Mining 5G base station installation device

By designing a mining 5G base station installation device with multi-point support and limiting structure, the problems of inconvenient installation and unstable fixation of mining 5G base stations in complex terrain and harsh environments have been solved. This has enabled the equipment to be stably installed and flexibly adapted in the mining environment, meeting the communication needs of underground facilities.

CN223967924UActive Publication Date: 2026-03-03OTUOKE QIANQI GREAT WALL NO 3 MINING CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-24
Publication Date
2026-03-03

AI Technical Summary

Technical Problem

Mining 5G base stations are inconvenient to install in complex terrain and harsh environments, are unstable and lack adaptability, making it difficult to meet the installation needs of special mining environments.

Method used

A mining 5G base station installation device was designed, which includes a communication box, an installation arm and an installation base. It adopts a combination structure of fixed support frame, support groove, positioning frame and bolt connection. Through multi-point support and limit design, the device can be stably installed and its angle can be adjusted on different terrains.

Benefits of technology

This improves the installation stability and applicability of base stations in mining environments, ensuring reliable operation of equipment in complex terrain and vibration environments, and meeting the communication needs of underground facilities.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a mining 5G base station installation device, which belongs to the technical field of mine field equipment and comprises a communication box, an installation arm and a base. The fixed supporting frame is installed on the surface of the rear end of the communication box, the whole fixed supporting frame is of an equilateral triangle structure, a supporting groove is formed in the fixed supporting frame, and the supporting groove is used for containing and supporting an installation arm; one end of the mounting arm is inserted into the mounting base, and the other end of the mounting arm is fixed with the fixed supporting frame through a supporting structure; the supporting structure comprises a positioning frame, a bottom supporting plate and an upper end positioning block, the positioning frame is in contact and fixed with the mounting arm, the bottom supporting plate is in contact with the lower surface of the mounting arm to provide support, and the upper end positioning block is in contact with the upper surface of the mounting arm to limit and guarantee the stability of the mounting arm; and the installation stability, the anti-vibration capability and the applicability in complex landforms of mine fields of the equipment are obviously improved.
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Description

Technical Field

[0001] This utility model belongs to the field of mining equipment technology, specifically a 5G base station installation device for mining. Background Technology

[0002] 5G base stations are the core equipment of 5G networks, enabling signal transmission between wired communication networks and wireless terminals through wireless coverage. The application of 5G base stations is gradually increasing in mining environments, especially intrinsically safe 5G base stations for underground mining. Their main functions include converting baseband digital signals into high-frequency radio frequency signals and transmitting electromagnetic waves through antennas to achieve underground communication coverage. However, besides the equipment's signal processing capabilities, the installation and fixing methods of base stations are particularly critical in the unique environment of mining sites.

[0003] Mining environments typically exhibit the following characteristics:

[0004] The terrain is complex and diverse: the internal terrain of mines is mostly uneven ground, steep slopes, pit walls, or walls, which places higher demands on the stability of equipment installation. Traditional base station installation devices are mostly single vertical or horizontal installation designs, which are difficult to adapt to different terrains.

[0005] Harsh environment: Mines contain adverse conditions such as high humidity, high dust, and vibration. Traditional installation methods are prone to causing equipment to shake or loosen in these environments, affecting the stability of base station operation.

[0006] Limited operating space: Installation in mines is usually limited by space, especially in narrow underground working areas, requiring the installation equipment to have a fast and convenient installation method and no need for complicated operating tools.

[0007] In existing technologies, base station installation devices mostly use fixed brackets or simple bolt connections. While these methods can meet the equipment fixing requirements on flat ground, they are prone to the following problems in mining environments:

[0008] Inconvenient installation: Traditional installation devices are complicated to operate when the angle or position of the equipment needs to be adjusted quickly, especially when switching between horizontal and vertical installations, which lacks flexibility.

[0009] Unstable installation: In uneven terrain or vibrating environments, the support structure of traditional installation methods is prone to loosening or shifting, affecting the normal operation of the equipment.

[0010] Insufficient adaptability: Existing installation devices are mostly single-structure designs, which make it difficult to make flexible adjustments according to different terrain conditions (such as walls, mine pit sides or ground), thus limiting the applicability of the equipment in complex mining environments. Utility Model Content

[0011] To address the problems of existing 5G base station installation devices for mining being inconvenient to install in complex terrains, having unstable fixation, and lacking adaptability, this utility model provides a 5G base station installation device for mining.

[0012] This utility model is achieved through the following technical solution:

[0013] A 5G base station installation device for mining applications, comprising:

[0014] Communication box, mounting arm, and mounting base;

[0015] A fixed support frame is installed on the rear surface of the communication box. The fixed support frame is in the shape of an equilateral triangle and has a support groove inside. The support groove is used to accommodate and support the mounting arm.

[0016] One end of the mounting arm is inserted into the mounting base, and the other end can be fixed to the fixed support frame through a support structure.

[0017] The support structure includes a positioning frame, a bottom support plate, and an upper positioning block. The positioning frame is fixed in contact with the mounting arm, the bottom support plate is in contact with the lower surface of the mounting arm to provide support, and the upper positioning block is in contact with the upper surface of the mounting arm to limit movement and ensure the stability of the mounting arm.

[0018] A further improvement of this utility model is that the mounting arm is rotatably mounted in the fixed support frame via a rotating rod, and the rotating rod is mounted on the inner wall of the fixed support frame to adjust the angle of the mounting arm.

[0019] A further improvement of this utility model is that the mounting base is provided with a plurality of positioning holes, and the mounting arm is fixed to the outer bolts through the positioning holes to position the mounting arm.

[0020] A further improvement of this utility model is that the fixed support frame, support groove and mounting arm are all equilateral triangular structures.

[0021] A further improvement of this utility model is that the middle part of the mounting arm has an equilateral triangular hole that is inserted into the support groove.

[0022] A further improvement of this utility model is that the positioning frame is fixedly connected to the mounting arm by bolts, the bottom support plate is located below the mounting arm and contacts its lower surface to provide support, and the upper positioning block contacts the upper surface of the mounting arm to limit the movement.

[0023] As can be seen from the above technical solutions, the beneficial effects of this utility model are:

[0024] This utility model discloses a base station installation device that uses a support groove inside a fixed support frame to stably accommodate and support the installation arm. The connection method, where one end of the installation arm is inserted into the installation base, ensures the reliability of the equipment during vertical or horizontal installation. The support structure (including a positioning frame, a bottom support plate, and an upper positioning block) provides multi-point support and limiting. The positioning frame is fixed in contact with the installation arm, the bottom support plate provides downward support for the installation arm, and the upper positioning block limits the upper surface of the installation arm, preventing loosening or displacement of the equipment due to gravity or vibration. This design, combined with the modular structure and multi-angle adaptability of the technical solution, significantly improves the installation stability, vibration resistance, and applicability of the equipment in complex terrain such as mining sites.

[0025] This invention enables the device to have normal information transmission function when the baseband processing unit, data processing unit, central unit, and active antenna unit are used simultaneously. With the amplification function of the radio frequency amplifier circuit module, terminals within a certain range can receive signals to realize communication function and ensure the stable and normal operation of the device.

[0026] When the device is installed vertically, the mounting base is first installed vertically on the ground. Then, the mounting arm is rotated and vertically inserted into the mounting base. The outer bolts are then tightened by rotating them into the positioning holes to fix the mounting arm inside the mounting base. Next, the positioning frame is tightened and fixed to the fixed support frame. At the same time, the positioning frame is fixed in contact with the mounting arm, and the upper part of the mounting arm is fixed at the junction with the fixed support frame, thereby achieving the effect of vertically fixing the mounting arm and achieving the effect of vertically installing the communication box.

[0027] When the device is installed horizontally, the following steps are taken: First, the mounting base is installed horizontally on the wall or side of a mine pit. Then, the mounting arm is inserted into the mounting base and fixed with bolts. Next, the positioning frame is fixed to the fixed support frame, so that the bottom support plate of the positioning frame and the lower surface of the mounting arm simultaneously contact and limit the movement, thus providing support for the lower part of the mounting arm. Then, the outer bolts are used to fix the upper positioning block to the fixed support frame, so that the lower horizontal surface of the upper positioning block simultaneously contacts the upper surface of the mounting arm. With the combined use of the upper positioning block and the bottom support plate, the mounting arm is limited and kept in a stable horizontal state, ensuring the stability and reliability of the communication box in use. Attached Figure Description

[0028] To more clearly illustrate the technical solution of this utility model, the drawings used in the description will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0029] Figure 1 This is a front view structural diagram of a specific embodiment of the present utility model;

[0030] Figure 2 This is a rear view structural diagram of a specific embodiment of the present utility model;

[0031] Figure 3 This is a three-dimensional structural diagram of the vertical installation state of a specific embodiment of the present utility model;

[0032] Figure 4 This is a schematic diagram of the horizontal installation state structure of a specific embodiment of the present invention;

[0033] Figure 5 This is a schematic diagram of the fastening method in a specific embodiment of the present utility model.

[0034] In the attached diagram: 1. Communication box; 2. Baseband processing unit; 3. Data processing unit; 4. Central unit; 5. Active antenna unit; 6. RF amplifier circuit functional module; 7. Fixed support frame; 8. Support groove; 9. Mounting arm; 10. Rotating rod; 11. Positioning frame; 12. Bottom support plate; 13. Positioning hole; 14. Mounting base; 15. Upper positioning block. Detailed Implementation

[0035] To make the objectives, features, and advantages of this utility model more apparent and understandable, the technical solutions of this utility model will be clearly and completely described below with reference to the accompanying drawings of the specific embodiments. Obviously, the embodiments described below are only some embodiments of this utility model, and not all embodiments. Based on the embodiments of this patent, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this patent.

[0036] Example 1:

[0037] like Figures 1-5 As shown, this utility model provides a 5G base station installation device for mining; it includes a communication box 1, a fixed support frame 7 is installed on the rear surface of the communication box 1, a support groove 8 is opened inside the fixed support frame 7, an installation arm 9 is rotatably arranged in the support groove 8, an installation base 14 is inserted into the installation arm 9, the installation base 14 is used for positioning support of the installation arm 9, and a rotating rod 10 is rotatably installed on both sides of the horizontal end of the installation arm 9, and the rotating rod 10 is rotatably installed on the inner wall of the fixed support frame 7.

[0038] In this embodiment, the communication box 1 is equipped with a baseband processing unit 2, a data processing unit 3, a central unit 4, and an active antenna unit 5. With the simultaneous use of the baseband processing unit 2, data processing unit 3, central unit 4, and active antenna unit 5, the device has normal information transmission function. Under the amplification function of the radio frequency amplifier circuit module 6, terminals within a certain range can receive signals to realize communication function, ensuring stable and normal operation of the device. In use, the mounting base 14 is fixed first, and then the mounting arm 9 is installed and fixed to the mounting base 14. The mounting arm 9 is fixed inside the fixed support frame 7. Based on the support of the mounting arm 9 and the fixed support frame 7 itself, the communication box 1 is firmly and stably secured, improving its reliability and safety during use. With the rotation support of the rotating rods 10 on both sides, the mounting arm 9 can be used at different angles, allowing the device to be adapted to the installation environment, thereby improving the various effects of device installation and use.

[0039] Please continue to refer to Figures 1-5 As shown, the fixed support frame 7 has an overall equilateral triangle structure, with an equilateral triangle hole running through the middle of the fixed support frame 7. The support groove 8 has an overall equilateral triangle structure, and the mounting arm 9 has an overall equilateral triangle structure. The mounting arm 9 has a through-type equilateral triangle structure in the middle, and the mounting arm 9 is completely submerged inside the support groove 8. By setting the fixed support frame 7, support groove 8, and mounting arm 9 as equilateral triangles, the device has stability based on the triangle itself, which can provide a stable support effect for the device from a structural point of view. By moving the mounting arm 9 to different angles and using it in conjunction with the fixed support frame 7, various structures composed of triangles can be formed, further improving the safety and reliability of the device in different installation states.

[0040] Example 2:

[0041] like Figures 1-5 As shown, the mounting arm 9 is vertically inserted into the mounting base 14. Several positioning holes 13 are provided through the mounting arm 9. The positioning holes 13 are located inside the mounting base 14. The mounting base 14 and the positioning holes 13 are fixed by external bolts.

[0042] A positioning frame 11 is installed on the outside of the fixed support frame 7. A positioning hole 13 is provided in the middle of the inner side of the positioning frame 11. The side of the mounting arm 9 is located inside the positioning hole 13. A bottom support plate 12 is installed on the outer side of the positioning frame 11. The bottom support plate 12 is perpendicular to the positioning frame 11.

[0043] When the device is installed vertically, first, the mounting base 14 is installed vertically on the ground. Then, the mounting arm 9 is rotated and vertically inserted into the mounting base 14. The outer bolts are rotated and tightened with the positioning holes 13 to fix the mounting arm 9 inside the mounting base 14. Next, the positioning frame 11 is tightened and fixed on the fixed support frame 7. At the same time, the positioning frame 11 is fixed in contact with the mounting arm 9, and the upper part of the mounting arm 9 is fixed at the junction with the fixed support frame 7, thereby forming a vertical fixation effect for the mounting arm 9 and achieving the effect of vertical installation of the communication box 1.

[0044] like Figures 1-5 As shown, the mounting arm 9 is horizontally inserted into the mounting base 14, the lower surface of the mounting arm 9 and the bottom support plate 12 are in a horizontal state, and the mounting arm 9 and the positioning frame 11 are perpendicular to each other.

[0045] The fixed support frame 7 is provided with a limiter on the lower surface of the upper arm 9, which provides support for the lower part of the mounting arm 9. Then, the upper positioning block 15 is fixed to the fixed support frame 7 using the outer bolts, so that the lower horizontal surface of the upper positioning block 15 contacts the upper surface of the mounting arm 9. With the combined use of the upper positioning block 15 and the bottom support plate 12, the mounting arm 9 is limited and kept in a stable horizontal state, ensuring the stability and reliability of the communication box 1 in use.

[0046] As can be seen from the above embodiments, this utility model enables the device to have normal information transmission function when the baseband processing unit, data processing unit, central unit, and active antenna unit are used simultaneously. With the amplification function of the radio frequency amplifier circuit module, terminals within a certain range can receive signals, realize communication function, and ensure the stable and normal operation of the device.

[0047] When the device is installed vertically, the mounting base is first installed vertically on the ground. Then, the mounting arm is rotated and vertically inserted into the mounting base. The outer bolts are then tightened by rotating them into the positioning holes to fix the mounting arm inside the mounting base. Next, the positioning frame is tightened and fixed to the fixed support frame. At the same time, the positioning frame is fixed in contact with the mounting arm, and the upper part of the mounting arm is fixed at the junction with the fixed support frame, thereby achieving the effect of vertically fixing the mounting arm and achieving the effect of vertically installing the communication box.

[0048] When the device is installed horizontally, the following steps are taken: First, the mounting base is installed horizontally on the wall or side of a mine pit. Then, the mounting arm is inserted into the mounting base and fixed with bolts. Next, the positioning frame is fixed to the fixed support frame, so that the bottom support plate of the positioning frame and the lower surface of the mounting arm simultaneously contact and limit the movement, thus providing support for the lower part of the mounting arm. Then, the outer bolts are used to fix the upper positioning block to the fixed support frame, so that the lower horizontal surface of the upper positioning block simultaneously contacts the upper surface of the mounting arm. With the combined use of the upper positioning block and the bottom support plate, the mounting arm is limited and kept in a stable horizontal state, ensuring the stability and reliability of the communication box in use.

[0049] The above description of the disclosed embodiments enables those skilled in the art to make or use the present invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the present invention. Therefore, the present invention is not to be limited to the embodiments shown herein, but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.

Claims

1. A mine 5G base station installation device, characterized by, The utility model relates to a communication box (1), mounting arm (9) and mounting base (14) are provided, and the utility model relates to a communication box (1) and mounting arm (9) are connected through mounting base (14), and the utility model relates to a communication box (1) and mounting arm (9) are connected through mounting base (14), and the utility model relates to a communication box (1) and mounting arm (9) are connected through mounting base (14), and the utility model relates to a communication box (1) and mounting arm (9) are connected through mounting base (14), and the utility model relates to a communication box (1) and mounting arm (9) are connected through mounting base (14), and the utility model relates to a communication box (1) and mounting arm (9) are connected through mounting base (14), and the utility model relates to a communication box (1) and mounting arm (9) are connected through mounting base (14), and the utility model relates to a communication box (1) and mounting arm (9) are connected through mounting base (14), and the utility model relates to a communication box (1) and mounting arm (9) are connected through mounting base (14), and the utility model relates to a communication box (1) and mounting arm (9) are connected through mounting base (14), and the utility model relates to a communication box (1) and mounting arm (9) are connected through mounting base (14), and the utility model relates to a communication box (1) and mounting arm (9) are connected through mounting base (14), and the utility model relates to a communication box (1) and mounting arm (9) are connected through mounting base (14), and the utility model relates to a communication box (1) and mounting arm (9) are connected through mounting base (14), and the utility model relates to a communication box (1) and mounting arm (9) are connected through mounting base (14), and the utility model relates to a communication box (1) and mounting arm (9) are connected through mounting base (14), and the utility model relates to a communication box (1) and mounting arm (9) are connected through mounting base (14), and the utility model relates to a communication box (1) and mounting arm (9) are connected through mounting base (14), and the utility model relates to a communication box (1) and mounting arm (9) are connected through mounting base (14), and the utility model relates to a communication box (1) and mounting arm (9) are connected through mounting base (14), and the utility model relates to a communication box (1) and mounting arm (9) are connected through mounting base (14), and the utility model relates to a communication box (1) and mounting arm (9) are connected through mounting base (14), and the utility model relates to a communication box (1) and mounting arm (9) are connected through mounting base (14), and the utility model relates to a communication box (1) and mounting arm (9) are connected through mounting base (14), and the utility model relates to a communication box (1) and mounting arm (9) are connected through mounting base (14), and the utility model relates to a communication box (1) and mounting arm (9) are connected through mounting base (14), and the utility model relates to a communication box (1) and mounting arm (9) are connected through mounting base (14), and the utility model relates to a communication box (1) and mounting arm (9) are connected through mounting base (14), and the utility model relates to a communication box (1) and mounting arm (9) are connected through mounting base (14), and the utility model relates to a communication box (1) and mounting arm (9) are connected through mounting base (14), and the utility model relates to a communication box (1) and mounting arm (9) are connected through mounting base (14), and the utility model relates to a communication box (1) and mounting arm (9) are connected through mounting base (14), and the utility model relates to a communication box (1) and mounting arm (9) are connected through mounting base (14), and the utility model relates to a communication box (1) and mounting arm (9) are connected through mounting base (14), and the utility model relates to a communication box (1) and mounting arm (9) are connected through mounting base (14), and the utility model relates to a communication box (1) and mounting arm (9) are connected through mounting base (14), and the utility model relates to a communication box (1) and mounting arm (9) are connected through mounting base (14), and the utility model relates to a communication box (1) and mounting arm (9) are connected through mounting base ​ ​ ​ ​ 2. The mining 5G base station mounting arrangement of claim 1, wherein, ​ 3. The mining 5G base station installation apparatus according to claim 1, characterized in that, ​ 4. The mining 5G base station mounting arrangement of claim 1, wherein, ​ 5. The mining 5G base station mounting arrangement of claim 1, wherein, ​ 6. The mining 5G base station installation apparatus according to claim 1, characterized in that, ​