Multi-channel wireless Bluetooth remote controller

The multi-channel wireless Bluetooth remote control enables unified control of the height-adjustable electric telescopic table, mini bar, and TV stand, solving the problems of device incompatibility and infrared signal limitations in existing technologies and providing a convenient operating experience.

CN223692819UActive Publication Date: 2025-12-19XINWEITE (SHANGHAI) INFORMATION TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422643375.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-31
Publication Date
2025-12-19
Estimated Expiration
2034-10-31

AI Technical Summary

Technical Problem

The wireless remote controls for height-adjustable electric telescopic tables, minibars, and TV racks in existing high-end hotels are incompatible and require separate operation. Furthermore, the infrared signal control has a short range and high directional requirements, making it inconvenient to use.

Method used

Employing a multi-channel wireless Bluetooth remote control, this device enables Bluetooth signal control of the height-adjustable electric telescopic table, mini bar, and TV stand through a single unit. It includes a wireless remote control mechanism and a wireless receiver mechanism, utilizing the unrestricted directionality of Bluetooth signals for control.

Benefits of technology

It enables convenient control of the height adjustment of multiple devices through a single device, improving the user experience, reducing operational complexity, and ensuring that Bluetooth signal transmission is not restricted by direction.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223692819U_ABST
Patent Text Reader

Abstract

A multi-channel wireless Bluetooth remote controller belongs to the technical field of wireless control, and comprises a wireless remote control mechanism and wireless receiving mechanisms, and a plurality of sets of wireless receiving mechanisms are respectively mounted in element boxes; the wireless remote control mechanism comprises shells, a single chip microcomputer module A, a Bluetooth signal receiving and transmitting module A, a wireless charging receiving module, a wireless charging transmitting module, a touch circuit and a storage battery, and the wireless charging transmitting module is installed in the first shell; the single-chip microcomputer module A, the Bluetooth signal receiving and transmitting module A, the wireless charging receiving module, the touch circuit and the storage battery are installed in the second shell and electrically connected. Each set of wireless receiving mechanism comprises a power supply module, a Bluetooth signal receiving and transmitting module B, a single chip microcomputer module B and a control circuit; and the power supply module, the Bluetooth signal receiving and transmitting module B, the single chip microcomputer module B and the control circuit are arranged in the element box and are electrically connected. A plurality of remote controllers do not need to be operated, convenience is brought to operation and control of guests, and better use body feeling is brought.
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Description

TECHNICAL FIELD

[0001] The utility model relates to wireless remote control equipment technical field, especially a kind of multiway wireless bluetooth remote controller. BACKGROUND

[0002] In some high-grade hotels, etc., generally equipped with lift electric telescopic table and mini bar, TV rack, so that the guest can adjust the height of table top, bar, TV according to the needs of their own, to meet their height use needs of table top, bar, and watch TV program at the appropriate height. In specific application, the guest presses the button of wireless remote control board, and then the remote control board emits corresponding infrared wireless signal, and the wireless receiving circuit board in the element box at the lower end of electric telescopic table, mini bar and the side end of TV rack receives the corresponding infrared wireless signal, and the push column of electric telescopic rod at the lower end of electric telescopic table, mini bar and the front end of TV rack (the rear end of the shell of TV is fixed on the front side fixed plate of the upper end of two sets of electric telescopic rod push column by bolt) drives table top, bar and TV to move upward or downward, to realize height adjustment.

[0003] Although the lift electric telescopic table and mini bar, TV rack applied in high-grade hotels, etc. can realize height adjustment through wireless remote controller, but due to the structure, there are still some specific problems. Specifically, the wireless remote control board and wireless receiving circuit board of lift electric telescopic table and mini bar, TV rack are not compatible, that is, lift electric telescopic table and mini bar, TV rack need to be matched with a set of wireless remote control board respectively, and the guest needs to operate the corresponding keys of three sets of wireless remote control board respectively, which will bring inconvenience to the guest and cannot bring better use experience to the guest. In addition, the wireless remote control board (the same as the remote control board of household TV) transmits control instructions through infrared signal, and the transmission of infrared signal is relatively short and needs a certain directionality (the wireless remote control board needs to be aligned with the wireless receiving circuit board as much as possible), so the wireless control of the guest will bring certain adverse effects, and also cannot bring better use experience to the guest. CONTENT OF UTILITY MODEL

[0004] In order to overcome the disadvantages of lift electric telescopic table and mini bar, TV rack applied in high-grade hotels, etc. as described in the background art, which can only be controlled by multiple infrared wireless remote control boards, the utility model provides a multiway wireless bluetooth remote controller, under the common action of related mechanisms, the guest can conveniently control the lifting of lift electric telescopic table and mini bar, TV rack through a set of equipment by touch method, and since the transmission of bluetooth signal is not limited by direction, the operation control of the guest is facilitated, and better use experience is brought.

[0005] The utility model solves technical problems thereof adopts the technical scheme that:

[0006] A multi-path wireless Bluetooth remote controller, comprising a wireless remote control mechanism and a wireless receiving mechanism, the wireless receiving mechanism has multiple sets; the wireless remote control mechanism comprises a shell, a single-chip microcomputer module A, a Bluetooth signal transceiver module A, a wireless charging receiving module, a wireless charging transmitting module, a touch circuit and a storage battery, the wireless charging transmitting module is installed in a first shell, the single-chip microcomputer module A, the Bluetooth signal transceiver module A, the wireless charging receiving module, the touch circuit and the storage battery are installed in a second shell; the power output end of the wireless charging receiving module and the two poles of the storage battery, the power input end of the single-chip microcomputer module A, the Bluetooth signal transceiver module A and the touch circuit are electrically connected, the signal input end of the Bluetooth signal transceiver module A and the signal output end of the single-chip microcomputer module A are electrically connected, and the signal output end of the touch circuit and the signal input end of the single-chip microcomputer module A are electrically connected; each set of wireless receiving mechanism comprises a power module, a Bluetooth signal transceiver module B, a single-chip microcomputer module B and a control circuit, the power module, the Bluetooth signal transceiver module B, the single-chip microcomputer module B and the control circuit are installed in an element box, the signal output end of the Bluetooth signal transceiver module B and the signal input end of the single-chip microcomputer module B are electrically connected, the signal output end of the single-chip microcomputer module B and the signal input end of the control circuit are electrically connected, and the power output end of the control circuit and the power input end of the electric equipment are electrically connected.

[0007] Further, the single-chip microcomputer module A is matched with electrically connected peripheral elements resistance, capacitance and light emitting diode, the NRST port of the single-chip microcomputer module A and one end of the first resistance and one end of the first capacitance are connected, the BOOTO port of the single-chip microcomputer module A and one end of the second resistance are connected, the VDDA port, the VDD port of the single-chip microcomputer module A and one end of the second capacitance, one end of the third capacitance, one end of the fourth capacitance, the other end of the first resistance and one end of the third resistance are connected, the PB6 port of the single-chip microcomputer module A and the negative electrode of the light emitting diode are connected, the positive electrode of the light emitting diode and the other end of the third resistance are connected, and the other end of the first capacitance, the other end of the second resistance, the other end of the second capacitance, the other end of the third capacitance, the other end of the fourth capacitance and the VSS port of the single-chip microcomputer module A are connected.

[0008] Further, the Bluetooth signal transceiver module A is matched with electrically connected peripheral elements resistance and capacitance, the VCC port of the Bluetooth signal transceiver module A and one end of the first capacitance and one end of the second capacitance are connected, the other end of the first capacitance and the other end of the second capacitance, the GND port and the BATS port of the Bluetooth signal transceiver module A are connected, and the RX port, the SX port of the Bluetooth signal transceiver module A and one end of the two resistances are connected respectively.

[0009] Further, the touch circuit comprises a power switch, a touch circuit module, a relay, three positive power input ends of the touch circuit module and a first power input end of the power switch, a power output end of the power switch and control power input ends of the three relays, a second power input end of the power switch and negative power input ends of the three relays, negative power input ends of the three touch circuit modules, power output ends of the three touch circuit modules and positive power input ends of the three relays, and the touch pads of the three touch circuit modules are located at upper ends of the second shell.

[0010] Further, the single-chip module B is matched with periphery elements of resistance and capacitance in electrical connection, a PB9 port of the single-chip module B and one end of a first resistance are connected, a VDDA port of the single-chip module B and one end of a first capacitance are connected, a VDD port of the single-chip module B and one end of a second capacitance are connected, the other end of the first resistance, the other end of the first capacitance and the other end of the second capacitance are connected.

[0011] Further, the Bluetooth signal transceiver module B is matched with periphery elements of resistance and capacitance in electrical connection, a VCC port of the Bluetooth signal transceiver module B and one end of a first capacitance and one end of a second capacitance are connected, the other end of the first capacitance, the other end of the second capacitance, a GND port of the Bluetooth signal transceiver module B and one end of a first resistance are connected, a RX port and a SX port of the Bluetooth signal transceiver module B and the other end of a second resistance and the other end of a third resistance are connected respectively, and a BATS port of the Bluetooth signal transceiver module B and the other end of the first resistance are connected.

[0012] Further, the control circuit comprises resistances, transistors and relays in electrical connection, positive control power input ends of two relays are connected, negative control power input ends of the two relays and emitting electrodes of two transistors are connected, positive power input ends of the two relays are connected, one ends of two resistances and base electrodes of the two transistors are connected respectively, and collecting electrodes of the two transistors and negative power input ends of the two relays are connected respectively.

[0013] The utility model discloses beneficial effect is: the utility model is mainly used for high-grade hotel and the like place uses, through a set of wireless remote control mechanism and three sets and wireless receiving mechanism, the guest can be convenient to touch by finger mode, respectively through the multiway bluetooth signal control liftable electric telescopic table and mini bar counter, TV rack's ascending or descending height mode, because the operation of multiple remote controllers is not needed, and the transmission of bluetooth signal is not limited by direction, the operation control of the guest is brought convenient, and better use feeling is brought. In conclusion, the utility model has good application prospect. BRIEF DESCRIPTION OF DRAWINGS

[0014] The utility model will be further explained below in combination with the drawings and examples.

[0015] Figure 1 is a structural schematic view of the utility model.

[0016] Figure 2 、 3 is a circuit diagram of the utility model. DETAILED DESCRIPTION

[0017] Figure 1 、 2 , 3 shows a kind of multi-path wireless Bluetooth remote controller, including wireless remote control mechanism and wireless receiving mechanism, wireless receiving mechanism has three sets, three sets of wireless receiving mechanism is respectively installed in the element box 1 of liftable electric telescopic table and mini bar counter, TV rack;The wireless remote control mechanism includes shell 2, single-chip microcomputer module A 3, Bluetooth signal transceiver module A 4, wireless charging receiving module 5, wireless charging transmitting module 6, touch circuit 7, battery G, the wireless charging transmitting module 6 is installed on the circuit board in first shell 2, single-chip microcomputer module A 3, Bluetooth signal transceiver module A 4, wireless charging receiving module 5, touch circuit 7, battery G are installed on the circuit board in second shell 2, the power input end of wireless charging transmitting module 6 is connected by USB socket (the socket is located in the rear end of first shell outside) and the USB charging plug of mobile phone charger Plug connection;Each set of wireless receiving mechanism includes power module 8, Bluetooth signal transceiver module B 9, single-chip microcomputer module B 10 and control circuit 11, power module 8, Bluetooth signal transceiver module B 9, single-chip microcomputer module B 10 and control circuit 11 are installed in element box 1.The following content is with the working principle of one set of wireless receiving mechanism and wireless remote control mechanism representative description.

[0018] Figure 1 、 2As shown in FIGS. 3, the single-chip microcomputer module AU1 (3) is matched with the peripheral elements resistor R8, R2, R10, capacitor C2, C3, C4, C5, and light-emitting diode D1 connected through the circuit board wiring. The NRST port 4 pin of the single-chip microcomputer module AU1 is connected with one end of the first resistor R8 and one end of the first capacitor C5. The BOOTO port 27 pin of the single-chip microcomputer module AU1 is connected with one end of the second resistor R2. The VDDA port 5 pin, VDD port 17 pin, and 1 pin of the single-chip microcomputer module AU1 are connected with one end of the second capacitor C2, one end of the third capacitor C3, one end of the fourth capacitor C5, the other end of the first resistor R8, and one end of the third resistor R10. The PB6 port 25 pin of the single-chip microcomputer module AU1 is connected with the negative electrode of the light-emitting diode D1. The positive electrode of the light-emitting diode D1 is connected with the other end of the third resistor R10. The other end of the first capacitor C5, the other end of the second resistor R2, the other end of the second capacitor C2, the other end of the third capacitor C3, the other end of the fourth capacitor C5, the VSS port 28 pin, and the 16 pin of the single-chip microcomputer module AU1 are connected. The Bluetooth signal transceiver module AU2 (4) is matched with the peripheral elements resistor R15 and R16, capacitor C6 and C7 connected through the circuit board wiring. The VCC port 2 pin of the Bluetooth signal transceiver module AU2 is connected with one end of the first capacitor C6 and one end of the second capacitor C7. The other end of the first capacitor C6 and the other end of the second capacitor C7 are connected with the GND port 1 pin, GND port 10 pin, and BATS port 15 pin of the Bluetooth signal transceiver module AU2. The RX port 12 pin, SX port 11 pin, and one end of the two resistors R15 and R16 of the Bluetooth signal transceiver module AU2 are respectively connected.

[0019] The touch circuit includes a power switch S, touch circuit modules U4, U5, U6, relays J, J1, J2, and three touch circuit modules U4, U5, U6 positive power input terminal 1 and the first power input terminal 2 of the power switch S are connected, the power output terminal 3 of the power switch S and the control power input terminal of the three relays J, J1, J2 are connected, the second power input terminal 3 of the power switch S and the negative power input terminal of the three relays J, J1, J2 and the negative power input terminal 2 of the three touch circuit modules U4, U5, U6 are connected, the power output terminal 3 of the three touch circuit modules U4, U5, U6 and the positive power input terminal of the three relays J, J1, J2 are connected, the upper side touch surface of the three touch circuit modules U4, U5, U6 is distributed in a ring-shaped interval, and is located outside the upper end of the second shell 2, the handle of the power switch S is located outside the rear end opening of the second shell 2, and the light emitting surface of the light emitting diode D1 is located inside the upper rear end opening of the second shell 2. The power output terminal 1 and 2 of the wireless charging receiving module U3(5) and the two poles of the battery G, the other end of the power input terminal resistor R8 of the single-chip microcomputer module AU1 and the other end of the resistor R2, the power input terminal capacitor C6 of the Bluetooth signal transceiver module AU2, the power input terminal touch circuit module U4 of the touch circuit are respectively connected through wires, the signal input terminal resistor R15, R16 of the Bluetooth signal transceiver module AU2 and the signal output terminal PA9 port 19 pin, PA10 port 20 pin of the single-chip microcomputer module AU1 are respectively connected through wires, and the normally open contact end of the signal output terminal relay J, J1, J2 of the touch circuit and the signal input terminal PA2 port 8 pin, PA3 port 9 pin, PA5 port 11 pin of the single-chip microcomputer module AU1 are respectively connected through wires.

[0020] Figure 1 、 2, 3, the single-chip microcomputer module BU7 (10) is matched with the peripheral element resistor R1, capacitor C1 and C1 connected through the circuit board wiring, the PB9 port 1 pin of the single-chip microcomputer module BU7 is connected with the first resistor R1 one end, the VDDA port 5 pin of the single-chip microcomputer module BU7 is connected with the first capacitor C1 one end, the VDD port 16 pin of the single-chip microcomputer module BU7 is connected with the second capacitor C8 one end, the first resistor R1 other end is connected with the first capacitor C1 other end and the second capacitor C8 other end. The Bluetooth signal transceiver module BU8 (9) is matched with the peripheral element resistor R21, R19 and R20, capacitor C9 and C10 connected through the circuit board wiring, the VCC port 2 pin of the Bluetooth signal transceiver module BU8 is connected with the first capacitor C10 one end and the second capacitor C9 one end, the first capacitor C10 other end is connected with the second capacitor C9 other end, the Bluetooth signal transceiver module BU8 GND port 1 pin and GND port 10 pin, the first resistor R21 one end, the Bluetooth signal transceiver module BU8 RX port 12 pin, SX port 11 pin and the second resistor R19 and the third resistor R20 other end are respectively connected, the Bluetooth signal transceiver module BU8 BATS port 15 pin is connected with the first resistor R21 other end. The control circuit includes resistor R3 and R7, triode Q1 and Q2 and relay J3 and J4 connected through the circuit board wiring, the positive control power input end of the two relays J3 and J4 is connected, the negative control power input end of the two relays J3 and J4 and the emitter of the two triodes Q1 and Q2 are connected, the positive power input end of the two relays J3 and J4 is connected, the one end of the two resistors R3 and R7 and the base of the two triodes Q1 and Q2 are respectively connected, the collector of the two triodes and the negative power input end of the two relays J3 and J4 are respectively connected.The power input 1 and 2 of the power module U9 (8) are connected with the two poles of the AC 220V power supply through wires, the power output 3 and 4 of the power module U9 are connected with the power input 2 and 1 of the Bluetooth signal transceiver module BU8, the power input 5 and 15 of the single-chip microcomputer module BU7, the power input of the control circuit, the positive power input of the relay J3 and the emitter of the transistor Q2 through wires, the signal output of the Bluetooth signal transceiver module BU8 is connected with the signal input 17 and 18 of the single-chip microcomputer module BU7 through wires, the signal output 11 and 10 of the single-chip microcomputer module BU7 are connected with the signal input of the control circuit through wires, the 5 of the power module U9 is connected with the positive control power input of the relay J3 and J4 through wires, the power output of the control circuit is connected with the two normally open contacts of the relay J3 and J4 through wires, one coaxial two-core power plug 12 is connected with the two-core power socket (not shown in the figure) through wires, the power input of the electric push rod MN of the liftable electric telescopic table and the mini bar and TV rack is connected with the two-core power socket through wires, and the two-core power plug of the three sets of wireless receiving mechanisms is inserted into the socket of the three sets of two-core power sockets.

[0021] Figure 1 , 2, 3, the new type uses the second shell 2 on the second shell 2 before, wireless charging emission module 6 (located in the first shell upper end) power after emitting wireless charging energy signal, wireless charging receiving module U3 (located in the second shell 2 lower end) after receiving its power output end output 3.3V DC power to the battery G two poles, single chip module AU1, bluetooth signal transceiver module AU2, the power input end of the touch circuit (battery G charging, so that wireless charging receiving module U3 does not charge, the relevant circuit module can also be powered on). 220V AC power into the power supply module U9 of three sets of wireless receiving mechanism power input end of its 3 and 2 foot output stable DC 3.3V power into the single chip module BU7, bluetooth signal transceiver module BU8, relay J3 positive power input end, power module U9 of 5 and 4 foot output 12V DC power into the relay J3, J4 two control power input end, the above circuit module powered on. In practical applications, the guests entering the hotel handle to the left after the power switch S, 3.3V power positive will be into the control power input end of the relay J, J1, J2. When the guests use their fingers to touch, touch circuit module U4 or U5, U6 touch piece, touch circuit module U4 or U5, U6 of 3 foot will be output high level into the relay J or J1, J2 positive power input end, so, the relay J or J1, J2 will be powered on to attract its control power input end and the normally open contact end closure, so that the single chip module AU1 of 11 or 9, 8 foot will input high level signal, and then, the single chip module AU1 of 19 foot, 20 foot will output the first or second, third characteristic code closure signal through resistance R15, R16 into the signal input end 11 and 12 foot of bluetooth signal transceiver module AU2, bluetooth signal transceiver module AU2 will be the first or second, third characteristic code closure signal sent out by wireless way; the guests fingers away from the touch piece of touch circuit module U4 or U5, U6, touch circuit module U4 or U5, U6 of 3 foot will stop output high level into the relay J or J1, J2 positive power input end, so, the relay J or J1, J2 will lose power and no longer attract its control power input end and the normally open contact end open, so that the single chip module AU1 of 11 or 9, 8 foot no longer input high level signal, bluetooth signal transceiver module AU2 no longer emit the first or second, third characteristic code closure signal. In practical applications, the guests entering the hotel handle to the right after the power switch S, 3.3V power negative will be into the control power input end of the relay J, J1, J2.When the guest respectively touches the touch piece of the touch circuit module U4 or U5, U6 with fingers, the 3-pin of the touch circuit module U4 or U5, U6 will output high level into the positive power input end of the relay J or J1, J2, thus the relay J or J1, J2 will be powered to attract the control power input end and the normally open contact end to close, in this way, the 11 or 9, 8-pin of the single-chip microcomputer module AU7 will input low level signal, further, the 19-pin, 20-pin of the single-chip microcomputer module AU7 will output the fourth or fifth, sixth characteristic code closing signal into the signal input end 11 and 12-pin of the Bluetooth signal transceiver module AU2 through the resistance R15, R16, thus the Bluetooth signal transceiver module AU8 will send out the fourth or fifth, sixth characteristic code closing signal in wireless mode; when the guest's fingers leave the touch piece of the touch circuit module U4 or U5, U6, the 3-pin of the touch circuit module U4 or U5, U6 will stop outputting high level into the positive power input end of the relay J or J1, J2, thus the relay J or J1, J2 will lose power and no longer attract the control power input end and the normally open contact end to open, in this way, the 11 or 9, 8-pin of the single-chip microcomputer module AU1 will no longer input low level signal, the Bluetooth signal transceiver module AU2 will no longer emit the fourth or fifth, sixth characteristic code closing signal. In the present application, the emission and reception of the six-way characteristic code closing signal will not interfere with each other.

[0022] Figure 1 、 2, 3, when the first set of wireless receiving mechanism of Bluetooth signal transceiver module BU8 received the first, fourth characteristic code closing signal, or the second set of wireless receiving mechanism of Bluetooth signal transceiver module BU8 received the second, fifth characteristic code closing signal, or the third set of wireless receiving mechanism of Bluetooth signal transceiver module BU8 received the third, sixth characteristic code closing signal, the first or second set, the third set of wireless receiving mechanism of Bluetooth signal transceiver module BU8 11 and 12 feet will receive the signal through the resistance R19, R20 output to the single chip microcomputer module BU7 18 and 17 feet, then, the first or second set, the third set of wireless receiving mechanism of single chip microcomputer module BU7 11 and 10 feet output high level through the resistance R3, R7 into the base of the transistor Q1, Q2, the transistor Q1, Q2 turns on its collector output high level into the negative power input end of the relay J3, J4, the relay J3, J4 power suction its control power input end and the normally open contact end closing. The first set of wireless receiving mechanism of relay J3 or J4 power suction, the electric push rod MN (12V, power 50W) positive or negative or negative positive two pole power input end of the electric telescopic table get electricity its push column drive the desktop height up or down, the first set of wireless receiving mechanism of Bluetooth signal transceiver module BU8 stop output signal, then the single chip microcomputer module BU7 11 and 10 feet stop output high level signal, then the electric push rod MN will not work. The second set of wireless receiving mechanism of relay J3 or J4 power suction, the electric push rod MN positive or negative or negative positive two pole power input end of the mini bar get electricity its push column drive the mini bar height up or down, the second set of wireless receiving mechanism of Bluetooth signal transceiver module BU8 stop output signal, then the single chip microcomputer module BU7 11 and 10 feet stop output high level signal, then the electric push rod MN will not work. The third set of wireless receiving mechanism of relay J3 or J4 power suction, the electric push rod MN positive or negative or negative positive two pole power input end of the TV rack get electricity its push column drive the TV rack height up or down, the second set of wireless receiving mechanism of Bluetooth signal transceiver module BU8 stop output signal, then the single chip microcomputer module BU7 11 and 10 feet stop output high level signal, then the electric push rod MN will not work. Through the above, the new type of wireless remote control mechanism and three sets of wireless receiving mechanism, the guest can conveniently touch the way, through the multiway Bluetooth signal control respectively, the electric telescopic table and the mini bar, the TV rack height up or down; Because there is no need to operate multiple remote control, and the transmission of Bluetooth signal is not limited by direction, the operation control of the guest is convenient, and better use of the feeling is brought.

[0023] Figure 2 、 3Among them, C6, C7 capacitor is used for power filter; resistance R10 is used as current limiting resistance; D1 light emitting diode emits light when working as state indicator; resistance R8, capacitor C5 constitute reset circuit, low level is effective; C2, C3, C4 capacitor is used for power filter; resistance R2 is used as pull-down resistance, which is single-chip microcomputer starting mode setting resistance; resistance R15, R16, R19, R20 is used when debugging (current limiting effect); resistance R1 is pull-up resistance; resistance R3, R7 is current limiting resistance; C4, C5 capacitor is used for power filter; resistance R16 is used as pull-down resistance, which is used for setting working mode configuration of Bluetooth module. Touch circuit module U4 or U5, U6 is touch sensing module product of KCX type, which has two power input ends, one signal output end, and touch piece matched with finger touch, and the signal output end outputs power supply when the touch piece is touched, and otherwise stops outputting power supply; power module U9 is AC-DC power module product, 1, 2 pins are power input ends, 3 and 4 pins are 3.3V DC power output ends, 5 and 4 pins are 12V DC power output ends; battery G is 3.3V / 10Ah lithium battery. The types of other elements are marked in the figure, and the specification will not be described again.

[0024] It should be noted that although the above content has shown and described the embodiments of the present application, the embodiments do not contain only one independent technical solution, and the description manner of the specification is only for the sake of clarity. For ordinary skilled in the art, it can be understood that the embodiments can be changed, modified, replaced and modified in various ways without departing from the principles and spirits of the present application, forming other embodiments which can be understood by those skilled in the art. Therefore, the protection scope of the present application is defined by the appended claims and their equivalents.

Claims

1. A multi-path wireless Bluetooth remote controller comprising a wireless remote control mechanism and a wireless receiving mechanism, characterized in that, The wireless receiving mechanism has multiple sets; the wireless remote control mechanism includes a shell, a single-chip microcomputer module A, a Bluetooth signal transceiver module A, a wireless charging receiving module, a wireless charging transmitting module, a touch circuit, and a storage battery, the wireless charging transmitting module is installed in a first shell, the single-chip microcomputer module A, the Bluetooth signal transceiver module A, the wireless charging receiving module, the touch circuit, and the storage battery are installed in a second shell; the power output end of the wireless charging receiving module and the two poles of the storage battery, the power input end of the single-chip microcomputer module A, the Bluetooth signal transceiver module A, and the touch circuit are electrically connected, the signal input end of the Bluetooth signal transceiver module A and the signal output end of the single-chip microcomputer module A are electrically connected, and the signal output end of the touch circuit and the signal input end of the single-chip microcomputer module A are electrically connected; each set of the wireless receiving mechanism includes a power module, a Bluetooth signal transceiver module B, a single-chip microcomputer module B, and a control circuit, the power module, the Bluetooth signal transceiver module B, the single-chip microcomputer module B, and the control circuit are installed in an element box, the signal output end of the Bluetooth signal transceiver module B and the signal input end of the single-chip microcomputer module B are electrically connected, the signal output end of the single-chip microcomputer module B and the signal input end of the control circuit are electrically connected, and the power output end of the control circuit and the power input end of the electric device are electrically connected.

2. The multi-way wireless Bluetooth remote controller according to claim 1, wherein, The single-chip microcomputer module A is matched with electrically connected peripheral elements resistance, capacitance, and light-emitting diode, the NRST port of the single-chip microcomputer module A and one end of the first resistance and one end of the first capacitance are connected, the BOOTO port of the single-chip microcomputer module A and one end of the second resistance are connected, the VDDA port, the VDD port of the single-chip microcomputer module A and one end of the second capacitance, one end of the third capacitance, one end of the fourth capacitance, the other end of the first resistance, and one end of the third resistance are connected, the PB6 port of the single-chip microcomputer module A and the negative electrode of the light-emitting diode are connected, the positive electrode of the light-emitting diode and the other end of the third resistance are connected, and the other end of the first capacitance, the other end of the second resistance, the other end of the second capacitance, the other end of the third capacitance, the other end of the fourth capacitance, and the VSS port of the single-chip microcomputer module A are connected.

3. The multi-way wireless Bluetooth remote controller according to claim 1, wherein, The Bluetooth signal transceiver module A is matched with electrically connected peripheral elements resistance and capacitance, the VCC port of the Bluetooth signal transceiver module A and one end of the first capacitance and one end of the second capacitance are connected, the other end of the first capacitance and the other end of the second capacitance, the GND port, and the BATS port of the Bluetooth signal transceiver module A are connected, and the RX port and the SX port of the Bluetooth signal transceiver module A and one end of the two resistances are respectively connected.

4. The multi-way wireless Bluetooth remote controller according to claim 1, wherein, The touch circuit includes a power switch, a touch circuit module, and a relay which are electrically connected, the positive power input end of the three touch circuit modules and the first power input end of the power switch are connected, the power output end of the power switch and the control power input end of the three relays are connected, the second power input end of the power switch and the negative power input end of the three relays and the negative power input end of the three touch circuit modules are connected, the power output end of the three touch circuit modules and the positive power input end of the three relays are respectively connected, and the touch pads of the three touch circuit modules are respectively located on the upper end of the second shell.

5. The multi-way wireless Bluetooth remote controller according to claim 1, wherein, The single-chip module B is matched with electrically connected peripheral elements resistor and capacitor, the PB9 port of the single-chip module B and one end of the first resistor are connected, the VDDA port of the single-chip module B and one end of the first capacitor are connected, the VDD port of the single-chip module B and one end of the second capacitor are connected, the other end of the first resistor, the other end of the first capacitor and the other end of the second capacitor are connected.

6. The multi-way wireless Bluetooth remote controller according to claim 1, wherein, The Bluetooth signal transceiver module B is matched with electrically connected peripheral elements resistor and capacitor, the VCC port of the Bluetooth signal transceiver module B and one end of the first capacitor and one end of the second capacitor are connected, the other end of the first capacitor, the other end of the second capacitor, the GND port of the Bluetooth signal transceiver module B and one end of the first resistor are connected, the RX port and the SX port of the Bluetooth signal transceiver module B and the other end of the second resistor and the third resistor are respectively connected, and the BATS port of the Bluetooth signal transceiver module B and the other end of the first resistor are connected.

7. The multi-way wireless Bluetooth remote controller according to claim 1, wherein, The control circuit comprises electrically connected resistor, triode and relay, the positive electrode power input end of the two relays is connected, the negative electrode power input end of the two relays and the emitter of the two triodes are connected, the positive electrode power input end of the two relays is connected, one end of the two resistors and the base of the two triodes are respectively connected, the collector of the two triodes and the negative electrode power input end of the two relays are respectively connected.