Seat switch detection equipment

Through the automatic detection of the rotating platform mechanism and the test tooling, the problem of inaccurate force value and stroke control in manual inspection is solved, and the efficient and accurate testing of seat switches is achieved, and it is suitable for various types of seat switches.

CN223064829UActive Publication Date: 2025-07-04上海鹰击汽车部件有限公司
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Patent Information

Application Number
CN202422053271.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-22
Publication Date
2025-07-04
Estimated Expiration
2034-08-22

AI Technical Summary

Technical Problem

In the prior art, manual detection of the force value and stroke control of the seat switch is inaccurate, resulting in deviations in the detection results, which may lead to unnecessary product scrapping or quality hazards.

Method used

The rotating platform mechanism and test tooling are adopted to achieve automated inspection through the stage on the turntable and multiple test tooling. The servo motor is used to control the force and stroke of the lever to simulate real usage scenarios, and combined with the replaceable lever to adapt to different types of switches.

Benefits of technology

It improves the accuracy and efficiency of seat switch testing, reduces the risks of missed and missed inspections, is suitable for various types of seat switches, and improves the scope of application of detection equipment.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model relates to seat switch detection equipment, and relates to the technical field of automobile manufacturing. The device comprises an operation table, a rotating platform mechanism is arranged on the operation table, and the rotating platform mechanism comprises a rotating disc rotationally arranged on the operation table; the rotating disc is provided with at least one carrying table used for installing a seat switch, the operation table is provided with a plurality of testing tools in the rotating direction of the rotating disc, and the testing tools are used for conducting function testing on a plurality of shifting buttons on the seat switch respectively. The seat switch testing device has the advantage that the seat switch testing accuracy can be improved.
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Description

Technical Field

[0001] The present application relates to the technical field of automobile manufacturing, and in particular to a seat switch detection device. Background Art

[0002] The conventional testing process of seat switches usually involves manual operation, with the technician holding the test harness to connect with the product, and then assembling the product button to the switch box to simulate the actual use scenario in the vehicle installation environment. However, when following the technical specifications of the seat switch, especially for the evaluation of its operating performance (including the required force value and travel range), manual testing has significant limitations.

[0003] Since manual operation cannot accurately control the applied force and stroke, this uncertainty may lead to deviations in the test results. On the one hand, if the operator does not have enough force or the stroke is not in place during the test, the seat switch that meets the standards may be mistakenly judged as unqualified, which will cause unnecessary product scrapping and economic losses. On the other hand, if the applied force is too large, even if the switch may have problems in actual use, it may be mistakenly judged as qualified, thus burying quality risks. Utility Model Content

[0004] In order to improve the accuracy of seat switch testing, the present application provides a seat switch detection device.

[0005] The seat switch detection device provided in this application adopts the following technical solution:

[0006] A seat switch detection device includes an operating table, on which a rotating platform mechanism is arranged, and the rotating platform mechanism includes a turntable rotatably arranged on the operating table; at least one carrier for mounting a seat switch is arranged on the turntable, and a plurality of test fixtures are arranged on the operating table along the rotation direction of the turntable, and the plurality of test fixtures are respectively used to perform functional tests on a plurality of dial buttons on the seat switch.

[0007] By adopting the above technical solution, before testing the seat switch, the seat switch is first fixed on the carrier, and then the rotating platform structure drives the turntable to rotate, so that the carrier on the turntable can correspond to multiple test fixtures in sequence. During the detection process, the test fixture can ensure that the force and stroke of turning the button are within the range of the test standard, so that the test fixture can be used instead of manual labor to realize the detection of the seat switch, thereby improving the accuracy of the seat switch test.

[0008] Preferably, the rotating platform mechanism further comprises a hollow divider and a rotating drive member disposed on the operating table, wherein an output end of the rotating drive member is connected to an input end of the hollow divider, and a rotating portion of the hollow divider is connected to the turntable.

[0009] By adopting the above technical solution, the indexing rotation of the turntable can be realized by setting a hollow divider, so that the carrier can accurately rotate to the position corresponding to the test fixture.

[0010] Preferably, the carrier includes a plurality of carriers, and a plurality of workstations are provided on the operating table. Each carrier corresponds to one workstation, and a plurality of the test fixtures are respectively arranged corresponding to the workstations.

[0011] By adopting the above technical solution, by setting a plurality of carriers, the device can detect a plurality of seat switches simultaneously, which can improve the overall detection efficiency.

[0012] Preferably, one of the workstations is set as a product loading and unloading workstation, and the remaining workstations are set as test workstations. A plurality of the test fixtures are respectively arranged corresponding to the test workstations.

[0013] By adopting the above technical solution, by setting a product loading and unloading workstation, it is convenient for relevant personnel to load and unload the seat switch, which can improve the detection efficiency.

[0014] Preferably, the carrier includes a support plate, and a clamping component and a power supply connection component are arranged on the support plate. The clamping component is used for clamping and fixing the seat switch; the power supply connection component includes a first driving member installed on the support plate and a power supply connection port installed at the output end of the first driving member. The first driving member is used to drive the power supply connection port to approach or move away from the seat switch, and the power supply connection port is used for electrically connecting with the power supply head of the seat switch.

[0015] By adopting the above technical solution, the seat switch can be fixed on the carrier by using the clamping component, and at the same time, it is convenient to remove the seat switch that has completed the test from the carrier; after the seat switch can be fixed on the carrier, the first driving member drives the power supply connection port to approach the power supply head, so that the seat switch can obtain the detection power supply.

[0016] Preferably, a communication interface is further arranged on the support plate, and a communication interface component is arranged on the operating table corresponding to the test fixture; the communication interface component includes a second driving member arranged on the operating table and a communication connection port arranged at the driving end of the second driving member. The communication connection port is signal-connected to an external industrial control computer; when the seat switch corresponds to the test fixture, the second driving member is used to drive the communication connection port to approach or move away from the seat switch, and the communication connection port is used for electrically connecting with the communication interface.

[0017] By adopting the above technical solution, when the carrier is rotated to the position corresponding to the test tooling, the second driving member drives the communication connection port close to the seat switch, and electrically connects the power supply connection port to the communication interface, so that the test result of the seat switch by the test tooling can be transmitted to a control device such as an industrial computer; after the test result is transmitted, the second driving member drives the communication connection port away from the seat switch, so that the turntable can drive the turntable to the next test tooling for detection.

[0018] Preferably, the test tooling comprises a tooling moving assembly, a lever moving assembly and a lever; the tooling moving assembly is arranged on the operating table, the lever moving assembly is arranged at the output end of the tooling moving assembly, and the output end of the tooling moving assembly is used to drive the lever moving assembly to approach or move away from the turntable; the lever is arranged at the output end of the lever moving assembly, and the lever moving assembly is used to drive the lever to move along the toggle direction of the dial button on the seat switch to be tested.

[0019] By adopting the above technical solution, when the turntable rotates to a point where one of the dial buttons on the seat switch corresponds to a lever of the test tooling, the tooling moving component drives the lever moving component to drive the lever close to the dial button, and then moves the lever through the lever moving component to simulate the movement.

[0020] Preferably, the lever moving assembly comprises a lever driving member arranged at the output end of the tool moving assembly, a mounting seat is arranged at the output end of the lever driving member, and the lever is mounted on the mounting seat.

[0021] By adopting the above technical solution, the movement of the shifting rod can be simply achieved by providing a shifting driving member.

[0022] Preferably, the lever driving member is configured as a servo motor.

[0023] By adopting the above technical solution and setting the moving speed and moving stroke of the servo motor output end, it is possible to simulate the corresponding fluctuation force and stroke according to seat switches of different specifications.

[0024] Preferably, the shifting rod is detachably connected to the output end of the shifting rod moving assembly.

[0025] By adopting the above technical solution, the gap between the test fixture and the seat switch can be adjusted by replacing levers of different lengths, so that the equipment can be applicable to more types of seat switches.

[0026] In summary, the present application includes at least one of the following beneficial technical effects:

[0027] 1. By setting up multiple test fixtures, rotating the turntable enables multiple buttons on the seat switch on the carrier platform to automate and efficiently test different gears of the seat switch, greatly improving the test efficiency and the accuracy of seat switch testing. Moreover, by controlling the number of test fixtures participating in the test and the number of times some test fixtures participate in the test, it is possible to detect seat switches with different buttons.

[0028] 2. By setting up multiple carrier platforms and multiple workstations, it is possible to detect multiple seat switches simultaneously, thereby improving the detection speed of seat switches.

[0029] 2. Using a servo motor as the lever driving component, by precisely controlling the moving speed and stroke of the servo motor, it is possible to simulate a pulling force and stroke similar to the actual use situation, further improving the accuracy and reliability of the test; moreover, combined with the replaceable lever, the applicable range of this application is improved. Description of the Drawings

[0030] Figure 1 is the overall structural schematic diagram of the embodiment of this application;

[0031] Figure 2 is the structural schematic diagram of the embodiment of this application mainly used to show the components on the operating table;

[0032] Figure 3 is Figure 2 the enlarged schematic diagram of part A in

[0033] Figure 4 is the structural schematic diagram of the embodiment of this application mainly used to show the rotary platform mechanism;

[0034] Figure 5 is the structural schematic diagram of the embodiment of this application mainly used for the carrier platform and the communication connection components;

[0035] Figure 6 is Figure 5 the enlarged schematic diagram of part B in

[0036] Figure 7 is the structural schematic diagram of the embodiment of this application mainly used to show one of the test fixtures;

[0037] Figure 8 is the structural schematic diagram of the embodiment of this application mainly used to show the remaining test fixtures.

[0038] Reference Signs:

[0039] 100, seat switch; 101, first vertical button; 102, second vertical button; 103, horizontal button; 104, first oblique button; 105, second oblique button; 106, power supply connector;

[0040] 1. Cabinet; 11. Operating table; 12. Upper cabinet; 13. Lower cabinet; 14. Cabinet door; 15. Openings.

[0041] 2. Rotary platform mechanism; 21. Turntable; 22. Hollow divider; 23. Rotating drive member; 24. Transmission assembly; 241. Driving wheel; 242. Driven wheel; 243. Transmission belt.

[0042] 3. Carrier platform; 31. Support plate; 32. Clamping assembly; 321. First pair of clamps; 322. Second pair of clamps; 323. Support block; 33. Power supply connection assembly; 331. First drive member; 332. Power supply connection port; 34. Communication interface.

[0043] 4. Communication connection assembly; 41. Second drive member; 42. Communication connection port.

[0044] 5. Test fixture; 51. First vertical test fixture; 511. Fixture moving assembly; 5111. Third drive member; 5112. Mounting plate; 512. Pusher moving assembly; 5121. Pusher drive member; 5122. Mounting base; 513. Pusher; 52. Second vertical test fixture; 53. Horizontal test fixture; 54. First diagonal test fixture; 55. Second diagonal test fixture. Detailed implementation manners

[0045] The following further describes the present application in detail with reference to the Figure 1-8 accompanying drawings.

[0046] An embodiment of the present application discloses a seat switch detection device.

[0047] Referring to Figure 1 and Figure 2 , a seat switch detection device includes a cabinet 1. The frame includes an operating table 11. A rotary platform mechanism 2 is rotatably arranged on the operating table 11. The rotary platform mechanism 2 includes a turntable 21 rotatably arranged above the operating table 11. A plurality of carrier platforms 3 for fixing objects to be tested are arranged along the circumferential direction of the turntable 21. A plurality of test fixtures 5 are also arranged on the operating table 11. The plurality of test fixtures 5 are arranged along the circumferential direction of the turntable 21, and the output ends of the plurality of test fixtures 5 are respectively used for performing functional tests on different switch positions of the test object. By rotating the turntable 21, the carrier platforms 3 can sequentially and alternately correspond to the plurality of test fixtures 5 and complete multiple functional tests. The test fixture 5 can accurately simulate the force value and stroke used for testing the switch, thereby effectively reducing the risks of missed detection and false detection and improving the accuracy of testing the seat switch 100.

[0048] Referring to Figure 2 and Figure 3, in this embodiment, there are six platforms 3, and the six platforms 3 are arranged on the edge of the turntable 21 along the circumferential direction of the turntable 21. This embodiment is also provided with six workstations, and the six workstations are arranged along the circumferential direction of the turntable 21. One of the workstations is set as a product picking and placing workstation, which is used to install the seat switch 100 on the platform 3 and remove the seat switch 100 from the platform 3. The remaining five workstations are set as test workstations. In this embodiment, there are five test toolings 5, and each test workstation corresponds to a test tooling 5.

[0049] Referring to Figure 1 and Figure 2 , the cabinet 1 is in an overall cuboid shape. The cabinet 1 further includes an upper cabinet 12 provided above the operating table 11 and a lower cabinet 13 provided below the operating table 11. The upper cabinet 12 is provided with an opening 15 corresponding to the product storage workstation to facilitate the picking and placing of the seat switch 100. A industrial control computer and a power supply device for electrically connecting with the seat switch 100 are arranged in the lower cabinet 13. The power supply device is used to provide a detection power supply for the seat switch 100. The industrial control computer is used to receive the detection results and mark the detection results. Moreover, the industrial control computer can also automatically summarize the test contents of each test workstation by software and print the corresponding labels; for example, print a qualified label for a qualified product and a red label for an unqualified product, and can also specifically print out the test workstation where the test is unqualified, so as to enable relevant personnel to clearly understand the unqualified content. A plurality of cabinet doors 14 are also arranged on the cabinet 1, which can more conveniently check and maintain the equipment.

[0050] Referring to Figure 2 and Figure 3 , in this embodiment, the dials arranged on the seat switch 100 to be detected are respectively set as a first vertical dial 101, a second vertical dial 102, a horizontal dial 103, a first oblique dial 104 and a second oblique dial 105. The five test toolings 5 are respectively set as a first vertical test tooling 51, a second vertical test tooling 52, a horizontal test tooling 53, a first oblique test tooling 54 and a second oblique test tooling 55 corresponding to the multiple dials, so as to be able to complete the detection of the seat switch 100.

[0051] Referring to Figure 4, the rotating platform mechanism 2 further includes a hollow divider 22 and a rotation driving member 23. The rotation driving member 23 is disposed below the operation table 11 and within the lower cabinet 13, and the hollow divider 22 is disposed above the operation table 11 and at the center of the operation table 11. The output end of the rotation driving member 23 is connected to the input end of the hollow divider 22 through a transmission assembly 24, and the rotating part of the hollow divider 22 is connected to the turntable 21. The transmission assembly 24 includes a driving wheel 241 disposed at the output end of the rotation driving member 23, a driven wheel 242 disposed at the input end of the hollow divider 22, and a transmission belt 243 wound around the outer sides of the driving wheel 241 and the driven wheel 242. A relief hole is provided on the operation table 11 corresponding to the transmission belt 243. The turntable 21 is integrally in the shape of a circular disc, and the rotation axis of the turntable 21 coincides with the rotation axis of the hollow divider 22. In this embodiment, the rotation driving member 23 is configured as a reduction motor. By driving the hollow divider 22 to rotate through the rotation driving member 23, the turntable 21 can be driven to achieve indexing rotation, and further, the position of the carrier 3 can be accurately controlled, so that the carrier 3 can be accurately rotated to the corresponding working position to facilitate the testing work to test the seat switch 100.

[0052] Referring to Figure 5 and Figure 6 , the carrier 3 includes a support plate 31, a clamping assembly 32, and a power supply connection assembly 33. The support plate 31 is integrally in the shape of a rectangular plate, the plate surface of the support plate 31 is perpendicular to the upper surface of the turntable 21, and one of the lengthwise sides of the support plate 31 abuts against the turntable 21. The clamping assembly 32 is used to fix the seat switch 100, and the clamping assembly 32 is disposed outside the support plate 31 away from the center of the turntable 21. The clamping assembly 32 includes a first pair of clamps 321 and a second pair of clamps 322 which are oppositely arranged. The first pair of clamps 321 and the second pair of clamps 322 are respectively disposed on two lengthwise sides of the support plate 31, and the first pair of clamps 321 is disposed on the side of the support plate 31 away from the turntable 21. The seat switch 100 is clamped between the first pair of clamps 321 and the second pair of clamps 322. Preferably, the clamping assembly 32 further includes a support block 323. The support block 323 and the second pair of clamps 322 are disposed on the same side of the support plate 31 and in the same straight line. The first pair of clamps 321, the second pair of clamps 322, and the support block 323 are distributed in a triangle, further improving the clamping force on the seat switch 100 and enabling the seat switch 100 to be stably fixed on the support plate 31.

[0053] The power supply connection component 33 is arranged on the side of the support plate 31 away from the clamping component 32. The power supply component includes a power supply connection port 332 and a first driving member 331. In this embodiment, the first driving member 331 is set as a cylinder. The first driving member 331 is installed on the support plate 31, and the moving direction of the output end of the first driving member 331 is parallel to the length direction of the support plate 31. The power supply connection port 332 is arranged at the output end of the first driving member 331, and the power supply connection port 332 faces the seat switch 100 clamped by the clamping component 32. After the seat switch 100 is fixed on the carrier 3, the first driving member 331 drives the power supply connection port 332 to move towards the seat switch 100, so that the power supply connection port 332 is electrically connected to the power supply head of the seat switch 100, thereby providing power for the test work of the seat switch 100.

[0054] The support plate 31 is also provided with a communication interface 34, and the communication interface 34 is arranged at the bottom of the turntable 21. Communication interface 34 components are arranged on the operation table 11 corresponding to the six workstations. The communication interface 34 component includes a second driving member 41 and a communication connection port 42 signal-connected to the industrial control computer. In this embodiment, the second driving member 41 is set as a cylinder. The second driving member 41 is installed on the operation table 11, and the moving direction of the output end of the second driving member 41 is perpendicular to the upper surface of the turntable 21. The communication connection port 42 is arranged at the output end of the second driving member 41, and the communication connection port 42 faces the communication interface 34. When the carrier 3 rotates to the test workstation through the turntable 21, the second driving member 41 drives the communication connection port 42 to move upward, so that the communication connection port 42 is electrically connected to the communication interface 34, thereby enabling the test results to be transmitted to the industrial control computer. When the carrier 3 rotates to the product picking and placing workstation through the turntable 21, the communication connection port 42 is electrically connected to the communication interface 34 for outputting the results of the seat power-on detection.

[0055] Referring to Figure 7 and Figure 8 Figure, the first vertical test tooling 51 includes a tooling moving component 511, a lever moving component 512 and a lever 513. The tooling moving component 511 includes a third driving member 5111. The third driving member 5111 is arranged above the operation table 11. In this embodiment, the third driving member 5111 is set as a cylinder, and the output end of the third driving member 5111 can approach or move away from the center of the turntable 21, and is used to drive the lever 513 to approach or move away from the first vertical button 101 on the seat switch 100. Above the output end of the third driving member 5111, there is an installation plate 5112. The installation plate 5112 is integrally in the shape of a rectangular plate, and the length direction surface of the installation plate 5112 is perpendicular to the moving direction of the output end of the third driving member 5111.

[0056] The lever moving assembly 512 includes a lever driving member 5121, which is mounted on the end of the mounting plate away from the operating table 11, and the output end of the lever driving member 5121 is located on the side of the lever driving member 5121 close to the operating table 11. A mounting seat 5122 is provided at the output end of the lever driving member 5121, and the lever 513 is detachably mounted on the mounting seat 5122 through a threaded mechanism. The lever 513 is cylindrical in shape as a whole, and the length direction of the lever 513 is perpendicular to the movement direction of the output end of the lever driving member 5121. The lever driving member 5121 is used to drive the lever 513 to move up and down, so as to simulate the process of toggling the vertical button on the seat switch 100.

[0057] In this embodiment, the lever driving member 5121 is set as a servo motor, and by setting the moving speed and moving stroke of the servo motor output end, the corresponding fluctuation force and stroke can be simulated according to different specifications of the seat switch 100. In addition, by replacing the lever 513 of different lengths, the gap between the test fixture 5 and the seat switch 100 can be adjusted, so that the device can be applied to more types of seat switches 100.

[0058] Reference Figure 7 and Figure 8 The second vertical test fixture 52 has the same structure as the first vertical test fixture 51. When the seat switch 100 is rotated to the test position corresponding to the second vertical test fixture 52, the lever driving member 5121 of the second vertical test fixture 52 can drive the lever 513 to move the second vertical dial button 102, thereby realizing the test of the second vertical dial button 102.

[0059] The horizontal test fixture 53, the first oblique test fixture 54 and the second oblique test fixture 55 are similar to the first vertical test fixture 51, except that the lever driving member 5121 of the horizontal test fixture 53 drives the lever 513 to move left and right along the direction of the horizontal dial button 103, the lever driving member 5121 of the first oblique test fixture 54 drives the lever 513 to move obliquely along the direction of the first oblique dial button 104, and the lever driving member 5121 of the second oblique test fixture 55 drives the lever 513 to move obliquely along the direction of the second oblique dial button 105. When the seat switch 100 rotates to the test station corresponding to the horizontal test fixture 53, the lever 513 of the horizontal test fixture 53 can now drive the horizontal dial button 103 to test the horizontal dial button 103. Similarly, the second oblique test fixture 55 and the first vertical test fixture 51 can respectively test the first oblique dial button 104 and the second oblique dial button 105 .

[0060] On this basis, this embodiment is also applicable to the seat switch 100 provided with different numbers of dials and different types of dials. Relevant personnel can control some of the test tooling 5 to participate in the detection, or control the rotation angle of the turntable 21 and the number of times some of the test tooling 5 participates in the detection, further expanding the scope of application of this application.

[0061] The implementation principle of a seat switch detection device according to an embodiment of this application is as follows: The rotation of the turntable 21 drives the seat switch 100 on the carrier 3, enabling automatic switching of different dial positions and acceptance of tests, achieving high-efficiency automation of the test process, effectively improving the test efficiency and accuracy. At the same time, by flexibly adjusting the number and test times of the test tooling 5 participating in the test, it can also meet the test requirements of seat switches 100 with different dial configurations. Moreover, by setting multiple carriers 3 and workstations, simultaneous detection of multiple seat switches 100 is achieved, greatly improving the detection speed and reducing the overall test time. Using a servo motor as the driving source of the dial rod 513, by precisely controlling the moving speed and stroke of the motor, it is possible to simulate the dialing force and path in a real usage scenario, ensuring the accuracy and reliability of the test. In addition, the design of the replaceable dial rod 513 further enhances the flexibility and scope of application of the system, and can be compatible with the testing of seat switches 100 of different specifications and types.

[0062] The above are all preferred embodiments of this application. Without limiting the protection scope of this application accordingly, therefore: Any equivalent changes made according to the structure, shape, and principle of this application shall be covered within the protection scope of this application.

Claims

1. A seat switch detection device, characterized in that: It includes an operating table (11), a rotary platform mechanism (2) is arranged on the operating table (11), and the rotary platform mechanism (2) includes a turntable (21) rotatably arranged on the operating table (11); at least one carrier (3) for installing a seat switch (100) is arranged on the turntable (21), and a plurality of test fixtures (5) are arranged on the operating table (11) along the rotation direction of the turntable (21), and the plurality of test fixtures (5) are respectively used for performing function tests on a plurality of push buttons on the seat switch (100).

2. The seat switch detection device according to claim 1, wherein: The rotary platform mechanism (2) further includes a hollow divider (22) and a rotary driving member (23) arranged on the operating table (11), the output end of the rotary driving member (23) is connected to the input end of the hollow divider (22), and the rotating part of the hollow divider (22) is connected to the turntable (21).

3. The seat switch detection device according to claim 1, characterized in that: The carrier (3) includes a plurality of carriers (3), and a plurality of workstations are arranged on the operating table (11), each carrier (3) corresponds to one of the workstations, and the plurality of test fixtures (5) are respectively arranged corresponding to the workstations.

4. The seat switch detection device according to claim 3, characterized in that: One of the workstations is set as a product loading and unloading workstation, and the remaining plurality of workstations are set as test workstations, and the plurality of test fixtures (5) are respectively arranged corresponding to the test workstations.

5. The seat switch detection device according to claim 1, wherein: The carrier (3) includes a support plate (31), a clamping assembly (32) and a power supply connection assembly (33) are arranged on the support plate (31), and the clamping assembly (32) is used for clamping and fixing the seat switch (100); the power supply connection assembly (33) includes a first driving member (331) installed on the support plate (31), and a power supply connection port (332) installed at the output end of the first driving member (331), the first driving member (331) is used for driving the power supply connection port (332) to approach or move away from the seat switch (100), and the power supply connection port (332) is used for electrically connecting with the power supply head of the seat switch (100).

6. The seat switch detection device according to claim 5, characterized in that: A communication interface (34) is further arranged on the support plate (31), and a communication interface (34) assembly is arranged on the operating table (11) corresponding to the test fixture (5); the communication interface (34) assembly includes a second driving member (41) arranged on the operating table (11), and a communication connection port (42) arranged at the driving end of the second driving member (41), and the communication connection port (42) is signal-connected to an external industrial control computer; when the seat switch (100) corresponds to the test fixture (5), the second driving member (41) is used for driving the communication connection port (42) to approach or move away from the seat switch (100), and the communication connection port (42) is used for electrically connecting with the communication interface (34).

7. A seat switch detection device according to claim 1, characterized in that: The test tool (5) comprises a tool moving component (511), a lever moving component (512) and a lever (513); the tool moving component (511) is arranged on the operating table (11); the lever moving component (512) is arranged at an output end of the tool moving component (511); the output end of the tool moving component (511) is used to drive the lever moving component (512) to move closer to or away from the turntable (21); the lever (513) is arranged at the output end of the lever moving component (512); the lever moving component (512) is used to drive the lever (513) to move along the toggle direction of the toggle button on the seat switch (100) to be tested.

8. A seat switch detection device according to claim 7, characterized in that: The lever moving assembly (512) comprises a lever driving member (5121) arranged at the output end of the tool moving assembly (511); a mounting seat (5122) is arranged at the output end of the lever driving member (5121); and the lever (513) is mounted on the mounting seat (5122).

9. The seat switch detection device according to claim 8, characterized in that: The lever driving member (5121) is configured as a servo motor.

10. A seat switch detection device according to claim 7, characterized in that: The shifting rod (513) is detachably connected to the output end of the shifting rod moving assembly (512).