are arranged on the power assembly, so as to establish electrical connection with the assembly terminals on the working assembly when the working assembly is installed on the power assembly, so that the power supply device The optical fiber launching device can be powered on based on the electrical connection; after the optical fiber launching device is powered on, the electrical signal carrying the identification information of the working component is converted into an optical signal, and the optical signal is output to the optical fiber receiving device device.
可选的,所述工作组件包括:第一工作组件,具有第一组件端子,所述第一组件端子与所述动力组件的第一连接端子电连接;第二工作组件,具有第二组件端子,所述第二组件端子与所述动力组件的第二连接端子电连接;所述第一组件端子的数量或所述第二组件端子的数量小于所述动力组件上的所述连接端子的数量。Optionally, the working assembly includes: a first working assembly having a first assembly terminal, the first assembly terminal being electrically connected to a first connecting terminal of the power assembly; a second working assembly having a second assembly terminal , the second assembly terminal is electrically connected to the second connection terminal of the power assembly; the number of the first assembly terminal or the number of the second assembly terminal is less than the number of the connection terminals on the power assembly .
本发明的有益之处在于:通过将能传输光信号的收发装置分别设置在工作组件和动力组件上,以光通信的方式使动力组件能够识别出工作组件的类型或型号,进而输出相应的目标控制程序控制工作组件工作,使当前安装的工作组件达到了最佳的工作状态。The advantages of the present invention lie in that: by disposing the transceiver devices capable of transmitting optical signals on the working assembly and the power assembly respectively, the power assembly can identify the type or model of the working assembly by means of optical communication, and then output the corresponding target The control program controls the work of the work component, so that the currently installed work component achieves the best working state.
附图说明Description of drawings
图1是本申请实施例多头电动工具的示意图;1 is a schematic diagram of a multi-head power tool according to an embodiment of the present application;
图2是一种实施方式中多头电动工具的电路原理图;2 is a schematic circuit diagram of a multi-head power tool in an embodiment;
图3是一种实施方式中多头电动工具的电路原理图;3 is a schematic circuit diagram of a multi-head power tool in an embodiment;
图4是一种实施方式中多头电动工具的电路原理图;4 is a schematic circuit diagram of a multi-head power tool in an embodiment;
图5是一种实施方式中多头电动工具的控制方法流程图;5 is a flowchart of a control method of a multi-head power tool in an embodiment;
图6a和图6b是本申请实施例中多头连接工具中动力组件和工作组件的一种连接方式的结构示意图;6a and 6b are schematic structural diagrams of a connection mode of a power assembly and a working assembly in a multi-head connection tool in an embodiment of the present application;
图7a和图7b是本申请实施例中多头连接工具中动力组件和工作组件的一 种连接方式的结构示意图;Fig. 7a and Fig. 7b are the structural representation of a kind of connection mode of the power assembly and the working assembly in the multi-head connection tool in the embodiment of the present application;
图8a和图8b是本申请实施例中多头连接工具中动力组件和工作组件的一种连接方式的结构示意图;Fig. 8a and Fig. 8b are structural schematic diagrams of a connection mode of the power assembly and the working assembly in the multi-head connection tool in the embodiment of the present application;
图9a和图9b是本申请实施例中多头连接工具中动力组件和工作组件的一种连接方式的结构示意图;Figures 9a and 9b are schematic structural diagrams of a connection mode of a power assembly and a working assembly in a multi-head connection tool in an embodiment of the present application;
图10是本申请实施例中多头连接工具中动力组件和工作组件的一种连接方式的结构示意图;10 is a schematic structural diagram of a connection mode of the power assembly and the working assembly in the multi-head connection tool in the embodiment of the present application;
图11是本申请实施例中多头连接工具中动力组件和工作组件的一种连接方式的结构示意图。FIG. 11 is a schematic structural diagram of a connection mode of the power component and the working component in the multi-head connection tool in the embodiment of the present application.
图中:In the picture:
100、动力组件;200、工作组件;100, power components; 200, work components;
21、驱动马达;22、光信号发射装置;23、驱动电路;24、供电单元;25、无线充电接收单元;103、电源装置;11、控制器;12、光信号接收装置;21. Driving motor; 22. Optical signal transmitting device; 23. Driving circuit; 24. Power supply unit; 25. Wireless charging receiving unit; 103. Power supply device; 11. Controller; 12. Optical signal receiving device;
101、握持部;102、操作开关;104、第一连接部;105、连接杆;201、第二连接部;202、连接杆;203、工作头;1041、连接端子;1042、第一连接端子;1043、第二连接端子;2011、组件端子;2012、第一组件端子;2013、第二组件端子;2014、第三组件端子;2015、连接线。101, holding part; 102, operating switch; 104, first connecting part; 105, connecting rod; 201, second connecting part; 202, connecting rod; 203, working head; 1041, connecting terminal; 1042, first connecting 1043, the second connection terminal; 2011, the component terminal; 2012, the first component terminal; 2013, the second component terminal; 2014, the third component terminal; 2015, the connecting wire.
具体实施方式Detailed ways
以下结合附图和实施例对本申请作介绍。可以理解的是,此处所描述的实施例仅仅用于解释本申请。另外还需要说明的是,为了便于描述,附图中仅示出了与本申请相关的部分而非全部结构。The present application will be introduced below with reference to the accompanying drawings and embodiments. It is to be understood that the embodiments described herein are only used to explain the present application. In addition, it should be noted that, for the convenience of description, the drawings only show some but not all the structures related to the present application.
如图1和图2所示是实施例的多头电动工具,该工具包括动力组件100和工作组件200,动力组件100包括握持部101、操作开关102、电源装置103、第一连接部104;工作组件200包括第二连接部201、连接杆202、工作头203。可选的,工作组件200可以是图1所示的打草机组件,也可以是剪枝组件、中耕组件、磨边组件、铲雪组件、吹风组件、电锯组件等。可以理解的是,动力组件100安装不同的工作区间能实现不同的功能,例如,安装剪枝组件可以修剪枝条、安装吹 风组件可以吹落叶、安装打草组件可以割草等。在本申请中,第一连接部104和第二连接部201除了通过机械结构(如卡扣等)实现工作组件200和动力组件100的结构连接,第一连接部104和第二连接部201内还设有连接端子1041,实现动力组件100和工作组件200的电连接,电池包输出的电力通过所述电连接为工作组件200内的驱动马达21供电。As shown in FIG. 1 and FIG. 2, the multi-head power tool of the embodiment includes a power assembly 100 and a working assembly 200. The power assembly 100 includes a grip portion 101, an operation switch 102, a power supply device 103, and a first connection portion 104; The working assembly 200 includes a second connecting part 201 , a connecting rod 202 , and a working head 203 . Optionally, the working assembly 200 may be the lawn mower assembly shown in FIG. 1 , or may be a pruning assembly, a cultivator assembly, an edging assembly, a snow shovel assembly, a blower assembly, a chainsaw assembly, or the like. It can be understood that, the power assembly 100 can be installed in different working areas to achieve different functions, for example, the pruning assembly can be installed to trim branches, the blower assembly can be installed to blow leaves, the grass trimming assembly can be installed to cut grass, etc. In this application, in addition to realizing the structural connection between the working assembly 200 and the power assembly 100 through a mechanical structure (such as a buckle, etc.), the first connecting part 104 and the second connecting part 201 are inside the first connecting part 104 and the second connecting part 201 A connection terminal 1041 is also provided to realize electrical connection between the power assembly 100 and the working assembly 200 , and the power output from the battery pack supplies power to the drive motor 21 in the working assembly 200 through the electrical connection.
需要说明的是,当用户按下操作开关102时,动力组件100中的电源装置103给该组件内的控制器11供电,同时通过上述电连接使工作组件200内的信号输出装置22上电并输出组件信号,同时动力组件100中的信号接收装置接收到上述组件信号,并据此识别出工作组件200的标识信息。可选的,动力组件100中的控制器11将根据工作组件200的标识信息选择与之匹配的目标控制程序控制驱动马达21转动。所谓的与工作组件200相匹配的目标控制程序,是能够实现该工作组件200最佳工作状态的控制程序。It should be noted that when the user presses the operation switch 102, the power supply device 103 in the power assembly 100 supplies power to the controller 11 in the assembly, and at the same time, the signal output device 22 in the working assembly 200 is powered on and The assembly signal is output, and the signal receiving device in the power assembly 100 receives the above assembly signal, and identifies the identification information of the working assembly 200 accordingly. Optionally, the controller 11 in the power assembly 100 will select a matching target control program according to the identification information of the working assembly 200 to control the drive motor 21 to rotate. The so-called target control program matched with the work assembly 200 is a control program capable of realizing the optimal working state of the work assembly 200 .
在实现中,参考图2所示的多头工具的控制电路框图,工作组件200包括驱动马达21、光信号发射装置22和驱动电路23,动力组件100包括电源装置103、控制器11和光信号接收装置12。In implementation, referring to the control circuit block diagram of the multi-head tool shown in FIG. 2 , the working assembly 200 includes a driving motor 21 , an optical signal transmitting device 22 and a driving circuit 23 , and the power assembly 100 includes a power supply device 103 , a controller 11 and an optical signal receiving device 12.
光信号发射装置22可以在工作组件200与动力组件100建立电连接时,由动力组件100中的电源装置103使光信号发射装置22上电,从而光信号发射装置22发送携带工作组件标识信息的组件信号,动力组件100中的光信号接收装置12可以接收上述组件信号,并识别出信号中的工作组件标识信息。在一些实施例中,动作组件标识信息可以包括工作组件200的型号或者种类或者其他能够唯一代表工作组件200的标识信息。The optical signal transmitting device 22 can be powered on by the power supply device 103 in the power assembly 100 when the working assembly 200 and the power assembly 100 are electrically connected, so that the optical signal transmitting device 22 sends a message carrying the identification information of the working assembly. The component signal, the optical signal receiving device 12 in the power component 100 can receive the above component signal, and identify the identification information of the working component in the signal. In some embodiments, the action component identification information may include the model or type of the work component 200 or other identification information that can uniquely represent the work component 200 .
可以理解的是,动力组件100中的电源装置103可以是电池包也可以是交流市电,电源装置103可以为动力组件100中的控制器11供电,并在动力组件100和工作组件200建立电连接时为工作组件200中的驱动马达21供电。It can be understood that the power supply device 103 in the power assembly 100 can be a battery pack or AC mains, and the power supply device 103 can supply power to the controller 11 in the power assembly 100, and establish power between the power assembly 100 and the working assembly 200. Power is supplied to the drive motor 21 in the working assembly 200 when connected.
光信号接收装置12,能够建立与光信号发射装置22之间的数据传输通道,并通过该数据传输通道获取光信号发射装置22输出的组件信息。The optical signal receiving device 12 can establish a data transmission channel with the optical signal transmitting device 22 , and obtain component information output by the optical signal transmitting device 22 through the data transmission channel.
在一个实施例中,光信号发射装置22为光纤发射装置,光信号接收装置12为光纤接收装置,光纤发射装置和光纤接收装置之间具有光通路,二者可通过光通路传送光信号。可以理解的是,光纤发射装置可以将携带工作组件标识信 息的电信号转化为光信号后再通过光通路传输至光纤接收装置,光纤接收装置将接收到的光信号转化为电信号后再识别出其中的工作组件标识信息。需要说明的是,光纤发射装置和光纤接收装置之间需要通过光纤接口建立通信连接,也就是说,在动力组件100和工作组件200上分别设有光纤接口。In one embodiment, the optical signal transmitting device 22 is an optical fiber transmitting device, the optical signal receiving device 12 is an optical fiber receiving device, and there is an optical channel between the optical fiber transmitting device and the optical fiber receiving device, and the two can transmit optical signals through the optical channel. It can be understood that the optical fiber transmitting device can convert the electrical signal carrying the identification information of the working component into an optical signal and then transmit it to the optical fiber receiving device through the optical path. The optical fiber receiving device converts the received optical signal into an electrical signal and then recognizes it. The work component identification information in it. It should be noted that a communication connection between the optical fiber transmitting device and the optical fiber receiving device needs to be established through an optical fiber interface, that is, an optical fiber interface is respectively provided on the power assembly 100 and the working assembly 200 .
在一个实施例中,光信号发射装置22为光波发射装置,光信号接收装置12包括光波接收装置。光波发射装置能够发射具有一定频率或者光强的光波信号,而光波信号接收装置可以接收上述光波信号,并根据识别出的光波信号的频率或者光强等光信息确定工作组件200的类型或者型号等。也就是说,光波信号发射装置和接收装置之间无需通过硬件接口建立光通信,而是直接进行光波的发射和接收,跟根据光波自身的频率或强度等信息进行工作组件200的识别。In one embodiment, the optical signal transmitting device 22 is a light wave transmitting device, and the optical signal receiving device 12 includes a light wave receiving device. The light wave transmitting device can transmit a light wave signal with a certain frequency or light intensity, and the light wave signal receiving device can receive the above light wave signal, and determine the type or model of the working assembly 200 according to the light information such as the frequency or light intensity of the identified light wave signal. . That is, there is no need to establish optical communication through a hardware interface between the light wave signal transmitting device and the receiving device, but directly transmit and receive light waves, and identify the working components 200 according to information such as the frequency or intensity of the light waves themselves.
驱动电路23,可接受控制器11输出的控制信号,通过改变自身的导通状态,以控制驱动马达21的转速、或者转动方向等。从而使当前安装的工作组件200能达到最佳的工作状态。可选的,驱动电路23可以由一个或多个开关元件组成。例如,驱动电路23由多个开关元件Q1-Q6构成。开关元件的每个栅极端与控制器11电性连接,设置为接收来自控制器11的控制信号。开关元件的每个漏极或源极与驱动马达21的定子绕组连接。开关元件Q1-Q6接收来自控制器11的控制信号改变各自的导通状态,从而改变电源装置加载在驱动马达21的定子绕组上的电流。在一个实施例中,驱动电路23可以是包括六个可控半导体功率器件(例如FET,BJT,IGBT等)的三相桥驱动器电路。可以理解的是,上述开关元件也可以是其他类型的固态开关,例如绝缘栅双极型晶体管(IGBT),双极结型晶体管(BJT)等。The driving circuit 23 can receive the control signal output by the controller 11, and control the rotational speed or the rotational direction of the driving motor 21 by changing its own conduction state. Thus, the currently installed working assembly 200 can achieve the best working state. Optionally, the driving circuit 23 may be composed of one or more switching elements. For example, the drive circuit 23 is constituted by a plurality of switching elements Q1-Q6. Each gate terminal of the switching element is electrically connected to the controller 11 and configured to receive a control signal from the controller 11 . Each drain or source of the switching element is connected to the stator winding of the drive motor 21 . The switching elements Q1 - Q6 receive control signals from the controller 11 to change their respective conduction states, thereby changing the current applied by the power supply device to the stator windings of the drive motor 21 . In one embodiment, the driver circuit 23 may be a three-phase bridge driver circuit including six controllable semiconductor power devices (eg, FETs, BJTs, IGBTs, etc.). It can be understood that the above-mentioned switching elements can also be other types of solid-state switches, such as insulated gate bipolar transistors (IGBTs), bipolar junction transistors (BJTs), and the like.
控制器11,可以获取信号接收装置即光纤接收装置识别出的工作组件标识信息,并根据该标识信息在存储单元中查找与该标识信息相匹配的目标控制程序。可以理解的,存储单元中存储有所有该多头工具能够连接的工作组件200对应的控制程序,动力组件100对接的工作组件200不同,相应的目标控制程序也不同。可选的,控制器11可以按照目标控制程序的控制逻辑控制驱动电路23中开关元件的导通状态,以带动驱动马达21工作,使工作组件200达到最佳的工作状态。所谓工作组件200的最佳工作状态,可以是工作组件200中驱动马达21在相应工况下的工作效率最高、用户体验效果最好。The controller 11 can acquire the identification information of the working components identified by the signal receiving device, that is, the optical fiber receiving device, and search for the target control program matching the identification information in the storage unit according to the identification information. It can be understood that the storage unit stores all control programs corresponding to the working assemblies 200 that the multi-head tool can connect to. Different working assemblies 200 connected to the power assembly 100 have different corresponding target control programs. Optionally, the controller 11 can control the conduction state of the switching elements in the driving circuit 23 according to the control logic of the target control program, so as to drive the driving motor 21 to work, so that the working assembly 200 can reach the optimal working state. The so-called optimal working state of the working assembly 200 may be that the driving motor 21 in the working assembly 200 has the highest working efficiency and the best user experience effect under corresponding working conditions.
在本实施例中,工作组件200和动力组件100通过光纤通信,传输工作组件 200标识信息,使得动力组件100能根据该标识信息选择相应的控制程序来控制工作组件200达到最佳的工作状态。In this embodiment, the working assembly 200 communicates with the power assembly 100 through optical fiber, and transmits the identification information of the working assembly 200, so that the power assembly 100 can select a corresponding control program according to the identification information to control the working assembly 200 to achieve the best working state.
在另一个实施例中,多头工具的控制电路框图如图3所示,工作组件200包括驱动马达21、光信号发射装置22、驱动电路23和供电单元24,动力组件100包括电源装置103、控制器11和光信号接收装置12。需要说明的是,在本实施例中,动力组件100上还可以设有上电触发结构,该结构可以在工作组件200安装在动力组件100上时触发工作组件200上的供电单元24输出电力以为光纤发射装置供电。也就是说,动力组件100内的电源装置103并不需要为工作组件200的光信号发射装置22供电,光信号发射装置22由独立的供电单元24供电,只要工作组件200安装在动力组件100上,光信号发射装置22即可发射组件信息。在用户按下操作开关102时,光信号接收装置12可识别出组件信息中的工作组件200标识信息,控制器11可据此获取相应的目标控制程序控制工作组件200工作,在保证工作组件200具有最佳工作状态的基础上,提高了工具的响应时间。In another embodiment, the control circuit block diagram of the multi-head tool is shown in FIG. 3 , the working assembly 200 includes a driving motor 21 , an optical signal transmitting device 22 , a driving circuit 23 and a power supply unit 24 , and the power assembly 100 includes a power supply device 103 , a control 11 and optical signal receiving device 12. It should be noted that, in this embodiment, the power-on triggering structure may also be provided on the power assembly 100 , which can trigger the power supply unit 24 on the working assembly 200 to output power when the working assembly 200 is installed on the power assembly 100 The fiber optic launcher is powered. That is to say, the power supply device 103 in the power assembly 100 does not need to supply power to the optical signal transmitting device 22 of the working assembly 200 , and the optical signal transmitting device 22 is powered by an independent power supply unit 24 as long as the working assembly 200 is installed on the power assembly 100 , the optical signal transmitting device 22 can transmit component information. When the user presses the operation switch 102, the optical signal receiving device 12 can identify the identification information of the working assembly 200 in the assembly information, and the controller 11 can obtain the corresponding target control program to control the working assembly 200 to work accordingly. On the basis of having the best working condition, the response time of the tool is improved.
在一些实施例中,供电单元24可以是一个纽扣电池或者其他一次性电池或者可充电电池等。可以理解的是,动力组件100中信号接收装置也可以采用独立供电方式,由另一供电单元供电。同样的,在工作组件200安装在动力组件100上时,上电触发结构可以同时触发供电单元24和另一供电单元上电,使光信号发射装置和光信号接收装置12同时上电。从而,在用户按下操作开关102之前,光信号接收装置12已识别出当前安装的工作组件200的组件标识。在用户按下操作开关102时,控制器11可以直接获取工作组件标识信息,并据此查找相应的目标控制程序控制工作组件200工作,提高了工具的响应时间。In some embodiments, the power supply unit 24 may be a button cell or other disposable or rechargeable battery or the like. It can be understood that, the signal receiving device in the power assembly 100 can also adopt an independent power supply mode, and is powered by another power supply unit. Similarly, when the working assembly 200 is installed on the power assembly 100, the power-on triggering structure can simultaneously trigger the power supply unit 24 and another power supply unit to power on, so that the optical signal transmitting device and the optical signal receiving device 12 are powered on at the same time. Therefore, before the user presses the operation switch 102, the optical signal receiving device 12 has recognized the component identification of the currently installed working component 200. When the user presses the operation switch 102, the controller 11 can directly obtain the identification information of the work component, and search for the corresponding target control program to control the work component 200 to work accordingly, which improves the response time of the tool.
在又一个实施例中,多头工具的控制电路框图如图4所示,工作组件200包括驱动马达21、光信号发射装置22、驱动电路23和无线充电接收单元25,动力组件100包括电源装置103、控制器11、光信号接收装置12和无线充电发射单元14。在一个实施例中,在工作组件200安装到动力组件100上,且用户按下操作开关102后,无线充电发射单元14向无线充电接收单元25输送电力,使无线充电接收单元25能够为光纤发射装置22供电。从而,光纤发射装置上电后将携带工作组件标识信息的电信号转化为光信号,并将光信号输出至光纤接收装置。光纤接收装置接收光信号后,将其转化为电信号并识别出其中的工作组件标识信息,进而,控制器11可以获取到标识信息,并据此查找相应的目标控制程序控 制工作组件200工作。In yet another embodiment, the control circuit block diagram of the multi-head tool is shown in FIG. 4 , the working assembly 200 includes a driving motor 21 , an optical signal transmitting device 22 , a driving circuit 23 and a wireless charging receiving unit 25 , and the power assembly 100 includes a power supply device 103 , a controller 11 , an optical signal receiving device 12 and a wireless charging transmitting unit 14 . In one embodiment, after the working assembly 200 is installed on the power assembly 100 and the user presses the operation switch 102, the wireless charging transmitting unit 14 transmits power to the wireless charging receiving unit 25, so that the wireless charging receiving unit 25 can transmit power for the optical fiber The device 22 is powered. Therefore, after the optical fiber transmitting device is powered on, the electrical signal carrying the identification information of the working component is converted into an optical signal, and the optical signal is output to the optical fiber receiving device. After the optical fiber receiving device receives the optical signal, it converts it into an electrical signal and recognizes the identification information of the working assembly therein, and then the controller 11 can obtain the identification information, and accordingly search for the corresponding target control program to control the working assembly 200 to work.
在本实施例中,无线充电发射单元和无线充电接收单元25可以采用电磁感应的方式或者磁场共振的方式或者无线电波的方式完成无线充电。通过无线充电的方式,避免了由于上电触发单元摩擦导致的工具信息传输不稳定或者连接端子1041损坏导致的传输不稳定等的情况发生。In this embodiment, the wireless charging transmitting unit and the wireless charging receiving unit 25 can complete wireless charging by means of electromagnetic induction, magnetic field resonance, or radio waves. By means of wireless charging, unstable transmission of tool information caused by friction of the power-on trigger unit or unstable transmission caused by damage to the connecting terminal 1041 is avoided.
需要说明的是,在上述实施例中,信号发射装置均为光纤发射装置,信号接收装置均为光纤接收装置。其他类似或者能实现上述功能的光信号发射和接收装置也在本申请的保护范围内。It should be noted that, in the above embodiments, the signal transmitting devices are all optical fiber transmitting devices, and the signal receiving devices are all optical fiber receiving devices. Other optical signal transmitting and receiving devices similar to or capable of realizing the above functions are also within the protection scope of the present application.
下面将结合图5说明多头电动工具的控制方法,该方法包括如下步骤:The control method of the multi-head power tool will be described below with reference to FIG. 5, and the method includes the following steps:
S101,获取光纤发射装置发送的光信号。S101: Acquire an optical signal sent by an optical fiber transmitting device.
S102,识别所述光信号中的工作组件标识信息。S102: Identify the identification information of the working component in the optical signal.
S103,提取与所述工作组件标识信息相匹配的目标控制程序。S103: Extract the target control program matching the identification information of the work component.
S104,按照所述目标控制程序控制所述驱动马达转动,以带动所述工作组件工作。S104, controlling the driving motor to rotate according to the target control program to drive the working assembly to work.
如图6所示,动力组件100的第一连接部104可以位于动力组件100的连接杆105的端部。在一个实施例中,如图6a至图7b所示,第一连接部104的连接端子1041可以设置在连接杆105的内部。如图6所示,工作组件200的第二连接部201可以位于工作组件200的组件连接杆202的端部。在一个实施例中,如图6a至图7b所示,第二连接部201的组件端子2011可以设置在组件连接杆202的内部。从而,在动力组件100的连接杆105与工作组件200的组件连接杆202基于机械连接对接的同时,动力组件100的连接端子1041也与工作组件200的组件端子2011建立电连接。需要说明的,图1中的连接端子1041包括图6a至图11中的第一连接端子1042和第二连接端子1043,图1中的组件端子2011包括图6a至图11中的第一组件端子2012和第二组件端子2013。As shown in FIG. 6 , the first connecting portion 104 of the power assembly 100 may be located at the end of the connecting rod 105 of the power assembly 100 . In one embodiment, as shown in FIGS. 6 a to 7 b , the connection terminal 1041 of the first connection part 104 may be disposed inside the connection rod 105 . As shown in FIG. 6 , the second connecting portion 201 of the working assembly 200 may be located at the end of the assembly connecting rod 202 of the working assembly 200 . In one embodiment, as shown in FIGS. 6 a to 7 b , the component terminals 2011 of the second connecting portion 201 may be disposed inside the component connecting rods 202 . Therefore, while the connecting rod 105 of the power assembly 100 and the assembly connecting rod 202 of the working assembly 200 are butted based on mechanical connection, the connecting terminal 1041 of the power assembly 100 also establishes an electrical connection with the assembly terminal 2011 of the working assembly 200 . It should be noted that the connection terminal 1041 in FIG. 1 includes the first connection terminal 1042 and the second connection terminal 1043 in FIGS. 6 a to 11 , and the assembly terminal 2011 in FIG. 1 includes the first assembly terminal in FIGS. 6 a to 11 . 2012 and the second component terminal 2013.
在可选实现方式中,如图8a至图11所示,第一连接部104的连接端子1041可以设置在连接杆105的外部,第二连接部201的组件端子2011也可以设置在组件连接杆202的外部。在可选实现方式中,第一连接部104的连接端子1041可以设置在连接杆105的内部,第二连接部201的组件端子2011可以设置在组件连接杆202的外部;或者第一连接部104的连接端子1041可以设置在连接杆105的外部, 第二连接部201的组件端子2011也可以设置在组件连接杆202的内部。在本申请实施例中,连接端子1041和组件端子2011在连接杆上的位置还可以是其他位置布置方式或者排布方式,例如,端子并列设置、紧邻设置、均匀或非均匀分布设置等,此处不再一一列举。In an alternative implementation manner, as shown in FIGS. 8a to 11 , the connection terminals 1041 of the first connection part 104 may be arranged outside the connection rod 105 , and the component terminals 2011 of the second connection part 201 may also be arranged at the component connection rods 202 outside. In an alternative implementation manner, the connection terminal 1041 of the first connection part 104 may be arranged inside the connection rod 105, and the component terminal 2011 of the second connection part 201 may be arranged outside the component connection rod 202; or the first connection part 104 The connecting terminal 1041 of the second connecting part 201 may be disposed outside the connecting rod 105 , and the component terminal 2011 of the second connecting part 201 may also be disposed inside the assembly connecting rod 202 . In this embodiment of the present application, the positions of the connecting terminals 1041 and the component terminals 2011 on the connecting rod may also be other positional arrangements or arrangements, for example, the terminals are arranged side by side, arranged next to each other, evenly or non-uniformly distributed, etc. Not to list them one by one.
在本申请实施例中,图6a至图11更直观的列举出了几种可选的关于连接端子1041和组件端子1041的连接或者布局方式,其他基于上述附图的变形或者组合的连接方式均在本申请保护范围内。需要说明的,图6a、图6b、图8a、图8b和图10可以为第一工作组件与动力组件100的连接方式;图7a、图7b、图9a、图9b和图11可以为第二工作组件与动力组件100的连接方式。当然,第一工作组件与动力组件100的连接方式也可以用图7a、图7b、图9a、图9b和图11表示;第二工作组件与动力组件100的连接方式也可以用图6a、图6b、图8a、图8b和图10表示,此处不再提供附图。In the embodiment of the present application, FIG. 6a to FIG. 11 more intuitively list several optional connection or layout modes of the connection terminal 1041 and the component terminal 1041, and other connection modes based on the deformation or combination of the above-mentioned figures are all within the scope of protection of this application. It should be noted that Figures 6a, 6b, 8a, 8b and 10 may be the connection methods of the first working assembly and the power assembly 100; Figures 7a, 7b, 9a, 9b and 11 may be the second How the working assembly is connected to the power assembly 100 . Of course, the connection method between the first working assembly and the power assembly 100 can also be shown in Fig. 7a, Fig. 7b, Fig. 9a, Fig. 9b and Fig. 11; 6b, Fig. 8a, Fig. 8b and Fig. 10, the drawings are not provided here.
在一个实施例中,如图6a至图11所示,工作组件200上的组件连接端子2011的数量小于动力组件100上的连接端子1041的数量。实际设置中,对外显示的工作组件200上的组件连接端子2011与动力组件100上的连接端子1041的数量一致,但其中具有一个或多个盲端子,所谓的盲端子就是不具有实际连接功能,只是为了外观上与动力组件100上的连接端子1041相匹配的端子。在一个实施例中,也可以不设置盲端子。示例性的,图6a至图11中的第三组件端子2014为盲端子,盲端子一般不对应设置内部连接线2015,而真正的能与第一连接部104的连接端子1041建立电连接关系的连接端子内部设有连接线2015。In one embodiment, as shown in FIGS. 6 a to 11 , the number of the component connection terminals 2011 on the working component 200 is smaller than the number of the connection terminals 1041 on the power component 100 . In the actual setting, the number of the component connection terminals 2011 on the externally displayed working component 200 is the same as the number of the connection terminals 1041 on the power component 100, but there are one or more blind terminals. The so-called blind terminals have no actual connection function. It is only a terminal that matches the connection terminal 1041 on the power assembly 100 in appearance. In one embodiment, blind terminals may not be provided. Exemplarily, the third component terminal 2014 in FIGS. 6 a to 11 is a blind terminal. Generally, the blind terminal does not correspond to the internal connecting wire 2015 , but can actually establish an electrical connection with the connecting terminal 1041 of the first connecting portion 104 . A connecting wire 2015 is provided inside the connecting terminal.
在一个实施例中,当用户按下操作开关102时,动力组件100中的电源装置103给该组件内的控制器11供电,同时通过上述电连接使工作组件200内的信号输出装置上电并输出组件信息,同时动力组件100中的信号接收装置接收到上述组件信息,并据此识别出工作组件。可选的,动力组件100中的控制器11能够选择与识别出的工作组件200匹配的目标控制程序控制驱动马达21转动。所谓的与工作组件相匹配的目标控制程序,是能够实现该工作组件最佳工作状态的控制程序。可选的,工作组件200中也可以不存在信号输出装置,动力组件100中不设置信号接收装置。例如,工作组件200内连接不同的识别电阻,动力组件100与工作组件200电连接后,动力组件100内的控制器11能根据电阻的不同区分不同的工作组件。In one embodiment, when the user presses the operation switch 102, the power supply device 103 in the power assembly 100 supplies power to the controller 11 in the assembly, and at the same time, the signal output device in the working assembly 200 is powered on and The component information is output, and the signal receiving device in the power component 100 receives the above component information, and identifies the working component accordingly. Optionally, the controller 11 in the power assembly 100 can select a target control program matched with the identified work assembly 200 to control the drive motor 21 to rotate. The so-called target control program matched with the work component is the control program that can realize the optimal working state of the work component. Optionally, the working assembly 200 may not have a signal output device, and the power assembly 100 is not provided with a signal receiving device. For example, the working assembly 200 is connected with different identification resistors. After the power assembly 100 and the working assembly 200 are electrically connected, the controller 11 in the power assembly 100 can distinguish different working assemblies according to the different resistances.
在本实施例中,工作组件200可以包括第一工作组件和第二工作组件。在一些实施例中,第一工作组件是指组件上具有供用户触发操作的触发装置211,例如打草组件上设有绕线按键,用户通过按压该按键能够触发动力组件100中的控制器11改变控制方式,以控制打草组件进行自动绕线动作。也就是说,第一工作组件是一种既能被动的由动力组件100驱动工作,也能主动的发出功能需求的工作组件,常见的是能够自动绕线的打草头。第二工作组件是指组件上不具有触发装置的组件。实际上,第二工作组件只能被动由动力组件100驱动工作,并不能主动发出工作需求。在本实施例中,能否主动发出功能需求可以作为工作组件划分的依据。在一个实施例中,第一工作组件上的触发装置可以是一个触发按键或者其他可供用户自主选择进行控制操作的部件。In this embodiment, the working assembly 200 may include a first working assembly and a second working assembly. In some embodiments, the first working component means that the component has a trigger device 211 for the user to trigger an operation. For example, the grass trimming component is provided with a winding button, and the user can trigger the controller 11 in the power component 100 by pressing the button. Change the control mode to control the grass trimming component to perform automatic winding action. That is to say, the first working assembly is a working assembly that can be passively driven by the power assembly 100 to work, and can also actively issue functional requirements, and is commonly a grass trimming head capable of automatic winding. The second working assembly refers to an assembly without a triggering device on the assembly. In fact, the second working assembly can only be driven by the power assembly 100 to work passively, and cannot actively send out work requirements. In this embodiment, whether or not to actively issue functional requirements can be used as a basis for dividing work components. In one embodiment, the triggering device on the first working component may be a triggering button or other components that can be freely selected by the user to perform control operations.
在一个实施例中,为了更好的区分第一工作组件和第二工作组件,动力组件100的第一连接部104中的第一连接端子1042设置为与第一工作组件的第一组件端子2012连接,第二连接端子1043设置为与第二工作组件的第二组件端子2013连接。在一些实施例中,第一连接端子1042和第二连接端子1043同属于第一连接部104中的连接端子1041;第一组件端子2012和第二组件端子2013只是位于不同组件上的组件端子2011。In one embodiment, in order to better distinguish the first working assembly from the second working assembly, the first connecting terminal 1042 in the first connecting portion 104 of the power assembly 100 is set to be connected to the first assembly terminal 2012 of the first working assembly For connection, the second connection terminal 1043 is arranged to be connected with the second assembly terminal 2013 of the second working assembly. In some embodiments, the first connection terminal 1042 and the second connection terminal 1043 belong to the connection terminal 1041 in the first connection part 104 ; the first component terminal 2012 and the second component terminal 2013 are only the component terminals 2011 located on different components .
在一个实施例中,如图1至图11所示,第一工作组件上的第一组件端子2012能与第一连接端子1042连接,第二组件端子2013能与第二连接端子1043连接。在本实施例中,第一组件端子2012的数量或者第二组件端子2013的数量小于动力组件100上的连接端子1041。示例性的,动力组件100上的连接端子1041的个数为3个,则第一组件端子2012的数量可以是1个或者2个,第二组件端子2013的数量也可能是1个或者2个。从而,工作组件200无需完全匹配动力组件100的所有连接端子,减少了工作组件200上组件端子的数量,减少了连接杆上关于连接端子或者组件端子布线的复杂度。另外,由于组件端子2011的数量小于连接端子1041的数量,动力组件100内的控制器11也可以根据与连接端子1041对接的组件端子2011的位置识别工作组件200。In one embodiment, as shown in FIGS. 1 to 11 , the first assembly terminal 2012 on the first working assembly can be connected to the first connection terminal 1042 , and the second assembly terminal 2013 can be connected to the second connection terminal 1043 . In this embodiment, the number of the first assembly terminals 2012 or the number of the second assembly terminals 2013 is smaller than the connection terminals 1041 on the power assembly 100 . Exemplarily, if the number of the connection terminals 1041 on the power assembly 100 is three, the number of the first assembly terminals 2012 may be one or two, and the number of the second assembly terminals 2013 may also be one or two. . Therefore, the working assembly 200 does not need to completely match all the connection terminals of the power assembly 100 , which reduces the number of assembly terminals on the working assembly 200 and reduces the wiring complexity of the connection terminals or the assembly terminals on the connecting rod. In addition, since the number of component terminals 2011 is smaller than the number of connection terminals 1041 , the controller 11 in the power component 100 can also identify the working component 200 according to the position of the component terminals 2011 docked with the connection terminals 1041 .
示例性的,不同工作组件上组件连接端子2011可以具有不同的排布。假设动力组件100上的连接端子1041分别是1,2和3,而打草头等其他第一工作组件的组件连接端子为1′,2′和0′,吹风头等其他第二工作组件的组件连接端子是0′,2′和3′,其中0′为盲端子。则动力组件100在识别到有工作组件200接入时, 只需根据识别到的组件连接端子2011的标识即可确定动作组件200是否为第一工作组件。从而,能够更加方便快捷的识别第一工作组件。Exemplarily, the component connection terminals 2011 on different working components may have different arrangements. Assuming that the connection terminals 1041 on the power assembly 100 are 1, 2 and 3 respectively, and the assembly connection terminals of the other first working assemblies such as the cutting head are 1', 2' and 0', and the assemblies of the other second working assemblies such as the hair dryer are connected The terminals are 0', 2' and 3', where 0' is a blind terminal. Then, when the power assembly 100 recognizes that the working assembly 200 is connected, it only needs to determine whether the action assembly 200 is the first working assembly according to the identified identification of the assembly connecting terminal 2011 . Therefore, the first working component can be identified more conveniently and quickly.
在一个实施例中,工作组件200的组件连接杆202的内径小于动力组件100的连接杆105的内径。在一个实施例中,工作组件200的组件连接杆202的内径大于或等于20毫米且小于或等于40毫米。在一个实施例中,工作组件200的组件连接杆202的内径大于或等于20毫米且小于或等于30毫米。In one embodiment, the inner diameter of the assembly connecting rod 202 of the working assembly 200 is smaller than the inner diameter of the connecting rod 105 of the power assembly 100 . In one embodiment, the inner diameter of the assembly connecting rod 202 of the working assembly 200 is greater than or equal to 20 millimeters and less than or equal to 40 millimeters. In one embodiment, the inner diameter of the assembly connecting rod 202 of the working assembly 200 is greater than or equal to 20 millimeters and less than or equal to 30 millimeters.

Claims (20)

  1. 一种多头电动工具,包括:A multi-head power tool, comprising:
    动力组件,设置为安装至少一个工作组件;a power assembly, arranged to install at least one working assembly;
    工作组件,设置为在所述动力组件的驱动下工作;a working assembly, configured to work under the driving of the power assembly;
    驱动马达,设置为驱动所述动力组件上安装的工作组件工作;a drive motor, configured to drive the working assembly installed on the power assembly to work;
    电源装置,设置为为所述驱动马达提供电力;a power supply device configured to provide power to the drive motor;
    控制器,设置为按照与所述工作组件相匹配的目标控制程序控制所述驱动马达转动;a controller, configured to control the rotation of the drive motor according to a target control program matched with the work assembly;
    所述工作组件设有光信号输出装置,所述光信号输出装置设置为输出携带工作组件标识信息的组件信号;The working assembly is provided with an optical signal output device, and the optical signal output device is configured to output an assembly signal carrying identification information of the working assembly;
    所述动力组件设有光信号接收装置,所述光信号接收装置设置为接收所述组件信号,并识别出所述组件信号中的所述工作组件标识信息;The power assembly is provided with an optical signal receiving device, and the optical signal receiving device is configured to receive the assembly signal and identify the identification information of the working assembly in the assembly signal;
    所述控制器被配置为:The controller is configured to:
    获取所述工作组件标识信息;obtain the identification information of the work component;
    提取与所述工作组件标识信息相匹配的目标控制程序,并按照所述目标控制程序控制所述驱动马达转动,以带动所述工作组件工作。Extracting a target control program matching the identification information of the working assembly, and controlling the driving motor to rotate according to the target control program, so as to drive the working assembly to work.
  2. 根据权利要求1所述的多头电动工具,其中,所述光信号输出装置包括光波发射装置,光信号接收装置包括光波接收装置;所述光波发射装置发射具有一定频率或者光强的光波信号。The multi-head power tool according to claim 1, wherein the optical signal output device comprises a light wave transmitting device, and the optical signal receiving device comprises a light wave receiving device; the light wave transmitting device transmits a light wave signal with a certain frequency or light intensity.
  3. 根据权利要求1所述的多头电动工具,其中,所述光信号输出装置包括光纤发射装置,所述光信号接收装置包括光纤接收装置;所述光纤发射装置和所述光纤接收装置基于光纤接口建立连接。The multi-head power tool according to claim 1, wherein the optical signal output device includes an optical fiber transmitting device, and the optical signal receiving device includes an optical fiber receiving device; the optical fiber transmitting device and the optical fiber receiving device are established based on an optical fiber interface connect.
  4. 根据权利要求3所述的多头电动工具,其中,所述工作组件安装在所述动力组件上后,所述光纤发射装置将携带所述工作组件标识信息的电信号转化 为光信号,并将所述光信号输出至所述光纤接收装置;所述光纤接收装置,接收所述光信号并将其转化为电信号,以识别出所述电信号中的工作组件标识信息。The multi-head power tool according to claim 3, wherein after the working assembly is installed on the power assembly, the optical fiber transmitting device converts the electrical signal carrying the identification information of the working assembly into an optical signal, and transmits the The optical signal is output to the optical fiber receiving device; the optical fiber receiving device receives the optical signal and converts it into an electrical signal, so as to identify the identification information of the working components in the electrical signal.
  5. 根据权利要求4所述的多头电动工具,其中,所述工作组件包括:供电单元,能够向所述光纤发射装置供电;所述多头电动工具还包括:上电触发结构,设置于所述动力组件上,以在所述工作组件安装在所述动力组件上时触发所述工作组件上的供电单元输出电力,使所述光纤发射装置上电;所述光纤发射装置上电后,将携带所述工作组件标识信息的电信号转化为光信号,并将所述光信号输出至所述光纤接收装置。The multi-head power tool according to claim 4, wherein the working assembly comprises: a power supply unit capable of supplying power to the optical fiber launching device; the multi-head power tool further comprises: a power-on triggering structure arranged on the power assembly When the working assembly is installed on the power assembly, the power supply unit on the working assembly is triggered to output power, and the optical fiber launching device is powered on; after the optical fiber launching device is powered on, it will carry the The electrical signal of the identification information of the working assembly is converted into an optical signal, and the optical signal is output to the optical fiber receiving device.
  6. 根据权利要求4所述的多头电动工具,所述动力组件包括:无线充电发射单元,设置为向无线充电接收单元输送电力;所述工作组件包括:无线充电接收单元,设置为为所述光纤发射装置供电;其中,所述无线充电接收到单元向所述光纤发射装置供电后,所述光纤发射装置将携带所述工作组件标识信息的电信号转化为光信号,并将所述光信号输出至所述光纤接收装置。The multi-head power tool according to claim 4, wherein the power assembly comprises: a wireless charging transmitter unit configured to transmit power to the wireless charging receiver unit; the working assembly includes: a wireless charging receiver unit configured to transmit power to the optical fiber power supply to the device; wherein, after the wireless charging receiving unit supplies power to the optical fiber transmitting device, the optical fiber transmitting device converts the electrical signal carrying the identification information of the working component into an optical signal, and outputs the optical signal to a the optical fiber receiving device.
  7. 根据权利要求1所述的多头电动工具,其中,所述多头电动工具还包括:连接端子,设置于所述动力组件上,以在所述工作组件安装在所述动力组件上时与所述工作组件上的组件端子建立电连接,使所述电源装置能基于所述电连接使光信号输出装置上电;所述光信号输出装置上电后,将携带所述工作组件标识信息组件信号输出至所述光信号接收装置。The multi-head power tool according to claim 1, wherein the multi-head power tool further comprises: a connection terminal provided on the power assembly for connecting with the working assembly when the working assembly is mounted on the power assembly The component terminals on the component establish an electrical connection, so that the power supply device can power on the optical signal output device based on the electrical connection; after the optical signal output device is powered on, the component signal carrying the identification information of the working component is output to the the optical signal receiving device.
  8. 根据权利要求7所述的多头电动工具,其中,所述工作组件包括:第一工作组件,具有第一组件端子,所述第一组件端子与所述动力组件的第一连接端子电连接;第二工作组件,具有第二组件端子,所述第二组件端子与所述动力组件的第二连接端子电连接;所述第一组件端子的数量或所述第二组件端子 的数量小于所述动力组件上的所述连接端子的数量。The multi-head power tool according to claim 7, wherein the working assembly comprises: a first working assembly having a first assembly terminal, the first assembly terminal being electrically connected with the first connection terminal of the power assembly; Two working components, with a second component terminal, the second component terminal is electrically connected with the second connection terminal of the power component; the number of the first component terminals or the number of the second component terminals is smaller than the power component The number of said connection terminals on the assembly.
  9. 根据权利要求8所述的多头电动工具,其中,所述第一连接端子与所述第二连接端子的数量之和小于或等于3。The multi-head power tool according to claim 8, wherein the sum of the numbers of the first connection terminals and the second connection terminals is less than or equal to three.
  10. 根据权利要求8所述的多头电动工具,其中,所述第一组件端子或所述第二组件端子的数量小于或等于2。The multi-head power tool of claim 8, wherein the number of the first assembly terminals or the second assembly terminals is less than or equal to two.
  11. 根据权利要求8所述的多头电动工具,其中,所述第一工作组件包括:第一组件连接杆,设置为与所述动力组件的连接杆构成机械连接;所述第一组件端子设置在所述第一组件连接杆内。The multi-head power tool according to claim 8, wherein the first working assembly comprises: a first assembly connecting rod configured to form a mechanical connection with the connecting rod of the power assembly; the first assembly terminal is disposed at the inside the connecting rod of the first component.
  12. 根据权利要求11所述的多头电动工具,其中,所述第一组件连接杆的内径为20毫米-40毫米。The multi-head power tool according to claim 11, wherein the inner diameter of the connecting rod of the first assembly is 20 mm to 40 mm.
  13. 根据权利要求8所述的多头电动工具,其中,所述第一工作组件包括打草头;所述第二工作组件包括除所述打草头之外的其他工作头。The multi-head power tool of claim 8, wherein the first working assembly includes a cutting head; and the second working assembly includes other working heads other than the cutting head.
  14. 根据权利要求8所述的多头电动工具,其中,所述第一工作组件上设有供用户操作的触发装置;所述第二工作组件上不具有所述触发装置。The multi-head power tool according to claim 8, wherein the first working assembly is provided with a triggering device for user operation; the second working assembly does not have the triggering device.
  15. 根据权利要求1所述的多头电动工具,其中,所述工作组件标识信息包括工作组件型号或者种类。The multi-head power tool according to claim 1 , wherein the working assembly identification information includes a working assembly model or type.
  16. 一种多头电动工具,包括:A multi-head power tool, comprising:
    动力组件,设置为安装至少一个工作组件;a power assembly, arranged to install at least one working assembly;
    工作组件,设置为在所述动力组件的驱动下工作;a working assembly, configured to work under the driving of the power assembly;
    驱动马达,设置为驱动所述动力组件上安装的工作组件工作;a drive motor, configured to drive the working assembly installed on the power assembly to work;
    电源装置,设置为为所述驱动马达提供电力;a power supply device configured to provide power to the drive motor;
    控制器,设置为按照与所述工作组件相匹配的目标控制程序控制所述驱动马达转动;a controller, configured to control the rotation of the drive motor according to a target control program matched with the work assembly;
    所述工作组件包括信号输出装置,所述信号输出装置设置为输出携带工作组件标识信息的组件信号;The working assembly includes a signal output device, and the signal output device is configured to output an assembly signal carrying identification information of the working assembly;
    所述动力组件包括信号接收装置,所述信号接收装置设置为接收所述组件信号,并识别出所述组件信号中的所述工作组件标识信息;The power assembly includes a signal receiving device, and the signal receiving device is configured to receive the assembly signal and identify the working assembly identification information in the assembly signal;
    所述控制器被配置为:The controller is configured to:
    获取所述工作组件标识信息;obtain the identification information of the work component;
    提取与所述工作组件标识信息相匹配的目标控制程序,并按照所述目标控制程序控制所述驱动马达转动,以带动所述工作组件工作。Extracting a target control program matching the identification information of the working assembly, and controlling the driving motor to rotate according to the target control program, so as to drive the working assembly to work.
  17. 一种多头电动工具,包括:A multi-head power tool, comprising:
    动力组件,设置为安装至少一个工作组件;a power assembly, arranged to install at least one working assembly;
    工作组件,设置为在所述动力组件的驱动下工作;a working assembly, configured to work under the driving of the power assembly;
    驱动马达,设置为驱动所述动力组件上安装的工作组件工作;a drive motor, configured to drive the working assembly installed on the power assembly to work;
    电源装置,设置为为所述驱动马达提供电力;a power supply device configured to provide power to the drive motor;
    控制器,设置为按照与所述工作组件相匹配的目标控制程序控制所述驱动马达转动;a controller, configured to control the rotation of the drive motor according to a target control program matched with the work assembly;
    所述工作组件包括光纤发射装置,所述光纤发射装置设置为发送携带工作组件标识信息的组件信号;The working assembly includes an optical fiber launching device, and the optical fiber launching device is configured to send an assembly signal carrying identification information of the working assembly;
    所述动力组件包括光纤接收装置,所述光纤接收装置设置为接收所述组件信号,并识别出所述组件信号中的所述工作组件标识信息;The power assembly includes an optical fiber receiving device, and the optical fiber receiving device is configured to receive the assembly signal and identify the identification information of the working assembly in the assembly signal;
    所述控制器被配置为:The controller is configured to:
    获取所述工作组件标识信息;obtain the identification information of the work component;
    提取与所述工作组件标识信息相匹配的目标控制程序,并按照所述目标控制程序控制所述驱动马达转动,以带动所述工作组件工作。Extracting a target control program matching the identification information of the working assembly, and controlling the driving motor to rotate according to the target control program, so as to drive the working assembly to work.
  18. 根据权利要求17所述的多头电动工具,其中,所述工作组件安装在所述动力组件上后,所述光纤发射装置将携带所述工作组件标识信息的电信号转化为光信号,并将所述光信号输出至所述光纤接收装置;所述光纤接收装置,接收所述光信号并将其转化为电信号,以识别出所述电信号中的工作组件标识信息。The multi-head power tool according to claim 17, wherein after the working assembly is installed on the power assembly, the optical fiber emitting device converts the electrical signal carrying the identification information of the working assembly into an optical signal, and transmits the The optical signal is output to the optical fiber receiving device; the optical fiber receiving device receives the optical signal and converts it into an electrical signal, so as to identify the identification information of the working components in the electrical signal.
  19. 根据权利要求17所述的多头电动工具,其中,所述多头电动工具还包括:连接端子,设置于所述动力组件上,以在所述工作组件安装在所述动力组件上时与所述工作组件上的组件端子建立电连接,使所述电源装置能基于所述电连接使光纤发射装置上电;所述光纤发射装置上电后,将携带所述工作组件标识信息的电信号转化为光信号,并将所述光信号输出至所述光纤接收装置。The multi-head power tool according to claim 17, wherein the multi-head power tool further comprises: a connection terminal provided on the power assembly for connecting with the work assembly when the work assembly is mounted on the power assembly The component terminals on the component establish an electrical connection, so that the power supply device can power on the optical fiber launching device based on the electrical connection; after the optical fiber launching device is powered on, the electrical signal carrying the identification information of the working component is converted into light signal, and output the optical signal to the optical fiber receiving device.
  20. 根据权利要求19所述的多头电动工具,其中,所述工作组件包括:第一工作组件,具有第一组件端子,所述第一组件端子与所述动力组件的第一连接端子电连接;第二工作组件,具有第二组件端子,所述第二组件端子与所述动力组件的第二连接端子电连接;所述第一组件端子的数量或所述第二组件端子的数量小于所述动力组件上的所述连接端子的数量。The multi-head power tool according to claim 19, wherein the working assembly comprises: a first working assembly having a first assembly terminal, the first assembly terminal being electrically connected with the first connection terminal of the power assembly; Two working assemblies, with a second assembly terminal, the second assembly terminal is electrically connected with the second connection terminal of the power assembly; the number of the first assembly terminals or the number of the second assembly terminals is smaller than the power The number of said connection terminals on the assembly.
PCT/CN2022/081574 2021-04-15 2022-03-18 Multi-head electric tool WO2022218094A1 (en)

Applications Claiming Priority (4)

Application Number Priority Date Filing Date Title
CN202110403247.8A CN115225150A (en) 2021-04-15 2021-04-15 Multi-head electric tool and working assembly identification method thereof
CN202110403247.8 2021-04-15
CN202111394027.XA CN116138028A (en) 2021-11-23 2021-11-23 Electric tool
CN202111394027.X 2021-11-23

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Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN203831362U (en) * 2014-04-24 2014-09-17 天佑电器(苏州)有限公司 Electric tool kit
CN105818108A (en) * 2015-01-22 2016-08-03 苏州宝时得电动工具有限公司 Power device, electric tools and electric tool system
US20160256153A1 (en) * 2015-03-06 2016-09-08 Ethicon Endo-Surgery, Llc Monitoring speed control and precision incrementing of motor for powered surgical instruments
CN207201332U (en) * 2017-08-14 2018-04-10 天佑电器(苏州)有限公司 Garden tool

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN203831362U (en) * 2014-04-24 2014-09-17 天佑电器(苏州)有限公司 Electric tool kit
CN105818108A (en) * 2015-01-22 2016-08-03 苏州宝时得电动工具有限公司 Power device, electric tools and electric tool system
US20160256153A1 (en) * 2015-03-06 2016-09-08 Ethicon Endo-Surgery, Llc Monitoring speed control and precision incrementing of motor for powered surgical instruments
CN207201332U (en) * 2017-08-14 2018-04-10 天佑电器(苏州)有限公司 Garden tool

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