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WO2019001309A1 - Commutateur de commande à distance intelligent - Google Patents

Commutateur de commande à distance intelligent Download PDF

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Publication number
WO2019001309A1
WO2019001309A1 PCT/CN2018/091863 CN2018091863W WO2019001309A1 WO 2019001309 A1 WO2019001309 A1 WO 2019001309A1 CN 2018091863 W CN2018091863 W CN 2018091863W WO 2019001309 A1 WO2019001309 A1 WO 2019001309A1
Authority
WO
WIPO (PCT)
Prior art keywords
load device
base
remote controller
remote control
control switch
Prior art date
Legal status (The legal status 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 status listed.)
Ceased
Application number
PCT/CN2018/091863
Other languages
English (en)
Chinese (zh)
Inventor
孙贺军
江能
吴奕涛
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Opple Lighting Co Ltd
Suzhou Op Lighting Co Ltd
Opple Lighting Electrical Appliance Zhongshan Co Ltd
Original Assignee
Opple Lighting Co Ltd
Suzhou Op Lighting Co Ltd
Opple Lighting Electrical Appliance Zhongshan Co Ltd
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 CN201710512200.9A external-priority patent/CN107240243A/zh
Priority claimed from CN201720765962.5U external-priority patent/CN207037905U/zh
Priority claimed from CN201720765947.0U external-priority patent/CN207037904U/zh
Application filed by Opple Lighting Co Ltd, Suzhou Op Lighting Co Ltd, Opple Lighting Electrical Appliance Zhongshan Co Ltd filed Critical Opple Lighting Co Ltd
Publication of WO2019001309A1 publication Critical patent/WO2019001309A1/fr
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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Classifications

    • GPHYSICS
    • G08SIGNALLING
    • G08CTRANSMISSION SYSTEMS FOR MEASURED VALUES, CONTROL OR SIMILAR SIGNALS
    • G08C17/00Arrangements for transmitting signals characterised by the use of a wireless electrical link
    • G08C17/02Arrangements for transmitting signals characterised by the use of a wireless electrical link using a radio link

Definitions

  • the invention relates to the field of electrical appliances, and in particular to an intelligent remote control switch.
  • the fixed switch is fixed on the wall and cannot be moved freely. It is impossible to control the lamp at different positions.
  • the light switch of the bedroom is usually placed on the wall at the doorway, and it is inconvenient to operate the switch of the door when the operator is in the position of the bed.
  • the present invention provides an intelligent remote control switch to overcome the above problems or at least partially solve the above problems.
  • a smart remote control switch is provided, at least for opening or closing a load device, and the smart remote control switch is a split structure, including:
  • a remote controller comprising a button and a substrate assembly, wherein the button is controlled according to an operator's control intention, and the substrate assembly sends a signal according to the pressing button;
  • the remote controller being mounted at a wall through the base;
  • the remote controller is fixed or detachable from the base, the remote controller is configured to send a signal at the base to control opening, closing or adjusting a load device of the load device, or the remote controller configuration Signaling at any point away from the base controls the opening, closing or adjustment of the load device of the load device.
  • a mechanical switch disposed within the base for forcibly disconnecting the load device.
  • the remote controller further includes:
  • the substrate assembly, the fixing frame and the control panel are sequentially superposed on an opening of the rear seat, and the fixing frame presses the substrate assembly against an opening of the rear seat
  • the control panel is slidable and snap-fitted relative to the fixing frame, wherein the button is disposed at the control panel.
  • the substrate assembly includes:
  • micro switch and a transmitting module disposed at the substrate, wherein the micro switch is electrically connected to the transmitting module, the micro switch is responsive to the button and sends a signal, and the transmitting module receives the signal according to the receiving The signal of the micro switch is converted into a transmission command.
  • the transmitting module is an infrared transmitting module or a wireless communication transmitting module.
  • the wireless communication transmitting module is a Bluetooth communication module, a WiFi communication module or a ZigBee communication module.
  • a battery holder fixedly connected thereto is disposed in the rear seat, and the battery holder is used for accommodating the battery.
  • the back portion of the rear seat is constituted by a battery cover, and the battery cover is detachable with respect to the rear seat.
  • the base includes:
  • a panel which is a housing having a front end face having a cavity, the cavity receiving the remote controller;
  • the base is combined with the panel buckle.
  • the front end surface of the panel further has a through hole perpendicular to the front end surface and extending through the mechanical switch;
  • the base also has a switch seat that houses a mechanical switch.
  • remote controller and the base are affixed and fixed by a magnetic element.
  • the magnetic component comprises:
  • a second magnetic element disposed inside the base, and when the remote controller is placed at the base, is engaged with the first magnetic element such that the remote controller forms a fixed connection with the base .
  • controller installed at the load device, receiving a signal by the controller and parsing to control opening, closing, or adjusting the load device of the load device according to the control intention ;
  • a signal is sent by the remote controller, and the load device is controlled by the controller receiving a signal.
  • controller includes:
  • a receiving module that receives and parses a signal sent by the remote controller
  • a relay electrically connected to the receiving module and the load device, wherein the relay is connected or disconnected according to a control command converted by the receiving module to control opening or closing of the load device;
  • the load device has a control unit that adjusts the load device according to a control command converted by the receiving module.
  • the remote controller of the invention can be fixed or separated from the base, so that the remote controller can be fixed at the base remote control load device, or the remote controller can be separately removed and moved to an arbitrary position remote control load device, thereby realizing the fixed point control of the load device and Multi-point control greatly improves user experience and convenience.
  • the remote control After the remote control is used, it is placed at the base. Because the remote control has a fixed storage position, the remote control is easy to find and is not easy to lose.
  • the load device such as the lamp is not used for a long time or the remote controller fails, the mechanical switch can be powered off, which further improves the user experience and safety.
  • FIG. 1 is a schematic perspective view of a smart remote control switch with a mechanical switch in accordance with one embodiment of the present invention
  • FIG. 2 is a schematic exploded view of a remote controller in accordance with one embodiment of the present invention.
  • Figure 3 is a schematic exploded view of a susceptor in accordance with one embodiment of the present invention.
  • FIG. 4 is a schematic perspective view of a smart remote control switch with a mechanical switch in accordance with another embodiment of the present invention.
  • Figure 5 is a schematic perspective view of a remote controller in accordance with another embodiment of the present invention.
  • Figure 6 is a schematic exploded view of a remote controller in accordance with another embodiment of the present invention.
  • Figure 7 is a schematic perspective view of a base assembly in accordance with another embodiment of the present invention.
  • Figure 8 is a schematic exploded view of a base assembly in accordance with another embodiment of the present invention.
  • 11a, 11b decorative parts 12a, 12b control panel, 121a, 121b buttons, 122a, 122b buckle, 13a, 13b substrate assembly, 131a, 131b substrate, 132a, 132b micro switch, 14a, 14b rear seat, 141a, 141b Battery holder, 142 battery, 15a, 15b holder, 151a, 151b chute, 16a, 16b first magnetic element,
  • an intelligent remote control switch 100a is at least used for opening or closing a load device (not shown), and is a split structure, and generally includes a remote controller 10a and a base 21a.
  • the remote controller 10a includes a button 121a (see FIG. 2) and a substrate assembly 13a (see FIG. 2).
  • the button 121a is used to input control in accordance with an operator's control intention, that is, the operator presses a different button 121a according to his own control intention, for example, on/off.
  • the substrate assembly 13a is for emitting a signal according to the push button 121a.
  • the base 21a is for mounting at a wall and housing the remote controller 10a.
  • the controller 30a is configured to receive a signal and resolve to control the opening, closing, or regulating of the load device of the load device in accordance with the control command.
  • the remote controller 10a is fixed or separated from the base 21a, and the remote controller 10a is configured to send a signal at the base 21a to control opening, closing or adjusting the load device of the load device, Or the remote control 10a is configured to signal at any location away from the base 21a to control the opening, closing or adjustment of the load device.
  • the smart remote control switch 100a may further include a controller 30a.
  • the controller 30a is mounted deep in the load by receiving a signal and parsing to control the opening, closing or regulating of the load device of the load device in accordance with the control command. A signal is sent through the remote controller 10a, and a signal is received by the controller 30a to control the load device.
  • the load device mentioned in the present invention may be various electrical appliances such as lamps, air conditioners, and range hoods.
  • the adjusting load device may be to adjust the color temperature and brightness of the luminaire.
  • the adjusting load device may be adjusting the temperature, operation mode, wind direction, wind power, and the like of the air conditioner.
  • the mounting process of the present invention the base 21a is fixed to the wall by screws.
  • the remote controller 10a can be placed at the base 21a or can be used separately.
  • the remote controller 10a of the present invention can be fixed or separated from the base 21a, and the base 21a is fixed at the wall so that the operator can use the remote controller fixed at the base 21a when manipulating the remote controller 10a.
  • 10a sends a signal remote control load device, and can also remove the remote controller 10a to move to any position to send a signal remote control load device, realizes fixed point control and multi-point control of the load device, greatly improving user experience and convenience.
  • the remote controller 10a is placed at the base 21a after use, and since the remote controller 10a has a fixed storage position, the remote controller 10a is easy to find and is not easily lost.
  • the smart remote control switch 100a of the present invention adopts a wireless remote control, it is not necessary to route to the position of the smart remote control switch 100a, and the installation area does not need to be routed from the wall, thus reducing the difficulty and complexity of the house decoration wiring.
  • the remote controller 10a may further include a rear seat 14a, a fixing frame 15a, and a control panel 12a.
  • One end of the rear seat 14a is an opening.
  • the substrate assembly 13a, the holder 15a, and the control panel 12a are sequentially superposed on the opening of the rear seat 14a.
  • the fixing frame 15a presses the substrate assembly 13a against the opening of the rear seat 14a, and the control panel 12a is slidably and snap-fastened relative to the fixing frame 15a, wherein the button 121a is disposed at the At the control panel 12a.
  • a plurality of buckles 122a are formed on the back sides of the control panel 12a, and the plurality of buckles 122a are regularly arranged.
  • the corresponding buckles 15a are correspondingly buckled.
  • a groove 151a extending along the axial direction thereof is provided at the position 122a such that the buckle position 122a is movable up and down with respect to the sliding groove 151a.
  • the substrate 13a is positioned and clamped by the holder 15a and the rear seat 14a.
  • the remote controller 10a may further include a decorative member 11a to which the decorative member 11a is attached, which increases the aesthetics of the product.
  • the substrate assembly 13a may include a substrate 131a, a micro switch 132a, and a transmitting module (not shown).
  • the micro switch 132a and the transmitting module are disposed at the substrate 131a, the micro switch 132a and the transmitting module are electrically connected, and the micro switch 132a is configured to respond to the button 121a and emit a signal, the transmitting The module is configured to be converted into a transmission command according to the received signal of the micro switch 132a.
  • the transmitting module is an infrared transmitting module or a wireless communication transmitting module. More specifically, the wireless communication transmitting module is a Bluetooth communication module, a WiFi communication module or a ZigBee communication module.
  • the controller 30a includes a receiving module and a relay, typically mounted at the load device.
  • the receiving module is configured to receive and parse the signal sent by the remote controller 10a.
  • the receiving module is an infrared receiving module or a wireless communication receiving module. More specifically, the wireless communication receiving module is a Bluetooth communication module, a WiFi communication module, or a ZigBee communication module having the same protocol type.
  • the relay is electrically connected to the receiving module and the load device for connecting or disconnecting according to the control command converted by the receiving module to control the opening or closing of the load device.
  • the load device may have a control unit for adjusting the load device according to a control command converted by the receiving module.
  • the working principle of the smart remote controller 10a of the present invention is that the operator presses the corresponding button 121a according to the control intention, the micro switch 132a of the corresponding button 121a is activated to send a signal, and the transmitting module receives the signal and then converts into a transmitting command. .
  • the receiving module receives a signal to drive the internal relay to open or close to control the connection or disconnection of the load circuit.
  • the control unit received by the controller 30a at the load device is the control unit that controls the load device after adjusting the command to adjust the load device. For example, when the load device is a luminaire, adjust the color temperature and brightness of the luminaire.
  • the present invention can also implement network control.
  • the principle of pairing networking is that one controller 30a controls one load device, and the smart remote control switch 100a can be paired with the controller 30a one-to-one or one-to-many according to the number of bits.
  • the matching rules are as follows:
  • the controller 30a that needs to be paired is activated, and the gateway searches for the signal and displays it on the mobile phone app, and the app operates to pair.
  • the self-organizing network activates the controller 30a that needs to be paired, and selects corresponding buttons on the smart remote control switch 100a according to the indicator light to perform pairing, for example, long pressing the button on the smart remote control switch 100a that needs to be paired with the load device, and the load device flashes. Let's prove that the pairing is successful.
  • a battery holder 141a is disposed in the rear seat 14a, and the battery holder 141a is fixed to the rear seat 14a.
  • the battery holder 141a is used for accommodating the battery 142.
  • the battery 142 is a button battery.
  • the battery holder 141a is inserted and fixed to the rear seat 14a, and may be fixed by a clip or fixed by a screw.
  • the battery holder 141a may also be a battery holder 141a that houses a dry battery. Accordingly, the rear portion of the rear seat 14a is constituted by a battery cover (not shown) which is detachable with respect to the rear seat 14a to mount the battery.
  • the smart remote control switch 100a is powered by a battery, which blocks any possibility of contact with strong electric power, and is reliable and safe.
  • the base 21a includes a panel 211a and a base 215a.
  • the front panel 211a has a cavity 212a for receiving the remote controller 10a.
  • the base 215a is fastened and fixed together with the panel 211a.
  • the panel 211a and the base 215a may be snap-fitted, screwed, or plugged.
  • the remote controller 10a and the base 21a are suction-fixed by a magnetic element.
  • the magnetic element includes a first magnetic element 16a and a second magnetic element 23a (see FIG. 3).
  • the first magnetic member 16a is disposed inside the remote controller 10a, and is pressed at the rear seat 14a by the fixing frame 15a.
  • the second magnetic member 23a is disposed inside the base 21a, and is pressed against the base 215a by the panel 211a.
  • the remote controller 10a is placed at the base 21a, the second magnetic member 23a is attracted to the first magnetic member 16a such that the remote controller 10a forms a fixed connection with the base 21a.
  • the fixed connection manner of the remote controller 10a and the base 21a may also be other fixed connection manners such as snapping, hooking or plugging.
  • FIG. 4 is a schematic perspective view of a smart remote control switch with a mechanical switch in accordance with another embodiment of the present invention.
  • Figure 5 is a schematic perspective view of a remote controller in accordance with another embodiment of the present invention.
  • Figure 6 is a schematic exploded view of a remote controller in accordance with another embodiment of the present invention.
  • Figure 7 is a schematic perspective view of a base assembly in accordance with another embodiment of the present invention.
  • Figure 8 is a schematic exploded view of a base assembly in accordance with one embodiment of the present invention.
  • a smart remote control switch 100b with a mechanical switch is used for at least opening or closing of a load device (not shown).
  • the smart remote control switch 100b is a split structure, and may generally include a minute.
  • the body remote controller 10b and the base assembly 20 composed of a base 21b (see Fig. 8) and a mechanical switch 22 (see Fig. 8).
  • the remote controller 10b includes a button 121b (see FIG. 6) and a substrate assembly 13b (see FIG. 6) for controlling input according to an operator's control intention, that is, the operator presses a different button 121b according to his own control intention. , for example, open/key.
  • the substrate assembly 13b is for emitting a signal according to the push button 121b.
  • the base assembly 20 includes a base 21b (see FIG. 8) and a mechanical switch 22 (see FIG. 8) for accommodating the remote controller 10b, the smart remote control switch 100b being mounted through the base 21b At the wall, the mechanical switch 22 is disposed within the base 21b, and the mechanical switch 22 is used to forcibly disconnect the load device.
  • the remote controller 10b is fixed or detachable relative to the base assembly 20, the remote controller 10b is configured to issue a signal at the base assembly 20 to control opening or closing of the load device or to adjust the load
  • the device, or the remote control 10b is configured to signal at any location away from the base assembly 20 to control the opening or closing of the load device or to adjust the load device.
  • the smart remote control switch 100b may further include a controller 30b.
  • the controller 30b is configured to receive a signal and resolve to control the opening, closing, or regulating of the load device of the load device in accordance with the control intent.
  • a signal is sent by the remote controller 10b, and the controller 30b receives a signal to control the opening or closing of the load device or to adjust the load device.
  • the mounting process of the present invention the base assembly 20 is fixed to the wall by screws.
  • the mechanical switch 22 is connected to the live line of the load device to control the power supply of the load device.
  • the remote controller 10b of the present invention can be fixed or separated from the base assembly 20, and the base assembly 20 is fixed at the wall so that the operator can be fixed at the base assembly 20 when the remote controller 10b is manipulated.
  • the remote controller 10b sends a signal remote control load device, and can also separately remove the remote controller 10b to move to any position to send a signal remote control load device, realizes fixed point control and multi-point control of the load device, greatly improving user experience and convenience. Sex. After the remote controller 10b is used, it is placed at the base assembly 20. Since the remote controller 10b has a fixed storage position, the remote controller 10b is easy to find and is not easily lost.
  • the load device such as a luminaire
  • the remote control 10b fails, the mechanical switch 22 (see Figure 8) can be used to power down, further improving user experience and safety.
  • the smart remote control switch 100b since the smart remote control switch 100b according to the present invention has the mechanical switch 22, the user does not need to purchase the mechanical switch 22 after purchasing the lamp, and the power supply is controlled by the self-contained mechanical switch 22.
  • the mechanical switch 22 is hidden in the base 21b and does not occupy space alone and affects the overall aesthetics.
  • the remote controller 10 b further includes a rear seat 14 b , a fixed frame 15 b , and a control panel 12 b .
  • One end of the rear seat 14b is an opening.
  • the substrate assembly 131b, the holder 15b, and the control panel 12b are sequentially superposed on the opening of the rear seat 14b.
  • the fixing frame 15b presses the substrate assembly 131b against the opening of the rear seat 14b, and the control panel 12b is slidable and fixed with respect to the fixing frame 15b, wherein the button 121b is disposed at the At the control panel 12b.
  • a plurality of regularly arranged buckles 122b are disposed on the two sides of the back surface of the control panel 12b.
  • the corresponding buckles 122b of the corresponding fixtures 15b are provided with axially extending slots 151b, so that the buckles 122b can be
  • the relative chute 151b moves up and down.
  • the substrate 13b is positioned and clamped by the holder 15b and the rear seat 14b.
  • the remote controller 10b further includes a decorative member 11b, and the decorative member 11b is adhered to the fixing frame 15b, which increases the aesthetics of the product.
  • the substrate assembly 13b includes a substrate 13b, a micro switch 132b, and a transmitting module.
  • a micro switch 132b and a transmitting module are disposed at the substrate 13b, the micro switch 132b and the transmitting module are electrically connected, and the micro switch 132b is configured to respond to the button 121b and emit a signal, the transmitting The module is configured to be converted into a transmission command according to the received signal of the micro switch 132b.
  • the transmitting module is an infrared transmitting module or a wireless communication transmitting module. More specifically, further, the wireless communication transmitting module is a Bluetooth communication module, a WiFi communication module or a ZigBee communication module.
  • the controller 30b includes a receiving module and a relay, typically mounted at the load device.
  • the receiving module is configured to receive and parse the signal sent by the remote controller 10b.
  • the receiving module is an infrared receiving module or a wireless communication receiving module. More specifically, further, the wireless communication receiving module is a Bluetooth communication module, a WiFi communication module, or a ZigBee communication module.
  • the relay is electrically connected to the receiving module and the load device for connecting or disconnecting according to the control command converted by the receiving module to control the opening or closing of the load device.
  • the load device has a control unit for adjusting the load device according to a control command converted by the receiving module.
  • the working principle of the smart remote controller 10b according to the present invention is that the operator presses the corresponding button 121b according to the control intention, the micro switch 132b corresponding to the button 121b is activated to send a signal, and the transmitting module receives the signal and then converts into a transmitting command. .
  • the receiving module receives a signal to drive the internal relay to open or close to control the connection or disconnection of the load circuit.
  • the mechanical switch 22 is used to turn off the power.
  • the control unit received by the controller 30b at the load device is the control unit that controls the load device after adjusting the command to adjust the load device. For example, when the load device is a luminaire, adjust the color temperature and brightness of the luminaire.
  • the invention can also implement network control.
  • the principle of pairing networking is to open the load device that needs to be paired, and press and hold the button 121b that needs to be paired with the smart remote control switch 100b, and the load device flashes to prove that the pairing is successful.
  • a battery holder 141b is disposed in the rear seat 14b, and the battery holder 141b is fixed to the rear seat 14b, and the battery holder 141b is used for accommodating the battery.
  • the battery holder 141b may be a battery holder 141b that houses a dry battery, or may be a battery holder 141b that accommodates a button battery.
  • the rear portion of the rear seat 14b is constituted by a battery cover 142b which is detachable with respect to the rear seat 14b to mount a battery.
  • the base 21b includes a panel 211b and a base 215b.
  • the front panel has a cavity 212b for receiving the remote controller 10b, and the front end surface further has a through hole 213 perpendicular to the front end surface for exposing the mechanical switch. twenty two.
  • the base 215b has a switch seat 216 that houses the mechanical switch 22.
  • the panel 211b is fastened and fixed together with the base 215b.
  • the panel 211b and the base 215b may be snap-fitted, screwed or plugged.
  • the mechanical switch 22 is fixed at the base 215b and is pressed by the panel 211b.
  • the remote controller 10b and the base assembly 20 are adsorbed and fixed by a magnetic element.
  • the magnetic element includes a first magnetic element 16b and a second magnetic element 23b (see FIG. 8).
  • the first magnetic element 16b is disposed inside the remote controller 10b.
  • a second magnetic member 23b is disposed inside the base assembly 20.
  • the panel 211b is provided with a tab 214, and the corresponding rear seat 14b has a recess for receiving the tab 214.
  • the positioning of the remote controller 10b and the substrate assembly 13b is facilitated by aligning the notches at the rear seat 14b with the tabs 214.
  • the fixed connection manner of the remote controller 10b and the base assembly 20 may also be other fixed connection manners such as snapping, hooking or plugging.
  • modules in the devices of the embodiments can be adaptively changed and placed in one or more devices different from the embodiment.
  • the modules or units or components of the embodiments may be combined into one module or unit or component, and further they may be divided into a plurality of sub-modules or sub-units or sub-components.
  • any combination of the features disclosed in the specification, including the accompanying claims, the abstract and the drawings, and any methods so disclosed, or All processes or units of the device are combined.
  • Each feature disclosed in this specification (including the accompanying claims, the abstract and the drawings) may be replaced by alternative features that provide the same, equivalent or similar purpose.
  • the various component embodiments of the present invention may be implemented in hardware, or in a software module running on one or more processors, or in a combination thereof.
  • a microprocessor or digital signal processor may be used in practice to implement some or all of the functionality of some or all of the components of the wireless communication module in accordance with embodiments of the present invention.
  • the invention can also be implemented as a device or device program (e.g., a computer program and a computer program product) for performing some or all of the methods described herein.
  • a program implementing the invention may be stored on a computer readable medium or may be in the form of one or more signals. Such signals may be downloaded from an Internet website, provided on a carrier signal, or provided in any other form.

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  • Computer Networks & Wireless Communication (AREA)
  • Physics & Mathematics (AREA)
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Abstract

La présente invention concerne un commutateur de commande à distance intelligent (100a, 100b) ayant une structure fendue, et destiné à allumer ou éteindre un dispositif de charge. Le commutateur de commande à distance intelligent (100a, 100b) comprend : un dispositif de commande à distance (10a, 10b) et une base (21a). Le dispositif de commande à distance (10a, 10b) entre une commande selon une intention de commande d'un opérateur, et envoie un signal. La base (21a) est destinée à recevoir le dispositif de commande à distance (10a, 10b). Le commutateur de commande à distance intelligent (100a, 100b) est monté sur une paroi au moyen de la base (21a). Le dispositif de commande à distance (10a, 10b) peut être fixe ou séparé par rapport à la base (21a), de telle sorte que le dispositif de commande à distance (10a, 10b) peut envoyer un signal au niveau de la base (21a), et peut également envoyer un signal à n'importe quelle position éloignée de la base (21a) ; et le dispositif de charge est commandé au moyen du dispositif de commande à distance (10a, 10b) envoyant un signal. Le commutateur de commande à distance intelligent (100a, 100b) réalise une commande de point fixe et une commande multipoint sur le dispositif de charge, améliorant ainsi considérablement l'expérience de l'utilisateur et la commodité. Comme il y a un emplacement de stockage fixe pour le dispositif de commande à distance (10a, 10b), le dispositif de commande à distance (10a, 10b) peut être facilement trouvé et ne peut pas facilement être perdu.
PCT/CN2018/091863 2017-06-28 2018-06-19 Commutateur de commande à distance intelligent Ceased WO2019001309A1 (fr)

Applications Claiming Priority (6)

Application Number Priority Date Filing Date Title
CN201710512200.9A CN107240243A (zh) 2017-06-28 2017-06-28 一种带机械开关的智能遥控开关
CN201720765962.5U CN207037905U (zh) 2017-06-28 2017-06-28 一种带机械开关的智能遥控开关
CN201720765962.5 2017-06-28
CN201710512200.9 2017-06-28
CN201720765947.0 2017-06-28
CN201720765947.0U CN207037904U (zh) 2017-06-28 2017-06-28 一种智能遥控开关

Publications (1)

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WO2019001309A1 true WO2019001309A1 (fr) 2019-01-03

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Application Number Title Priority Date Filing Date
PCT/CN2018/091863 Ceased WO2019001309A1 (fr) 2017-06-28 2018-06-19 Commutateur de commande à distance intelligent

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WO (1) WO2019001309A1 (fr)

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