54-path remote transmitter with reverse display function, positive and negative rotation receiver integrated control module

By designing a 54-channel remote transmitter with reverse display function and an integrated control module for forward/reverse rotation and receiver, the problem of short control distance of the console was solved, enabling remote control and battlefield environment simulation, and supporting the control of the entire battlefield equipment by a single console.

CN223514898UActive Publication Date: 2025-11-04中国人民武装警察部队第二机动总队交通第一支队
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Patent Information

Application Number
CN202423162513.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-20
Publication Date
2025-11-04
Estimated Expiration
2034-12-20

AI Technical Summary

Technical Problem

Existing control consoles cannot control all equipment on the battlefield from a single console; the control distance is short and the level of control is insufficient. Multiple consoles are needed for coordinated control.

Method used

Design a 54-channel remote transmitter with reverse display function and an integrated control module for forward/reverse and receiver functions. The module includes a device mounting box, a main control chip, a Darlington driver chip, a 54-channel remote transmitter with reverse display function, a battery, and a control display screen. This allows one control console to control multiple devices over a distance of 5000-7000 meters.

Benefits of technology

It enables comprehensive, multi-angle, and all-time monitoring of training status in various scenarios, remote control, and the creation of a battlefield atmosphere. The control distance is greatly enhanced, and it supports controlling all equipment on the battlefield from a single console.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an integrated control module of a 54-path remote transmitter with a reverse display function and a forward and reverse rotation receiver. The integrated control module comprises an equipment mounting box, a main control chip arranged in the box, four Darlington driving chips, the 54-path remote transmitter with the reverse display function, a storage battery, a control display screen and a control button combination, three control areas are arranged on the upper surface of the equipment mounting box, each control area is correspondingly provided with a control button of a remote transmitter with a reverse display function, and the storage battery supplies power to the whole console. According to the utility model, all-directional, multi-angle and all-time monitoring of training states of all scenes can be realized, remote control is realized, battlefield conditions are set along with mechanisms, and a battlefield atmosphere is created.
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Description

TECHNICAL FIELD

[0001] The utility model relates to station field environment console technical field especially relates to 54 way with anti -display function remote transmitter and positive and negative rotation, receiver integrated control module. BACKGROUND

[0002] The war road repair and construction typical scene training condition constructs platform, which is a remote control platform integrating explosion, fireworks, sound, video transmission and reception, is composed of control operation, remote transmission, signal reception, video transmission and other systems, has the functions of constructing battlefield environment, simulating battlefield effect, creating battlefield atmosphere and transmitting real-time pictures, and constructs necessary conditions for simulating the war road repair and construction task training. UTILITY MODEL CONTENT

[0003] The utility model aims at solving one of the technical problems in the related art at least to some extent.

[0004] The utility model provides a kind of 54 way with anti -display function remote transmitter and positive and negative rotation, receiver integrated control module, including equipment installation box, main control chip, four darlington drive chips, 54 way with anti -display function remote transmitter and battery and control display screen and control button combination being arranged in box;

[0005] The main control chip is electrically connected with the four darlington drive chips, the 54 way with anti -display function remote transmitter is equally divided and installed on the pin of the four darlington drive chips, the pin of the 54 way with anti -display function remote transmitter is connected with the pin of the darlington drive chip corresponding, each control button is provided with an indicating lamp corresponding to each 54 way with anti -display function remote transmitter in equipment installation box, three control areas are provided on the upper surface of the equipment installation box, the control button of the 54 way with anti -display function remote transmitter is provided in each control area, and a region total switch is provided in each control area.

[0006] The upper surface of the equipment installation box is provided with power total switch, electric quantity indicating screen, control display screen, HDMI interface, charging interface and external power supply interface, and is electrically connected with main control chip.

[0007] In some embodiments of the utility model, each darlington drive chip is equipped with 16 pins, the lowest two are GND pin and COM pin, and two rows of IN pins and OT pins are arranged on the upper portion;

[0008] The IN pins of the darlington drive chip numbered U10 are DDK1-DDK7 in sequence, the IN pins of the darlington drive chip numbered U16 are DDK8-DDK14 in sequence, the IN pins of the darlington drive chip numbered U17 are DDK15, DDK16, DDK17, DDK18, DGK1, DGK2 and DGK3 in sequence, the IN pins of the darlington drive chip numbered U18 are DGK4-DGK9 in sequence and one empty connection pin, the OT pins of the darlington drive chip numbered U10 are DD1-DD7 in sequence, the OT pins of the darlington drive chip numbered U16 are DD8-DD14 in sequence, the OT pins of the darlington drive chip numbered U17 are DD15, DD16, DD17, DD18, DG1, DG2 and DG3 in sequence, and the IN pins of the darlington drive chip numbered U18 are DG4-DG9 in sequence and one empty connection pin;

[0009] The 54-way remote transmitter with anti-display function is divided into six groups, each 54-way remote transmitter with anti-display function is equipped with one DG pin and three DD pins, the DG pins of the same group of 54-way remote transmitter with anti-display function are numbered the same, the DG pins of each group of 54-way remote transmitter with anti-display function are numbered in sequence and numbered from DGL1-DGL9, and the DD pins of the same group of 54-way remote transmitter with anti-display function are numbered in sequence and numbered from DD1-DD18;

[0010] Five pin adapters numbered U11-U15 are arranged on the pin connection, each pin adapter is equipped with two D1 pins, two D2 pins, an S1 pin, an G1 pin, an S2 pin and an G2 pin, the two D1 pins and the two D2 pins are connected in correspondence, the two D1 pins and the two D2 pins are numbered in correspondence after being connected, the two D1 pins and the two D2 pins of the five pin adapters are numbered in sequence and numbered in sequence as DGL1-DGL9, and the G1 pin and the G2 pin of the five pin adapters are also numbered in sequence and numbered in sequence as DG1-DG9;

[0011] The DG pin numbers DGL1-DGL9 of each group of the 54-way remote transmitters with the anti-display function are sequentially numbered and correspondingly connected to the pin adapters, and the G2 pins of each group of the 54-way remote transmitters with the anti-display function are connected to the same number G2 pin of the same pin adapter.

[0012] The G1 pins and the G2 pins of the five pin adapters are sequentially numbered as DG1-DG9, and the pins are correspondingly connected to the pins numbered as DG1-DG9 on the U17 and the U18.

[0013] The positive and negative inversion and electromagnetic wave transmitting module comprises nine inversion chips, each of the inversion chips is provided with 14 pins, and the pins are respectively D0-D9 pins, VT pins, IN pins, GND pins and COM pins, the D0-D9 pins on the first three inversion chips are sequentially numbered as DDK1-DDK18 and DGK1-DGK9, the VT pins and the D0-D8 pins on the other six inversion chips are sequentially numbered as AJ1-AJ54, the D0-D9 pins on the first three inversion chips are sequentially numbered as DDK1-DDK18 and DGK1-DGK9, and the pins are correspondingly connected to the IN pins of the four Lintron driver chips, the VT pins and the D0-D8 pins on the six inversion chips are sequentially numbered as AJ1-AJ54, and the pins are correspondingly connected to a signal receiver.

[0014] The IN pins on the last six inversion chips are sequentially numbered as AJK1-AJK6, and the main control chip is provided with pins correspondingly connected to the IN pins numbered as AJK1-AJK6 on the last six inversion chips.

[0015] In some embodiments of the utility model, the first three inversion chips correspond to control three control areas.

[0016] In some embodiments of the utility model, the power supply voltage of the storage battery is 12V.

[0017] In some other embodiments of the utility model, the remote transmitter with the anti-display function can send a distance of 5000-7000 meters without any shelter.

[0018] In the utility model, all-round, multi-angle and full-time monitoring of each scene training state can be realized, and remote control and portable equipment battlefield conditions can be created to create a battlefield atmosphere. BRIEF DESCRIPTION OF DRAWINGS

[0019] The drawings are used to provide a further understanding of the utility model, and constitute a part of the specification, are used together with the embodiments of the utility model to explain the utility model, and do not constitute the limitation to the utility model. In the drawings:

[0020] Figure 1 A three-dimensional structural schematic diagram of a 54-way remote transmitter with reverse display function and positive and negative rotation integrated control module is provided for the utility model.

[0021] Figure 2 Four Darlington drive chips and a 54-way remote transmitter with reverse display function and a pin distribution schematic diagram thereof are provided for the utility model.

[0022] Figure 3 A 54-way signal receiver and a pin distribution schematic diagram thereof are provided for the utility model.

[0023] Figure 4 A positive and negative rotation and electromagnetic wave transmission circuit diagram and a pin distribution schematic diagram thereof are provided for the utility model.

[0024] In the figure: 1, equipment mounting box; 11, control display screen; 12, power supply master switch; 13, power indicator screen; 14, HDMI interface; 15, charging interface; 16, external power supply interface; 2, area master switch; 21, control button; 22, indicator light. DETAILED DESCRIPTION

[0025] The technical solutions in the embodiments of the utility model will be described clearly and completely below in combination with the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments.

[0026] Examples of the described embodiments are shown in the drawings, wherein the same or similar reference signs represent the same or similar elements or elements with the same or similar functions throughout. The embodiments described below by referring to the drawings are exemplary and are intended to explain the utility model, and cannot be understood as a limitation on the utility model.

[0027] Referring to Figures 1-2 , including equipment mounting box, main control chip arranged in the box, four Darlington drive chips, 54-way remote transmitter with reverse display function, 51-way signal receiver, positive and negative rotation and electromagnetic wave transmission module, battery and control display screen and control button combination;

[0028] The main control chip is electrically connected with four Darlington drive chips, the 54-way remote transmitter with the anti-display function is evenly installed on the pins of the four Darlington drive chips, the pins on the 54-way remote transmitter with the anti-display function are connected with the corresponding pins on the Darlington drive chip, each remote transmitter with the anti-display function is provided with a control button on the equipment installation box, and each control button is provided with a corresponding indicator lamp, the upper surface of the equipment installation box is provided with three control areas, each control area is provided with the control buttons of the 18-way remote transmitter with the anti-display function, and each control area is provided with a regional total switch, wherein, the control buttons in each control area include forward and reverse buttons (also belong to the receiver, a total of 54-way receivers), and the battery supplies power to the entire control console.

[0029] 12v voltage input voltage, the transmission module chip adopts four Darlington drive chips to control the electromagnetic wave transmission distance, which is about 5000-7000 meters without shelter, 54-way signal output, 51-way signal receiving, and self-receiving signal feedback information; the transmitter can wirelessly control the 51-way DC 12v power receiver 1-5000 meters away, and the 3-way 12v DC voltage forward and reverse receiving switch. The receiver on the controlled equipment can control various 12v electromagnetic valves, lights, electrical equipment, forward and reverse, wireless devices and other electronic products, and can independently set the frequency output, and can be opened and closed at multiple points, and can be single-connected self-locking or trigger switch, and simultaneously has the anti-display function, and remotely controls the state of the receiver controlled equipment.

[0030] The platform can control the training condition of three training sites, and is provided with control switches of point signal transmission, forward and reverse signal transmission, firework ignition, sound effect, etc., and can control the explosion, smoke and sound effect of the battlefield environment. The signal transmission system takes the self-developed signal transmission module as the core, is programmed and set, can realize signal transmission and receiving, and controls the straight line distance of about 1000-3000 meters (in the presence of shelter).

[0031] The upper surface of the equipment installation box is provided with a power total switch 12, a power indicator screen 13, a control display screen 11, an HDMI interface 14, a charging interface 15 and an external power supply interface 16, and they are electrically connected with the main control chip.

[0032] The HDMI interface is full name for High Definition Multimedia Interface, which is an uncompressed full-digital audio / video interface.

[0033] Each Darlington drive chip is provided with 16 pins, and the two lowest pins are GND pin and COM pin, and two rows of IN pins and OT pins are arranged on the upper surface of the pin;

[0034] The four Darlington drive chips are numbered U10, U16, U17 and U18, the IN pins of the Darlington drive chip numbered U10 are DDK1-DDK7 in sequence, the IN pins of the Darlington drive chip numbered U16 are DDK8-DDK14 in sequence, the IN pins of the Darlington drive chip numbered U17 are DDK15, DDK16, DDK17, DDK18, DGK1, DGK2 and DGK3 in sequence, the IN pins of the Darlington drive chip numbered U18 are DGK4-DGK9 in sequence and one empty connection pin, the OT pins of the Darlington drive chip numbered U10 are DD1-DD7 in sequence, the OT pins of the Darlington drive chip numbered U16 are DD8-DD14 in sequence, the OT pins of the Darlington drive chip numbered U17 are DD15, DD16, DD17, DD18, DG1, DG2 and DG3 in sequence, and the IN pins of the Darlington drive chip numbered OT are DG4-DG9 in sequence and one empty connection pin;

[0035] The 54-way remote transmitter with the anti-display function is divided into six groups, each of which is provided with a DG pin and three DD pins, the DG pins of the same group of the 54-way remote transmitter with the anti-display function are numbered the same, the DG pins of each group of the 54-way remote transmitter with the anti-display function are numbered in sequence and numbered from DGL1-DGL9, and the DD pins of the same group of the 54-way remote transmitter with the anti-display function are numbered in sequence and numbered from DD1-DD18;

[0036] Five pin adapters numbered U11-U15 are provided on the pin connection, each of which is provided with two D1 pins, two D2 pins, an S1 pin, an G1 pin, an S2 pin and a G2 pin, the two D1 pins and the two D2 pins are connected in correspondence, the two D1 pins and the two D2 pins are numbered in correspondence after being connected, the two D1 pins and the two D2 pins on the five pin adapters are numbered in sequence and numbered in the order of DGL1-DGL9, and the G1 pin and the G2 pin on the five pin adapters are also numbered in sequence and numbered in the order of DG1-DG9;

[0037] The DG pins of each group of the 54-way remote transmitter with the anti-display function are numbered DGL1-DGL9 and connected to the pin adapters numbered DGL1-DGL9 in sequence, and the DG pins of each group of the 54-way remote transmitter with the anti-display function are connected to the G2 pins of the same number on the same pin adapter;

[0038] The G1 and G2 pins on the five pin adapters are numbered DG1-DG9 in sequence and are connected to the pins numbered DG1-DG9 on U17 and U18.

[0039] The forward / reverse rotation and electromagnetic wave emission module includes nine inversion chips ( Figure 4 As shown), each of the inverting chips has 14 pins, namely D0-D9 pins, VT pin, IN pin, GND pin and COM pin. The D0-D9 pins on the first three inverting chips are numbered DDK1-DDK18 and DGK1-DGK9 in sequence. The VT pins and D0-D8 pins on the other six inverting chips are numbered AJ1-AJ54 in sequence. The D0-D9 pins and DGK1-DGK9 pins on the first three inverting chips are connected to the IN pins of the four Linton driver chips respectively. The VT pins and D0-D8 pins and AJ1-AJ54 pins on the latter six inverting chips are connected to a signal receiver respectively.

[0040] The IN pins on the latter six inverting chips are numbered AJK1-AJK6 in sequence, and the main control chip has pins that are connected to the IN pins numbered AJK1-AJK6 on the latter six inverting chips.

[0041] The battery is supplied with a voltage of 12V.

[0042] The remote transmitter with anti-reflection function can transmit over a distance of 5,000-7,000 meters when there are no obstructions.

[0043] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.

Claims

1. A 54-channel remote transmitter with reverse indication function and integrated control module for forward and reverse rotation, receiver, characterized by: The device installation box, the main control chip arranged in the box, four Darlington drive chips, 54-channel remote transmitters with anti-display function, 51-channel signal receivers, forward and reverse rotation and electromagnetic wave emission module, battery, control display screen and control button combination; The main control chip is electrically connected with the four Darlington drive chips, the 54-channel remote transmitters with anti-display function are evenly arranged on the pins of the four Darlington drive chips, the pins on the 54-channel remote transmitters with anti-display function are connected with the corresponding pins on the Darlington drive chips, each of the remote transmitters with anti-display function is provided with a control button on the device installation box, and each control button (21) is provided with a corresponding indicator light (22), the upper surface of the device installation box (1) is provided with three control areas, each of the control areas is provided with 18 control buttons (21) of the remote transmitters with anti-display function, and each of the control areas is provided with a region total switch (2), wherein the control buttons in each of the control areas include forward and reverse rotation buttons, and the battery supplies power to the entire control console. The upper surface of the device installation box is provided with a power total switch (12), an electric quantity indicating screen (13), a control display screen (11), an HDMI interface (14), a charging interface (15) and an external power supply interface (16), and is electrically connected with the main control chip.

2. A 54-channel remote transmitter with reverse indication function and integrated control module for forward and reverse rotation and receiver according to claim 1, characterized in that: Each of the Darlington drive chips is provided with 16 pins, the two lowest pins are GND pin and COM pin, and two rows of IN pins and OT pins are arranged on the upper surface; The four Darlington drive chips are numbered as U10, U16, U17 and U18, the IN pins of the Darlington drive chip numbered as U10 are DDK1-DDK7 in sequence, the IN pins of the Darlington drive chip numbered as U16 are DDK8-DDK14 in sequence, the IN pins of the Darlington drive chip numbered as U17 are DDK15, DDK16, DDK17, DDK18, DGK1, DGK2 and DGK3 in sequence, the IN pins of the Darlington drive chip numbered as U18 are DGK4-DGK9 and an empty pin in sequence, the OT pins of the Darlington drive chip numbered as U10 are DD1-DD7 in sequence, the OT pins of the Darlington drive chip numbered as U16 are DD8-DD14 in sequence, the OT pins of the Darlington drive chip numbered as U17 are DD15, DD16, DD17, DD18, DG1, DG2 and DG3 in sequence, and the IN pins of the Darlington drive chip numbered as OT are DG4-DG9 and an empty pin in sequence. The 54-channel remote transmitter with anti-reflection function is divided into six groups. Each 54-channel remote transmitter with anti-reflection function has one DG pin and three DD pins. The DG pins of the 54-channel remote transmitters with anti-reflection function in the same group are numbered with the same number. The DG pins of the 54-channel remote transmitters with anti-reflection function in the same group are numbered sequentially from DGL1 to DGL9. The DD pins of the 54-channel remote transmitters with anti-reflection function in the same group are numbered sequentially from DD1 to DD18. Five pin adapters, numbered U11-U15, are provided on the pin connection. Each pin adapter has two D1 pins, two D2 pins, an S1 pin, a G1 pin, an S2 pin, and a G2 pin. The two D1 pins and two D2 pins are connected to each other. After the two D1 pins and two D2 pins are connected, they are numbered sequentially, with the numbering order being DGL1-DGL9. The G1 pins and G2 pins on the five pin adapters are also numbered sequentially, with the numbering order being DG1-DG9. The DG pins of each group of 54 remote transmitters with reverse display function are numbered DGL1-DGL9 and connected to the pin adapter in the order of group numbering. The DG pins of each group of 54 remote transmitters with reverse display function are all connected to the same pin adapter and the same numbered G2 pin. The G1 and G2 pins on the five pin adapters are numbered DG1-DG9 in sequence and are connected to the pins numbered DG1-DG9 on U17 and U18. The forward / reverse and electromagnetic wave transmission module includes nine inverting chips. Each inverting chip has 14 pins, namely D0-D9, VT, IN, GND, and COM. The D0-D9 pins on the first three inverting chips are numbered DDK1-DDK18 and DGK1-DGK9 in sequence. The VT pins and D0-D8 pins on the other six inverting chips are numbered AJ1-AJ54 in sequence. The D0-D9 pins and DGK1-DGK9 pins on the first three inverting chips are connected to the IN pins of four Linton driver chips. The VT pins and D0-D8 pins and AJ1-AJ54 pins on the latter six inverting chips are connected to a signal receiver. The IN pins on the latter six inverting chips are numbered AJK1-AJK6 in sequence, and the main control chip has pins that are connected to the IN pins numbered AJK1-AJK6 on the latter six inverting chips.

3. A 54-channel remote transmitter with reverse indication function and integrated control module for forward and reverse rotation and receiver according to claim 1, characterized in that: The first three inverting chips correspond to three control regions.

4. A 54-channel remote transmitter with reverse indication function and integrated control module for forward and reverse rotation and receiver according to claim 1, characterized in that: The battery is supplied with a voltage of 12V.

5. A 54 way remote transmitter with reverse indication function and integrated control module for forward and reverse rotation, receiver according to claim 1 characterized in that: The remote transmitter with anti-reflection function can transmit over a distance of 5,000-7,000 meters when there are no obstructions.