Antenna aid

CN224725306UActive Publication Date: 2026-09-08SHENZHEN WAVIEWL RF TECH CO LTD +1
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Patent Information

Application Number
CN202521962080.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-11
Publication Date
2026-09-08
Estimated Expiration
2035-09-11

AI Technical Summary

Technical Problem

这些存在立体结构的天线通常需要通过将设置多个部分,并对多个部分进行焊接而天线定型,现有技术中,具有立体结构的天线通常需要人工手动固定,再逐个进行焊接,立体结构天线的焊接效率并不高

Benefits of technology

[0014] The technical solution of this utility model employs a base, a pressure plate, a first buckle, and a second buckle in an antenna welding bracket. The base has a first surface and a second surface, with at least one mounting groove on the first surface for mounting antennas. The pressure plate covers the first surface of the base and is detachably connected to the base, covering the mounting groove. The pressure plate has a first welding port corresponding to each mounting groove, exposing a first welding point. The first buckle is located on the base and is used to limit and fix the pressure plate to the base. The second buckle is located on the base and is used to limit the antenna in the mounting groove. This allows the bracket to limit multiple antennas with three-dimensional structures to the mounting position through the second buckle and to limit the pressure plate to the base through the first buckle, so that the pressure plate can simultaneously press multiple antennas to the mounting position on the base, thereby limiting and fixing multiple antennas with three-dimensional structures at one time. Subsequently, multiple antennas can be welded simultaneously, thus improving the welding efficiency of three-dimensional structure antennas.

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Abstract

The utility model discloses an antenna soldering support relates to antenna welding technical field, wherein, antenna soldering support is used for limiting to antenna, and the antenna has first soldering point, and antenna soldering support includes base, pressing plate, first pressure buckle and second pressure buckle, and the first surface of base is equipped with at least one installation groove, and the installation groove is used for installing antenna, and pressing plate is detachably connected with base, and pressing plate can cover installation groove, and the first soldering port is opened to the pressing plate, and the first soldering port is used to expose first soldering point, and first pressure buckle is used for limiting and fixing pressing plate with base, and second pressure buckle is used for limiting antenna in installation groove, and the utility model provides technical scheme, and through second pressure buckle, multiple antennas with three -dimensional structure are limited in installation position, and through first pressure buckle, pressing plate is limited with base, so that pressing plate can press multiple antennas tightly in the installation position of base simultaneously, thereby limiting and fixing multiple antennas with three -dimensional structure one time, and the welding efficiency of three -dimensional structure antenna is improved.
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Description

Technical Field

[0001] This utility model relates to the field of antenna welding technology, and in particular to an antenna welding support bracket. Background Technology

[0002] With the development of technology, the variety of electronic products is increasing. Antennas used for signal transmission are no longer limited to simple straight or curved shapes, but have evolved into various three-dimensional antennas to adapt to more electronic products. These three-dimensional antennas typically require multiple parts to be assembled and welded together to form the antenna. In current technology, three-dimensional antennas usually require manual fixing and individual welding, resulting in low welding efficiency. Utility Model Content

[0003] The main purpose of this invention is to provide an antenna welding support bracket, which aims to improve the welding efficiency of three-dimensional antenna structures.

[0004] To achieve the above objectives, the present invention proposes an antenna soldering bracket for limiting the position of an antenna. The antenna has a first soldering point. The antenna soldering bracket includes a base, a pressure plate, a first snap fastener, and a second snap fastener. The base has a first surface and a second surface facing each other. The first surface has at least one mounting groove for mounting the antenna. The pressure plate covers the first surface of the base and is detachably connected to the base. The pressure plate can cover the mounting groove. The pressure plate has a first solder joint at the position corresponding to each mounting groove, which exposes the first soldering point. The first snap fastener is located on the base and is used to limit and fix the pressure plate to the base. The second snap fastener is located on the base and is used to limit the antenna to the mounting groove.

[0005] In one embodiment, the first snap fastener has a first locked position and a first unlocked position. The first snap fastener is rotatably disposed on the side of the base near the pressure plate and can rotate between the first locked position and the first unlocked position. When the first snap fastener is in the first locked position, the first snap fastener at least partially abuts against the pressure plate. And / or, the second snap fastener has a second locked position and a second unlocked position. The second snap fastener is rotatably disposed on the side of the base near the pressure plate and can rotate between the second locked position and the second unlocked position. When the second snap fastener is in the second locked position, the second snap fastener at least partially abuts against the antenna.

[0006] In one embodiment, a second buckle is disposed on each of the opposite sides of each mounting slot. When the second buckle is located between two adjacent mounting slots, the second buckle can simultaneously limit the antennas disposed on both sides of the second buckle.

[0007] In one embodiment, the pressure plate has a through groove corresponding to the position of the second buckle. When the pressure plate is placed on the base, a technician can rotate the second buckle through the through groove.

[0008] In one embodiment, the antenna has a second welding point on the side opposite to the first welding point, and a second welding opening is formed on the bottom wall of the mounting groove corresponding to the position of the second welding point, the second welding opening being used to expose the second welding point.

[0009] In one embodiment, the first buckle includes a first fixed shaft, a first rotating member, and a first elastic member; the first fixed shaft has a first top cap, and the end of the first fixed shaft away from the first top cap is connected and fixed to the base; the first rotating member is rotatably mounted on the first fixed shaft and located between the first top cap and the base; the first elastic member elastically abuts against the first rotating member and the first top cap; when the first buckle is in the first locked position, the side of the first rotating member near the pressure plate abuts against the pressure plate.

[0010] In one embodiment, the second snap fastener includes a second fixed shaft, a second rotating member, and a second elastic member; the second fixed shaft has a second top cap, and one end of the second fixed shaft away from the second top cap is connected and fixed to the base; the second rotating member is rotatably mounted on the second fixed shaft and located between the second top cap and the base; the second elastic member elastically abuts against the second rotating member and the second top cap; when the second snap fastener is in the second locked position, the side of the second rotating member closer to the antenna abuts against the antenna.

[0011] In one embodiment, a limiting groove is formed on the side of the pressure plate near the base, which is matched one-to-one with the mounting groove. The first welding joint is formed on the bottom wall of the limiting groove. The limiting groove matches the outer contour of the antenna. When the pressure plate is placed on the base, the end of the antenna near the pressure plate can be accommodated in the limiting groove.

[0012] In one embodiment, the base has a base plate and first side plates disposed opposite to each other on both sides of the base plate along a first direction. The mounting groove is formed in the base plate. Two first buckles are disposed opposite to each other along the first direction, and the two first buckles are installed one-to-one on the top walls of the two first side plates. The top wall of each first side plate is provided with at least two limiting posts. The at least two limiting posts are spaced apart along the extension direction of the first side plate. The pressure plate is provided with limiting holes at the positions of the limiting posts. When the pressure plate is placed on the base, the limiting posts are inserted into the limiting holes.

[0013] In one embodiment, the mounting groove has multiple sidewalls that are connected around its circumference, and an arc-shaped groove facing the opening of the mounting groove is provided at the junction of any two adjacent sidewalls.

[0014] The technical solution of this utility model employs a base, a pressure plate, a first buckle, and a second buckle in an antenna welding bracket. The base has a first surface and a second surface, with at least one mounting groove on the first surface for mounting antennas. The pressure plate covers the first surface of the base and is detachably connected to the base, covering the mounting groove. The pressure plate has a first welding port corresponding to each mounting groove, exposing a first welding point. The first buckle is located on the base and is used to limit and fix the pressure plate to the base. The second buckle is located on the base and is used to limit the antenna in the mounting groove. This allows the bracket to limit multiple antennas with three-dimensional structures to the mounting position through the second buckle and to limit the pressure plate to the base through the first buckle, so that the pressure plate can simultaneously press multiple antennas to the mounting position on the base, thereby limiting and fixing multiple antennas with three-dimensional structures at one time. Subsequently, multiple antennas can be welded simultaneously, thus improving the welding efficiency of three-dimensional structure antennas. Attached Figure Description

[0015] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art 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 the structures shown in these drawings without creative effort.

[0016] Figure 1 A schematic diagram of an embodiment of the antenna soldering bracket provided by this utility model; Figure 2 for Figure 1 A schematic diagram of the decomposed structure; Figure 3 A schematic diagram of the pressure plate in one embodiment of the antenna welding bracket provided by this utility model; Figure 4A schematic diagram of the antenna structure in one embodiment of the antenna welding bracket provided by this utility model; Figure 5 A schematic diagram of the antenna at another angle in one embodiment of the antenna welding bracket provided by this utility model; Figure 6 for Figure 1 Enlarged view of point A in the middle; Figure 7 for Figure 2 Enlarged view of point B in the middle.

[0017] Explanation of icon numbers: 100. Antenna welding bracket; 20. Antenna; 201. First welding point; 202. Second welding point; 1. Base; 11. Mounting groove; 111. Arc groove; 12. Second welding joint; 13. Base plate; 14. First side plate; 141. Limiting post; 2. Pressure plate; 21. First welding joint; 22. Through groove; 23. Limiting groove; 24. Limiting hole; 3. First snap fastener; 31. First fixed shaft; 311. First top cap; 32. First rotating component; 33. First elastic component; 4. Second snap fastener; 41. Second fixed shaft; 411. Second top cap; 42. Second rotating component; 43. Second elastic component.

[0018] The realization of the purpose, functional features and advantages of this utility model will be further explained in conjunction with the embodiments and with reference to the accompanying drawings. 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 scope of protection of the present utility model.

[0020] It should be noted that if the embodiments of this utility model involve directional indicators (such as up, down, left, right, front, back, etc.), the directional indicators are only used to explain the relative positional relationship and movement of the components in a specific posture. If the specific posture changes, the directional indicators will also change accordingly.

[0021] Furthermore, if the embodiments of this utility model involve descriptions such as "first" or "second," these descriptions are for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined with "first" or "second" may explicitly or implicitly include at least one of those features. Additionally, the use of "and / or" or "and / or" throughout the text includes three parallel solutions. For example, "A and / or B" includes solution A, solution B, or a solution where both A and B are satisfied simultaneously. Furthermore, the technical solutions of the various embodiments can be combined with each other, but this must be based on the ability of those skilled in the art to implement them. When the combination of technical solutions is contradictory or impossible to implement, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection claimed by this utility model.

[0022] This utility model proposes an antenna welding bracket 100.

[0023] Please see Figures 1 to 7 In one embodiment of this utility model, the antenna soldering bracket 100 is used to limit the antenna 20. The antenna 20 has a first soldering point 201. The antenna soldering bracket 100 includes a base 1, a pressure plate 2, a first buckle 3, and a second buckle 4. The base 1 has a first surface and a second surface opposite to each other. The first surface is provided with at least one mounting groove 11, which is used to install the antenna 20. The pressure plate 2 is covered on the first surface of the base 1 and is detachably connected to the base 1. The pressure plate 2 can cover the mounting groove 11. The pressure plate 2 has a first soldering port 21 at the position corresponding to each mounting groove 11. The first soldering port 21 is used to expose the first soldering point 201. The first buckle 3 is provided on the base 1 and is used to limit and fix the pressure plate 2 to the base 1. The second buckle 4 is provided on the base 1 and is used to limit the antenna 20 to the mounting groove 11.

[0024] In this embodiment, the base plate 13 is used to mount the antenna 20. The base plate 13 can have multiple spaced mounting positions, each capable of mounting one antenna 20 or remaining empty. After mounting the antenna 20 into the mounting slot 11 of the base plate 13, the second clamp 4 is rotated to press the antenna 20 firmly into the mounting position. Then, the pressure plate 2 is placed over the mounting position, and the pressure plate 2 is fixed to the base 1 by the first clamp 3, thus pressing and limiting the base 1. At this time, the first welding port 21 on the pressure plate 2 exposes the first welding point 201 on the antenna 20, and the welding head can extend through the first welding port 21 to weld and fix the first welding point 201. The antenna welding bracket 100 can simultaneously fix multiple antennas 20, facilitating the welding of the antenna 20 at once, reducing the need for individually fixing each antenna 20, and improving the efficiency of welding antennas 20 with a three-dimensional structure.

[0025] The technical solution of this utility model adopts a base 1, a pressure plate 2, a first buckle 3, and a second buckle 4 in an antenna welding bracket 100. The base 1 has a first surface and a second surface, and the first surface is provided with at least one mounting groove 11 for mounting an antenna 20. The pressure plate 2 covers the first surface of the base 1 and is detachably connected to the base 1. The pressure plate 2 can cover the mounting groove 11, and the pressure plate 2 has a first welding port 21 corresponding to each mounting groove 11, which is used to expose the first welding point 201. The first buckle 3 is provided on the base 1, the first... The snap fastener 3 is used to limit and fix the pressure plate 2 to the base 1; the second snap fastener 4 is provided on the base 1 and is used to limit the antenna 20 to the mounting groove 11; so that the bracket can limit multiple antennas 20 with three-dimensional structure to the mounting position through the second snap fastener 4, and limit the pressure plate 2 to the base 1 through the first snap fastener 3, so that the pressure plate 2 can press multiple antennas 20 to the mounting position of the base 1 at the same time, thereby limiting and fixing multiple antennas 20 with three-dimensional structure at one time, and then welding multiple antennas 20 at the same time, thereby improving the welding efficiency of antennas 20.

[0026] In one embodiment, the first snap fastener 3 has a first locked position and a first unlocked position. The first snap fastener 3 is rotatably disposed on the side of the base 1 near the pressure plate 2 and can be rotated between the first locked position and the first unlocked position. When the first snap fastener 3 is in the first locked position, the first snap fastener 3 at least partially abuts against the pressure plate 2. And / or, the second snap fastener 4 has a second locked position and a second unlocked position. The second snap fastener 4 is rotatably disposed on the side of the base 1 near the pressure plate 2 and can be rotated between the second locked position and the second unlocked position. When the second snap fastener 4 is in the second locked position, the second snap fastener 4 at least partially abuts against the antenna 20.

[0027] In this embodiment, when the first snap fastener 3 is rotated to the first unlocked position, the first snap fastener 3 can avoid the pressure plate 2, and the upper surface of the pressure plate 2 no longer abuts against the first snap fastener 3, allowing the pressure plate 2 to be removed; when the first snap fastener 3 is in the first locked position, the first snap fastener 3 can abut against the upper surface of the pressure plate 2, thereby pressing the pressure plate 2 tightly onto the base 1. When the second snap fastener 4 is rotated to the second unlocked position, the second snap fastener 4 can avoid the antenna 20, and the upper surface of the antenna 20 no longer abuts against the second snap fastener 4, allowing the antenna 20 to be removed from the mounting position; when the second snap fastener 4 is in the second locked position, the second snap fastener 4 can abut against the upper surface of the antenna 20, thereby pressing the antenna 20 tightly into the mounting position.

[0028] In one embodiment, a second snap fastener 4 is respectively arranged on both sides of each mounting slot 11. When the second snap fastener 4 is located between two adjacent mounting slots 11, the second snap fastener 4 can simultaneously limit the antennas 20 located on both sides of the second snap fastener 4. The length of the second snap fastener 4 is greater than the width of the interval between any two mounting positions, and the width of the second snap fastener 4 is less than the width of the interval between any two mounting positions, so that when the second snap fastener 4 is in the second locked position, one second snap fastener 4 can simultaneously fix the antennas 20 located on both sides. By enabling the second snap fastener 4 to fix the antennas 20 on both sides at the same time, the number of second snap fasteners 4 can be reduced, thereby reducing the consumption of parts and improving the space utilization of the antenna soldering bracket 100.

[0029] In one embodiment, a through slot 22 is provided on the pressure plate 2 corresponding to the position of the second snap fastener 4. When the pressure plate 2 is placed on the base 1, a technician can rotate the second snap fastener 4 through the through slot 22. By providing the through slot 22, when the cover plate and the base 1 are connected and fixed to each other, the user can rotate the second snap fastener 4 through the through slot 22 to adjust the position of the second snap fastener 4 without removing the cover plate, thus improving the ease of use of the antenna soldering bracket 100.

[0030] In one embodiment, the antenna 20 has a second welding point 202 on the side opposite to the first welding point 201. A second welding port 12 is formed on the bottom wall of the mounting groove 11 corresponding to the position of the second welding point 202, and the second welding port 12 is used to expose the second welding point 202. By forming the second welding port 12 on the bottom wall, the antenna soldering bracket 100 only needs to be installed once to weld the welding points on both sides of the antenna 20, without having to remove, flip, and reinstall multiple antennas 20. This reduces the steps of assembling the antenna 20 and the antenna soldering bracket 100, and further improves the welding efficiency of the antenna 20.

[0031] In one embodiment, the first buckle 3 includes a first fixed shaft 31, a first rotating member 32, and a first elastic member 33. The first fixed shaft 31 has a first cap 311, and one end of the first fixed shaft 31 away from the first cap 311 is connected and fixed to the base 1. The first rotating member 32 is rotatably mounted on the first fixed shaft 31 and is located between the first cap 311 and the base 1. The first elastic member 33 elastically abuts against the first rotating member 32 and the first cap 311. When the first buckle 3 is in the first locked position, the side of the first rotating member 32 near the pressure plate 2 abuts against the pressure plate 2. The first rotating member 32 rotates around the first fixed shaft 31, and the first locked position or the first unlocked position of the first buckle 3 can be changed by rotating the first rotating member. The first elastic member 33 is used to continuously apply pressure toward the pressure plate 2 to the first rotating member when the first buckle 3 is in the first locked position, thereby continuously pressing the pressure plate 2 against the base 1 to connect with the base 1.

[0032] In one embodiment, the second snap fastener 4 includes a second fixed shaft 41, a second rotating member 42, and a second elastic member 43. The second fixed shaft 41 has a second top cap 411, and one end of the second fixed shaft 41 away from the second top cap 411 is connected and fixed to the base 1. The second rotating member 42 is rotatably mounted on the second fixed shaft 41 and is located between the second top cap 411 and the base 1. The second elastic member 43 elastically abuts against the second rotating member 42 and the second top cap 411. When the second snap fastener 4 is in the second locked position, the side of the second rotating member 42 closest to the antenna 20 abuts against the antenna 20. The second rotating member 42 rotates around the second fixed shaft 41, and by rotating the second rotating member, the second locked position or the second unlocked position of the second snap fastener 4 can be changed. The second elastic member 43 is used to continuously apply pressure toward the antenna 20 to the second rotating member when the second snap fastener 4 is in the second locked position, thereby continuously pressing the antenna 20 into the mounting position. In this embodiment, an elastic groove is also provided on the top of the second rotating member 42. The second elastic member 43 elastically abuts against the bottom of the elastic groove and the second top cap 411. The elastic groove can further limit the second elastic member 43, so that the second elastic member 43 is not easy to deviate when it stretches and extends along the axial direction, so as to more stably limit the antenna 20 in the mounting groove 11.

[0033] In one embodiment, a limiting groove 23 is formed on the side of the pressure plate 2 near the base 1, which is matched one-to-one with the mounting groove 11. The first welding joint 21 is formed on the bottom wall of the limiting groove 23. The limiting groove 23 matches the outer contour of the antenna 20. When the pressure plate 2 is placed on the base 1, the end of the antenna 20 near the pressure plate 2 can be accommodated in the limiting groove 23. When installing the pressure plate 2, the top of the antenna 20 is positioned one-to-one in the limiting groove 23, so that the top of the antenna 20 can be limited by the limiting groove 23 and the bottom of the antenna 20 can be limited by the mounting groove 11, thereby improving the stability of the antenna 20 installation and preventing the antenna 20 from swinging during the welding process.

[0034] In one embodiment, the base 1 has a base plate 13 and first side plates 14 disposed opposite to each other on both sides of the base plate 13 along a first direction. A mounting groove 11 is formed in the base plate 13. Two first buckles 3 are disposed opposite to each other along the first direction. The two first buckles 3 are installed one-to-one on the top walls of the two first side plates 14. The top wall of each first side plate 14 is provided with at least two limiting posts 141. The at least two limiting posts 141 are spaced apart along the extension direction of the first side plate 14. The pressure plate 2 is provided with limiting holes 24 at the positions corresponding to the limiting posts 141. When the pressure plate 2 is placed on the base 1, the limiting posts 141 are inserted into the limiting holes 24. When installing the pressure plate 2, the limiting holes 24 on the pressure plate 2 are aligned one-to-one with the limiting posts 141 on the base 1, so that the limiting posts 141 are inserted one-to-one into the limiting grooves 23. The limiting grooves 23 can guide the movement of the pressure plate 2 toward the base plate 13, making it easier for the pressure plate 2 to align with the base plate 13, facilitating the first buckle 3 to limit the pressure plate 2, and ensuring that the first welding joint 21 can be aligned with the first welding point 201, so as to avoid the first welding point 201 being covered and ensure the smooth progress of the welding process.

[0035] In one embodiment, the mounting groove 11 has multiple sidewalls that are connected around its circumference, and an arc-shaped groove 111 opening toward the mounting groove 11 is provided at the junction of any two adjacent sidewalls. The mounting groove 11 is polygonal in shape. By providing an arc-shaped groove 111 at each of the sharp corners of the polygonal groove, the arc-shaped groove 111 can avoid stress concentration at the sharp corners of the polygonal groove, making it less prone to cracking at the junction of the two sidewalls of the mounting groove 11, thereby extending the service life of the antenna soldering bracket 100.

[0036] The above description is merely an exemplary embodiment of the present utility model and does not limit the scope of protection of the present utility model. Any equivalent structural transformations made based on the technical concept of the present utility model and the contents of the present utility model specification and drawings, or direct / indirect applications in other related technical fields, are included within the scope of protection of the present utility model.

Claims

1. An antenna soldering bracket for limiting the position of an antenna, the antenna having a first soldering point, characterized in that, The antenna soldering support includes: A base having a first and a second opposing surface, the first surface having at least one mounting groove for mounting the antenna; A pressure plate is placed on the first surface of the base and is detachably connected to the base. The pressure plate can cover the mounting groove. The pressure plate has a first welding port corresponding to the position of each mounting groove. The first welding port is used to expose the first welding point. A first snap fastener is disposed on the base, and the first snap fastener is used to limit and fix the pressure plate to the base; and A second snap fastener is provided on the base, and the second snap fastener is used to limit the antenna to be located in the mounting slot.

2. The antenna soldering bracket as described in claim 1, characterized in that, The first buckle has a first locked position and a first unlocked position. The first buckle is rotatably disposed on the side of the base near the pressure plate and can rotate and switch between the first locked position and the first unlocked position. When the first buckle is in the first locked position, the first buckle at least partially abuts against the pressure plate. And / or, the second snap fastener has a second locked position and a second unlocked position, the second snap fastener is rotatably disposed on the side of the base near the pressure plate, and can be rotated between the second locked position and the second unlocked position, when the second snap fastener is in the second locked position, the second snap fastener at least partially abuts against the antenna.

3. The antenna soldering bracket as described in claim 1, characterized in that, Each of the mounting slots is provided with a second buckle on each of its opposite sides. When the second buckle is located between two adjacent mounting slots, the second buckle can simultaneously limit the antennas located on both sides of the second buckle.

4. The antenna soldering bracket as described in claim 1, characterized in that, The pressure plate has a through groove corresponding to the position of the second buckle. When the pressure plate is placed on the base, a technician can rotate the second buckle through the through groove.

5. The antenna soldering bracket as described in claim 1, characterized in that, The antenna also has a second welding point on the side opposite to the first welding point. The bottom wall of the mounting groove has a second welding opening corresponding to the position of the second welding point, and the second welding opening is used to expose the second welding point.

6. The antenna soldering bracket as described in claim 2, characterized in that, The first snap fastener includes: A first fixed shaft has a first top cap, and the end of the first fixed shaft away from the first top cap is connected and fixed to the base; A first rotating member is rotatably mounted on the first fixed shaft and located between the first top cap and the base; and The first elastic element is elastically abutted between the first rotating element and the first top cap; When the first buckle is in the first locked position, the side of the first rotating member closest to the pressure plate abuts against the pressure plate.

7. The antenna soldering bracket as described in claim 2, characterized in that, The second snap fastener includes: The second fixed shaft has a second top cap, and the end of the second fixed shaft away from the second top cap is connected and fixed to the base; The second rotating component is rotatably mounted on the second fixed shaft and located between the second top cap and the base; and The second elastic element is elastically abutted between the second rotating element and the second top cap; When the second buckle is in the second locked position, the side of the second rotating member closest to the antenna abuts against the antenna.

8. The antenna soldering bracket as described in claim 1, characterized in that, The pressure plate has a limiting groove on the side near the base that is one-to-one with the mounting groove. The first welding joint is opened on the bottom wall of the limiting groove. The limiting groove matches the outer contour of the antenna. When the pressure plate is placed on the base, the end of the antenna near the pressure plate can be accommodated in the limiting groove.

9. The antenna soldering bracket as described in claim 1, characterized in that, The base has a base plate and first side plates disposed opposite to each other on both sides of the base plate along a first direction. The mounting groove is opened in the base plate. Two first buckles are disposed opposite to each other along the first direction. The two first buckles are installed one-to-one on the top wall of the two first side plates. Each of the first side plates has at least two limiting posts on its top wall. The at least two limiting posts are spaced apart along the extension direction of the first side plate. The pressure plate has limiting holes at the positions of the limiting posts. When the pressure plate is placed on the base, the limiting posts are inserted into the limiting holes.

10. The antenna soldering bracket as described in any one of claims 1 to 9, characterized in that, The mounting groove has multiple sidewalls that are connected around its circumference, and an arc-shaped groove facing the opening of the mounting groove is provided at the junction of any two adjacent sidewalls.