Intelligent safety belt master control device

By using an intelligent safety belt master control device to monitor the safety belt's hooking status and environmental parameters in real time, the problem of safety belts not being fastened properly or not being hooked correctly during high and low altitude operations is solved. This enables timely responses to safety alerts and on-site management, improving operational safety and management efficiency.

CN223555353UActive Publication Date: 2025-11-18SICHUAN SHUNENG ELECTRIC POWER CO LTD
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Patent Information

Application Number
CN202422950579.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-02
Publication Date
2025-11-18
Estimated Expiration
2034-12-02

AI Technical Summary

Technical Problem

When working at heights, workers may fail to fasten safety buckles or properly hook safety ropes due to negligence, leading to safety accidents. Furthermore, on-site management personnel may find it difficult to understand the situation and take timely action.

Method used

An intelligent seat belt master control device was designed, which integrates a positioning module, an alarm module, a temperature and humidity sensing module, a voice module, and a communication module. It monitors the hook status and environmental parameters of the seat belt in real time, and realizes information feedback and distress call functions through voice intercom and alarm prompts.

Benefits of technology

It improves the reliability of safety belt use, enhances on-site management capabilities, ensures the safety of workers, and enables timely handling of emergencies.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an intelligent safety belt master control device which comprises an upper cover body, a lower shell, a rechargeable battery, a charging port, a positioning module, an alarm module, an LED lamp, a voice module, a communication module, a temperature and humidity sensing module, a single chip microcomputer and a U-shaped fixing piece. The upper cover body and the lower shell body are buckled, and the rechargeable battery, the charging port, the positioning module, the alarm module, the communication module and the temperature and humidity sensing module are electrically connected with the single-chip microcomputer. The communication module is used for receiving a hooking signal sent by the hooking device, a buckling signal sent by the buckling device and a hanging position abnormal signal sent by the safety rope sensing device, and is also used for sending an alarm signal to a server; information feedback and alarm prompt are achieved for hooking confirmation of the safety rope and buckling confirmation of the buckle, and use of the safety rope of the safety belt is further guaranteed; real-time temperature and humidity induction, height induction and voice talkback improve the on-site disposal and management capability, and are beneficial to orderly development of high-altitude and low-altitude work.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the technical field of safety equipment, and mainly relates to intelligent safety belt master control device. BACKGROUND

[0002] When operating at high and low altitudes, the operating personnel need to buckle the waist buckle, chest buckle and leg buckle on the safety belt, and the operating site needs to be correctly hooked with the safety rope for operation, but these operations often cause safety accidents due to the negligence of the operating personnel to miss a safety buckle or the safety rope is not hooked in place without being found and stopped by anyone.

[0003] Therefore, a device for supervising and monitoring the buckle and hook on the safety belt is needed to remind the operating personnel to buckle and hook, implement correct operation and avoid causing major loss of personnel and property.

[0004] In case of an emergency during outdoor high and low altitude operation, the background management personnel need to understand the on-site situation in the first time for disposal and deployment work, so a device is needed to understand the on-site position height, weather and humidity change and voice intercom in the first time for on-site disposal. UTILITY MODEL CONTENTS

[0005] The utility model aims at the defects and deficiencies of the prior art, provides intelligent safety belt master control device, realizes information feedback and alarm prompt for the hooking confirmation of safety rope and the buckling confirmation of buckle, and further guarantees the use of safety belt and safety rope, improves the on-site disposal management ability through real-time temperature and humidity sensing, height sensing and voice intercom, and is favorable for the orderly development of high and low altitude operation work.

[0006] To achieve the above object, the technical scheme adopted by the utility model is:

[0007] The intelligent safety belt master control device comprises an upper cover body, a lower shell body, a charging battery, a charging port, a positioning module, an alarm module, an LED lamp, a voice module, a communication module, a temperature and humidity sensing module, a single-chip microcomputer and a U-shaped fixing plate.

[0008] The upper cover body and the lower shell body are buckled, and the charging battery, the charging port, the positioning module, the alarm module, the LED lamp, the voice module, the communication module and the single-chip microcomputer are arranged in the upper cover body and the lower shell body, and the charging battery, the charging port, the positioning module, the alarm module, the communication module and the temperature and humidity sensing module are electrically connected with the single-chip microcomputer respectively.

[0009] The alarm module is electrically connected with the LED lamp and the voice module respectively.

[0010] One end of the upper cover body is provided with the charging port, and the shell body is further provided with an SOS button, an electric quantity monitoring display module, a sound hole and a power-on key.

[0011] The SOS button and the power monitoring display module are both electrically connected to the microcontroller.

[0012] The SOS button is used to send an alarm distress signal. It communicates with the server via the communication module, sends the distress signal to the server, and conducts voice communication with the server via the voice module. At the same time, the LED light flashes to sound an alarm.

[0013] The power monitoring and display module is used to monitor the remaining power of the main control module battery in real time. When the power is lower than the set threshold, the alarm module will issue an audible and visual reminder and the charging indicator light will flash to prompt the operator to charge or replace the battery in time.

[0014] The temperature and humidity sensing module is used to collect ambient temperature and humidity data. When the temperature and humidity exceed the safe range, the alarm module will issue an audible and visual reminder, and the collected ambient temperature data will be sent to the server through the communication module.

[0015] The positioning module is used to collect location positioning data and location elevation data, and send the collected location positioning data and location elevation data to the server.

[0016] The power button is used to turn the device on and off.

[0017] A voice module is installed below the sound hole.

[0018] The communication module is communicatively connected to the hook device, the buckle device, the server, and the safety rope sensing device.

[0019] The communication module is used to receive hooking signals sent by the hooking device, buckling signals sent by the buckling device, and abnormal hanging signals sent by the safety rope sensing device. It is also used to send alarm signals to the server.

[0020] The communication module receives the hook signal sent by the hook device and the buckle signal sent by the buckle device and transmits them to the microcontroller. The microcontroller processes the signals. If it does not receive a signal from either device, it controls the alarm device to issue an audible and visual alert and sends the alarm signal to the server through the communication module.

[0021] The communication module receives the abnormal hanging signal sent by the safety rope sensing device and transmits it to the microcontroller. The microcontroller processes the signal and controls the alarm device to issue an audible and visual alert. At the same time, the alarm signal is sent from the communication module to the server.

[0022] This device is fitted and fixed with the U-shaped fixing piece, and this device and the U-shaped fixing piece are fitted onto the belt body of the seat belt.

[0023] The beneficial effects of this utility model are as follows: it provides information feedback and alarm prompts for the confirmation of the hooking of the safety rope and the confirmation of the buckle, which further ensures the use of the safety belt and safety rope; real-time temperature and humidity sensing, height sensing and voice intercom enhance the functionality and practicality of the device, improve on-site handling and management capabilities, and facilitate the orderly development of high and low altitude operations. Attached Figure Description

[0024] Figure 1 This is a schematic diagram of the structure of this utility model;

[0025] Figure 2 This is a schematic diagram of the internal structure of this utility model;

[0026] Figure 3 This is a schematic diagram of the main control device and the U-shaped fixing plate structure of this utility model;

[0027] Figure 4 This is a schematic diagram of an embodiment of the present utility model;

[0028] Figure 5 This is a schematic diagram illustrating the implementation of the low-mounted, high-use design of this utility model.

[0029] Reference numerals: 1. Upper cover; 2. Lower housing; 3. Rechargeable battery; 4. Charging port; 5. Positioning module; 6. Alarm module; 7. LED light; 8. Voice module; 9. Communication module; 10. Temperature and humidity sensing module; 13. Microcontroller; 14. SOS button; 15. Safety belt; 16. U-shaped fixing piece; 17. Power monitoring and display module; 18. Sound hole; 19. Power button; 20. Housing; 21. Tilt sensor; 22. Signal transmission module; 23. Safety rope sensing microcontroller; 24. Battery; 25. Hook device; 26. Buckle device; 27. Server; 28. Safety rope sensing device. Detailed Implementation

[0030] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and specific embodiments. It should be understood that the specific embodiments described herein are only used to explain this utility model and are not intended to limit this utility model.

[0031] Reference Figures 1-4 As shown, the intelligent seat belt main control device includes an upper cover 1, a lower shell 2, a rechargeable battery 3, a charging port 4, a positioning module 5, an alarm module 6, an LED light 7, a voice module 8, a communication module 9, a temperature and humidity sensing module 10, a microcontroller 13, and a U-shaped fixing piece 16.

[0032] The upper cover 1 and the lower shell 2 are fastened together, and a rechargeable battery 3, a charging port 4, a positioning module 5, an alarm module 6, an LED light 7, a voice module 8, a communication module 9 and a microcontroller 10 are built in the shell. The rechargeable battery 3, the charging port 4, the positioning module 5, the alarm module 6, the communication module 9 and the temperature and humidity sensing module 10 are electrically connected to the microcontroller 10.

[0033] When in use, press the power button 19 to turn on the device. The temperature and humidity sensing module 10 of this device is used to collect ambient temperature and humidity data. When the temperature and humidity exceed the safe range, the alarm module 6 will issue an audible and visual reminder, and the collected ambient temperature data will be sent to the server 27 through the communication module 9.

[0034] The positioning module 5 of this device is used to collect location positioning data and location height data, and send the collected location positioning data and location height data to the server 27.

[0035] When workers encounter an emergency, pressing the SOS button 14 sends an alarm and distress signal. The communication module 9 communicates with the server 27 to send the distress signal and conducts a voice conversation with the server 27 through the voice module 8. The sound is transmitted through the sound hole 18, and the LED light flashes to sound an alarm.

[0036] The power monitoring and display module 17 is used to monitor the remaining power of the main control module battery in real time. When the power is lower than the set threshold, the alarm module 6 will issue an audible and visual reminder, and the charging indicator light will flash, prompting the operator to charge or replace the battery in time.

[0037] The communication module 9 in this device is communicatively connected to the hook device 25, the buckle device 26 and the safety rope sensing device 28, and is also communicatively connected to the server 27.

[0038] When the safety rope sensing device 28 detects that one end of the safety rope is hooked at a hooking point on an object below the center of the human body, it will send an abnormal hooking signal to this device.

[0039] The communication module 9 in this device receives an abnormal signal sent by the safety rope sensor 28 and then issues an audible and visual alert through the alarm module 6.

[0040] The worker was reminded that the safety rope was not hooked above the center of the body as required by regulations. The worker was reminded to correct the situation in time to avoid the worker falling and the safety rope failing to provide cushioning.

[0041] The communication module 9 in this device receives the hook signal sent by the hook device 25 and the buckle signal sent by the buckle device 26 and transmits them to the microcontroller. The microcontroller processes the signals. If it does not receive a signal from either device, it controls the alarm device 6 to issue an audible and visual alert and sends the alarm signal from the communication module 9 to the server 27.

[0042] When installing this device, fit it and the U-shaped fixing piece 16 onto the seat belt body and secure it with screws to prevent the device from falling off.

[0043] The description and application of this utility model are illustrative and schematic only, and are not intended to limit the scope of this utility model to the above embodiments. Variations and modifications of the embodiments disclosed herein are entirely possible, and substitutions and equivalent components are well known to those skilled in the art. It should also be understood by those skilled in the art that this utility model can be implemented in other forms, structures, arrangements, proportions, and with other components, materials, and parts without departing from the spirit or essential characteristics of this utility model, and that other variations and modifications can be made to the embodiments disclosed herein without departing from the scope and spirit of this utility model.

Claims

1. A smart seatbelt main control device, comprising an upper cover (1), a lower shell (2), a rechargeable battery (3), a charging port (4), a positioning module (5), an alarm module (6), an LED light (7), a voice module (8), a communication module (9), a temperature and humidity sensing module (10), a microcontroller (13), and a U-shaped fixing piece (16), characterized in that: The upper cover (1) and the lower shell (2) are fastened together, and are equipped with a rechargeable battery (3), a charging port (4), a positioning module (5), an alarm module (6), an LED light (7), a voice module (8), a communication module (9) and a microcontroller (13). The rechargeable battery (3), the charging port (4), the positioning module (5), the alarm module (6), the communication module (9), the temperature and humidity sensing module (10), and the power monitoring and display module (17) are electrically connected to the microcontroller (13). The alarm module (6) is electrically connected to the LED light (7) and the voice module (8) respectively; The upper cover (1) is provided with a charging port (4) at one end, and the housing is also provided with an SOS button (14), a power monitoring display module (17), a sound hole (18) and a power button (19); The SOS button (14) and the power monitoring display module (17) are both electrically connected to the microcontroller (13); The SOS button (14) is used to send an alarm distress signal. It communicates with the server (27) through the communication module (9), sends a distress signal to the server (27), and conducts voice communication with the server (27) through the voice module (8). At the same time, the LED light flashes to alarm. The power monitoring and display module (17) is used to monitor the remaining power of the main control module battery in real time. When the power is lower than the set threshold, the alarm module (6) will issue an audible and visual reminder and the charging indicator light will flash to prompt the operator to charge or replace the battery in time. The temperature and humidity sensing module (10) is used to collect ambient temperature and humidity data. When the temperature and humidity exceed the safe range, the alarm module (6) will issue an audible and visual reminder and send the collected ambient temperature and humidity data to the server (27) through the communication module (9). The positioning module (5) is used to collect location positioning data and location height data, and send the collected location positioning data and location height data to the server (27); The communication module (9) is used to receive the hook signal sent by the hook device (25), the buckle signal sent by the buckle device 26, and the hanging position abnormal signal sent by the safety rope sensing device (28). It is also used to send an alarm signal to the server (27).

2. The intelligent seat belt master control device according to claim 1, characterized in that: The communication module (9) receives the hook signal sent by the hook device (25) and the buckle signal sent by the buckle device 26 and transmits them to the microcontroller. The microcontroller processes the signals. If it does not receive a signal from either device, it controls the alarm module (6) to issue an audible and visual reminder through the microcontroller. At the same time, the alarm signal is sent from the communication module (9) to the server (27).

3. The intelligent seat belt master control device according to claim 1, characterized in that: The communication module (9) receives the abnormal hanging signal sent by the safety rope sensing device (28) and transmits it to the microcontroller. The microcontroller processes the signal and controls the alarm module (6) to issue an audible and visual reminder. At the same time, the alarm signal is sent from the communication module (9) to the server (27).

4. The intelligent seat belt master control device according to claim 1, characterized in that: The fastening body of the upper cover (1) and the lower shell (2) is fitted and fixed with the U-shaped fixing piece (16), and the bottom of the lower shell (2) is fitted with the U-shaped fixing piece (16) on the belt of the safety belt (15).