Remote positioning equipment for collecting real-time positioning information of hardware devices

By designing a detachable and pluggable remote positioning device structure, the problem of fixed traditional equipment structures is solved, improving flexibility and practicality, and meeting positioning needs for different purposes.

CN224231961UActive Publication Date: 2026-05-12CHINA COAL SCI & ENG CHONGQING ENG TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
CHINA COAL SCI & ENG CHONGQING ENG TECH CO LTD
Filing Date
2024-12-19
Publication Date
2026-05-12

AI Technical Summary

Technical Problem

Traditional remote positioning devices have a fixed structure, low flexibility, and cannot be customized to add modules according to usage needs.

Method used

设计了一种包括外框、控制面板、信号采集组件和信号处理组件的远程定位设备,通过控制面板实时操控信号处理,增添收发天线等接收设备,利用电源模块供能和光能转化模块补充电力,实现模块的灵活插接和拆卸。

Benefits of technology

提高了设备的灵活性和实用性,能够根据实际需要增添或更换收发天线,实时显示定位信息,提高作业效率。

✦ Generated by Eureka AI based on patent content.

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  • Figure CN224231961U_ABST
    Figure CN224231961U_ABST
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Abstract

The utility model relates to the technical field of remote positioning equipment, in particular to remote positioning equipment for acquiring real-time positioning information of each hardware device, which comprises an outer frame and a control panel arranged on the front surface of the outer frame, a signal acquisition component is arranged in the outer frame, and a signal processing component is arranged in the outer frame; the signal acquisition assembly comprises a transmit-receive antenna arranged on the top of the outer frame. According to the remote positioning equipment for collecting the real-time positioning information of each hardware device, a fixing structure of a control panel and an outer frame is opened, a locking frame is pulled to move, a clamping sliding block is pulled out from the interior of a locking notch through movement of the locking frame, limitation of a receiving and transmitting antenna in a clamping seat is relieved, and the positioning information of each hardware device is collected. The transceiving antenna can be detached by pulling the transceiving antenna out of the clamping base and the outer frame, another transceiving antenna penetrates through the bottom wall of the outer frame into the clamping base, the locking frame is pulled by the reset spring to embed the clamping sliding block into the locking notch, and locking of the transceiving antenna is achieved.
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Description

Technical Field

[0001] This utility model relates to the field of remote positioning equipment technology, specifically to a remote positioning device for collecting real-time positioning information of various hardware devices. Background Technology

[0002] Remote positioning equipment is a device that can acquire the location information of a target object or person through specific technical means and transmit it to a remote control center or user terminal. It uses satellite signals or communication signals to determine the precise location of the locator by receiving distance and azimuth information from multiple satellites.

[0003] Common positioning devices include GPS locators, Beidou locators, UWB positioning transmission modules, base station positioning devices, and Bluetooth positioning devices. These devices receive positioning information sent by the target device and exchange signals between multiple receiving beacons and the positioning device to achieve accurate positioning of the device, with relatively high positioning accuracy.

[0004] Currently, there are many types of devices on the market that can achieve remote positioning, and there are also many types of devices that can receive positioning information. However, when traditional devices receive signals, the signal transmission distance may exceed the maximum receiving distance. Therefore, it is necessary to add transmission modules such as antennas to remote positioning devices. However, the internal structure of traditional devices is usually relatively fixed, and modules cannot be customized to be added according to the use, resulting in low flexibility. Therefore, this utility model is proposed to solve the above problems. Utility Model Content

[0005] To address the shortcomings of existing technologies, this utility model provides a remote positioning device for collecting real-time positioning information of various hardware devices. It has advantages such as high flexibility and strong practicality, and solves the problem that the structural components of remote positioning devices for collecting real-time positioning information of various hardware devices are relatively fixed and lack flexibility.

[0006] To achieve the above objectives, the present invention provides the following technical solution: a remote positioning device for collecting real-time positioning information of various hardware devices, including an outer frame, a control panel disposed on the front of the outer frame, a signal acquisition component disposed inside the outer frame, and a signal processing component disposed inside the outer frame;

[0007] The signal acquisition component includes a transceiver antenna mounted on the top of the outer frame, several slots fixedly mounted on the inner sidewall of the outer frame, a locking frame slidably connected inside the slots, a limiting frame fixedly mounted on the inner wall of the outer frame, a fixing plate slidably connected inside the limiting frame, several fixing rods plugged into and fixed inside the fixing plate, a power module fixedly mounted inside the fixing plate, and several light energy conversion modules plugged into and fixed on the outer side of the outer frame.

[0008] This application adopts the above-mentioned technical solution, sets up a control panel to control the signal processing components in real time, and displays the currently received signal data in real time. This improves the work efficiency and allows for the addition of receiving devices such as transceiver antennas as needed. The power module supplies power to the entire device, and the light energy conversion module supplements the power module. This solves the problem that the structure and components of remote positioning devices that collect real-time positioning information from various hardware devices are relatively fixed and lack flexibility.

[0009] Furthermore, the signal processing component includes a circuit board disposed at one end of the fixed rod, a positioning module disposed on the side of the circuit board, a signal processor disposed on the side of the circuit board, an information storage module disposed on the side of the circuit board, a wireless module disposed on the side of the circuit board, a variable gain unit disposed on the side of the circuit board, a plurality of module plug-in sockets disposed on the side of the circuit board, and a power supply board disposed at the other end of the fixed rod.

[0010] The beneficial effects of the above-mentioned further scheme are as follows: the wireless module receives external signals, the fixed external module provides the current location information to the signal processor, the signal processor also receives the location information transmitted and received by the wireless module, the signal processor processes the location information and stores it inside the information storage module, the module plug-in can plug in and fix additional functional components, and the power supply board provides the power of the power module to the signal processing components for use.

[0011] Furthermore, the control panel has an information display screen on its front side, an operation panel on its front side, several snap fasteners on the inner side wall of the outer frame, and a pin block for use with the snap fasteners on its back.

[0012] The beneficial effects of the above-mentioned further sampling scheme are: an information display screen is set on the front of the control panel to display the currently collected positioning information data in real time, and the plug interface and the pin block cooperate to fix the control panel to the side of the outer frame to form a stable structure.

[0013] Furthermore, the upper and lower walls of the outer frame and the bottom wall of the card slot are provided with fixing slots for use with the transceiver antenna, and the bottom of the transceiver antenna is inserted into the fixing slot into the interior of the card slot.

[0014] The beneficial effect of the above-mentioned further sampling scheme is that: setting a fixed slot to fix the bottom of the transceiver antenna, limiting the transceiver antenna, and ensuring the stability of the transceiver antenna.

[0015] Furthermore, the base of the transceiver antenna has a locking slot on the side inside the locking frame, and the side of the locking frame is provided with a locking slider that slides in conjunction with the locking slot.

[0016] The beneficial effect of sampling the above-mentioned further solution is that by setting a locking slider on the side of the locking frame to embed into the locking slot on the side of the transceiver antenna, the transceiver antenna is fixed inside the locking frame, thereby improving the stability of the transceiver antenna.

[0017] Furthermore, a return spring is fixedly installed on the outer wall of the locking frame, and a limiting rod is provided inside the return spring and slidably connected to the locking frame. The other end of both the return spring and the limiting rod is fixedly installed on the inner wall of the outer frame.

[0018] Furthermore, the beneficial effect of the above-mentioned further solution is that: setting a limit rod to limit the movement of the locking frame, and at the same time cooperating with the reset spring to limit the initial position of the locking frame, so that when the locking frame is pulled, the reset spring will be pulled to stretch, and when released, the reset spring will pull the locking frame back to the initial position, thereby confining the transceiver antenna inside the card slot.

[0019] Furthermore, the inner wall of the limiting frame is provided with a slide groove for use with the fixing plate, and the side of the limiting frame is provided with a number of locking blocks for limiting and fixing the fixing plate.

[0020] The beneficial effects of the above-mentioned further solution are: a slide groove is set inside the limit frame to cooperate with the fixed plate for movement, which facilitates the disassembly of the fixed plate; the locking block locks the fixed plate inside the limit frame to prevent unnecessary movement of the fixed plate.

[0021] Furthermore, the surface of the fixing plate is provided with several fixing holes, and the fixing rod passes through the fixing holes laterally and is fixedly installed with the fixing plate.

[0022] The beneficial effect of sampling the above-mentioned further solution is that while fixing the fixing rod by opening fixing holes on the surface of the fixing plate, the connected wire harness can also be fixed, thereby improving the utilization rate of the internal space.

[0023] Furthermore, the fixing rod has fixing slots at both ends on opposite sides for fixing the circuit board and the power supply board, and the circuit board and the power supply board have limiting slots on their upper and lower sides for use with the fixing slots.

[0024] The beneficial effects of the above-mentioned further solution are: the circuit board and the power supply board are fixed on the fixed plate on both sides by setting the fixing rod, and the power supply components on the side of the power supply board and the signal processing components on the side of the circuit board are arranged separately inside the equipment to facilitate heat dissipation.

[0025] Compared with the prior art, this utility model provides a remote positioning device for collecting real-time positioning information of various hardware devices, which has the following beneficial effects:

[0026] 1. This remote positioning device, used to collect real-time positioning information of various hardware devices, allows the control panel and outer frame to be opened and the locking frame to be moved. The movement of the locking frame causes the locking slider to be pulled out from the inside of the locking slot, releasing the restriction of the transceiver antenna inside the locking seat. At this time, the transceiver antenna can be pulled out from the inside of the locking seat and the outer frame, thus completing the disassembly of the transceiver antenna. Another transceiver antenna can be passed through the bottom wall of the outer frame to the inside of the locking seat. The locking frame is then released, and under the pull of the return spring, the locking frame embeds the locking slider into the inside of the locking slot, thereby locking the transceiver antenna.

[0027] 2. This remote positioning device, used to collect real-time positioning information from various hardware devices, allows for real-time control of signal processing components via a control panel. An information display screen shows the currently received signal data. A power module supplies power to the entire device, a light energy conversion module supplements the power module, and a power supply board uses the stored energy from the power module to power the signal processing components. A wireless module receives positioning information from the transceiver antenna and transmits it to a signal processor. The signal processor processes and compiles the positioning information before sending it to an information storage module. A module connector allows for the connection of additional information processing modules, thus solving the problem of fixed structural components and low flexibility in remote positioning devices used for collecting real-time positioning information from various hardware devices. Attached Figure Description

[0028] Figure 1 This is a perspective view of the present utility model;

[0029] Figure 2 This is a three-dimensional view of the interior of this utility model;

[0030] Figure 3 This is a cross-sectional view of the top wall of the outer frame of this utility model;

[0031] Figure 4 This utility model Figure 3 Enlarged view of the A-structure;

[0032] Figure 5 This is a right-side perspective view of the fixing plate and circuit board of this utility model;

[0033] Figure 6 This is a left perspective view of the fixing plate and circuit board of this utility model;

[0034] Figure 7 This is a vertical cross-sectional view of the present invention;

[0035] Figure 8 This is a perspective view of the back of the circuit board of this utility model.

[0036] In the diagram: 1. Outer frame; 2. Control panel; 21. Information display screen; 22. Operation panel; 23. Plug-in buckle; 3. Signal acquisition component; 31. Transceiver antenna; 32. Card slot; 33. Locking frame; 34. Limiting frame; 35. Fixing plate; 36. Fixing rod; 37. Power module; 38. Light energy conversion module; 39. Locking slot; 310. Carding slider; 311. Return spring; 312. Limiting rod; 313. Locking block; 314. Fixing perforation; 4. Signal processing component; 41. Circuit board; 42. Positioning module; 43. Signal processor; 44. Information storage module; 45. Wireless module; 46. Variable gain converter; 47. Module plug-in socket; 48. Power supply board. Detailed Implementation

[0037] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0038] Please see Figure 1-8 The remote positioning device for collecting real-time positioning information of various hardware devices in this embodiment includes an outer frame 1, a control panel 2 set on the front of the outer frame 1, a signal acquisition component 3 set inside the outer frame 1, and a signal processing component 4 set inside the outer frame 1.

[0039] The signal acquisition component 3 includes a transceiver antenna 31 set on the top of the outer frame 1, several card slots 32 fixedly installed on the inner side wall of the outer frame 1, a locking frame 33 slidably connected inside the card slots 32, a limiting frame 34 fixedly installed on the inner wall of the outer frame 1, a fixing plate 35 slidably connected inside the limiting frame 34, several fixing rods 36 plugged into and fixed inside the fixing plate 35, a power module 37 fixedly installed inside the fixing plate 35, and several light energy conversion modules 38 plugged into and fixed on the outer side of the outer frame 1.

[0040] By setting up the control panel 2, the signal processing components can be controlled in real time, and the currently received signal data can be displayed in real time. This improves work efficiency and allows for the addition of receiving devices such as transceiver antennas 31 as needed. The power module 37 supplies power to the entire device, and the light energy conversion module 38 provides power to the power module 37. This solves the problem of the relatively fixed structure and low flexibility of remote positioning equipment that collects real-time positioning information from various hardware devices.

[0041] The control panel 2 has an information display screen 21 on its front side, an operation panel 22 on its front side, several plug-in buckles 23 on the inner side wall of the outer frame 1, and a pin block for use with the plug-in buckles 23 on its back.

[0042] The information display screen 21 displays the currently acquired positioning information in real time. The plug-in buckle 23 and the pin block fix the control panel 2 to the side of the outer frame 1, which protects the internal components while allowing a series of control operations to be performed.

[0043] The upper and lower walls of the outer frame 1 and the bottom wall of the card slot 32 are provided with fixing slots for use with the transceiver antenna 31. The bottom of the transceiver antenna 31 is inserted into the fixing slot into the interior of the card slot 32.

[0044] A fixed slot is provided to fix the bottom of the transceiver antenna 31 and to limit the transceiver antenna 31.

[0045] It should be noted that the inner bottom wall of the outer frame 1 is also provided with a card slot 32 and a fixing slot, which can add multiple transceiver antennas 31 to improve the signal reception effect.

[0046] The base of the transceiver antenna 31 is located inside the locking frame 33 and has a locking slot 39 on its side. The side of the locking frame 33 is provided with a locking slider 310 that works in conjunction with the locking slot 39.

[0047] The transceiver antenna 31 is fixed inside the locking frame 33 by embedding a locking slider 310 into the locking slot 39 on the side of the transceiver antenna 31.

[0048] Among them, a reset spring 311 is fixedly installed on the outer wall of the locking frame 33, and a limiting rod 312 is provided inside the reset spring 311 and is slidably connected to the locking frame 33. The other end of the reset spring 311 and the limiting rod 312 are fixedly installed on the inner wall of the outer frame 1.

[0049] The movement of the locking frame 33 is limited by the limit rod 312, and the initial position of the locking frame 33 is limited by the reset spring 311. When the locking frame 33 is pulled, the reset spring 311 will be stretched. After it is released, the reset spring 311 will pull the locking frame 33 back to the initial position, thereby limiting the transceiver antenna 31 inside the slot seat 32.

[0050] The inner wall of the limiting frame 34 is provided with a slide groove for use with the fixing plate 35, and the side of the limiting frame 34 is provided with a number of locking blocks 313 for limiting and fixing the fixing plate 35.

[0051] By setting a slide groove inside the limit frame 34 to cooperate with the fixed plate 35 to move, the fixed plate 35 can be easily disassembled. The locking block 313 locks the fixed plate 35 inside the limit frame 34, preventing unnecessary movement of the fixed plate 35.

[0052] The surface of the fixing plate 35 is provided with several fixing holes 314, and the fixing rod 36 passes through the fixing holes 314 laterally and is fixedly installed with the fixing plate 35.

[0053] By fixing the fixing rod 36 by opening fixing holes 314 on the surface of the fixing plate 35, the connected wire harness can also be fixed, thereby improving the utilization rate of the internal space.

[0054] In this example, the signal processing component 4 includes a circuit board 41 disposed at one end of the fixing rod 36, a positioning module 42 disposed on the side of the circuit board 41, a signal processor 43 disposed on the side of the circuit board 41, an information storage module 44 disposed on the side of the circuit board 41, a wireless module 45 disposed on the side of the circuit board 41, a variable gain device 46 disposed on the side of the circuit board 41, a plurality of module connectors 47 disposed on the side of the circuit board 41, and a power supply board 48 disposed at the other end of the fixing rod 36.

[0055] The power supply board 48 supplies power to the signal processing components by storing electrical energy in the power module 37. The wireless module 45 receives the positioning information received by the transceiver antenna 31 and transmits the positioning information to the signal processor 43. The signal processor 43 organizes and compiles the positioning information and sends it to the information storage module 44 for storage. The module connector 47 can be used to connect additional information processing modules for operation.

[0056] Among them, the two ends of the opposite side of the fixing rod 36 are provided with fixing slots for fixing the circuit board 41 and the power supply board 48, and the upper and lower sides of the circuit board 41 and the power supply board 48 are provided with limiting slots for use with the fixing slots.

[0057] The circuit board 41 and the power supply board 48 are fixed to the fixing plate 35 on both sides by setting the fixing rod 36. The power supply components on the side of the power supply board 48 and the signal processing components on the side of the circuit board 41 are arranged separately inside the device to facilitate heat dissipation.

[0058] It should be noted that the light energy conversion module 38, positioning module 42, signal processor 43, information storage module 44, wireless module 45, variable gain device 46, module connector 47, etc. are existing technologies, and their specific structures and working principles will not be described in detail in this article.

[0059] The working principle of the above embodiments is as follows:

[0060] By opening the fixing structure of the control panel 2 and the outer frame 1, the locking frame 33 is moved. The movement of the locking frame 33 causes the locking slider 310 to be pulled out from the inside of the locking slot 39, and the restriction of the transceiver antenna 31 inside the locking seat 32 is released. At this time, the transceiver antenna 31 can be pulled out from the inside of the locking seat 32 and the outer frame 1, thus completing the disassembly of the transceiver antenna 31. The other transceiver antenna 31 is passed through the bottom wall of the outer frame 1 into the inside of the locking seat 32. The locking frame 33 is released, and the locking frame 33, under the pull of the return spring 311, inserts the locking slider 310 into the inside of the locking slot 39, thereby locking the transceiver antenna 31.

[0061] In addition, the signal processing components can be controlled in real time by setting up the control panel 2, the information display screen 21 displays the currently received signal data in real time, the power module 37 supplies power to the whole device, the light energy conversion module 38 supplements the power of the power module 37, the power supply board 48 supplies power to the signal processing components with the electrical energy stored in the power module 37, the wireless module 45 receives the positioning information received by the transceiver antenna 31 and transmits the positioning information to the signal processor 43, the signal processor 43 organizes and compiles the positioning information and sends it to the information storage module 44 for storage, and the module plug-in 47 can be used to plug in additional information processing modules to perform operations, thereby solving the problem that the remote positioning equipment for collecting real-time positioning information of various hardware devices has a relatively fixed structure and low flexibility.

[0062] All electrical components mentioned in the text are electrically connected to the main controller and power supply. The main controller can be a conventional known device such as a computer that performs control functions, and the existing publicly available power connection technologies are not described in detail in the text.

Claims

1. A remote positioning device for collecting real-time positioning information of various hardware devices, comprising an outer frame (1) and a control panel (2) disposed on the front of the outer frame (1), characterized in that: The outer frame (1) is provided with a signal acquisition component (3) and a signal processing component (4). The signal acquisition component (3) includes a transceiver antenna (31) set on the top of the outer frame (1), several card slots (32) fixedly installed on the inner side wall of the outer frame (1), a locking frame (33) slidably connected inside the card slots (32), a limiting frame (34) fixedly installed on the inner wall of the outer frame (1), a fixing plate (35) slidably connected inside the limiting frame (34), several fixing rods (36) plugged into and fixed inside the fixing plate (35), a power module (37) fixedly installed inside the fixing plate (35), and several light energy conversion modules (38) plugged into and fixed outside the outer frame (1).

2. The remote positioning device for collecting real-time positioning information of various hardware devices according to claim 1, characterized in that: The signal processing component (4) includes a circuit board (41) disposed at one end of the fixed rod (36), a positioning module (42) disposed on the side of the circuit board (41), a signal processor (43) disposed on the side of the circuit board (41), an information storage module (44) disposed on the side of the circuit board (41), a wireless module (45) disposed on the side of the circuit board (41), a variable gain device (46) disposed on the side of the circuit board (41), several module plug-in sockets (47) disposed on the side of the circuit board (41), and a power supply board (48) disposed at the other end of the fixed rod (36).

3. The remote positioning device for collecting real-time positioning information of various hardware devices according to claim 1, characterized in that: The control panel (2) has an information display screen (21) on the front and an operation panel (22) on the front. The inner side wall of the outer frame (1) has several plug-in buckles (23). The back of the control panel (2) has a pin block that works with the plug-in buckles (23).

4. The remote positioning device for collecting real-time positioning information of various hardware devices according to claim 1, characterized in that: The upper and lower walls of the outer frame (1) and the bottom wall of the card slot (32) are provided with fixing slots for use with the transceiver antenna (31). The bottom of the transceiver antenna (31) is inserted into the fixing slot into the interior of the card slot (32).

5. The remote positioning device for collecting real-time positioning information of various hardware devices according to claim 1, characterized in that: The base of the transceiver antenna (31) is located inside the locking frame (33) and has a locking slot (39) on its side. The side of the locking frame (33) is provided with a locking slider (310) that is used to slide in conjunction with the locking slot (39).

6. The remote positioning device for collecting real-time positioning information of various hardware devices according to claim 1, characterized in that: A reset spring (311) is fixedly installed on the outer wall of the locking frame (33). A limiting rod (312) is embedded inside the locking frame (33) and slidably connected to the locking frame (33). The other ends of the reset spring (311) and the limiting rod (312) are fixedly installed on the inner wall of the outer frame (1).

7. The remote positioning device for collecting real-time positioning information of various hardware devices according to claim 1, characterized in that: The inner wall of the limiting frame (34) is provided with a slide groove for use with the fixing plate (35), and the side of the limiting frame (34) is provided with a number of locking blocks (313) for limiting and fixing the fixing plate (35).

8. The remote positioning device for collecting real-time positioning information of various hardware devices according to claim 1, characterized in that: The surface of the fixing plate (35) is provided with a number of fixing holes (314), and the fixing rod (36) passes through the fixing holes (314) laterally and is fixedly installed with the fixing plate (35).

9. The remote positioning device for collecting real-time positioning information of various hardware devices according to claim 2, characterized in that: The fixing rod (36) has fixing slots at both ends on opposite sides for fixing the circuit board (41) and the power supply board (48). The circuit board (41) and the power supply board (48) have limiting slots on their upper and lower sides for use with the fixing slots.