An antenna frame for electronic information engineering

CN224437927UActive Publication Date: 2026-06-30金乡县大数据中心(金乡县电子政务中心)
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
金乡县大数据中心(金乡县电子政务中心)
Filing Date
2025-10-24
Publication Date
2026-06-30

AI Technical Summary

Technical Problem

The bolted connection between the traditional antenna frame and the antenna body requires tools to tighten or loosen, which is time-consuming and affects the construction progress in mass deployment scenarios.

Method used

The design employs a combination of mounting plate, connecting plate, limiting groove, wedge block and spring to achieve quick assembly and disassembly between the connecting frame and the antenna body, and utilizes the cooperation of wedge block and spring to provide a quick and secure connection method.

Benefits of technology

It enables rapid assembly and disassembly between the connector frame and the antenna body, improving construction efficiency, reducing tool usage time, and accelerating the construction progress of batch deployment.

✦ Generated by Eureka AI based on patent content.

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Abstract

This utility model discloses an antenna frame for electronic information engineering, belonging to the field of antenna frame technology. The utility model includes a support frame, an antenna body, and a connecting assembly. The connecting assembly includes a mounting plate and a connecting plate. The mounting plate is mounted on the support frame, and the connecting plate is mounted on the antenna body. A limiting groove is formed on the mounting plate, and the connecting plate slides into the limiting groove. Sliding grooves are formed on both sides of the limiting groove. A round rod slides onto the mounting plate, and a wedge-shaped block is mounted on one end of the round rod. The wedge-shaped block abuts against the connecting plate, and a spring is mounted on the wedge-shaped block. This utility model, by setting up the connecting assembly, enables quick assembly and disassembly between the connecting frame and the antenna body. This solves the problem that traditional antenna frames and antenna bodies are mostly connected by bolts. Bolted connections require tools such as wrenches to tighten or loosen bolts during installation and disassembly, which is time-consuming and can easily affect the construction progress in mass deployment scenarios.
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Description

Technical Field

[0001] This utility model relates to the field of antenna frame technology, specifically to an antenna frame for electronic information engineering. Background Technology

[0002] Antenna mounts for electronic information engineering are specialized devices used to support and fix antenna bodies in the field of electronic information engineering. Their core function is to stably install the antenna body in a preset position, so as to realize the stable reception and transmission of information signals from the antenna body. They are a key component in ensuring the reliability of equipment operation in electronic information transmission systems.

[0003] Traditional antenna frames are mostly connected to the antenna body by bolts. Bolted connections require tools such as wrenches to tighten or loosen the bolts during installation and disassembly, which is time-consuming. In mass deployment scenarios, this can easily affect the construction progress. Therefore, an electronic information engineering antenna frame is provided to solve the above problems. Utility Model Content

[0004] The purpose of this utility model is to provide an antenna frame for electronic information engineering. By setting up a connecting component, the connecting frame and the antenna body can be quickly assembled and disassembled. This solves the problem that traditional antenna frames and antenna bodies are mostly connected by bolts. Bolted connections require the use of wrenches and other tools to tighten or loosen the bolts during installation and disassembly, which is time-consuming and can easily affect the construction progress in mass deployment scenarios.

[0005] This utility model is achieved through the following technical solution:

[0006] This utility model relates to an antenna frame for electronic information engineering, comprising a support frame, an antenna body, and a connecting assembly. The connecting assembly includes a mounting plate and a connecting plate. The mounting plate is mounted on the support frame, and the connecting plate is mounted on the antenna body. A limiting groove is formed on the mounting plate, and the connecting plate slides into the limiting groove. Sliding grooves are formed on both sides of the limiting groove. A round rod slides into the mounting plate, and a wedge is mounted on one end of the round rod. The wedge abuts against the connecting plate, and a spring is mounted on the wedge. The end of the spring away from the wedge is mounted on the side wall of the sliding groove.

[0007] Furthermore, round holes are provided on both sides of the mounting plate, and the round rod slides into the round holes. The limiting groove, the sliding groove and the round rod are interconnected.

[0008] Furthermore, the wedge block and the groove slide together, with the outer wall of the wedge block abutting against the inner wall of the groove.

[0009] Furthermore, the spring is located outside the round rod, and a pull ring is installed at the other end of the round rod.

[0010] Furthermore, the outer wall of the connecting plate abuts against the inner wall of the limiting groove, and both the connecting plate and the limiting groove have a T-shaped structure.

[0011] This utility model has the following beneficial effects:

[0012] This invention, by setting up a connecting component, utilizes the cooperation between the mounting plate, connecting plate, limiting groove, wedge block and spring to achieve quick assembly and disassembly between the connecting frame and the antenna body. This solves the problem that traditional antenna frames and antenna bodies are mostly connected by bolts. Bolted connections require the use of wrenches and other tools to tighten or loosen bolts during installation and disassembly, which is time-consuming and can easily affect the construction progress in mass deployment scenarios.

[0013] Of course, any product implementing this utility model does not necessarily need to achieve all of the advantages described above at the same time. Attached Figure Description

[0014] Figure 1 This is a schematic diagram of the overall structure of the antenna frame.

[0015] Figure 2 This is a cross-sectional structural diagram of the connecting component.

[0016] Figure 3 This is a schematic diagram of the split structure of the connecting components.

[0017] Figure 4 This is a cross-sectional view of the mounting plate.

[0018] In the diagram: 1. Support frame; 2. Antenna body; 3. Connecting assembly; 301. Mounting plate; 302. Connecting plate; 303. Limiting groove; 304. Sliding groove; 305. Round rod; 306. Wedge block; 307. Spring; 308. Round hole; 309. Pull ring. Detailed Implementation

[0019] 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.

[0020] Please see Figure 1-4 This utility model provides a technical solution: an antenna frame for electronic information engineering, including a support frame 1, an antenna body 2 and a connecting component 3. The antenna body 2 is used to receive and transmit electronic information signals (such as communication signals and data transmission signals), and is a key device for realizing information interaction in electronic information engineering (this is prior art and will not be described in detail here).

[0021] The connecting assembly 3 includes a mounting plate 301 and a connecting plate 302. The mounting plate 301 is welded to the top of the support frame 1, and the connecting plate 302 is welded to the antenna body 2. A limiting groove 303 is formed on the mounting plate 301, and the connecting plate 302 slides in conjunction with the limiting groove 303. Sliding grooves 304 are formed on both sides of the limiting groove 303. A round rod 305 slides in conjunction with the mounting plate 301, and a wedge block 306 is welded to one end of the round rod 305. The wedge block 306 abuts against the connecting plate 302. When the connecting plate 302 is inserted, it presses the inclined surface of the wedge block 306, causing the wedge block 306 to retract. After the connecting plate 302 is inserted, the flat surface of the wedge block 306 tightly abuts against the side of the connecting plate 302, providing lateral clamping force and realizing the quick connection function of fixing upon insertion. A spring 307 is installed on the wedge block 306 by welding. The end of the spring 307 away from the wedge block 306 is installed on the side wall of the slide groove 304 by welding. The spring 307 provides a continuous elastic preload force, pushing the wedge block 306 to keep it in contact with the connecting plate 302.

[0022] Both sides of the mounting plate 301 are provided with round holes 308. The round rod 305 slides in the round holes 308. The round holes 308 provide a sliding channel for the round rod 305, ensuring that the round rod 305 moves only in a straight line along the axial direction, avoiding the round rod 305 from tilting, and ensuring the straightness of the movement trajectory of the wedge block 306. The limiting groove 303, the sliding groove 304 and the round rod 305 are interconnected.

[0023] The wedge block 306 slides into the groove 304, with the outer wall of the wedge block 306 abutting against the inner wall of the groove 304. The groove 304 provides a linear motion track for the wedge block 306, ensuring that the contact position between the wedge block 306 and the connecting plate 302 is accurate and avoiding fixation failure due to the wedge block 306 shifting.

[0024] Spring 307 is located outside of round rod 305. A pull ring 309 is bolted to the other end of round rod 305, which allows workers to manually pull round rod 305.

[0025] The outer wall of the connecting plate 302 abuts against the inner wall of the limiting groove 303. This abutting fit guides the connecting plate 302 to be inserted or withdrawn along its length, preventing the connecting plate 302 from shifting horizontally. Both the connecting plate 302 and the limiting groove 303 have a T-shaped structure. The T-shaped limiting groove 303 can restrict the movement of the connecting plate 302 in the vertical direction, preventing the antenna body 2 from accidentally falling off due to vibration or external force, thus improving connection safety. At the same time, it transmits the weight and force of the antenna body 2 to the mounting plate 301, ensuring stable force transmission.

[0026] During operation, the mounting plate 301 is first fixed to the preset position of the support frame 1 by welding, ensuring that the opening direction of the limiting groove 303 faces the preset installation direction. The connecting plate 302 is then connected to one end of the antenna body 2 by welding. Holding the antenna body 2, the T-shaped connecting plate 302 is aligned with the T-shaped limiting groove 303 of the mounting plate 301 and slowly inserted along the length of the limiting groove 303. At this time, the side of the connecting plate 302 contacts the inclined surface of the wedge block 306. As the insertion depth increases, the connecting plate 302 generates a pushing force on the inclined surface of the wedge block 306, causing the wedge block 306 to slide away from the connecting plate 302 along the sliding groove 304. At the same time, the round rod 305 slides along the round hole 308, compressing the spring 307. When the connecting plate 302 is fully inserted into the limiting groove 303, the squeezing effect between the side of the connecting plate 302 and the inclined surface of the wedge block 306 disappears, the spring 307 releases its elasticity, and the pushing force is released. The moving wedge block 306 slides in the opposite direction along the slide groove 304 until the flat part of the wedge block 306 is in close contact with the side of the connecting plate 302. At this time, the connecting plate 302 is clamped by the wedge block 306, and the bottom plate of the connecting plate 302 is in contact with the top of the support frame 1, thus completing the fixed connection between the antenna body 2 and the support frame 1. When it is necessary to separate the antenna body 2 from the support frame 1, the pull ring 309 is manually pulled outward. The pull ring 309 drives the round rod 305 to move away from the connecting plate 302 along the round hole 308. The round rod 305 drives the wedge block 306 to slide along the slide groove 304, compressing the spring 307, so that the flat part of the wedge block 306 is completely separated from the side of the connecting plate 302, releasing the clamping force on the connecting plate 302. Finally, the connecting plate 302 is slowly pulled out in the opposite direction of the limiting groove 303 until the connecting plate 302 is completely separated from the limiting groove 303, thus completing the disassembly of the antenna body 2.

[0027] The preferred embodiments of this utility model disclosed above are merely illustrative of the present utility model. These preferred embodiments do not exhaustively describe all details, nor do they limit the utility model to the specific implementations described. Clearly, many modifications and variations can be made based on the content of this specification. This specification selects and specifically describes these embodiments to better explain the principles and practical applications of this utility model, thereby enabling those skilled in the art to better understand and utilize it. This utility model is limited only by the claims and their full scope and equivalents.

Claims

1. An electronic information engineering antenna stand comprising a support frame (1) and an antenna body (2), characterized in that, It also includes a connecting component (3), which includes a mounting plate (301) and a connecting plate (302). The mounting plate (301) is mounted on the support frame (1), and the connecting plate (302) is mounted on the antenna body (2). A limiting groove (303) is provided on the mounting plate (301), and the connecting plate (302) is slidably engaged with the limiting groove (303). Sliding grooves (304) are provided on both sides of the limiting groove (303). A round rod (305) is slidably engaged on the mounting plate (301). A wedge block (306) is installed at one end of the round rod (305). The wedge block (306) abuts against the connecting plate (302). A spring (307) is installed on the wedge block (306), and the end of the spring (307) away from the wedge block (306) is installed on the side wall of the sliding groove (304).

2. An electronic information engineering antenna rack according to claim 1, characterized in that, The mounting plate (301) has round holes (308) on both sides of its side walls. The round rod (305) slides in the round holes (308). The limiting groove (303), the sliding groove (304) and the round rod (305) are interconnected.

3. An electronic information engineering antenna rack according to claim 1, characterized in that, The wedge block (306) slides in conjunction with the groove (304), and the outer wall of the wedge block (306) abuts against the inner wall of the groove (304).

4. An electronic information engineering antenna rack according to claim 1, characterized in that, The spring (307) is located outside the round rod (305), and a pull ring (309) is installed at the other end of the round rod (305).

5. An electronic information engineering antenna rack according to claim 1, characterized in that, The outer wall of the connecting plate (302) abuts against the inner wall of the limiting groove (303), and both the connecting plate (302) and the limiting groove (303) are T-shaped.