Personnel positioning identification card based on Internet of Things security

By introducing a power meter and display module into the personnel positioning identification card, the problem of difficult battery power monitoring is solved, enabling real-time battery display and distress signal functions, thus ensuring the stability and reliability of the IoT security system.

CN224123020UActive Publication Date: 2026-04-14QINGDAO PEIHE ELECTRON SCI CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
QINGDAO PEIHE ELECTRON SCI CO LTD
Filing Date
2025-04-18
Publication Date
2026-04-14

AI Technical Summary

Technical Problem

In existing technologies, it is difficult to observe the battery level of personnel positioning identification cards in a timely manner, and it is also difficult to replace or replenish the battery in a timely manner, resulting in potential risks in positioning monitoring in IoT security systems.

Method used

A personnel positioning identification card with a power meter module and a display module was designed. It monitors the battery power in real time and displays it through the display module. An emergency button is set up for calling for help. It also adopts a design with a detachable battery and charging connector for easy battery replacement and charging.

Benefits of technology

It enables real-time monitoring and display of battery power, timely reminders to charge, and sends out distress signals in emergencies, ensuring the stable operation of the positioning system.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a personnel positioning identification card based on Internet of Things security and protection, and belongs to the technical field of personnel positioning. Comprising a shell, a cover plate is detachably arranged on the top of the shell, and a light-transmitting plate is arranged on the inner side of the cover plate; the battery is detachably arranged on the inner side of the shell; the circuit board is detachably arranged on the inner side of the shell, and a voltameter module, a display module, a single chip microcomputer chip and a GPS module are fixedly arranged at the top of the circuit board; the charging connector can be accommodated in the inner side of the shell; wherein the display module and the light-transmitting plate are correspondingly arranged, and the display module is used for displaying the residual electric quantity of the battery and reminding charging; by adopting the voltameter module and the display module, the electricity quantity of the battery is monitored in real time through the voltameter module, and then the electricity quantity of the battery is displayed in real time through the display module, so that the problem that the electricity quantity of the battery of a personnel positioning identification card is difficult to observe in time is effectively solved; and it is difficult to replace the battery or supplement the electric quantity of the battery in time.
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Description

Technical Field

[0001] This application relates to the field of personnel positioning technology, and more specifically, to a personnel positioning identification card based on Internet of Things security. Background Technology

[0002] The Internet of Things (IoT) refers to connecting any object to a network through information sensing devices according to agreed protocols. Objects exchange and communicate information through information transmission media to achieve functions such as intelligent identification, positioning, tracking, and monitoring. In some high-risk jobs, workers wear positioning devices with IoT cards, which can monitor their specific location in high-risk work areas in real time. In the event of an accident, managers can quickly locate and launch a rescue operation.

[0003] In related technologies, in order to locate workers, for example, the prior art patent with publication number CN221804738U provides a personnel positioning identification card. This device achieves personnel positioning through modular design, and by installing a waterproof silicone ring between the upper and lower shells, it can effectively prevent water from entering the inside of the identification card, ensuring normal operation in humid environments. The gaps and connections between the components are all sealed to effectively prevent dust from entering and improve the durability of the identification card.

[0004] While the existing technical solutions described above can achieve personnel positioning through modular design and effectively prevent water from entering the identification card by installing a waterproof silicone ring between the upper and lower shells, the battery of the positioning identification card is encapsulated inside the shell. Due to the different lifespans and stability of the batteries, it is difficult to observe the battery level in a timely manner and to replace or replenish the battery in a timely manner. This may lead to the possibility of losing personnel positioning information in the IoT security system at any time, posing a potential risk to the positioning and monitoring of IoT security systems.

[0005] In view of this, we propose a personnel positioning identification card based on Internet of Things security. Utility Model Content

[0006] The purpose of this application is to provide a personnel positioning identification card based on the Internet of Things (IoT) for security, which can effectively solve the problems in the prior art that it is difficult to observe the battery level of the personnel positioning identification card in a timely manner, and it is difficult to replace or replenish the battery in a timely manner.

[0007] This application provides a personnel positioning identification card based on Internet of Things (IoT) security, including:

[0008] The housing has a cover plate detachably provided on its top, and a light-transmitting plate is provided on the inner side of the cover plate;

[0009] The battery is detachably located inside the casing;

[0010] The circuit board is detachably installed inside the housing, and the top of the circuit board is fixedly equipped with a power meter module, a display module, a microcontroller chip and a GPS module;

[0011] The charging connector can be stored inside the housing;

[0012] The display module is configured to correspond with the light-transmitting plate and is used to display the remaining battery power and charging reminders. The microcontroller chip is connected to the IoT security system and is used to send power and location information to the IoT security system.

[0013] As an optional solution to the technical solution of this application, a storage component is provided on the inner side of the housing. The storage component includes a gear, which is rotatably disposed on the inner side of the housing. A connecting sleeve is fixedly disposed on the outer side of the gear, and the charging connector is fixedly disposed on the inner side of the connecting sleeve. The gear is driven to rotate by an external force to drive the charging connector to be stored.

[0014] As an optional solution to the technical solution of this application, a charging port is provided on the outer side of the housing, a toothed plate is meshed on the outer side of the gear, a mating plate is provided between the toothed plate and the gear, the mating plate is detachably provided on the inner side of the housing, and the mating plate has a mating opening corresponding to the gear.

[0015] As an optional solution to the technical solution of this application, a pushing block is fixedly provided on the outer side of the toothed plate, the toothed plate is slidably disposed on the inner side of the housing, and an anti-slip groove is provided on the outer side of the pushing block to increase the roughness of the outer side of the pushing block.

[0016] As an optional solution to the technical solution of this application, a slot block is fixedly provided on the inner side of the charging port, a magnet is fixedly provided on the inner side of the slot block, and a metal sheet is fixedly provided on the inner side of the pushing block corresponding to the magnet.

[0017] As an optional solution to the technical solution in this application, the top of the circuit board is also provided with a microcontroller chip, a GPS module and an emergency button, which is used to send a distress signal in an emergency.

[0018] As an optional solution to the technical solution of this application, the top of the cover plate has an opening corresponding to the emergency button, and a flexible gasket is fixedly provided on the inner side of the opening by a fixing piece.

[0019] One or more technical solutions provided in the embodiments of this application have at least the following technical effects or advantages:

[0020] (1) This application uses a power meter module and a display module. The power meter module monitors the battery power in real time, and the display module displays the battery power in real time. Therefore, it effectively solves the problem that it is difficult to observe the power of the personnel positioning identification card battery in a timely manner, and it is difficult to replace the battery or replenish the battery power in a timely manner.

[0021] (2) This application provides an emergency button on the top of the circuit board. When a user encounters danger, pressing the emergency button will send out a distress signal. When the management personnel receive the user's distress signal, they can promptly carry out rescue operations. The flexible gasket keeps the inside of the housing sealed without hindering the use of the emergency button. Attached Figure Description

[0022] Figure 1 This is a schematic diagram of the overall structure of a personnel positioning identification card based on Internet of Things security, as disclosed in a preferred embodiment of this application.

[0023] Figure 2 This is a schematic diagram of the overall exploded structure of a personnel positioning identification card based on Internet of Things security, as disclosed in a preferred embodiment of this application.

[0024] Figure 3 This is a schematic diagram of the housing structure of a personnel positioning identification card based on Internet of Things security, as disclosed in a preferred embodiment of this application.

[0025] Figure 4 for Figure 3 A magnified structural diagram of part A;

[0026] Figure 5 This is a schematic diagram of the structure of the storage component in a personnel positioning identification card based on Internet of Things security, as disclosed in a preferred embodiment of this application;

[0027] Figure 6 This is a schematic diagram of the structure of the metal piece in a personnel positioning identification card based on Internet of Things security, as disclosed in a preferred embodiment of this application;

[0028] Figure 7 This is a schematic diagram of the structure of the cover plate in a personnel positioning identification card based on Internet of Things security, as disclosed in a preferred embodiment of this application;

[0029] The following are the labels in the diagram: 1. Housing; 11. Cover plate; 111. Light-transmitting plate; 112. Through-hole; 113. Fixing piece; 114. Flexible gasket; 12. Charging port; 13. Slot block; 131. Magnet; 14. Sealing gasket; 2. Battery; 21. Mounting frame; 3. Circuit board; 31. Fuel meter module; 32. Display module; 33. Microcontroller chip; 34. GPS module; 35. Emergency button; 4. Charging connector; 5. Storage assembly; 51. Gear; 52. Connecting sleeve; 53. Tooth plate; 54. Push block; 541. Anti-slip groove; 542. Metal sheet; 55. Mating plate; 551. Mating opening. Detailed Implementation

[0030] The present application will be further described in detail below with reference to the accompanying drawings.

[0031] Reference Figure 1 , Figure 3 , Figure 4 and Figure 7 This application discloses a personnel positioning identification card based on Internet of Things security, including a housing 1. The top of the housing 1 is detachably provided with a cover plate 11. A light-transmitting plate 111 is provided on the inner side of the cover plate 11. A battery 2 and a circuit board 3 are detachably provided on the inner side of the housing 1. A power meter module 31 and a display module 32 are fixedly provided on the top of the circuit board 3. A charging connector 4 can be stored on the inner side of the housing 1. The display module 32 is correspondingly provided with the light-transmitting plate 111 and is used to display the remaining power of the battery 2 and charging reminders.

[0032] During use, the power meter module 31 can monitor the power of the battery 2 in real time, and the power is displayed through the display module 32. The user can observe the power usage of the battery 2 at any time through the light-transmitting plate 111. When the remaining power of the battery 2 is low, the power number on the display module 32 can flash frequently to remind the user to charge the battery 2 through the charging connector 4.

[0033] Among them, the power meter module 31 is model CW2017, the display module 32 is a TFT LCD screen, and the charging connector 4 is a Type-C connector.

[0034] A mounting frame 21 is provided on the outside of the battery 2. The mounting frame 21 is fixedly installed on the inside of the housing 1. A microcontroller chip 33, a GPS module 34 and an emergency button 35 are also provided on the top of the circuit board 3. The emergency button 35 is used to send a distress signal in an emergency. A through-hole 112 is provided on the top of the cover plate 11 corresponding to the emergency button 35. A flexible gasket 114 is fixedly installed on the inside of the through-hole 112 by a fixing piece 113.

[0035] Battery 2 can be removed through mounting frame 21 for easy replacement. Flexible gasket 114 is placed inside opening 112. Fixing plate 113 is fixed to the outside of flexible gasket 114 with screws, so that fixing plate 113 squeezes flexible gasket 114 and fixes flexible gasket 114 in place, ensuring the airtightness of the inside of housing 1. When the user encounters danger, press flexible gasket 114 to press emergency button 35, so that emergency button 35 sends out a distress signal, so that the management personnel can receive the user's distress call and carry out rescue in time. Among them, the microcontroller chip 33 is MSP430 and the GPS module 34 is SiRFstarIII.

[0036] Reference Figure 2 - Figure 6 The inner side of the housing 1 is provided with a storage component 5, which includes a gear 51. The gear 51 is rotatably disposed inside the housing 1. A connecting sleeve 52 is fixedly disposed outside the gear 51. A charging connector 4 is fixedly disposed inside the connecting sleeve 52. The gear 51 is driven to rotate by an external force, which causes the charging connector 4 to be stored. A charging port 12 is opened on the outer side of the housing 1. A toothed plate 53 is meshed on the outer side of the gear 51. A mating plate 55 is provided between the toothed plate 53 and the gear 51. The mating plate 55 is detachably disposed inside the housing 1 and corresponds to the gear 51. A mating opening 551 is provided. A pushing block 54 is fixedly provided on the outer side of the toothed plate 53. The toothed plate 53 is slidably disposed on the inner side of the housing 1. An anti-slip groove 541 is provided on the outer side of the pushing block 54 to increase the roughness of the outer side of the pushing block 54. A groove block 13 is fixedly provided on the inner side of the charging port 12. A magnet 131 is fixedly provided on the inner side of the groove block 13. A metal sheet 542 is fixedly provided on the inner side of the pushing block 54 corresponding to the magnet 131. A sealing gasket 14 is provided between the housing 1 and the cover plate 11 to ensure the sealing of the connection between the housing 1 and the cover plate 11.

[0037] When storing the charging connector 4, the push block 54 is pushed, which drives the toothed plate 53 to move. A sealing sleeve (not shown in the figure) is provided between the outer side of the push block 54 and the toothed plate 53 and the contact surface with the charging port 12, thereby driving the gear 51 to rotate, which in turn drives the connecting sleeve 52 to rotate, so that the connecting sleeve 52 drives the charging connector 4 to rotate towards the inside of the housing 1, thus completing the storage of the charging connector 4.

[0038] The anti-slip groove 541 increases the friction between the finger and the push block 54, making it easier to push the push block 54. When the push block 54 is pushed to the side close to the groove block 13, the metal sheet 542 cooperates with the magnet 131 to keep the push block 54 on the outside of the groove block 13, covering the charging port 12. When installing the toothed plate 53, the toothed plate 53 is placed inside the housing 1, and then the mating plate 55 is fixed inside the housing 1 and installed on one side of the toothed plate 53 to ensure the sealing of the inside of the housing 1.

[0039] In summary, when the personnel positioning identification card based on IoT security disclosed in this application is in use, the power meter module 31 can monitor the power of the battery 2 in real time, and the power is displayed through the display module 32. The user can observe the power usage of the battery 2 at any time through the light-transmitting plate 111. When the remaining power of the battery 2 is low, the power number on the display module 32 can flash frequently to remind the user to charge the battery 2 through the charging connector 4.

[0040] When the charging connector 4 is not in use, by pushing the push block 54, the push block 54 drives the toothed plate 53 to move, thereby driving the gear 51 to rotate, which in turn drives the connecting sleeve 52 to rotate, so that the connecting sleeve 52 drives the charging connector 4 to rotate towards the inside of the housing 1, thus completing the storage of the charging connector 4.

Claims

1. A personnel positioning identification card based on Internet of Things (IoT) security, characterized in that, Include: The housing (1) has a cover plate (11) detachably provided on its top, and a light-transmitting plate (111) is provided on the inner side of the cover plate (11). The battery (2) is detachably mounted inside the housing (1); The circuit board (3) is detachably disposed inside the housing (1). The top of the circuit board (3) is fixedly disposed with a power meter module (31), a display module (32), a microcontroller chip (33) and a GPS module (34). The charging connector (4) can be stored inside the housing (1); The display module (32) is configured to correspond with the light-transmitting plate (111) and is used to display the remaining power of the battery (2) and charging reminders. The microcontroller chip (33) is connected to the Internet of Things security system and is used to send power and location information to the Internet of Things security system.

2. The personnel positioning identification card based on IoT security according to claim 1, characterized in that: The inner side of the housing (1) is provided with a storage component (5), which includes a gear (51). The gear (51) is rotatably disposed on the inner side of the housing (1). A connecting sleeve (52) is fixedly disposed on the outer side of the gear (51). The charging connector (4) is fixedly disposed on the inner side of the connecting sleeve (52). The gear (51) is driven to rotate by an external force to drive the charging connector (4) to be stored.

3. The personnel positioning identification card based on IoT security according to claim 2, characterized in that: A charging port (12) is provided on the outer side of the housing (1). A toothed plate (53) is meshed on the outer side of the gear (51). A mating plate (55) is provided between the toothed plate (53) and the gear (51). The mating plate (55) is detachably provided on the inner side of the housing (1). The mating plate (55) has a mating opening (551) corresponding to the gear (51).

4. The personnel positioning identification card based on IoT security according to claim 3, characterized in that: A push block (54) is fixedly provided on the outer side of the toothed plate (53). The toothed plate (53) is slidably disposed on the inner side of the housing (1). An anti-slip groove (541) is provided on the outer side of the push block (54) to increase the roughness of the outer side of the push block (54).

5. The personnel positioning identification card based on Internet of Things security according to claim 4, characterized in that: A slot (13) is fixedly provided on the inner side of the charging port (12), a magnet (131) is fixedly provided on the inner side of the slot (13), and a metal sheet (542) is fixedly provided on the inner side of the push block (54) corresponding to the magnet (131).

6. The personnel positioning identification card based on IoT security according to claim 1, characterized in that: An emergency button (35) is also provided on the top of the circuit board (3) for sending a distress signal in an emergency.

7. The personnel positioning identification card based on Internet of Things security according to claim 6, characterized in that: The top of the cover plate (11) has an opening (112) corresponding to the emergency button (35), and a flexible gasket (114) is fixedly provided on the inner side of the opening (112) by a fixing piece (113).

Citation Information

Patent Citations

  • Personnel positioning identification card

    CN221804738U