Transmission line arranging device for base station network

By introducing adjustment bundles and cable management components into the transmission line cabling device for base station networks, the problem of untimely line adjustment is solved, enabling orderly fixing and protection of the lines, improving installation and maintenance efficiency, and reducing faults.

CN223730112UActive Publication Date: 2025-12-26ZHUZHOU SMART NETWORK TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202520056990.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-10
Publication Date
2025-12-26
Estimated Expiration
2035-01-10

AI Technical Summary

Technical Problem

Existing line cabling devices cannot adjust in a timely manner according to the length and thickness of the transmission line, resulting in messy lines that are difficult to fix and protect, and are prone to loosening or damage, affecting maintenance and management efficiency.

Method used

A base station network transmission line cabling device is designed, which includes an adjustment cable bundle assembly and a cable storage assembly. The device utilizes components such as electromagnetic sliders, dampers, and rotary motors to achieve dynamic adjustment and fixation of the lines, preventing loosening or damage, and improving installation and maintenance efficiency through orderly cabling.

Benefits of technology

It enables the orderly adjustment and fixation of lines, preventing loosening or damage, improving maintenance and management efficiency, and reducing network failures.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of line arrangement, in particular to a transmission line arrangement device for a base station network, which comprises an assembly fixing plate, an anti-skid wear-resistant pad is fixedly connected to the bottom end part of the assembly fixing plate, and an adjusting groove frame is positioned and welded to the top end part of the assembly fixing plate. A notch in the adjusting groove frame is in sliding connection with an adjusting bunching assembly used for bunching lines, and a storage wiring assembly used for wiring the lines is positioned and welded to the top end of the adjusting bunching assembly; according to the utility model, the wire bunching structure is utilized to timely adjust the lines according to the length and thickness of the lines, fix and protect the lines, prevent the lines from loosening or damaging, ensure the orderliness of the lines, facilitate maintenance and management, utilize the wire arrangement assembly to enable the redundant lines to be automatically and orderly wound together and provide additional physical protection, so that the production efficiency is improved. The circuit is prevented from being mechanically damaged, the installation and maintenance efficiency is improved through ordered wiring, and the purposes of protecting the circuit from being damaged and reducing network faults are achieved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of line arrangement, especially to transmission line arrangement device for base station network. BACKGROUND

[0002] The transmission line arrangement device for base station network is a device for transmission line wiring inside and between base stations. This device is usually used for orderly arrangement of optical fibers, coaxial cables or other transmission media to ensure the stability and efficiency of signal transmission.

[0003] However, the existing line arrangement device has a fixed arrangement structure during use, and cannot be adjusted in time according to the length and thickness of the transmission line, cannot ensure the order of the line, causes the line to be disordered, is inconvenient to maintain and manage, cannot fix and protect the line, and leads to the line to be slack or damaged.

[0004] Therefore, in view of the above problems that the line arrangement device cannot be adjusted in time according to the length and thickness of the transmission line, the transmission line arrangement device for base station network can be designed to fix and protect the line by adjusting the arrangement structure, so as to avoid the line to be slack or damaged. SUMMARY

[0005] In order to overcome the problem that the line arrangement device cannot be adjusted in time according to the length and thickness of the transmission line, causes the line to be disordered, is inconvenient to maintain and manage, cannot fix and protect the line, and leads to the line to be slack or damaged.

[0006] The technical scheme of the utility model is as follows: the transmission line arrangement device for base station network comprises an assembly fixing plate, an anti-skid wear-resistant pad fixedly connected to the bottom end of the assembly fixing plate, a adjusting groove frame positioned and welded to the top end of the assembly fixing plate, an adjusting bundling assembly for bundling the line, slidably connected to the inner groove of the adjusting groove frame, and a storage arrangement assembly for arranging the line, positioned and welded to the top end of the adjusting bundling assembly; the adjusting bundling assembly comprises an electromagnetic slide, a first positioning plate, a damper, an adjusting spring and a second positioning plate; the electromagnetic slide is slidably connected to the inner groove of the adjusting groove frame; the first positioning plate is fixedly connected to the top end of the electromagnetic slide; the damper is fixedly connected to the top end of the first positioning plate on both sides; the adjusting spring is arranged outside the damper; the second positioning plate is fixedly connected to the top end of the adjusting spring; the storage arrangement assembly comprises a first insulating plate, a rotary motor and a rotating rod; the first insulating plate is positioned and welded to the inner side of the U-shaped support frame; the rotary motor is arranged outside the first insulating plate; the rotary motor is provided with a rotating shaft at the output end; and the rotating rod is clamped and installed on one side of the rotating shaft.

[0007] The bundle structure is preferably used to adjust the length and thickness of the wire in time, fix and protect the wire, prevent the wire from relaxing or being damaged, ensure the order of the wire, facilitate maintenance and management, automatically wind the excess wire in order by using the wire arrangement assembly, provide additional physical protection to prevent the wire from being mechanically damaged, improve the installation and maintenance efficiency by orderly wiring, and achieve the purposes of protecting the wire from being damaged and reducing network failure.

[0008] As preferred, the first positioning plate top end is fixedly connected with a first insulation damage prevention pad; one side of the electromagnetic slide is provided with a controller; the second positioning plate bottom end is fixedly connected with a second insulation damage prevention pad; and the second positioning plate top end is positioned and welded with a U-shaped support frame.

[0009] As preferred, the first positioning plate and the second positioning plate are of the same structure, and the first insulation damage prevention pad and the second insulation damage prevention pad are of the same structure.

[0010] As preferred, one side of the rotating rod is fixedly connected with a first protection limiting plate in the periphery; and the other side of the rotating rod is fixedly connected with a second protection limiting plate in the periphery.

[0011] As preferred, one side of the rotating rod is fixedly connected with a first protection limiting plate in the periphery; and the other side of the rotating rod is fixedly connected with a second protection limiting plate in the periphery.

[0012] As preferred, the first insulation plate and the second insulation plate are of the same structure.

[0013] As preferred, the first protection limiting plate and the second protection limiting plate are of the same structure.

[0014] The beneficial effects of the utility model are as follows:

[0015] 1、 the utility model discloses a bundle structure, according to the length and thickness of the wire, adjusts the wire in time, fixes and protects the wire, prevents the wire from relaxing or being damaged, ensures the order of the wire, facilitates maintenance and management, automatically winds the excess wire in order by using the wire arrangement assembly, provides additional physical protection to prevent the wire from being mechanically damaged, improves the installation and maintenance efficiency by orderly wiring, and achieves the purposes of protecting the wire from being damaged and reducing network failure. DRAWINGS

[0016] Figure 1 The overall structure schematic diagram of the utility model is shown;

[0017] Figure 2 The electromagnetic slide structure schematic diagram of the utility model is shown;

[0018] Figure 3 The damper structure schematic diagram of the utility model is shown;

[0019] Figure 4The utility model discloses a storage wire arrangement assembly structure schematic drawing is shown.

[0020] Mark explanation: 1, the assembling fixed plate, 2, the antiskid wear pad, 3, the adjusting groove frame, 401, the electromagnetic slider, 402, the first positioning plate, 403, the first insulation damage prevention pad, 404, the controller, 405, the damper, 406, the adjusting spring, 407, the second positioning plate, 408, the second insulation damage prevention pad, 409, the U-shaped support frame, 501, the first insulation plate, 502, the rotary motor, 503, the rotating shaft, 504, the first protection limiting plate, 505, the rotating rod, 506, the second insulation plate, 507, the second protection limiting plate. DETAILED DESCRIPTION

[0021] The utility model is further explained below in connection with the drawings and examples.

[0022] Please refer to Figures 1-4 The utility model provides a kind of transmission line wire arrangement device for base station network, including assembling fixed plate 1, antiskid wear pad 2 is fixedly connected at the bottom end part of assembling fixed plate 1, adjusting groove frame 3 is positioned and welded at the top end part of assembling fixed plate 1, adjusting groove frame 3 internal slot slidingly connected with the adjusting wire arrangement assembly for wire bundling, adjusting wire arrangement assembly top end part is positioned and welded with the storage wire arrangement assembly for wire arrangement to line;Adjusting wire arrangement assembly includes electromagnetic slider 401, first positioning plate 402, damper 405, adjusting spring 406 and second positioning plate 407;Electromagnetic slider 401 is slidingly connected in the internal slot of adjusting groove frame 3;The top end part of first positioning plate 402 is fixedly connected with electromagnetic slider 401;The top end part of first positioning plate 402 is fixedly connected with damper 405 on both sides;Damper 405 outside is provided with adjusting spring 406;Second positioning plate 407 is fixedly connected to the top end part of adjusting spring 406, and storage wire arrangement assembly includes first insulation plate 501, rotary motor 502 and rotating rod 505;First insulation plate 501 is positioned and welded on the inner side of U-shaped support frame 409;Rotary motor 502 is provided on the outer side of first insulation plate 501;Rotary motor 502 output is provided with rotating shaft 503;Rotating shaft 503 side is provided with rotating rod 505, utilizes wire bundling structure, according to the length and thickness of line, timely adjustment is carried out to it, and line is fixed and protected, prevent line slack or damage, ensure that line is in order, it is convenient to maintain and manage, utilize wire arrangement assembly, and the surplus line is automatically in order and wound together, and additional physical protection is provided, prevent line from being mechanically damaged, and through orderly wiring, improve the efficiency of installation and maintenance, reach the purpose that line is protected from damage, reduce network failure.

[0023] Please refer to Figures 2-3In the embodiment, the first positioning plate 402 is fixedly connected with a first insulating damage prevention pad 403 at the top end; the electromagnetic slide 401 is provided with a controller 404 on one side; the second positioning plate 407 is fixedly connected with a second insulating damage prevention pad 408 at the bottom end; the second positioning plate 407 is fixedly welded with a U-shaped support frame 409 at the top end; the first positioning plate 402 and the second positioning plate 407 are of the same structure; the first insulating damage prevention pad 403 and the second insulating damage prevention pad 408 are of the same structure; the assembled fixing plate 1 is fixedly installed on the upper end of the equipment by screws; the anti-skid wear-resistant pad 2 at the lower end of the assembled fixing plate 1 has the anti-skid wear-resistant effect, thereby improving the stability of the device; according to the need, the controller 404 controls the electromagnetic slide 401 to slide in the adjusting groove frame 3, thereby driving the first positioning plate 402 to move; according to the thickness of the line, the damper 405 drives the adjusting spring 406 to stretch and contract, thereby adjusting the space size between the first positioning plate 402 and the second positioning plate 407; and the first insulating damage prevention pad 403 and the second insulating damage prevention pad 408 have the damage prevention function for the line.

[0024] Please refer to Figure 4 In the embodiment, the first positioning plate 402 is fixedly connected with a first insulating damage prevention pad 403 at the top end; the electromagnetic slide 401 is provided with a controller 404 on one side; the second positioning plate 407 is fixedly connected with a second insulating damage prevention pad 408 at the bottom end; the second positioning plate 407 is fixedly welded with a U-shaped support frame 409 at the top end; the first positioning plate 402 and the second positioning plate 407 are of the same structure; the first insulating damage prevention pad 403 and the second insulating damage prevention pad 408 are of the same structure; the assembled fixing plate 1 is fixedly installed on the upper end of the equipment by screws; the anti-skid wear-resistant pad 2 at the lower end of the assembled fixing plate 1 has the anti-skid wear-resistant effect, thereby improving the stability of the device; according to the need, the controller 404 controls the electromagnetic slide 401 to slide in the adjusting groove frame 3, thereby driving the first positioning plate 402 to move; according to the thickness of the line, the damper 405 drives the adjusting spring 406 to stretch and contract, thereby adjusting the space size between the first positioning plate 402 and the second positioning plate 407; and the first insulating damage prevention pad 403 and the second insulating damage prevention pad 408 have the damage prevention function for the line.

[0025] In the process of work, the assembled fixed plate 1 is fixed and installed on the upper end of the equipment with screws, and the anti-skid and wear-resistant pad 2 at the lower end of the assembled fixed plate 1 has the effect of anti-skid and wear resistance, improves the stability of the device, and according to the need, the controller 404 controls the electromagnetic sliding block 401 to slide in the adjusting groove frame 3, thereby driving the first positioning plate 402 to move, according to the thickness of the line, the damper 405 drives the adjusting spring 406 to stretch and contract, thereby adjusting the space size between the first positioning plate 402 and the second positioning plate 407, and the first insulation damage prevention pad 403 and the second insulation damage prevention pad 408 have the function of preventing damage to the line, according to the length of the line, start the rotating motor 502 on one side of the first insulation plate 501, make the rotating shaft 503 drive the rotating rod 505 to rotate at a constant speed, form a storage space between the first protection limiting plate 504 and the second protection limiting plate 507, so that the line is orderly wound together, the first insulation plate 501 and the second insulation plate 506 have the insulation protection function, avoid the influence of current on each other, at the same time provide additional physical protection to prevent the line from being mechanically damaged.

[0026] Through the above steps, by using the wire structure, according to the length and thickness of the line, the line is adjusted in time, fixed and protected, to prevent the line from relaxing or being damaged, ensure the order of the line, facilitate maintenance and management, use the wire arrangement assembly to automatically and orderly wind the excess line together, provide additional physical protection to prevent the line from being mechanically damaged, and through the orderly wiring, improve the installation and maintenance efficiency, achieve the purpose of protecting the line from being damaged and reducing network failure.

Claims

1. A transmission line winding device for a base station network, comprising an assembly fixing plate (1); characterized in that: The bottom end of the assembly fixing plate (1) is fixedly connected with an anti-skid wear-resistant pad (2), and the top end of the assembly fixing plate (1) is positionally welded with an adjusting groove frame (3), the adjusting groove frame (3) is slidably connected with an adjusting wire bundling assembly for bundling the wires, and the top end of the adjusting wire bundling assembly is positionally welded with a storage wire arranging assembly for arranging the wires; the adjusting wire bundling assembly comprises an electromagnetic slide (401), a first positioning plate (402), a damper (405), an adjusting spring (406) and a second positioning plate (407); the adjusting groove frame (3) is slidably connected with the electromagnetic slide (401); the top end of the electromagnetic slide (401) is fixedly connected with the first positioning plate (402); the top end of the first positioning plate (402) is fixedly connected with the damper (405) on both sides; the damper (405) is provided with the adjusting spring (406) on the outside; the top end of the adjusting spring (406) is fixedly connected with the second positioning plate (407), and the storage wire arranging assembly comprises a first insulating plate (501), a rotary motor (502) and a rotating rod (505); the first insulating plate (501) is positionally welded on the inside of the U-shaped support frame (409); the rotary motor (502) is provided on the outside of the first insulating plate (501); the rotary motor (502) is provided with a rotating shaft (503) at the output end; the rotating rod (505) is clamped and installed on one side of the rotating shaft (503).

2. The transmission line arrangement for base station networks according to claim 1, characterized in that The top end of the first positioning plate (402) is fixedly connected with a first insulating damage-preventing pad (403); one side of the electromagnetic slide (401) is provided with a controller (404); the bottom end of the second positioning plate (407) is fixedly connected with a second insulating damage-preventing pad (408); and the top end of the second positioning plate (407) is positionally welded with a U-shaped support frame (409).

3. The transmission line arrangement for base station networks according to claim 2, characterized in that The first positioning plate (402) and the second positioning plate (407) are of the same structure, and the first insulating damage-preventing pad (403) and the second insulating damage-preventing pad (408) are of the same structure.

4. The transmission line arrangement for base station networks according to claim 3, characterized in that The rotating rod (505) is fixedly connected with a first protective limiting plate (504) on one side of the periphery; and the rotating rod (505) is fixedly connected with a second protective limiting plate (507) on the other side of the periphery.

5. The transmission line arrangement for a base station network according to claim 4, characterized in that The rotating rod (505) is positionally and rotatably connected with a second insulating plate (506) on one side.

6. The transmission line arrangement for base station networks according to claim 1, characterized in that: The first insulating plate (501) and the second insulating plate (506) are of the same structure.

7. The transmission line arrangement for base station networks according to claim 6, characterized in that The first protective limiting plate (504) and the second protective limiting plate (507) are of the same structure.