Assembly tool for wireless equipment

By designing the rotating connection and limit pin locking of the flip frame and the supporting base, the problems of low efficiency and equipment damage during the assembly of wireless equipment are solved, and efficient and low-damage assembly and troubleshooting are achieved.

CN223354152UActive Publication Date: 2025-09-19LIZHENG TECHNOLOGY (LUOYANG) CO LTD
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Patent Information

Application Number
CN202422485125.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-14
Publication Date
2025-09-19
Estimated Expiration
2034-10-14

AI Technical Summary

Technical Problem

The existing wireless device assembly process has problems such as low installation efficiency, high workload, time-consuming and labor-intensive operation, and easy damage to the device, especially when the device has front and back cable interfaces and needs to be repeatedly flipped for assembly and troubleshooting.

Method used

An assembly tool for wireless equipment is designed, which includes a flip frame and a supporting base frame. The flipping and angle adjustment of the wireless equipment are achieved through a rotating connection, and the angle is locked using limit pins and limit holes. Combined with an adapter frame, the wireless equipment can be firmly fixed and easily flipped.

Benefits of technology

It improves assembly efficiency, reduces workload, lowers the risk of equipment damage, simplifies the troubleshooting process, and reduces manpower and costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an assembly tool for wireless equipment, the assembly tool comprises an overturning frame and a supporting bottom frame, the overturning frame and the supporting bottom frame are rotatably connected, and the rotation axis extends in the horizontal direction; the roll-over stand is used for directly or indirectly installing the wireless device, and the roll-over stand is provided with a first hollow part. According to the assembly tool, the installation efficiency can be improved, the workload is reduced, and damage to equipment is reduced.
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Description

Technical Field

[0001] The present application relates to the field of assembly technology, and in particular to an assembly tool for wireless devices. Background Art

[0002] Please refer to Figure 1 , Figure 1 A schematic diagram of the assembly of a wireless device.

[0003] Figure 1 The wireless device 1' shown has a front side and a back side. The assembly process of the wireless device 1' is as follows:

[0004] The staff first places the wireless device 1' on a fixed workbench 2' with the front side facing upwards ( Figure 1 Then, assemble the front parts. After all the front parts are assembled, manually turn the wireless device 1' over to face the back upwards ( Figure 1 Then assemble the parts on the back.

[0005] As can be seen, the entire assembly process requires manual flipping. In particular, when the cable interface of the wireless device 1' is located both on the front and back of the wireless device 1', the wireless device 1' needs to be flipped repeatedly. Furthermore, after the wireless device 1' is assembled, it needs to be powered on and tested. If any problems arise during the subsequent power-on test, the wireless device 1' needs to be flipped back and forth to troubleshoot.

[0006] Therefore, this method of assembling wireless devices has the problems of low installation efficiency, large workload, time-consuming and labor-intensive, and is also prone to equipment damage. Utility Model Content

[0007] The purpose of this application is to provide an assembly tool for wireless equipment, which can improve installation efficiency, reduce workload, and reduce damage to the equipment.

[0008] In order to solve the above technical problems, the present application provides an assembly tool for a wireless device, which includes a flip frame and a supporting base frame. The flip frame and the supporting base frame are rotatably connected, and the rotation axis extends in the horizontal direction; the flip frame is used to directly or indirectly install the wireless device, and the flip frame has a first hollow portion.

[0009] Optionally, the flip frame includes a flip frame frame, a limiting plate and a connecting shaft, wherein the flip frame frame and the limiting plate are fixedly connected; the limiting plate is rotatably connected to the supporting base frame via the connecting shaft;

[0010] The limiting plate is provided with a plurality of first limiting holes evenly distributed along its circumference, and the supporting base is provided with a second limiting hole; the assembly tool also includes a limiting pin, which can be inserted into the second limiting hole and a first limiting hole coaxial with the second limiting hole.

[0011] Optionally, the limiting pin includes a threaded rod segment, and at least one of the first limiting hole and the second limiting hole is provided with an internal thread adapted to the threaded rod segment.

[0012] Optionally, the support base is installed with a bearing, and the support base and the connecting shaft are connected through the bearing.

[0013] Optionally, the flip frame has a first end and a second end distributed along a first direction, the first end and the second end are respectively fixedly connected to a corresponding limiting plate, and the two limiting plates are coaxially arranged.

[0014] Optionally, the assembly tool further includes an adapter frame, the adapter frame and the flip frame are detachably fixedly connected; the adapter frame includes an adapter frame body, and a connecting component for fixing the wireless device, the connecting component is provided on the adapter frame body, and the flip frame indirectly mounts the wireless device through the adapter frame;

[0015] The adapter frame has a second hollow portion, and the second hollow portion corresponds to the first hollow portion.

[0016] Optionally, the connecting component includes a connecting support and a connecting screw, the connecting support is provided with a connecting hole, and the connecting screw is used to pass through the connecting hole to be threadedly connected to the wireless device.

[0017] Optionally, the connecting support includes a horizontal connecting plate, the horizontal connecting plate is fixedly connected to the adapter frame; the connecting support also includes a support, the support protrudes from the horizontal connecting plate;

[0018] The support has a cavity, which includes a side wall portion and a top wall portion that enclose the cavity. The bottom of the cavity has a first opening, the side of the cavity has a second opening, and the horizontal connecting plate has a third opening. The first opening and the third opening are connected.

[0019] Optionally, the horizontal connecting plate is provided with one or more supports.

[0020] Optionally, the support frame includes a support frame body and casters, and the casters are arranged at the bottom of the support frame body.

[0021] In the present application, the assembly tooling for wireless devices includes a tilting frame that can be flipped relative to a supporting base frame. The tilting frame is used to mount the wireless device, thereby enabling the wireless device to be flipped and rotated. When operating the wireless device, operators can flip the wireless device to a suitable angle as needed, thereby improving installation efficiency, reducing workload, and minimizing damage to the device during manual flipping. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] Figure 1 A schematic diagram of an assembly of a wireless device;

[0023] Figure 2 This is a structural diagram of a wireless device placed on an assembly tool in an embodiment of the present application;

[0024] Figure 3 for Figure 2 Structural diagram of the assembly tooling;

[0025] Figure 4 for Figure 3 Exploded view of the turning frame and transfer frame of the assembly tooling;

[0026] Figure 5 Schematic diagram of the structure of the supporting chassis;

[0027] Figure 6 for Figure 5 Exploded view of the middle support frame;

[0028] Figure 7 for Figure 5 A schematic diagram of the structure of the middle support chassis body;

[0029] Figure 8 It is a structural diagram of the turning frame;

[0030] Figure 9 for Figure 8 Exploded view of the mid-turn frame;

[0031] Figure 10 for Figure 8 Schematic diagram of the end of the middle turning frame;

[0032] Figure 11 Schematic diagram of the limit pin structure;

[0033] Figure 12 Schematic diagram of the structure of the adapter frame;

[0034] Figure 13 for Figure 12 Exploded view of the transfer rack;

[0035] Figure 14 for Figure 13 A schematic structural diagram of the middle connecting component 42;

[0036] Figure 15 for Figure 14 Schematic diagram of the structure of the middle connecting support;

[0037] Figure 16 It is a schematic diagram of the turning frame after turning over a certain angle from the horizontal position.

[0038] The following are the descriptions of the reference numerals:

[0039] 1'-wireless equipment; 2'-working table;

[0040] 1-supporting chassis; 11-supporting chassis body; 12-bearing; 111-chassis; 112-first side frame; 113-second side frame; 112a-second limiting hole; 114-first stabilizing frame; 115-second stabilizing frame; 13-castor;

[0041] 2- flip frame; 2a- first hollow portion; 21- flip frame frame; 21a- threaded hole; 22- limit plate; 22a- first limit hole; 23- connecting shaft; 24- fastening screw;

[0042] 3-limiting pin; 31-threaded rod section; 32-straight-grained cap section;

[0043] 4-adapter frame; 4a-second hollow portion; 41-adapter frame; 41a-threaded hole; 42-connecting component; 421-connecting support; 421a-connecting hole; 4211-horizontal connecting plate; 4212-support; 4212a-cavity; 42121-side wall; 42122-top wall; 422-connecting screw;

[0044] 5-Tighten the screws. DETAILED DESCRIPTION

[0045] In order to enable those skilled in the art to better understand the technical solution of the present application, the present application is further described in detail below with reference to the accompanying drawings and specific embodiments.

[0046] In the embodiments of the present application, the terms "first" and "second" are mainly used to distinguish the same or similar features, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features.

[0047] Please refer to Figures 2 to 4 , Figure 2 This is a structural diagram of a wireless device 1' placed on an assembly tool in an embodiment of the present application; Figure 3 for Figure 2 Structural diagram of the assembly tooling; Figure 4 for Figure 3 Exploded view of the turning frame and transfer frame of the assembly tooling.

[0048] The assembly tooling in this embodiment includes a supporting base 1, a flip frame 2, a limit pin 3 and an adapter frame 4. The supporting base 1 serves as the supporting base of the entire assembly tooling and can be supported on the ground or a platform, etc. The flip frame 2 is installed on the supporting base 1 and is rotatably connected to the supporting base 1. The adapter frame 4 is installed on the flip frame 2 and is detachably fixed to the flip frame 2. It can rotate relative to the supporting base 1 together with the flip frame 2. The wireless device 1' can be directly fixed to the adapter frame 4 to be indirectly installed on the flip frame 2.

[0049] You can continue to refer to Figures 5 to 7 , Figure 5 for Figure 2 A schematic structural diagram of the middle support chassis 1; Figure 6 for Figure 5 Exploded view of the middle support frame 1; Figure 7 for Figure 5 Schematic diagram of the structure of the middle support frame body 11.

[0050] The support frame 1 in this embodiment includes a support frame body 11 and a bearing 12. Specifically, Figure 7 As shown, the supporting chassis body 11 includes a chassis 111 at the bottom, a first side frame 112 and a second side frame 113 respectively located on both sides of the chassis 111. The two side frames are distributed on both sides of the chassis 111. Figure 7 The two side frames are arranged on the left and right sides of the base frame 111, and the two side frames extend roughly in the vertical direction. Among them, the bearing 12 is arranged on the upper ends of the first side frame 112 and the second side frame 113 to be connected to the turnover frame 2 located at the upper part.

[0051] In some embodiments, the support frame body 11 can be formed as a single unit by welding steel pipes of different lengths, including the aforementioned base frame 111, first side frames 112, and second side frames 113. The support frame body 11 also includes a first stabilizing frame 114 connecting the first side frames 112 and base frame 111, and a second stabilizing frame 115 connecting the second side frames 113 and base frame 111. Based on the principle of triangular stability, this structure of the support frame 1 can maximize the stability of the entire assembly tool during assembly, reduce errors during the assembly process, and improve assembly accuracy.

[0052] Look again Figures 8 and 9 , Figure 8 for Figure 2 A schematic structural diagram of the middle turning frame 2; Figure 9 for Figure 8 Exploded view of the middle flip frame 2.

[0053] The flip frame 2 in this embodiment includes a flip frame frame 21, a limiting plate 22, and a connecting shaft 23. As previously mentioned, the flip frame 2 in this application is rotatably connected to the supporting base 1. In this embodiment, the limiting plate 22 is fixedly connected to the flip frame frame 21, and the flip frame frame 21 and the limiting plate 22 are rotatably connected to the supporting base 1 via the connecting shaft 23. In detail, the connecting shaft 23 and the limiting plate 22 are fixedly connected, for example, by fixing screws 24 (shown in FIG. Figure 9 ) is connected to the connecting shaft 23 and the bearing 12. For example, the connecting shaft 23 can be inserted into the inner ring of the bearing 12 and form an interference fit with the inner ring. The turning frame 2 is rotatably connected to the bearing 12 supporting the base frame 1 via the connecting shaft 23, and the axis extends horizontally, so the turning frame 2 can turn around the horizontal axis. The rotational connection achieved through the bearing 12 can make the rotation smoother.

[0054] In this embodiment, the flip frame 21, the limiting plate 22, the connecting shaft 23, and the bearing 12 rotate coaxially. When the flip frame 2 flips, it drives the adapter frame 4 to rotate. The wireless device 1' is mounted on the adapter frame 4, allowing the flip frame 2 and the wireless device 1' to freely flip. However, it is understood that the wireless device 1' requires multiple angles during assembly. When the flip frame 2 drives the wireless device 1' to flip to the desired position, it is necessary to maintain the angle of the wireless device 1' unchanged to facilitate installation.

[0055] To this end, in the embodiment of the present application, the positioning after the angle adjustment is achieved by cooperating with the above-mentioned limiting plate 22 and the limiting pin 3. Specifically, the limiting plate 22 has a first limiting hole 22a (such as Figure 8 、 10 As shown, the support frame 1 is provided with a second limiting hole 112a (as shown Figure 7 As shown), when the limiting plate 22 is rotated to the desired position relative to the supporting base 1, the limiting pin 3 is inserted into the second limiting hole 112a and the corresponding first limiting hole 22a to achieve angle locking.

[0056] Of course, the provision of the limit plate 22 is only a specific example of a rotational connection. Other rotational connection methods can also be used. For example, mutually meshing gears can be provided on the flip frame 2 and the supporting base frame 1 to achieve the rotational connection through a gear transmission. For another example, the rotational connection can also be achieved by directly inserting the connecting shaft 23 into a mounting hole provided on the supporting base frame 1.

[0057] Please refer to Figure 10 , Figure 10 for Figure 8 Schematic diagram of the end of the middle turning frame 2.

[0058] A limit plate 22 is fixed on the turning frame 2, and a plurality of first limit holes 22a uniformly distributed along the circumferential direction are provided on the limit plate 22. Obviously, the more the number of first limit holes 22a, the higher the angle adjustment accuracy, which can be set according to actual needs.

[0059] Please refer to Figure 8 The tilt frame 2 has a roughly bilaterally symmetrical, axisymmetric structure. The tilt frame body 21 has a first end and a second end extending in a first direction. The first and second ends are each fixedly connected to a corresponding limit plate 22, with the two limit plates 22 arranged coaxially. Similarly, the corresponding connecting shaft 23, bearing 12, and limit pin 3 should all be paired and coaxially arranged. The support frame 1 and adapter frame 4 should also have a roughly bilaterally symmetrical structure. This ensures a more balanced support and smoother rotation of the entire assembly tool.

[0060] Please refer to Figure 11 , Figure 11 for Figure 2 Schematic diagram of the structure of the middle limit pin 3.

[0061] The limiting pin 3 includes a threaded rod section 31 and a straight cap section 32. As mentioned above, a second limiting hole 112a (shown in FIG. 1 ) is opened on the first side frame 112 and the second side frame 113. Figure 7 The threaded rod segment 31 must be inserted into the second limiting hole 112a located on the first side frame 112 or the second side frame 113, as well as into one of the first limiting holes 22a located on the limiting plate 22. The first limiting hole 22a and the second limiting hole 112a should contain at least one internal thread that mates with the threaded rod segment 31 of the limiting pin 3. This locks the rotation angle after tightening the limiting pin 3, ensuring that the limiting pin 3 does not disengage from the first limiting hole 22a or the second limiting hole 112a, making the position more stable and reliable. The presence of the straight-grooved cap segment 32 increases friction during screwing, making the screwing process easier.

[0062] Of course, providing the limit pin 3 is only one specific method for achieving fixed rotation angle. Other fixing methods can also be used. For example, when the wireless device 1' is rotated to the appropriate angle, the motor drives the locking mechanism to lock the limit plate 22 to achieve fixed angle. For another example, the rotation angle can also be fixed by providing left and right clips on the first side frame 112 and the second side frame 113 to lock the limit plate 22. Here, the limiting method of the limit pin 3 and the limit plate 22 is simple and low-cost.

[0063] Please continue to refer to Figure 12 and Figure 13 , Figure 12 for Figure 2 A schematic structural diagram of the transfer frame 4; Figure 13 for Figure 12 Exploded view of transfer rack 4.

[0064] like Figure 12 As shown, the adapter frame 4 includes an adapter frame 41 and a connecting component 42, and the connecting component 42 is fixedly connected to the adapter frame 41. The adapter frame 41 is provided with a plurality of threaded holes 41a, and the corresponding flip frame frame 21 should also be provided with threaded holes 21a of the same size and specification, so that the adapter frame 4 and the flip frame 2 can be detachably connected by threaded connection. Figure 4 As shown, by tightening screw 5 ( Figure 4 ), insert it into the threaded hole 41a of the adapter frame 41 and the threaded hole 21a of the flip frame frame 21 from top to bottom to achieve connection and fixation. The connection operation from top to bottom is easy to implement.

[0065] Look again Figure 14 , Figure 14 for Figure 13 Schematic diagram of the structure of the connecting component 42.

[0066] like Figure 14 As shown, the connecting component 42 includes a connecting support 421 and a connecting screw 422. The connecting support 421 is provided with a connecting hole 421a. The wireless device 1' used in this embodiment has a plurality of threaded interfaces on the back. The connecting screw 422 can pass through the connecting hole 421a and threadably connect with the wireless device 1' from bottom to top. In other words, the wireless device 1' is connected and fixed to the adapter 4 using its own threaded interfaces.

[0067] Can be combined Figure 15 understand, Figure 15 for Figure 14 Schematic diagram of the structure of the middle connecting support 421.

[0068] For example, the connection support 421 in this embodiment includes a horizontal connection plate 4211 and a support 4212, and the support 4212 protrudes from the horizontal connection plate 4211. As mentioned above, the connection component 42 is fixedly connected to the adapter frame 41 through the horizontal connection plate 4211. Figure 15 As shown, the support 4212 has a cavity 4212a, and the support 4212 includes a side wall portion 42121 and a top wall portion 42122 that enclose the cavity 4212a. The bottom of the cavity 4212a has a first opening, and the side of the cavity 4212a has a second opening. Figure 15 The second opening of the support 4212 on the right side faces right, and the second opening of the support 4212 on the left side faces left accordingly. The horizontal connecting plate 4211 has a third opening. Figure 15The first and third openings are vertically connected. This arrangement allows cavity 4212a to easily insert connecting screw 422 into connecting hole 421a, effectively securing wireless device 1'. Furthermore, cavity 4212a serves to block dust and reduce airflow, thereby better protecting connecting screw 422, slowing its corrosion, reducing the frequency of screw replacement, and minimizing component wear.

[0069] In this embodiment, the wireless device 1' has multiple threaded interfaces, and the adapter frame 4 is provided with multiple connecting components 42 accordingly, which provides a more stable fixation for the wireless device 1' and ensures that the wireless device 1' will not fall off the adapter frame 4 during a flip. Furthermore, multiple supports 4212 can be provided on the same horizontal connecting plate 4211. In this embodiment, two supports 4212 are distributed on one horizontal connecting plate 4211, facilitating the fixing of the supports 4212 to the adapter frame 41.

[0070] Please refer to Figure 8 and Figure 12 The flip frame 2 is provided with a first hollow portion 2a, and the adapter frame 4 is provided with a second hollow portion 4a corresponding to the first hollow portion 2a. Figure 2 It is understood that both the first hollow portion 2a and the second hollow portion 4a correspond to the areas on the back of the wireless device 1' to be operated. Specifically, after the wireless device 1' used in this embodiment is connected to all the connecting components 42, the areas on the back of the wireless device 1' that are not currently in operation will mate with the adapter frame 41 (although this is optional). The areas on the back of the wireless device 1' to be operated will protrude from the hollow portions, facilitating operation.

[0071] Obviously, the adapter frame 4 is not necessary. This is because the connecting component 42 can also be set on the flip frame 2. The difference is that when the adapter frame 4 is present, the flip frame 2 is indirectly fixed to the wireless device 1'; when the adapter frame 4 is not present, the flip frame 2 is directly fixed to the wireless device 1'. In this embodiment, the provision of the adapter frame 4 is conducive to the fixation of the wireless device 1' after it is transported to the next workstation. As mentioned above, the adapter frame 4 and the flip frame 2 are fixed together in a threaded connection. The fastening screws 5 connecting the adapter frame 4 and the flip frame 2 are inserted from top to bottom into the threaded hole 41a and the corresponding threaded hole 21a, and the fixing operation is relatively convenient. The connection between the wireless device 1' and the adapter frame 4 is to connect the connecting screws 422 from bottom to top, and the operation difficulty is relatively greater than the connection from top to bottom. With this arrangement, when the wireless device 1' needs to be transported to the next workstation, if there is an adapter frame 4, it is only necessary to unscrew the fastening screws 5 connecting the adapter frame 4 and the flip frame 2 from the top. At this time, the adapter frame 4 and the wireless device 1' are transported to the next workstation as a whole, and the adapter frame 4 can be continued to be fixed to the flip frame 2 of the next workstation from top to bottom, without having to unscrew the connecting screws 422 from the bottom of the connecting hole 421a and reconnect the wireless device 1' from bottom to top at the next workstation, thereby reducing the difficulty of the transportation operation.

[0072] Please refer to Figure 6 The support frame 1 in the embodiment of the present application further includes casters 13. The casters 13 are provided at the bottom of the support frame body 11 and are screw-fixedly connected to the support frame 11. Obviously, providing a plurality of casters 13 facilitates the movement of the entire assembly tool.

[0073] When a technician uses the assembly jig for the wireless device 1' in the embodiment of the present application to assemble the device, they first need to connect the wireless device 1' to all connecting components 42 to ensure that the wireless device 1' is securely fixed. During assembly, each technician's height varies, and the dimensions of the wireless device 1' and the assembly jig are fixed upon production. Therefore, when the flip frame 2 and the adapter frame 4 are horizontal, they may not be at the appropriate height for assembly. Previous manual assembly methods cannot change the installation height, but the assembly jig for the wireless device 1' in the embodiment of the present application can achieve the desired flip angle.

[0074] like Figure 16 As shown, Figure 16 for Figure 2 Schematic diagram of the middle turning frame 2 after turning over a certain angle from the horizontal position.

[0075] Specifically, when assembling the components on the front of the wireless device 1', a technician first flips the flip frame 2 to a height suitable for their operation. The technician then inserts the two limiting pins 3 into the second limiting holes 112a on the first side frame 112 and the second side frame 113, and into a corresponding first limiting hole 22a on the limiting plate 22. When assembling the components on the back of the wireless device 1', the technician simply removes the limiting pins 3 and rotates the flip frame 2 to flip the back of the wireless device 1' to a desired angle. The technician then inserts the two limiting pins 3 back into the second limiting holes 112a and the first limiting hole 22a, thereby locking the wireless device 1' in its flip position and angle.

[0076] Similarly, during the subsequent power-on test, simply removing the limit pin 3 and rotating the flip frame 2 allows the wireless device 1' to be easily flipped repeatedly, facilitating troubleshooting. The flipping method used in the embodiment of the present application is still manual mechanical flipping. In addition to manual flipping, motor flipping can also be used. However, motor flipping is very expensive, while using the assembly tooling for the wireless device 1' in the embodiment of the present application for assembly saves both manpower and costs.

[0077] The wireless device 1 ′ in this embodiment may specifically be a device for monitoring a drone, and of course, may also be other devices.

[0078] The above is only a preferred embodiment of the present application. It should be pointed out that for ordinary technicians in this technical field, several improvements and modifications can be made without departing from the principles of the present application. These improvements and modifications should also be regarded as the scope of protection of the present application.

Claims

1. An assembly tool for wireless equipment, characterized in that: The assembly tool comprises a flip frame (2) and a supporting base frame (1), wherein the flip frame (2) and the supporting base frame (1) are rotatably connected, and the rotation axis extends in a horizontal direction; the flip frame (2) is used to directly or indirectly install the wireless device (1'), and the flip frame (2) has a first hollow portion (2a).

2. The assembly tool for wireless equipment according to claim 1, characterized in that: The turning frame (2) comprises a turning frame frame (21), a limiting plate (22) and a connecting shaft (23); the turning frame frame (21) and the limiting plate (22) are fixedly connected; the limiting plate (22) is rotatably connected to the supporting base frame (1) via the connecting shaft (23); The limiting plate (22) is provided with a plurality of first limiting holes (22a) uniformly distributed along its circumference, and the supporting base frame (1) is provided with a second limiting hole (112a); the assembly tool further comprises a limiting pin (3), and the limiting pin (3) can be inserted into the second limiting hole (112a) and a first limiting hole (22a) coaxial with the second limiting hole (112a).

3. The assembly tool for wireless equipment according to claim 2, characterized in that: The limiting pin (3) comprises a threaded rod section (31), and at least one of the first limiting hole (22a) and the second limiting hole (112a) is provided with an internal thread adapted to the threaded rod section (31).

4. The assembly tool for wireless equipment according to claim 2, characterized in that: The supporting base frame (1) is installed with a bearing (12), and the supporting base frame (1) and the connecting shaft (23) are connected via the bearing (12).

5. The assembly tool for wireless equipment according to claim 2, characterized in that: The flip frame body (21) has a first end and a second end distributed along a first direction, the first end and the second end are respectively fixedly connected to a corresponding limiting plate (22), and the two limiting plates (22) are coaxially arranged.

6. The assembly tool for wireless devices according to any one of claims 1 to 5, characterized in that: The assembly tool also includes an adapter frame (4), and the adapter frame (4) and the flip frame (2) are detachably fixedly connected; the adapter frame (4) includes an adapter frame body (41) and a connecting component (42) for fixing the wireless device (1'), and the connecting component (42) is arranged on the adapter frame body (41), and the flip frame (2) indirectly installs the wireless device (1') through the adapter frame (4); The adapter frame (4) has a second hollow portion (4a), and the second hollow portion (4a) corresponds to the first hollow portion (2a).

7. The assembly tool for wireless equipment according to claim 6, characterized in that: The connecting component (42) comprises a connecting support (421) and a connecting screw (422); the connecting support (421) is provided with a connecting hole (421a); ​​and the connecting screw (422) is used to pass through the connecting hole (421a) to be threadedly connected to the wireless device (1').

8. The assembly tool for wireless equipment according to claim 7, characterized in that: The connecting support (421) includes a horizontal connecting plate (4211), and the horizontal connecting plate (4211) is fixedly connected to the adapter frame (41); the connecting support (421) also includes a support (4212), and the support (4212) protrudes from the horizontal connecting plate (4211); The support (4212) has a cavity (4212a), and the support (4212) includes a side wall portion (42121) and a top wall portion (42122) that enclose the cavity (4212a). The bottom of the cavity (4212a) has a first opening, and the side of the cavity (4212a) has a second opening. The horizontal connecting plate (4211) has a third opening, and the first opening and the third opening are connected.

9. The assembly tool for wireless equipment according to claim 8, characterized in that: The horizontal connecting plate (4211) is provided with one or more supports (4212).

10. The assembly tool for wireless devices according to any one of claims 1 to 5, characterized in that: The supporting base frame (1) comprises a supporting base frame body (11) and casters (13), wherein the casters (13) are arranged at the bottom of the supporting base frame body (11).