Microwave antenna hanger

By designing an anti-slip mounting mechanism, the antenna mounting bracket's anti-slip performance is enhanced through U-shaped clamps and toothed structures, solving the problem of microwave antennas slipping in strong winds and achieving higher wind speed bearing capacity.

CN223942001UActive Publication Date: 2026-02-24CHENGDU SHUOFANG HUIZHI TECH CO LTD
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Patent Information

Application Number
CN202520637475.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-07
Publication Date
2026-02-24
Estimated Expiration
2035-04-07

AI Technical Summary

Technical Problem

Existing microwave antenna mounts are prone to slippage of the clamps when subjected to high wind speed loads, causing the antenna to slip and be damaged.

Method used

The anti-slip bracket mechanism is adopted, including a first U-shaped clamp and a second U-shaped clamp connected to form a ring structure by bolt assembly. The locking teeth are engaged in the ring groove, and the rubber anti-slip pad increases the friction and restricts the antenna from moving along the axial direction of the bracket.

Benefits of technology

The antenna mount has been enhanced to prevent slippage and withstand greater wind speed loads, thus preventing the antenna from slipping and getting damaged.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223942001U_ABST
Patent Text Reader

Abstract

The utility model discloses a microwave antenna hanger, which relates to the technical field of communication, and comprises an antenna holding pole and an anti-skid hanger mechanism arranged on the antenna holding pole, the anti-skid hanger mechanism comprises a first U-shaped hoop and a second U-shaped hoop, the first U-shaped hoop and the second U-shaped hoop are connected to form an annular structure through a bolt assembly, and the first U-shaped hoop and the second U-shaped hoop are connected through a bolt assembly. The annular structure is arranged on the antenna holding pole in a sleeving mode, a plurality of annular clamping grooves are formed in the side wall of the antenna holding pole and evenly distributed in the axial direction of the antenna holding pole, a plurality of clamping teeth are fixed to the inner wall of the first U-shaped hoop and the inner wall of the second U-shaped hoop, the clamping teeth are arranged in the annular clamping grooves in a matched mode, and the first U-shaped hoop and the second U-shaped hoop are arranged in the annular clamping grooves in a matched mode. After the first U-shaped hoop and the second U-shaped hoop are installed around the antenna holding pole in a surrounding mode, the clamping teeth are matched in the annular clamping grooves, so that the freedom degree of axial movement of an antenna along the antenna holding pole is limited, the anti-skid capacity of the antenna hanging frame is enhanced, and the antenna hanging frame can bear larger wind speed loads.
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Description

Technical Field

[0001] This utility model relates to the field of communication technology, specifically to a microwave antenna mount. Background Technology

[0002] Today, with the development and widespread application of mobile communication technology, microwave antennas play an increasingly important role in this field due to their unique advantages. Antenna mounts, as a crucial component of microwave antennas, play a vital role in mounting the antenna on the mast atop a high tower, ensuring the antenna's accuracy and survivability. However, due to structural limitations, existing microwave antenna mounts are prone to slippage under high wind loads, causing the entire antenna to slide downwards and collide with the antenna below, resulting in damage. Utility Model Content

[0003] The purpose of this utility model is to overcome the shortcomings of the prior art and provide a microwave antenna bracket to solve the shortcomings of the prior art.

[0004] The purpose of this utility model is achieved through the following technical solution: a microwave antenna mount, comprising an antenna mast and an anti-slip mounting mechanism mounted on the antenna mast. The anti-slip mounting mechanism includes a first U-shaped clamp and a second U-shaped clamp. The first U-shaped clamp and the second U-shaped clamp are connected to form a ring structure by a bolt assembly. The ring structure is fitted onto the antenna mast. The side wall of the antenna mast is provided with a plurality of annular slots. The plurality of annular slots are evenly distributed along the axial direction of the antenna mast. The inner walls of the first U-shaped clamp and the second U-shaped clamp are each fixed with a plurality of locking teeth, which are adapted to fit within the annular slots.

[0005] Furthermore, the bolt assembly includes a screw and a nut. The first U-shaped clamp has a first through hole at both ends in the horizontal direction, and the second U-shaped clamp has a second through hole at both ends in the horizontal direction. The tail of the screw passes through the first through hole and the second through hole in sequence and is threaded to the nut.

[0006] Furthermore, two rubber anti-slip pads are fixed to the inner walls of both the first and second U-shaped clamps. The two rubber anti-slip pads are spaced apart along the axial direction of the antenna mast, and the locking teeth are arranged between the two rubber anti-slip pads.

[0007] Furthermore, both the outer walls of the first U-shaped clamp and the outer walls of the second U-shaped clamp are connected to L-shaped antenna mounting plates, and the antenna is mounted on the L-shaped antenna mounting plates.

[0008] Furthermore, the L-shaped antenna mounting plate has multiple threaded holes.

[0009] Furthermore, the L-shaped antenna mounting plate has a strip-shaped through hole, and both the first U-shaped clamp and the second U-shaped clamp have mounting thread holes. The tail of the bolt passes through the strip-shaped through hole and is threaded into the mounting thread hole.

[0010] The beneficial effects of this utility model are:

[0011] After the first and second U-shaped clamps are installed around the antenna mast, the locking teeth engage in the annular groove, thereby restricting the antenna's freedom of movement along the antenna mast axis, enhancing the antenna mount's anti-slip capability, and enabling it to withstand greater wind speed loads. Attached Figure Description

[0012] Figure 1 This is a partial structural schematic diagram of a microwave antenna mount according to the present invention;

[0013] Figure 2 This is a top view of a microwave antenna mount according to the present invention;

[0014] In the diagram, 1-antenna mast, 2-first U-shaped clamp, 3-second U-shaped clamp, 4-annular groove, 5-clamping tooth, 6-screw, 7-nut, 8-rubber anti-slip pad, 9-L-shaped antenna mounting plate, 10-strip through hole, 11-bolt. Detailed Implementation

[0015] Example 1

[0016] like Figure 1 and Figure 2 As shown, a microwave antenna mount includes an antenna mast 1 and an anti-slip mounting mechanism installed on the antenna mast 1. The anti-slip mounting mechanism includes a first U-shaped clamp 2 and a second U-shaped clamp 3. The first U-shaped clamp 2 and the second U-shaped clamp 3 are connected to form a ring structure by a bolt assembly. The ring structure is fitted onto the antenna mast 1. The side wall of the antenna mast 1 has several annular slots 4, which are evenly distributed along the axial direction of the antenna mast 1. The inner walls of the first U-shaped clamp 2 and the second U-shaped clamp 3 are each fixed with several locking teeth 5, which fit into the annular slots 4. After the first U-shaped clamp 2 and the second U-shaped clamp 3 are installed around the antenna mast 1, the locking teeth 5 engage in the annular slots 4, thereby restricting the freedom of the antenna to move along the axial direction of the antenna mast 1, enhancing the anti-slip capability of the antenna mount, and enabling it to withstand greater wind speed loads.

[0017] Example 2

[0018] Based on Embodiment 1, both the outer walls of the first U-shaped clamp 2 and the outer walls of the second U-shaped clamp 3 are connected to L-shaped antenna mounting plates 9. The antenna is mounted on the L-shaped antenna mounting plate 9, which has multiple threaded holes that correspond to the mounting holes on the antenna housing. The antenna is then mounted on the L-shaped antenna mounting plate 9 using screws, thus completing the antenna installation.

[0019] Example 3

[0020] Based on Example 2, such as Figure 1 As shown, the L-shaped antenna mounting plate 9 has a strip-shaped through hole 10. The first U-shaped clamp 2 and the second U-shaped clamp 3 both have mounting threaded holes. The tail of the bolt 11 passes through the strip-shaped through hole 10 and is threaded into the mounting threaded hole. The installation height of the L-shaped antenna mounting plate 9 can be adjusted within a certain range, which facilitates the adjustment of the antenna installation height. Specifically, the bolt 11 is loosened so that it can slide within the strip-shaped through hole 10. After the installation height of the L-shaped antenna mounting plate 9 is determined, the bolt 11 is tightened. This allows for fine adjustment of the antenna installation height and provides higher installation accuracy.

[0021] Example 4

[0022] Based on Embodiment 3, the bolt assembly includes a screw 6 and a nut 7. The first U-shaped clamp 2 has a first through hole at both ends in the horizontal direction, and the second U-shaped clamp 3 has a second through hole at both ends in the horizontal direction. The tail of the screw 6 passes through the first through hole and the second through hole in sequence and is threaded to the nut 7. The first U-shaped clamp 2 and the second U-shaped clamp 3 are connected together by the cooperation of the screw 6 and the nut 7 to form a ring structure that is fitted on the antenna mast 1.

[0023] Example 5

[0024] Based on Example 4, such as Figure 2 As shown, two rubber anti-slip pads 8 are fixed to the inner walls of the first U-shaped clamp 2 and the second U-shaped clamp 3. The two rubber anti-slip pads 8 are spaced apart along the axial direction of the antenna mast 1. The locking teeth 5 are arranged between the two rubber anti-slip pads 8. After the first U-shaped clamp 2 and the second U-shaped clamp 3 are connected together, the rubber anti-slip pads 8 are in a compressed state, so that there is a large friction between the first U-shaped clamp 2 and the antenna mast 1, and between the second U-shaped clamp 3 and the antenna mast 1, which further improves the anti-slip ability.

Claims

1. A microwave antenna mount, characterized in that, The device includes an antenna mast (1) and an anti-slip bracket mechanism mounted on the antenna mast (1). The anti-slip bracket mechanism includes a first U-shaped clamp (2) and a second U-shaped clamp (3). The first U-shaped clamp (2) and the second U-shaped clamp (3) are connected to form a ring structure by a bolt assembly. The ring structure is fitted onto the antenna mast (1). The side wall of the antenna mast (1) is provided with several annular slots (4). The several annular slots (4) are evenly distributed along the axial direction of the antenna mast (1). The inner wall of the first U-shaped clamp (2) and the inner wall of the second U-shaped clamp (3) are both fixed with several locking teeth (5). The locking teeth (5) are adapted to the annular slots (4).

2. A microwave antenna mount according to claim 1, characterized in that, The bolt assembly includes a screw (6) and a nut (7). The first U-shaped clamp (2) has a first through hole at both ends in the horizontal direction, and the second U-shaped clamp (3) has a second through hole at both ends in the horizontal direction. The tail of the screw (6) passes through the first through hole and the second through hole in sequence and is threaded to the nut (7).

3. A microwave antenna mount according to claim 1, characterized in that, Two rubber anti-slip pads (8) are fixed to the inner wall of the first U-shaped clamp (2) and the inner wall of the second U-shaped clamp (3). The two rubber anti-slip pads (8) are spaced apart along the axial direction of the antenna mast (1), and the locking teeth (5) are arranged between the two rubber anti-slip pads (8).

4. A microwave antenna mount according to claim 1, characterized in that, The outer walls of the first U-shaped clamp (2) and the second U-shaped clamp (3) are both connected to L-shaped antenna mounting plates (9), and the antenna is mounted on the L-shaped antenna mounting plates (9).

5. A microwave antenna mount according to claim 4, characterized in that, The L-shaped antenna mounting plate (9) has multiple threaded holes.

6. A microwave antenna mount according to claim 4, characterized in that, The L-shaped antenna mounting plate (9) has a strip-shaped through hole (10), and the first U-shaped clamp (2) and the second U-shaped clamp (3) both have mounting thread holes. The tail of the bolt (11) passes through the strip-shaped through hole (10) and is threaded into the mounting thread hole.