Terminal plugging and antenna coupling composite testing device of router
By designing slidingly connected terminal seats and coupling components, the router's terminal plug-in and antenna coupling test are integrated into one, solving the problem of large area occupied by existing test equipment and improving the testing efficiency.
Patent Information
- Application Number
- CN202421661727.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-12
- Publication Date
- 2025-07-18
- Estimated Expiration
- 2034-07-12
AI Technical Summary
Existing router testing equipment needs to be tested item by item, resulting in excessive footprint.
A composite test device for terminal plug-in and antenna coupling of router is designed. Through slidingly connected terminal seats and coupling components, terminal plug-in and antenna coupling test are integrated into one to reduce the device volume.
The integration of terminal plug-in and unplugging test and antenna coupling test is realized, reducing the space occupied by the equipment and improving the testing efficiency.
Smart Images

Figure CN223123152U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of router testing, and particularly relates to a combined testing device for terminal plugging and unplugging and antenna coupling of a router. Background Art
[0002] A router is a hardware device that connects two or more networks and acts as a gateway between networks.
[0003] Before leaving the factory, it is necessary to conduct finished product inspection on the router, such as terminal plugging and unplugging test and antenna coupling test of the router, etc.
[0004] Currently, the existing testing equipment forms testing processes in sequence and conducts finished product inspection on the router in the form of a production line. The existing testing equipment needs to conduct tests item by item, resulting in the problem of excessive occupied area. Summary of the Invention
[0005] The technical problem to be solved by the utility model is: aiming at the problem that the existing testing equipment needs to conduct tests item by item and has an excessive occupied area, a testing device for terminal plugging and unplugging and antenna coupling of a router is provided.
[0006] To solve the above technical problem, an embodiment of the utility model provides a combined testing device for terminal plugging and unplugging and antenna coupling of a router, including a base, a terminal block and a coupling component respectively arranged on the base; one end of the base along the first direction is provided with a workbench for placing the router; the terminal block is provided with a plurality of receiving holes for placing terminals, and the terminal block is slidably connected to the base along the first direction so as to be able to approach or move away from the workbench;
[0007] The coupling component includes a first connecting rod, a second connecting rod, a first coupling member and a second coupling member; the first coupling member and the second coupling member are arranged on the side of the terminal block away from the workbench, and both the first coupling member and the second coupling member are slidably connected to the base along the second direction; one end of the first connecting rod is rotatably connected to the first coupling member, and the other end is rotatably connected to the terminal block. One end of the second connecting rod is rotatably connected to the second coupling member, and the other end is rotatably connected to the terminal block; the ends of the first connecting rod and the second connecting rod away from the terminal block are gradually away from each other;
[0008] When the terminal block slides towards the direction close to the base, the first coupling member and the second coupling member approach each other; when the terminal block slides towards the direction away from the base, the first coupling member and the second coupling member move away from each other; there is a non-zero included angle between the first direction and the second direction.
[0009] Optionally, a first sliding assembly and a second sliding assembly are provided on the base. The first coupling member is slidably connected to the base through the first sliding assembly, and the second coupling member is slidably connected to the base through the second sliding assembly;
[0010] The first sliding assembly includes a first slide rail and a first slider slidably connected to the first slide rail. The first slide rail is fixed on the base and extends along the second direction. The first coupling member is disposed on the first slider;
[0011] The second sliding assembly includes a second slide rail and a second slider slidably connected to the second slide rail. The second slide rail is fixed on the base and extends along the second direction. The second coupling member is disposed on the second slider.
[0012] Optionally, the first coupling member includes a first coupling seat and a first coupling plate. The first coupling seat is disposed on the first slider. The first coupling plate is connected to the first coupling seat and extends in the third direction;
[0013] The first direction, the second direction, and the third direction are perpendicular to each other in pairs.
[0014] Optionally, the first coupling seat includes a first bolt, a second bolt, a first adjusting plate, and a second adjusting plate. The first adjusting plate is provided with a first adjusting groove extending along the first direction. The first bolt is inserted into the first adjusting groove and threadedly connected to the first slider. The second adjusting plate is provided with a second adjusting groove extending along the second direction. The second bolt is inserted into the second adjusting groove and threadedly connected to the first adjusting plate. The first adjusting plate is fixed to the first slider.
[0015] Optionally, the first coupling plate includes a first base plate, a second base plate, an abutting plate, a third bolt, a fourth bolt, and a fifth bolt. The first base plate is fixed on the second adjusting plate. The first base plate is provided with a first sliding groove and a first arc groove penetrating along its thickness direction. The first sliding groove extends along the third direction. The third bolt is inserted into the first sliding groove and bolted to the second base plate. The fourth bolt is inserted into the first arc groove and bolted to the second base plate. The second base plate is provided with a plurality of second sliding grooves. The fifth bolt is inserted into the second sliding grooves and bolted to the abutting plate. The abutting plate is located on one side of the second base plate close to the second coupling member.
[0016] Optionally, the second coupling member includes a second coupling seat and a second coupling plate. The second coupling seat is disposed on the second slider. The second coupling plate is connected to the second coupling seat and extends in the third direction;
[0017] The first direction, the second direction, and the third direction are perpendicular to each other pairwise.
[0018] Optionally, the second coupling seat includes a sixth bolt, a seventh bolt, a third adjusting plate, and a fourth adjusting plate. The third adjusting plate is provided with a third adjusting groove extending along the first direction. The sixth bolt is inserted into the third adjusting groove and threadedly connected to the second slider. The fourth adjusting plate is provided with a fourth adjusting groove extending along the second direction. The seventh bolt is inserted into the fourth adjusting groove and threadedly connected to the third adjusting plate. The third adjusting plate is fixed to the second slider.
[0019] Optionally, the second coupling plate includes a third base plate, a fourth base plate, a abutting plate, an eighth bolt, a ninth bolt, and a tenth bolt. The third base plate is fixed on the fourth adjusting plate. The third base plate is provided with a third sliding groove and a second arc-shaped groove along its thickness direction. The third sliding groove extends along the third direction. The ninth bolt is inserted into the third sliding groove and bolted to the fourth base plate. The fourth base plate is provided with a plurality of fourth sliding grooves. The tenth bolt is inserted into the fourth sliding grooves and bolted to the abutting plate. The abutting plate is located on the side of the fourth base plate close to the first coupling member.
[0020] Optionally, it further includes a driving member. The driving member is disposed on the base, and the driving member is configured to drive the terminal block to reciprocate along the first direction.
[0021] Optionally, the router terminal plugging / unplugging and antenna coupling composite testing device further includes an adjusting seat, an adjusting bolt, a third sliding rail, and a third slider. The third sliding rail extends along the first direction and is fixed on the base. The third slider is slidably connected to the third sliding rail. The adjusting seat is fixed on the third slider. The adjusting seat is provided with an adjusting groove. The adjusting bolt passes through the adjusting groove and is threadedly connected to the terminal block.
[0022] In a router terminal plugging / unplugging and antenna coupling composite testing device according to an embodiment of the present invention, a plurality of terminals are placed on the terminal block. The terminal block is close to the router for terminal plugging / unplugging testing. Meanwhile, the first connecting rod drives the first coupling member to be coupled with one of the antennas, and the second connecting rod drives the second coupling member to be coupled with the other antenna. The present invention can integrate the terminal plugging / unplugging testing and the coupling testing into one, greatly reducing the overall volume of the device. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] Figure 1 is an overall schematic diagram of a router terminal plugging / unplugging and antenna coupling composite testing device provided by an embodiment of the present invention;
[0024] Figure 2Exploded view of a router for the terminal insertion / extraction and antenna coupling composite test device provided by an embodiment of the present utility model;
[0025] Figure 3 Structural diagram of the router for the terminal insertion / extraction and antenna coupling composite test device provided by an embodiment of the present utility model after removing the base;
[0026] Figure 4 Exploded view of the router for the terminal insertion / extraction and antenna coupling composite test device provided by an embodiment of the present utility model;
[0027] Figure 5 Exploded view of the second coupling plate of the router for the terminal insertion / extraction and antenna coupling composite test device provided by an embodiment of the present utility model.
[0028] Reference numerals in the specification are as follows: 100, router; 1, base; 11, workbench; 2, terminal block; 21, terminal board; 22, adjustment seat; 221, adjustment slot; 3, first coupling member; 31, first coupling plate; 311, first substrate; 312, second substrate; 313, abutting plate; 314, first sliding slot; 315, first arc-shaped slot; 316, second sliding slot; 32, first coupling seat; 321, first adjusting plate; 322, second adjusting plate; 323, first adjusting slot; 324, second adjusting slot; 4, second coupling member; 41, second coupling plate; 411, third substrate; 412, fourth substrate; 413, abutting board; 414, third sliding slot; 415, second arc-shaped slot; 416, fourth sliding slot; 42, second coupling seat; 421, third adjusting plate; 422, fourth adjusting plate; 423, third adjusting slot; 424, fourth adjusting slot; 51, first slide rail; 52, first slider; 53, first mounting plate; 61, second slide rail; 62, second slider; 63, second mounting plate; 71, third slide rail; 74, third slider; 81, driving member. Detailed implementation manners
[0029] In order to make the technical problems, technical solutions and beneficial effects solved by the present utility model clearer and more understandable, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present utility model and are not used to limit the present utility model.
[0030] In this embodiment, the first direction, the second direction and the third direction mentioned are perpendicular to each other in pairs.
[0031] As Figures 1 to 5 shown, an embodiment of the present utility model provides a router terminal insertion / extraction and antenna coupling composite test device. Refer to Figures 1 to 3, including a base 1, a terminal block 2 and a coupling component respectively arranged on the base 1; a working platform 11 is arranged at one end of the base 1 in the first direction, and the working platform 11 is used for placing a router 100; a plurality of receiving holes for placing terminals are arranged on the terminal block 2, wherein the receiving holes correspond to the gateway ports of the router 100 one by one, and a network cable terminal is placed in each receiving hole. The terminal block 2 is slidably connected to the base 1 along the first direction so as to be able to approach or move away from the working platform 11, and the working platform 11 is arranged at one end of the sliding path of the terminal block 2.
[0032] The coupling component includes a first connecting rod, a second connecting rod, a first coupling member 3 and a second coupling member 4; the first coupling member 3 and the second coupling member 4 are arranged on the side of the terminal block 2 away from the working platform 11, and both the first coupling member 3 and the second coupling member 4 are slidably connected to the base 1 along the second direction; one end of the first connecting rod is rotatably connected to the first coupling member 3, the other end of the first connecting rod is rotatably connected to the terminal block 2, one end of the second connecting rod is rotatably connected to the second coupling member 4, and the other end of the second connecting rod is rotatably connected to the terminal block 2; the ends of the first connecting rod away from the terminal block 2 and the ends of the second connecting rod away from the terminal block 2 are gradually separated.
[0033] When the terminal block 2 approaches the base 1, the first coupling member 3 and the second coupling member 4 approach each other; when the terminal block 2 moves away from the base 1, the first coupling member 3 and the second coupling member 4 move away from each other.
[0034] In this embodiment, by pushing the terminal block 2 to move towards the working platform 11, at the same time, the first connecting rod and the second connecting rod respectively drive the first coupling member 3 and the second coupling member 4 to approach each other, so that the first coupling member 3 approaches one of the antennas of the router 100 and forms a coupling relationship with this antenna, and also makes the second coupling member 4 approach the other antenna of the router 100 and form a coupling relationship with this antenna. When the network cable terminal on the terminal block 2 approaches the working platform 11, it gradually inserts into the router 100.
[0035] When pushing the terminal block 2 to move away from the working platform 11, the first connecting rod and the second connecting rod respectively drive the first coupling member 3 and the second coupling member 4 to move away from each other, and the first coupling member 3 and the second coupling member 4 respectively move away from the antennas of the router 100, avoiding interference with the antennas when the arm picks and places products, and reducing the occurrence of phenomena such as coupling failure or scratching of the antennas caused by incorrect postures of the antennas.
[0036] As an example, a first sliding component and a second sliding component are arranged on the base 1, the first coupling member 3 is slidably connected to the base 1 through the first sliding component, and the second coupling member 4 is slidably connected to the base 1 through the second sliding component;
[0037] Reference Figure 4 As shown in Figure 4 , the first sliding assembly includes a first slide rail 51 and a first slider 52 slidably connected to the first slide rail 51. The first slide rail 51 is fixed on the base 1 and extends along a second direction. The first coupling member 3 is disposed on the first slider 52. In this embodiment, there are two first slide rails 51 and two first sliders 52 respectively. One first slide rail 51 and one first slider 52 are used in combination. A first mounting plate 53 is disposed on the first coupling member 3. The first mounting plate 53 connects the two sliders simultaneously. The two sliders drive the first mounting plate 53 to slide simultaneously, and the first mounting plate 53 drives the first coupling member 3 thereon to slide.
[0038] The second sliding assembly includes a second slide rail 61 and a second slider 62 slidably connected to the second slide rail 61. The second slide rail 61 is fixed on the base 1 and extends along the second direction. The second coupling member 4 is disposed on the second slider 62. In this embodiment, there are two second slide rails 61 and two second sliders 62 respectively. One second slide rail 61 and one second slider 62 are used in combination. A second mounting plate 63 is disposed on the second coupling member 4. The second mounting plate 63 connects the two sliders simultaneously. The two sliders drive the second mounting plate 63 to slide simultaneously, and the second mounting plate 63 drives the second coupling member 4 thereon to slide.
[0039] Reference Figure 3 and Figure 4 As an example, as shown in Figure 3 and Figure 4 , the first coupling member 3 includes a first coupling base 32 and a first coupling plate 31. The first coupling base 32 is disposed on the first mounting plate 53. The first coupling plate 31 is connected to the first coupling base 32 and extends in a third direction.
[0040] Specifically, the first coupling base 32 includes a first bolt, a second bolt, a first adjusting plate 321 and a second adjusting plate 322. The first adjusting plate 321 is provided with a first adjusting groove 323 extending along the first direction. The first bolt is inserted into the first adjusting groove 323 and threadedly connected to the first mounting plate 53. The second adjusting plate 322 is provided with a second adjusting groove 324 extending along the second direction. The second bolt is inserted into the second adjusting groove 324 and threadedly connected to the first adjusting plate 321. The first adjusting plate 321 is fixed to the first mounting plate 53.
[0041] When the first coupling seat 32 in this embodiment is installed, the position of the first adjusting plate 321 relative to the first mounting plate 53 can be adjusted by sliding the first bolt along the first direction in the first adjusting groove 323 and then screwing it into the first mounting plate 53. Similarly, the second adjusting plate 322 also adjusts the relative position of the second adjusting plate 322 relative to the first adjusting plate 321 by the same principle, thereby driving the overall adjustment of the position of the first coupling plate 31 on the second adjusting plate 322.
[0042] Referring to Figure 4 , specifically, the first coupling plate 31 includes a first substrate 311, a second substrate 312, a contact plate 313, a third bolt, a fourth bolt, and a fifth bolt. The first substrate 311 is fixed on the second adjusting plate 322. A first sliding groove 314 and a first arc groove 315 penetrating through its thickness are provided on the first substrate 311. The first sliding groove 314 extends along the third direction. The third bolt is inserted into the first sliding groove 314 and bolted to the second substrate 312. The fourth bolt is inserted into the first arc groove 315 and bolted to the second substrate 312. A plurality of second sliding grooves 316 are provided on the second substrate 312. The second sliding grooves 316 extend along the third direction. The fifth bolt is inserted into the second sliding grooves 316 and bolted to the contact plate 313. The contact plate 313 is located on the side of the second substrate 312 close to the second coupling member 4.
[0043] In this embodiment, a plurality of fourth bolts are provided, and the plurality of fourth bolts are arranged at intervals along the arc of the first arc groove 315. In this embodiment, the position of the second substrate 312 relative to the first substrate 311 can be adjusted by the position of the first bolt in the first sliding groove 314, and the angle of the second substrate 312 relative to the first substrate 311 can also be adjusted by the second arc groove 415. In this embodiment, the contact plate 313 is used to directly contact the antenna to form a coupling relationship.
[0044] Referring to Figure 4 , as an example, the second coupling member 4 includes a second coupling seat 42 and a second coupling plate 41. The second coupling seat 42 is provided on the second mounting plate 63. The second coupling plate 41 is connected to the second coupling seat 42. The second coupling plate 41 extends toward the third direction.
[0045] Specifically, the second coupling seat 42 includes a sixth bolt, a seventh bolt, a third adjusting plate 421, and a fourth adjusting plate 422. The third adjusting plate 421 is provided with a third adjusting groove 423 extending along the first direction. The sixth bolt is inserted into the third adjusting groove 423 and is threadedly connected to the second mounting plate 63. The fourth adjusting plate 422 is provided with a fourth adjusting groove 424 extending along the second direction. The seventh bolt is inserted into the fourth adjusting groove 424 and is threadedly connected to the third adjusting plate 421. The third adjusting plate 421 is fixed to the second mounting plate 63. In the same way as the adjustment method of the first coupling seat 32, the relative position of the third adjusting plate 421 relative to the slider is adjusted through the third adjusting groove 423 and the sixth bolt, and the relative position of the fourth adjusting plate 422 relative to the third adjusting plate 421 is adjusted through the fourth adjusting groove 424.
[0046] Referring to Figure 5 , specifically, the second coupling plate 41 includes a third substrate 411, a fourth substrate 412, a abutting plate 413, an eighth bolt, a ninth bolt, and a tenth bolt. The third substrate 411 is fixed to the fourth adjusting plate 422. The third substrate 411 is provided with a third sliding groove 414 and a second arc-shaped groove 415 penetrating through its thickness. The third sliding groove 414 extends along the third direction. The eighth bolt is inserted into the second arc-shaped groove 415 and is bolted to the fourth substrate 412. The ninth bolt is inserted into the third sliding groove 414 and is bolted to the fourth substrate 412. The fourth substrate 412 is provided with a plurality of fourth sliding grooves 416, and the fourth sliding grooves 416 extend along the third direction. The tenth bolt is inserted into the fourth sliding grooves 416 and is bolted to the abutting plate 413. The abutting plate 413 is located on the side of the fourth substrate 412 close to the first coupling member 3.
[0047] In the same way as the adjustment method of the first coupling plate 31, the position of the fourth substrate 412 relative to the third substrate 411 can be adjusted through the third sliding groove 414 and the second arc-shaped groove 415, and the relative position of the abutting plate 413 relative to the fourth substrate 412 is adjusted through the fourth sliding grooves 416.
[0048] In this embodiment, the terminal plugging / unplugging and antenna coupling composite test device for the router 100 further includes a driving member 81, an adjustment base 22, an adjustment bolt, a third slide rail 71 and a third slider 74. The third slide rail 71 extends along the first direction and is fixed on the base 1. The third slider 74 is slidably connected to the third slide rail 71. The adjustment base 22 is fixed on the third slider 74. An adjustment slot 221 is provided on the adjustment base 22. The adjustment bolt penetrates into the adjustment slot 221 and is threadedly connected to the terminal block 2. The driving member 81 is disposed on the base 1. The driving member 81 is used to drive the terminal block 2 to reciprocate along the first direction. In this embodiment, the driving member 81 is a cylinder. The driving member 81 is disposed between the first coupling member 3 and the second coupling member 4. The output shaft of the driving member 81 is connected to the adjustment base 22. The driving member 81 drives the adjustment base 22 to reciprocate, and the adjustment base 22 drives the terminal board 21 thereon to reciprocate. In this embodiment, there are two third slide rails 71 and two third sliders 74 respectively. One third slide rail 71 and one third slider 74 form a group, and the two groups are respectively disposed at both ends of the adjustment base 22 along the second direction.
[0049] In other embodiments, there is one first slider 52 and one first slide rail 51 respectively, and the first coupling member 3 is mounted on the first slider 52.
[0050] In other embodiments, there is one second slide rail 61 and one second slider 62 respectively, and the second coupling member 4 is mounted on the second slider 62.
[0051] In other embodiments, there is one third slide rail 71 and one third slider 74 respectively, and the adjustment base 22 is disposed on the third slider 74.
[0052] The above are only the preferred embodiments of the present invention, and are not intended to limit the present invention. Any modifications, equivalent replacements, and improvements made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.
Claims
1. A terminal plugging and unplugging and antenna coupling composite test device for a router, characterized in that It includes a base, a terminal block and a coupling component respectively arranged on the base; one end of the base in the first direction is provided with a router workbench for placement; the terminal block is provided with a plurality of receiving holes for placing terminals, and the terminal block is slidably connected to the base in the first direction so as to be able to approach or move away from the workbench; The coupling component includes a first connecting rod, a second connecting rod, a first coupling piece and a second coupling piece; the first coupling piece and the second coupling piece are arranged on the side of the terminal block away from the workbench, and both the first coupling piece and the second coupling piece are slidably connected to the base in the second direction; one end of the first connecting rod is rotatably connected to the first coupling piece, and the other end is rotatably connected to the terminal block. One end of the second connecting rod is rotatably connected to the second coupling piece, and the other end is rotatably connected to the terminal block; the ends of the first connecting rod away from the terminal block and the ends of the second connecting rod away from the terminal block gradually move away from each other; When the terminal block slides in the direction close to the base, the first coupling piece and the second coupling piece approach each other; When the terminal block slides in the direction away from the base, the first coupling piece and the second coupling piece move away from each other; there is a non-zero included angle between the first direction and the second direction.
2. The terminal plugging and unplugging and antenna coupling composite test device for a router according to claim 1, characterized in that The base is provided with a first sliding component and a second sliding component. The first coupling piece is slidably connected to the base through the first sliding component, and the second coupling piece is slidably connected to the base through the second sliding component; The first sliding component includes a first sliding rail and a first slider slidably connected to the first sliding rail. The first sliding rail is fixed on the base, and the first sliding rail extends along the second direction. The first coupling piece is arranged on the first slider; The second sliding component includes a second sliding rail and a second slider slidably connected to the second sliding rail. The second sliding rail is fixed on the base, and the second sliding rail extends along the second direction. The second coupling piece is arranged on the second slider.
3. The terminal plugging and unplugging and antenna coupling composite test device for a router according to claim 2, wherein The first coupling piece includes a first coupling seat and a first coupling plate. The first coupling seat is arranged on the first slider, and the first coupling plate is connected to the first coupling seat. The first coupling plate extends in the third direction; The first direction, the second direction and the third direction are perpendicular to each other in pairs.
4. The terminal plugging and unplugging and antenna coupling composite test device for a router according to claim 3, characterized in that, The first coupling seat includes a first bolt, a second bolt, a first adjusting plate and a second adjusting plate. The first adjusting plate is provided with a first adjusting groove extending in the first direction. The first bolt is inserted into the first adjusting groove and is threadedly connected to the first slider. The second adjusting plate is provided with a second adjusting groove extending in the second direction. The second bolt is inserted into the second adjusting groove and is threadedly connected to the first adjusting plate. The first adjusting plate is fixed to the first slider.
5. The terminal plugging and unplugging and antenna coupling composite test device for a router according to claim 4, wherein The first coupling plate includes a first substrate, a second substrate, an abutting plate, a third bolt, a fourth bolt, and a fifth bolt. The first substrate is fixed on the second adjusting plate. A first sliding groove and a first arc-shaped groove penetrating along the thickness direction of the first substrate are provided on the first substrate. The first sliding groove extends along the third direction. The third bolt is inserted into the first sliding groove and bolted to the second substrate. The fourth bolt is inserted into the first arc-shaped groove and bolted to the second substrate. A plurality of second sliding grooves are provided on the second substrate. The fifth bolt is inserted into the second sliding grooves and bolted to the abutting plate. The abutting plate is located on one side of the second substrate close to the second coupling member.
6. The terminal plugging and unplugging and antenna coupling composite test device for a router according to claim 2, characterized in that, The second coupling member includes a second coupling seat and a second coupling plate. The second coupling seat is arranged on the second slider. The second coupling plate is connected to the second coupling seat. The second coupling plate extends towards the third direction. The first direction, the second direction, and the third direction are perpendicular to each other in pairs.
7. The terminal plugging / unplugging and antenna coupling composite testing device for a router according to claim 6, characterized in that, The second coupling seat includes a sixth bolt, a seventh bolt, a third adjusting plate, and a fourth adjusting plate. The third adjusting plate is provided with a third adjusting groove extending along the first direction. The sixth bolt is inserted into the third adjusting groove and threadedly connected to the second slider. The fourth adjusting plate is provided with a fourth adjusting groove extending along the second direction. The seventh bolt is inserted into the fourth adjusting groove and threadedly connected to the third adjusting plate. The third adjusting plate is fixed on the second slider.
8. The terminal plugging and unplugging and antenna coupling composite test device for a router according to claim 7, characterized in that The second coupling plate includes a third substrate, a fourth substrate, a abutting board, an eighth bolt, a ninth bolt, and a tenth bolt. The third substrate is fixed on the fourth adjusting plate. A third sliding groove and a second arc-shaped groove penetrating along the thickness direction of the third substrate are provided on the third substrate. The third sliding groove extends along the third direction. The ninth bolt is inserted into the third sliding groove and bolted to the fourth substrate. A plurality of fourth sliding grooves are provided on the fourth substrate. The tenth bolt is inserted into the fourth sliding grooves and bolted to the abutting board. The abutting board is located on one side of the fourth substrate close to the first coupling member.
9. The terminal plugging and unplugging and antenna coupling composite test device for the router according to claim 1, wherein, It further includes a driving member. The driving member is arranged on the base. The driving member is used to drive the terminal block to reciprocate along the first direction.
10. The terminal plugging and unplugging and antenna coupling composite test device for the router according to claim 1, characterized in that, The router terminal plugging and unplugging and antenna coupling composite test device further includes an adjusting seat, an adjusting bolt, a third slide rail, and a third slider. The third slide rail extends along the first direction and is fixed on the base. The third slider is slidably connected to the third slide rail. The adjusting seat is fixed on the third slider. An adjusting groove is provided on the adjusting seat. The adjusting bolt penetrates into the adjusting groove and is threadedly connected to the terminal block.