A portable automatic test adapter and system for an airborne device
By designing a loading box and clamping assembly for a portable automatic test adapter, the problems of dust accumulation and cable detachment in airborne equipment test adapters were solved, resulting in a more stable and efficient testing process.
Patent Information
- Application Number
- CN202411294073.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-14
- Publication Date
- 2025-11-04
- Estimated Expiration
- 2044-09-14
AI Technical Summary
The automatic test adapters of existing airborne equipment are prone to accumulating dust, and the cables are easily detached in case of accidents, affecting test efficiency and results.
A portable automatic test adapter is designed, including a loading box and a clamping assembly. The loading box houses the adapter components, and the clamping assembly limits the cable. The synchronous opening and closing of the box cover and the automatic clamping of the cable are achieved through incomplete gears and a linkage unit.
It effectively prevents dust accumulation and accidental cable detachment, improving the stability and efficiency of testing.
Smart Images

Figure CN119199192B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of automated testing technology, and more specifically, to a portable automated testing adapter and system for airborne equipment. Background Technology
[0002] In recent years, with the rapid advancement of aerospace electronics technology, related equipment and their corresponding cables in the aerospace field have become increasingly complex and diverse. To ensure their performance and safety, regular testing is therefore necessary.
[0003] An Automatic Test Adapter (ATA) is a critical tool for the testing and maintenance of avionics equipment. Due to the diversity of existing equipment and cables, the adapter needs to have diverse interfaces and the ability to adapt. Because the adapter is constantly exposed to the elements, dust easily accumulates in the sockets, causing poor contact and severely affecting test results. Furthermore, because existing adapters lack anti-disconnection devices or have insufficient anti-disconnection capabilities, the connected cables can easily come loose unexpectedly, causing test interruptions and significantly impacting testing efficiency. Summary of the Invention
[0004] The purpose of this invention is to provide a portable automatic test adapter and system for airborne equipment, which solves the problems of dust accumulation in existing adapter connection holes and cables being easily pulled out in case of accidents.
[0005] This invention is achieved through the following technical solution: a portable automatic test adapter for airborne equipment, comprising an adapter component, the adapter component including an adapter and an integrated plug-in board connected to the adapter, and further comprising a loading box, a first opening and closing component, and a second opening and closing component; the loading box is used to store the adapter component, and the first and second opening and closing components are both used to close the loading box; the loading box includes a box body and a second box cover and a first box cover respectively movably disposed at different ends of the box body; the adapter component further includes a clamping assembly, the clamping assembly including a first clamping frame, a second clamping frame, and a linkage unit for driving the first clamping frame and the second clamping frame to move, the integrated plug-in board and the linkage unit forming a cooperation; the first clamping frame and the second clamping frame are both provided with clamping holes; the first opening and closing component includes two sets of mirror-arranged opening and closing components, the opening and closing component including two sets of symmetrically arranged opening and closing units, the two sets of opening and closing units respectively controlling one of the first box covers.
[0006] To better realize the present invention, the opening and closing unit further includes an incomplete gear and a third spring mounted on the housing. A pressure rod and a third connecting rod are mounted on the incomplete gear. The third connecting rod is rotatably connected to the first housing cover. A pressure plate is mounted on the third spring, and the pressure plate cooperates with the pressure rod. The opening and closing unit also includes a second connecting rod rotatably connected to the housing and rotatably connected to the first housing cover. The incomplete gears in the two sets of opening and closing units on the housing mesh with each other.
[0007] To better realize the present invention, a first connecting rod is further installed on the incomplete gear, a fourth connecting rod is rotatably connected to the first connecting rod, and the fourth connecting rod is rotatably connected to the integrated insert plate.
[0008] To better realize the present invention, the linkage unit further includes a movable bracket, a first clamping rod, a second clamping rod, and a fixed bracket. The movable bracket is slidably connected to the housing, and the fixed bracket is fixedly connected to the housing. The first clamping rod and the second clamping rod are both slidably connected to the fixed bracket. The first clamping rod is rotatably connected to the second clamping rod, and the second clamping rod is rotatably connected to the first clamping rod. A telescopic rod is slidably connected to the movable bracket, and a second spring is provided between the telescopic rod and the movable bracket. The first clamping rod and the second clamping rod are both rotatably connected to the telescopic rod. A movable rod is slidably connected to the integrated insert plate, and a first spring is provided between the movable rod and the integrated insert plate. A limiting rod is rotatably connected to the end of the movable rod, and a torsion spring is provided between the limiting rod and the movable rod. The limiting rod cooperates with the second clamping rod.
[0009] To better realize the present invention, the second opening and closing component further includes a second connecting block rotatably connected to the box body and a rotating rod, a first connecting block rotatably connected to the rotating rod, a fourth spring provided between the second connecting block and the first connecting block, an opening and closing push rod installed on the rotating rod, and the opening and closing push rod connected to the second box cover; a connecting plate installed on the second box cover, and a slider rotatably connected to the box body, the slider being slidably connected to the connecting plate.
[0010] To better realize the present invention, a rope is further installed on the movable rod, and the rope is connected to the slider.
[0011] To better realize the present invention, the box body is further provided with a handle and two supporting isolation plates.
[0012] A portable automated test system for airborne equipment includes a test component and an adapter assembly connected thereto, the adapter assembly using the aforementioned portable automated test adapter for airborne equipment.
[0013] Compared with the prior art, the present invention has the following advantages and beneficial effects:
[0014] (1) By using a loading box to store the adapter components, the present invention can reduce the accumulation of dust in various sockets on the integrated plug board; at the same time, the clamping component is used to limit the cable inserted into the socket of the integrated plug board to prevent the cable from accidentally falling off.
[0015] (2) By setting up a pressure rod, a third spring and a pressure plate, the present invention ensures that the first box cover will not be easily opened and closed, thus maintaining the stability of the first box cover. The two incomplete gears meshing with each other ensure that the two first box covers open and close synchronously.
[0016] (3) By setting the rope to connect the slider and the moving rod, the slider will pull the rope when it rotates, thereby pulling the moving rod, so that the first clamping frame and the second clamping frame will start to clamp the cable, improving the linkage and eliminating the need to manually pull the moving rod. Attached Figure Description
[0017] Figure 1 This is a schematic diagram of the overall structure of the present invention.
[0018] Figure 2 The diagram shows the overall structure of the invention from the front and rear views.
[0019] Figure 3 This is a right-side sectional view of the overall structure of the present invention.
[0020] Figure 4 This is a top-view sectional view of the overall structure of the present invention.
[0021] Figure 5 This is a top-view schematic diagram of the structure of the first opening and closing component.
[0022] Figure 6 This is a schematic diagram of the first opening and closing component.
[0023] Figure 7 This is a schematic diagram of the clamping component structure.
[0024] Figure 8 This is a schematic diagram of the linkage unit structure.
[0025] Figure 9 This is a schematic diagram of the telescopic rod and the limiting rod structure.
[0026] Figure 10 This is a schematic diagram of the second opening and closing component.
[0027] Wherein: 1-Loading box; 2-Adapter component; 3-Test component; 4-First opening and closing component; 5-Second opening and closing component; 101-Box body; 102-Handle; 103-Second box cover; 104-First box cover; 105-Support isolation plate; 201-Adapter; 202-Integrated insert plate; 203-First clamping frame; 204-Second clamping frame; 205-Clamping hole; 206-Moving bracket; 207-Moving rod; 208-Rope; 209-First spring; 210-First clamping rod; 211-The 212-Secondary clamping rod; 213-Limiting rod; 214-Second spring; 215-Torsion spring; 216-Fixed bracket; 401-Incomplete gear; 402-Pressure rod; 403-Third spring; 404-Pressure plate; 405-First connecting rod; 406-Second connecting rod; 407-Third connecting rod; 408-Fourth connecting rod; 501-Opening / closing push rod; 502-Rotating rod; 503-First connecting block; 504-Fourth spring; 505-Second connecting block; 506-Connecting plate; 507-Slider. Detailed Implementation
[0028] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of the present invention.
[0029] In the description of this invention, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "linking" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this invention based on the specific circumstances.
[0030] Example 1:
[0031] This embodiment provides a portable automatic test adapter for airborne equipment, specifically as follows: Figures 1-4 As shown, the device includes an adapter component 2, which includes an adapter 201 and an integrated plug 202. The integrated plug 202 is electrically connected to the adapter 201. The device also includes a loading box 1, a first opening and closing component 4, and a second opening and closing component 5. The loading box 1 is used to store the adapter component 2, and the first opening and closing component 4 and the second opening and closing component 5 are both used to close the loading box 1.
[0032] like Figure 4As shown, the loading box 1 includes a box body 101 and a second box cover 103 and a first box cover 104 respectively movably disposed at different ends of the box body 101.
[0033] like Figures 7-8 As shown, the adapter component 2 further includes a clamping assembly, which includes a first clamping frame 203, a second clamping frame 204, and a linkage unit for driving the first clamping frame 203 and the second clamping frame 204 to move. The integrated insert plate 202 cooperates with the linkage unit. Both the first clamping frame 203 and the second clamping frame 204 are provided with clamping holes 205.
[0034] like Figures 5-6 As shown, the first opening and closing component 4 includes two sets of mirror-arranged opening and closing components. Each opening and closing component includes two sets of symmetrically arranged opening and closing units, and the two sets of opening and closing units control one of the first box covers 104.
[0035] Using the loading box 1 to store the adapter component 2 can reduce the accumulation of dust in various ports on the integrated plug board 202; at the same time, the clamping component is used to limit the cables plugged into the ports of the integrated plug board 202 to prevent the cables from accidentally falling out.
[0036] Example 2:
[0037] This embodiment further expands the opening and closing unit based on Embodiment 1, specifically as follows: Figures 5-6 As shown, the opening and closing unit includes an incomplete gear 401, a pressure rod 402, a third spring 403, a pressure plate 404, a second connecting rod 406, and a third connecting rod 407.
[0038] An incomplete gear 401 is rotatably mounted on the housing 101, and a third spring 403 is fixedly mounted on it. A pressure rod 402 and a third connecting rod 407 are fixedly mounted on the incomplete gear 401. The third connecting rod 407 is rotatably connected to the first housing cover 104. A pressure plate 404 is mounted on the third spring 403, and the pressure plate 404 cooperates with the pressure rod 402. A second connecting rod 406 is rotatably connected to the housing 101, and the second connecting rod 406 is rotatably connected to the first housing cover 104. The incomplete gears 401 in the two sets of opening and closing units on the housing 101 mesh with each other.
[0039] When the first box cover 104 needs to be opened, the operator manually and slowly pulls it open. At this time, the first box cover 104 moves around one end of the second connecting rod 406. Simultaneously, the first box cover 104 drives the third connecting rod 407 to deflect synchronously with the second connecting rod 406. When the third connecting rod 407 deflects, it drives the incomplete gear 401 to rotate. Since the two incomplete gears 401 are meshed, the movement of the two first box covers 104 is synchronous. When the incomplete gear 401 rotates, it drives the pressure rod 402 to move synchronously. The pressure rod 402 begins to squeeze the pressure plate 404, causing the third spring 403 to be compressed until the third spring 403 is compressed to its maximum extent. Then the first box cover 104 continues to open. At this time, the pressure rod 402 begins to move away from the third spring 403. That is, when the third spring 403 resets, it actively drives the pressure plate 404 to push past the pressure rod 402 until the first box cover 104 is fully opened. The same principle applies when closing the first box cover 104.
[0040] By setting up the pressure rod 402, the third spring 403, and the pressure plate 404, the first box cover 104 will not be easily opened or closed, thus maintaining the stability of the first box cover 104. The two incomplete gears 401 meshing with each other ensure that the two first box covers 104 open and close synchronously, preventing the situation of "one opening and the other closing".
[0041] The other parts of this embodiment are the same as those in the above embodiments, and will not be described again.
[0042] Example 3:
[0043] This embodiment further expands the opening and closing unit based on embodiment 2, specifically as follows: Figures 5-6 As shown, the opening and closing unit also includes a first link 405 and a fourth link 408.
[0044] A first connecting rod 405 is fixedly installed on the incomplete gear 401, and a fourth connecting rod 408 is rotatably connected to the first connecting rod 405. The fourth connecting rod 408 is rotatably connected to the integrated insert plate 202.
[0045] When the first cover 104 is opened and closed, the rotation of the incomplete gear 401 will drive the first connecting rod 405 to rotate synchronously. When the first connecting rod 405 rotates, it will cause the integrated plug plate 202 to move linearly through the fourth connecting rod 408, so that the integrated plug plate 202 stored inside the loading box 1 moves towards the opening and closing position, making it easier for personnel to insert and remove cables from the integrated plug plate 202.
[0046] The other parts of this embodiment are the same as those in the above embodiments, and will not be described again.
[0047] Example 4:
[0048] This embodiment further expands the linkage unit based on embodiment 3, specifically as follows: Figures 7-8 As shown, the linkage unit includes a movable bracket 206, a movable rod 207, a first spring 209, a first clamping rod 210, a second clamping rod 211, a telescopic rod 212, a limiting rod 213, a second spring 214, a torsion spring 215, and a fixed bracket 216.
[0049] The movable bracket 206 is slidably connected to the housing 101, and the fixed bracket 216 is fixedly connected to the housing 101. The first clamping frame 203 and the second clamping frame 204 are both slidably connected to the fixed bracket 216. The first clamping rod 210 is rotatably connected to the second clamping frame 204, and the second clamping rod 211 is rotatably connected to the first clamping frame 203. A telescopic rod 212 is slidably connected to the movable bracket 206, and a second spring 214 is provided between the telescopic rod 212 and the movable bracket 206. The first clamping rod 210 and the second clamping rod 211 are both rotatably connected to the telescopic rod 212. A movable rod 207 is slidably connected to the integrated insert plate 202, and a first spring 209 is provided between the movable rod 207 and the integrated insert plate 202. A limiting rod 213 is rotatably connected to the end of the movable rod 207, and a torsion spring 215 is provided between the limiting rod 213 and the movable rod 207. The limiting rod 213 cooperates with the second clamping rod 211.
[0050] When the first cover 104 is opened, and the integrated insert plate 202 moves toward the opening of the box 101, the integrated insert plate 202 drives the moving rod 207 to move synchronously via the first spring 209. When the limiting rod 213 contacts the inclined end of the telescopic rod 212, the moving bracket 206 is pushed. The linear movement of the moving bracket 206 causes the telescopic rod 212 to move closer and closer to the fixed bracket 216. At this time, the angle between the first clamping rod 210 and the second clamping rod 211 begins to increase, that is, the second clamping frame 204 and the first clamping frame 203 begin to be misaligned. Personnel can pass the cable through the first clamping frame 203 and the second clamping frame 204 and then insert it into the integrated insert plate 202. When the moving bracket 206 can no longer move, the second spring 214 is compressed, and the telescopic rod 207... 12 retracts, and then the limiting rod 213 passes over the telescopic rod 212; when the moving rod 207 is pulled, the first spring 209 is stretched, and at the same time the moving rod 207 drives the limiting rod 213 to squeeze the telescopic rod 212. At this time, the moving bracket 206 begins to move laterally in the opposite direction, and the angle between the first clamping rod 210 and the second clamping rod 211 begins to decrease, that is, the first clamping frame 203 and the second clamping frame 204 begin to overlap. At this time, the clamping hole 205 will clamp the cable inserted into the integrated plug board 202; when the moving bracket 206 can no longer move, the first spring 209 continues to stretch, and at the same time the torsion spring 215 is twisted, the limiting rod 213 deflects, and then the limiting rod 213 passes over the telescopic rod 212, and the torsion spring 215 and the first spring 209 return to their original positions.
[0051] With the above settings, when the first box cover 104 is opened, the first clamping frame 203 and the second clamping frame 204 can be opened automatically to facilitate cable insertion. Then, pulling the moving rod 207 can automatically close the first clamping frame 203 and the second clamping frame 204 to clamp and limit the cable and prevent accidental fall.
[0052] The other parts of this embodiment are the same as those in the above embodiments, and will not be described again.
[0053] Example 5:
[0054] This embodiment further expands upon embodiment 4 by modifying the second opening / closing component 5, specifically as follows: Figure 10 As shown, the second opening and closing component 5 includes an opening and closing push rod 501, a rotating rod 502, a first connecting block 503, a fourth spring 504, a second connecting block 505, a connecting plate 506, and a slider 507.
[0055] The housing 101 is rotatably connected to a second connecting block 505 and a rotating rod 502. The rotating rod 502 is rotatably connected to a first connecting block 503. A fourth spring 504 is provided between the second connecting block 505 and the first connecting block 503. An opening and closing push rod 501 is installed on the rotating rod 502 and is connected to the second housing cover 103. A connecting plate 506 is installed on the second housing cover 103. A slider 507 is rotatably connected to the housing 101 and is slidably connected to the connecting plate 506.
[0056] When the second lid 103 needs to be opened, pull the second lid 103. The slider 507 starts to rotate and slides on the connecting plate 506. At this time, the opening / closing push rod 501 starts to drive the rotating rod 502 to rotate. When the rotating rod 502 rotates, it drives the first connecting block 503 to move closer to the second connecting block 505. The distance between the first connecting block 503 and the second connecting block 505 decreases, causing the fourth spring 504 to be compressed. Then the fourth spring 504 is compressed to its maximum. Then the second lid 103 continues to be pulled open. The first connecting block 503 will start to move away from the second connecting block 505. The fourth spring 504 will start to reset and actively push the first connecting block 503. The first connecting block 503 will then push the rotating rod 502 to rotate. At this time, the opening / closing push rod 501 will push the second lid 103 out until the second lid 103 is fully open. When the second lid 103 needs to be closed, simply push the second lid 103 in the opposite direction.
[0057] With the above settings, the second lid 103 can be as stable as the first lid 104, and will not easily open or close.
[0058] The other parts of this embodiment are the same as those in the above embodiments, and will not be described again.
[0059] Example 6:
[0060] This embodiment further expands upon embodiment 5 by modifying adapter component 2, specifically as follows: Figure 8 , Figure 10 As shown, a rope 208 is installed on the moving rod 207, and the rope 208 is connected to the slider 507.
[0061] When the cable is inserted into the integrated plug-in board 202, the second box cover 103 is opened. When the slider 507 rotates, it will pull the rope 208, which in turn pulls the moving rod 207, so that the first clamping frame 203 and the second clamping frame 204 begin to clamp the cable, improving the linkage and eliminating the need to manually pull the moving rod 207.
[0062] The other parts of this embodiment are the same as those in the above embodiments, and will not be described again.
[0063] Example 7:
[0064] This embodiment further expands upon any one of embodiments 1-6 by extending the loading box 1, specifically as follows: Figure 4 As shown, the box 101 is provided with a handle 102 and two supporting isolation plates 105.
[0065] The handle 102 is for staff to carry, while the support partition 105 is used to support the adapter 201 and separate the adapter 201 from the other parts.
[0066] The other parts of this embodiment are the same as those in the above embodiments, and will not be described again.
[0067] Example 8:
[0068] This embodiment provides a portable automatic testing system for airborne equipment, such as... Figures 2-4 As shown, it includes a test component 3 and an adapter assembly connected thereto, the adapter assembly using a portable automatic test adapter for airborne equipment as described in any one of Embodiments 1-7.
[0069] During operation, the first cover 104 is opened first. At the same time as the first cover 104 is opened, the first clamping frame 203 and the second clamping frame 204 are also staggered. At this time, the cable is passed through the clamping hole 205 and then inserted into the corresponding socket on the integrated plug-in board 202. Then, the second cover 103 is opened to expose the test component 3. At the same time, under the pull of the rope 208, the first clamping frame 203 and the second clamping frame 204 begin to clamp the cable. The signal is transmitted from the external cable to the adapter 201 for conversion and then output to the test component 3 for testing. After the test is completed, the second cover 103 is closed. At this time, the first clamping frame 203 and the second clamping frame 204 are staggered again to facilitate the removal of the cable. Then, the first cover 104 is closed. Under the action of the integrated plug-in board 202, the first clamping frame 203 and the second clamping frame 204 return to the overlapping state. After the second box cover 103 and the first box cover 104 are both closed, personnel can carry the loading box 1 by holding the handle 102.
[0070] The other parts of this embodiment are the same as those in the above embodiments, and will not be described again.
[0071] The above description is merely a preferred embodiment of the present invention and is not intended to limit the present invention in any way. Any simple modifications or equivalent changes made to the above embodiments based on the technical essence of the present invention shall fall within the protection scope of the present invention.
Claims
1. A portable automatic test adapter for airborne equipment, comprising an adapter component (2), the adapter component (2) comprising an adapter (201) and an integrated plug-in board (202), the integrated plug-in board (202) being connected to the adapter (201), characterized in that: It also includes a loading box (1), a first opening and closing component (4), and a second opening and closing component (5); the loading box (1) is used to store the adapter component (2), and the first opening and closing component (4) and the second opening and closing component (5) are both used to close the loading box (1); The loading box (1) includes a box body (101) and a second box cover (103) and a first box cover (104) respectively movably disposed at different ends of the box body (101); The adapter component (2) further includes a clamping assembly, which includes a first clamping frame (203), a second clamping frame (204), and a linkage unit that drives the first clamping frame (203) and the second clamping frame (204) to perform actions. The integrated insert plate (202) cooperates with the linkage unit. Both the first clamping frame (203) and the second clamping frame (204) are provided with clamping holes (205). The linkage unit includes a movable bracket (206), a first clamping rod (210), a second clamping rod (211), and a fixed bracket (216). The movable bracket (206) is slidably connected to the housing (101), and the fixed bracket (216) is fixedly connected to the housing (101). The first clamping frame (203) and the second clamping frame (204) are both slidably connected to the fixed bracket (216). The first clamping rod (210) is rotatably connected to the second clamping frame (204), and the second clamping rod (211) is rotatably connected to the first clamping frame (203). A telescopic rod is slidably connected to the movable bracket (206). 212), a second spring (214) is provided between the telescopic rod (212) and the movable bracket (206), and the first clamping rod (210) and the second clamping rod (211) are rotatably connected to the telescopic rod (212); the movable rod (207) is slidably connected to the integrated insert plate (202), and a first spring (209) is provided between the movable rod (207) and the integrated insert plate (202). The end of the movable rod (207) is rotatably connected to the limiting rod (213), and a torsion spring (215) is provided between the limiting rod (213) and the movable rod (207). The limiting rod (213) cooperates with the second clamping rod (211); The first opening and closing component (4) includes two sets of mirror-arranged opening and closing components. The opening and closing components include two sets of symmetrically arranged opening and closing units. The two sets of opening and closing units control one of the first box covers (104).
2. A portable automatic test adapter for airborne equipment according to claim 1, characterized in that: The opening and closing unit includes an incomplete gear (401) and a third spring (403) mounted on the housing (101). A pressure rod (402) and a third connecting rod (407) are mounted on the incomplete gear (401). The third connecting rod (407) is rotatably connected to the first housing cover (104). A pressure plate (404) is mounted on the third spring (403). The pressure plate (404) cooperates with the pressure rod (402). The opening and closing unit also includes a second connecting rod (406) rotatably connected to the housing (101). The second connecting rod (406) is rotatably connected to the first housing cover (104). The incomplete gears (401) in the two sets of opening and closing units on the housing (101) mesh with each other.
3. A portable automatic test adapter for airborne equipment according to claim 2, characterized in that: A first connecting rod (405) is mounted on the incomplete gear (401), and a fourth connecting rod (408) is rotatably connected to the first connecting rod (405). The fourth connecting rod (408) is rotatably connected to the integrated insert plate (202).
4. A portable automatic test adapter for airborne equipment according to any one of claims 1-3, characterized in that: The second opening and closing component (5) includes a second connecting block (505) rotatably connected to the box body (101) and a rotating rod (502). A first connecting block (503) is rotatably connected to the rotating rod (502). A fourth spring (504) is provided between the second connecting block (505) and the first connecting block (503). An opening and closing push rod (501) is installed on the rotating rod (502) and is connected to the second box cover (103). A connecting plate (506) is installed on the second box cover (103). A slider (507) is rotatably connected to the box body (101) and is slidably connected to the connecting plate (506).
5. A portable automatic test adapter for airborne equipment according to claim 4, characterized in that: A rope (208) is mounted on the movable rod (207), and the rope (208) is connected to the slider (507).
6. A portable automatic test adapter for airborne equipment according to claim 5, characterized in that: The box (101) is provided with a handle (102) and two supporting isolation plates (105).
7. A portable automatic testing system for airborne equipment, comprising a testing component (3) and an adapter assembly connected thereto, characterized in that: The adapter assembly uses a portable automatic test adapter for airborne equipment as described in any one of claims 1-6.
Citation Information
Patent Citations
Computer application detection device with high stability
CN112764470A
High-capacity high-speed optical fiber ferrule adapter
CN217425744U