Electronic product test fixture
By designing electronic product testing fixtures and using rotating and key-testing components to automate multi-mode switching and functional testing, the problems of low efficiency and poor accuracy of manual testing in existing technologies are solved, achieving efficient and accurate testing results.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-13
- Publication Date
- 2026-03-31
AI Technical Summary
In existing technologies, multi-mode testing of electronic products relies on manual operation, resulting in a large workload, low efficiency, and poor accuracy.
Design an electronic product testing fixture, including a rotating component and a key testing component, to automatically complete multi-mode switching and functional testing through a robotic arm and a touch rod, and to use an image acquisition device to acquire image information for status analysis.
It has automated multi-mode testing of electronic products, reduced manual input, and improved testing efficiency and accuracy.
Smart Images

Figure CN224066833U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to electronic product automation test technical field especially relates to a kind of electronic product test fixture. BACKGROUND
[0002] With the improvement of the requirement of electronic product, and the improvement of electronic product design, production technology, make more market competitive product be listed, wherein, multi-mode electronic product is one of them.
[0003] Take multi-mode notebook computer as an example: notebook computer includes system end and display end, by changing the angle between system end and display end, can make notebook computer be in different use mode, such as notebook mode, tablet mode, vertical mode and tent mode etc., user can freely select a certain mode according to own use scene.
[0004] Product research and development stage, need to test each mode, and test includes whether the switching between different modes is normal, the basic function check of keyboard and screen after switching etc..Current test mode mainly adopts artificial test, namely artificially rotating electronic product, mode adjustment is carried out, and then, artificially test whether the basic function such as keyboard, touchpad or screen is normal.
[0005] In prior art, artificial test workload is large, work efficiency is low and artificial cost is high, and, artificial test can appear misjudgment condition, to affect the accuracy of test. UTILITY MODEL CONTENT
[0006] To solve at least above technical problem in prior art, the utility model provides a kind of electronic product test fixture.
[0007] The utility model provides a kind of electronic product test fixture in an aspect, including rotating assembly and measure key component;The rotating assembly includes first clamping structure, second clamping structure and drive structure, the first clamping structure is used to clamp the rotation part of the electronic product to be measured, the second clamping structure is used to clamp the fixed part of the electronic product to be measured, the drive structure is connected with the first clamping structure and / or the second clamping structure, and is used to drive the first clamping structure and / or the second clamping structure relatively rotate;The measure key component includes mechanical arm and touch rod, the mechanical arm is connected with the touch rod, and the mechanical arm is used to drive the touch rod to move to set position and touch pressure the rotation part and / or fixed part of the electronic product to be measured.
[0008] In some embodiments, the first clamping structure and the second clamping structure include a U-shaped frame and a clamp; the U-shaped frame includes a crossbar and two parallel vertical bars, one end of the two vertical bars is connected through the crossbar, and the other end of the two vertical bars is connected to the driving structure; the crossbar and / or the vertical bars are connected to the clamp, and the clamp is used to clamp the rotating part or the fixed part of the electronic product under test.
[0009] In some embodiments, the clamp is connected to the inner wall of the crossbar and / or the vertical bar; after the clamp is connected to the rotating part or the fixed part of the electronic product under test, the U-shaped frame, the clamp, and the rotating part or the fixed part are located on the same plane.
[0010] In some embodiments, the other end of the vertical rod of the first clamping structure is provided with a first rotating shaft, and the other end of the vertical rod of the second clamping structure is provided with a second rotating shaft. The first rotating shaft and the second rotating shaft are respectively arranged perpendicularly to the connected vertical rod and are located on the side of the connected vertical rod away from the horizontal rod. The driving structure is connected to the first rotating shaft and is used to drive the first rotating shaft to rotate circumferentially along the second rotating shaft.
[0011] In some embodiments, the drive structure includes a drive motor, a drive gear, an external gear ring, a connecting plate, a moving gear, and a fixed gear; the moving gear is disposed on the first rotating shaft, the fixed gear is disposed on the second rotating shaft, and the moving gear and the fixed gear mesh; the end of the first rotating shaft passes through the connecting plate, and the end of the second rotating shaft passes through the connecting plate; the output shaft of the drive motor is connected to the drive gear, the external gear ring meshes with the drive gear, and the external gear ring is sleeved on the through end of the second rotating shaft, and one side of the external gear ring is fixedly connected to one side of the connecting plate.
[0012] In some embodiments, the key assembly further includes a stand plate having a set height and located on one side of the rotating assembly; the robotic arm is connected to the top of the stand plate so that the touch rod is located above the rotating assembly.
[0013] In some embodiments, the key testing component further includes an image acquisition device; the image acquisition device is used to acquire image information of the rotating component and / or the electronic product under test.
[0014] In some embodiments, the image acquisition device includes a first camera for acquiring image information of the touch position of the touch bar; and / or the image acquisition device includes a second camera for acquiring image information of the rotating part of the electronic product under test; and / or the image acquisition device includes a third camera for acquiring rotation information of the drive structure.
[0015] In some embodiments, a console is also included, the console comprising a base and a controller, the controller being disposed within the base, and the rotating assembly and the measuring key assembly being disposed on top of the base.
[0016] In some embodiments, a support component is also included, the support component having a set height, one end of the support component being connected to the top of the base, and the other end being connected to the rotating component.
[0017] This invention provides a testing fixture for electronic products. A first clamping structure and a second clamping structure are respectively connected to the rotating part and the fixed part of the electronic product under test. A driving structure drives the first clamping structure and / or the second clamping structure to rotate relative to each other, changing the angle between them, thereby synchronously changing the angle between the rotating part and the fixed part of the electronic product under test. When the desired angle is reached, a robotic arm moves a contact rod to the desired position and causes the contact rod to press against the rotating part and / or the fixed part, completing the functional test at the current angle. In this invention, multi-mode angle testing of electronic products is automated through a rotating component and a key testing component, eliminating or reducing manual labor, thus saving labor costs, improving testing efficiency, and enhancing testing accuracy. Attached Figure Description
[0018] The above and other objects, features, and advantages of the present invention will become readily apparent from the following detailed description of exemplary embodiments, taken in conjunction with the accompanying drawings. Several embodiments of the present invention are illustrated in the drawings by way of example and not limitation, in which:
[0019] In the accompanying drawings, the same or corresponding reference numerals indicate the same or corresponding parts.
[0020] Figure 1 A front view of the electronic product testing fixture provided in an embodiment of this utility model;
[0021] Figure 2 A side view of the electronic product testing fixture provided in an embodiment of this utility model;
[0022] Figure 3 A schematic diagram of the rotating component in the electronic product testing fixture provided in this embodiment of the utility model;
[0023] Figure 4 A partial exploded view of the rotating component connecting plate in the electronic product testing fixture provided in this embodiment of the utility model.
[0024] In the picture:
[0025] 10: Rotating component; 20: Keying component; 30: Control console; 40: Support component;
[0026] 11: First clamping structure; 111: U-shaped frame; 1111: Horizontal bar; 1112: Vertical bar; 112: Clamp; 113: First rotating shaft; 12: Second clamping structure; 121: Second rotating shaft; 13: Drive structure; 131: Drive motor; 132: Drive gear; 133: External gear ring; 134: Connecting plate; 135: Moving gear; 136: Fixed gear;
[0027] 21: Robotic arm; 22: Touch rod; 23: Stand; 24: First camera; 25: Second camera; 26: Third camera; 27: Support. Detailed Implementation
[0028] To make the objectives, features, and advantages of this utility model more apparent and understandable, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, and not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of this utility model.
[0029] This utility model provides an electronic product testing fixture, including a rotating component and a testing key component; the rotating component is used to connect the product to be tested, and the product to be tested can be rotated to different modes through a rotation operation; when rotated to a mode, the testing key component is used to test whether the product to be tested can operate normally in that mode.
[0030] The following description, in conjunction with the accompanying drawings, details the components of the electronic product testing fixture provided in the embodiments of this utility model, the positional relationships between the components, and the connection relationships.
[0031] like Figures 1 to 4 As shown, the rotating assembly 10 includes a first clamping structure 11, a second clamping structure 12, and a driving structure 13. The first clamping structure 11 is used to clamp the rotating part of the electronic product under test, and the second clamping structure 12 is used to clamp the fixed part of the electronic product under test. Taking a laptop computer as an example, the laptop computer includes a display end and a system end. The display end is the rotating part, and the system end is the fixed part. The display end and the system end are respectively connected to the first clamping structure 11 and the second clamping structure 12.
[0032] The driving structure 13 is connected to the first clamping structure 11 and / or the second clamping structure 12, and is used to drive the first clamping structure 11 and / or the second clamping structure 12 to rotate relative to each other. The performance of the electronic product under test is determined to determine whether the rotating part, the fixed part, or both the rotating part and the fixed part of the electronic product under test are rotated. Taking a laptop computer as an example, when switching between different modes, the display end (rotating part) is generally rotated. Therefore, the first clamping structure 11 can be driven to rotate by the driving structure 13.
[0033] Continue to refer to Figures 1 to 4 As shown in the embodiment of this utility model, the first clamping structure 11 and the second clamping structure 12 include a U-shaped frame 111 and a clamp 112. The U-shaped frame 111 and the clamp 112 cooperate with the electronic product under test (DUT) to achieve connection between the DUT and the clamping structure. For example, the first clamping structure 11 and the second clamping structure 12 can be identical, meaning both structures include a U-shaped frame 111 and a clamp 112. The specific dimensions of the U-shaped frame 111 and the clamp 112 can be the same or different, depending on the connected DUT. For example, if the DUT is a laptop computer, and the display and system ends of a laptop computer are basically the same in shape and size, then the U-shaped frame 111 and the clamp 112 of the first clamping structure 11 and the second clamping structure 12 can be set to the same size.
[0034] In this embodiment of the present invention, the U-shaped frame 111 includes a horizontal bar 1111 and two parallel vertical bars 1112. One end of the two vertical bars 1112 is connected to the horizontal bar 1111, and the other end of the two vertical bars 1112 is connected to the drive structure 13. The horizontal bar 1111 and / or the vertical bars 1112 are connected to a clamp 112, which is used to clamp the rotating part or the fixed part of the electronic product under test.
[0035] For example, the clamp 112 is a clamp structure, with multiple clamps 112 spaced apart on the horizontal bar 1111 and / or the vertical bar 1112. The electronic product under test is connected to the clamps, thereby achieving a fixed connection between the electronic product under test and the U-shaped frame 111. For example, the clamp 112 is connected to the inner wall of the horizontal bar 1111 and / or the vertical bar 1112; after the clamp 112 connects to the rotating part or the fixed part of the electronic product under test, the U-shaped frame 111, the clamp 112, and the rotating part or the fixed part are located on the same plane.
[0036] By setting the rotating part and the fixed part on the same plane as the first clamping structure 11 or the second clamping structure 12, the operation of the rotating part and / or the fixed part during use is better simulated when the first clamping structure 11 and / or the second clamping structure 12 is in motion, which is beneficial to the accuracy of detection.
[0037] Continue to refer to Figures 1 to 4As shown in the embodiment of this utility model, the other end of the vertical rod 1112 of the first clamping structure 11 is provided with a first rotating shaft 113, and the other end of the vertical rod 1112 of the second clamping structure 12 is provided with a second rotating shaft 121. The first rotating shaft 113 and the second rotating shaft 121 are respectively arranged perpendicularly to the connected vertical rod 1112 and are located on the side of the connected vertical rod 1112 away from the horizontal rod 1111. The driving structure 13 is connected to the first rotating shaft 113 and is used to drive the first rotating shaft 113 to rotate circumferentially along the second rotating shaft 121.
[0038] In this embodiment of the invention, the driving structure 13 drives the first rotating shaft 113 to rotate, causing the first rotating shaft 113 to move axially along the second rotating shaft 121. That is, the driving structure 13 drives the rotating part to rotate, and by adjusting the rotating part, the angular relationship between the rotating part and the fixed part is changed, thereby achieving the purpose of mode switching.
[0039] For example, the drive structure 13 includes a drive motor 131, a drive gear 132, an external gear ring 133, a connecting plate 134, a moving gear 135, and a fixed gear 136. The moving gear 135 is located on the first rotating shaft 113, and the fixed gear 136 is located on the second rotating shaft 121. The moving gear 135 and the fixed gear 136 mesh with each other and drive the first rotating shaft 113 to rotate. The moving gear 135 is fixedly connected to the first rotating shaft 113, so the moving gear 135 rotates synchronously with the first rotating shaft 113. The fixed gear 136 is fixedly connected to the second rotating shaft 121, which enables the moving gear 135 to rotate along the circumference of the fixed gear 136, that is, the first rotating shaft 113 rotates circumferentially along the second rotating shaft 121.
[0040] At the driven end of the second rotating shaft 121, the end of the first rotating shaft 113 passes through the connecting plate 134, and the end of the second rotating shaft 121 passes through the connecting plate 134. The output shaft of the drive motor 131 is connected to the drive gear 132. The external gear ring 133 meshes with the drive gear 132 and is sleeved on the through end of the second rotating shaft 121. One side of the external gear ring 133 is fixedly connected to one side of the connecting plate 134. The external gear ring 133 is movably connected to the second rotating shaft 121 and rotates on the second rotating shaft 121. The connecting plate 134 rotates synchronously with the external gear ring 133, and the end of the first rotating shaft 113 is movably connected to the connecting plate 134. The output shaft of the drive motor 131 drives the drive gear 132 to rotate synchronously, which in turn drives the external gear ring 133 and the connecting plate 134 to rotate synchronously. As the connecting plate 134 rotates, it causes the first rotating shaft 113 to be displaced. Since the moving gear 135 on the first rotating shaft 113 meshes with the fixed gear 136 on the second rotating shaft 121, the first rotating shaft 113 is finally rotated, thereby causing the first clamping structure 11 and its rotating part to change the angle with the fixed part.
[0041] The axes of the first rotating shaft 113 and the second rotating shaft 121 are parallel and have a set straight-line distance. The midpoint of the straight-line distance should coincide with or be close to the axis of the rotating shaft of the electronic product under test. Thus, during the test, the rotation action is closer to the rotation operation of the electronic product under test in its usage state.
[0042] For example, the two sets of first rotating shafts 113 and second rotating shafts 121 located on both sides of the U-shaped frame 111 are connected to the drive structure 13. The two drive structures 13 are symmetrically arranged and can synchronously drive the first clamping structure 11 to rotate during operation.
[0043] In this embodiment of the invention, once the angle between the rotating part and the fixed part is rotated to the correct position, the mode switch is completed. It is then necessary to determine whether the electronic product under test can operate / use normally in the current mode. In this embodiment of the invention, the test key assembly 20 includes a robotic arm 21 and a contact rod 22. The robotic arm 21 is connected to the contact rod 22, and the robotic arm 21 is used to drive the contact rod 22 to move to a set position and press the rotating part and / or the fixed part of the electronic product under test.
[0044] For example, the robotic arm 21 is a four-axis robotic arm, a six-axis robotic arm, or other multi-axis robotic arm. In different modes, the position that the robotic arm 21 needs to move to drive the touch rod 22 is different. After the touch rod 22 is moved to the set position by the robotic arm 21, the robotic arm 21 continues to move, driving the touch rod 22 to move vertically (or at a set angle) toward the product to be tested, thereby realizing the touch pressure of the product to be tested.
[0045] For example, the contact rod 22 can also have its own telescopic structure. For instance, the contact rod 22 can be connected to the telescopic shaft of the telescopic cylinder structure, and the operation of the contact rod 22 can be completed through the cooperation of the telescopic cylinder and the robotic arm 21.
[0046] The key assembly 20 also includes a vertical plate 23 with a set height and located on one side of the rotating assembly 10; the robotic arm 21 is connected to the top of the vertical plate 23 so that the contact rod 22 is located above the rotating assembly 10.
[0047] For example, by pressing the power button, keyboard, or touchpad on the system end via the touch lever 22, if the electronic product under test can perform the corresponding function after the corresponding action is completed, it can be determined that the test of the product under test has passed in this mode; otherwise, it has failed.
[0048] In this invention, the key testing component 20 further includes an image acquisition device; the image acquisition device is used to acquire image information of the rotating component 10 and / or the electronic product under test. The image acquisition device acquires image information and sends it to the control system, which then analyzes the status.
[0049] For example, the image acquisition device includes a first camera 24, which is used to acquire image information of the touch position of the touch rod 22. The first camera 24 is set at one end of the robotic arm 21 where the touch rod 22 is set, and its position is fixed relative to the touch rod 22. The touch position information of the touch rod 22 is acquired and recorded by the first camera 24.
[0050] For example, the image acquisition device includes a second camera 25, which is used to acquire image information of the rotating part of the electronic product under test. For example, the second camera 25 is connected to the U-shaped frame 111 via a connecting rod. For example, the rotating part is the display end of a laptop computer. After the touch lever 22 performs a corresponding action, the corresponding display end has a corresponding response image. By acquiring this image information, it is determined whether the operation of the touch lever 22 and the image display are correctly associated. For example, when the touch lever 22 presses the power button, the display end will display a corresponding startup screen. If the image information is the startup screen, it is determined that the current mode is qualified; if the image information is not the startup screen (such as a black screen, a distorted screen, etc.), it is determined that the current mode is unqualified.
[0051] For example, the link connected to the second camera 25 can be a robotic arm structure. The robotic arm has greater flexibility. When the rotating part switches to different positions, the second camera 25 can be moved to the required position through the robotic arm structure, thereby completing the acquisition of image information.
[0052] The comparative analysis method of image information is existing technology, and this utility model does not limit the analysis method.
[0053] For example, the image acquisition device includes a third camera 26, which is used to acquire rotation information of the drive structure 13. The third camera 26 can be supported at a certain height by the bracket 27, so that the third camera 26 can be horizontally facing the drive structure 13. Through the image information acquired by the third camera 26, it is determined whether the electronic product under test has been rotated to the required angle under the drive of the drive structure 13, that is, the corresponding mode switching is completed.
[0054] The method of determining the rotation angle through image information is existing technology, and this utility model does not limit the method.
[0055] Continue to refer to Figures 1 to 4 As shown, in this embodiment of the present invention, a control console 30 and a support component 40 are also included. The control console 30 includes a base and a controller. The controller is located inside the base, and the rotating component 10 and the key component 20 are located on the top of the base. The support component 40 has a set height. One end of the support component 40 is connected to the top of the base, and the other end is connected to the rotating component 10.
[0056] For example, a control panel can be installed on the side of the base, connected to the controller, for performing related control operations, such as starting and stopping the drive motor 131. Alternatively, a display module can be installed on the side of the base to display test information, such as the current test status or pass rate information.
[0057] For example, the support assembly 40 includes two symmetrically arranged support rods with a set height. The second rotating shaft 121 is fixedly connected to the top of the support rods. By setting the support rods, the rotating assembly 10 has a certain height and sufficient space below it for rotation.
[0058] This invention provides a testing fixture for electronic products. A first clamping structure 11 and a second clamping structure 12 are respectively connected to the rotating part and the fixed part of the electronic product under test. A driving structure 13 drives the first clamping structure 11 and / or the second clamping structure 12 to rotate relative to each other, changing the angle between them and thus synchronously changing the angle between the rotating part and the fixed part of the electronic product under test. When the desired angle is reached, the robotic arm 21 moves the contact rod 22 to the desired position and causes the contact rod 22 to press against the rotating part and / or the fixed part, completing the functional test at the current angle. In this invention, multi-mode angle testing of electronic products is automated through the rotating component 10 and the key testing component 20, eliminating or reducing manual input, thus saving labor costs, improving testing efficiency, and enhancing testing accuracy.
[0059] In the description of this specification, references to terms such as "one embodiment," "some embodiments," "example," "specific example," or "some examples," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of the present invention. Furthermore, the described specific features, structures, materials, or characteristics may be combined in any suitable manner in one or more embodiments or examples. Moreover, without contradiction, those skilled in the art can combine and integrate the different embodiments or examples described in this specification, as well as the features of those different embodiments or examples.
[0060] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features. Thus, a feature defined as "first" or "second" may explicitly or implicitly include at least one of that feature. In the description of this utility model, "a plurality of" means two or more, unless otherwise explicitly specified.
[0061] The above are merely specific embodiments of this utility model, but the protection scope of this utility model is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the technical scope disclosed in this utility model should be included within the protection scope of this utility model. Therefore, the protection scope of this utility model should be determined by the scope of the claims.
Claims
1. An electronic product testing fixture, characterized in that, The rotation assembly (10) and the key testing assembly (20) are included. The rotation assembly (10) includes a first clamping structure (11), a second clamping structure (12) and a driving structure (13), the first clamping structure (11) is used for clamping a rotating part of an electronic product to be tested, the second clamping structure (12) is used for clamping a fixed part of the electronic product to be tested, and the driving structure (13) is connected with the first clamping structure (11) and / or the second clamping structure (12) and is used for driving the first clamping structure (11) and / or the second clamping structure (12) to rotate relatively. The key testing assembly (20) includes a mechanical arm (21) and a touch rod (22), the mechanical arm (21) is connected with the touch rod (22), and the mechanical arm (21) is used for driving the touch rod (22) to move to a set position and press the rotating part and / or the fixed part of the electronic product to be tested.
2. The electronic product testing fixture of claim 1, wherein, The first clamping structure (11) and the second clamping structure (12) include a U-shaped frame (111) and a clamp (112). The U-shaped frame (111) includes a horizontal rod (1111) and two parallel vertical rods (1112), one end of the two vertical rods (1112) is connected through the horizontal rod (1111), and the other end of the two vertical rods (1112) is connected with the driving structure (13). The horizontal rod (1111) and / or the vertical rod (1112) is connected with the clamp (112), and the clamp (112) is used for clamping the rotating part or the fixed part of the electronic product to be tested.
3. The electronic product testing fixture of claim 2, wherein, The clamp (112) is connected with the inner wall of the horizontal rod (1111) and / or the vertical rod (1112). After the clamp (112) is connected with the rotating part or the fixed part of the electronic product to be tested, the U-shaped frame (111), the clamp (112), the rotating part and the fixed part are located in the same plane.
4. The electronic product testing fixture of claim 2, wherein, The other end of the vertical rod (1112) of the first clamping structure (11) is provided with a first rotating shaft (113), the other end of the vertical rod (1112) of the second clamping structure (12) is provided with a second rotating shaft (121), and the first rotating shaft (113) and the second rotating shaft (121) are respectively arranged perpendicularly to the connected vertical rod (1112) and are arranged on the side of the connected vertical rod (1112) away from the horizontal rod (1111). The driving structure (13) is connected with the first rotating shaft (113) and is used for driving the first rotating shaft (113) to rotate along the circumference of the second rotating shaft (121).
5. The electronic product testing fixture of claim 4, wherein, The driving structure (13) includes a driving motor (131), a driving gear (132), an outer gear ring (133), a connecting plate (134), a driving gear wheel (135) and a fixed gear wheel (136). The pin gear (135) is arranged on the first rotating shaft (113), the gear (136) is arranged on the second rotating shaft (121), the pin gear (135) and the gear (136) are engaged, the end of the first rotating shaft (113) is arranged on the connecting plate (134), and the end of the second rotating shaft (121) penetrates through the connecting plate (134); The output shaft of the driving motor (131) is connected with the driving gear (132), the outer gear ring (133) is engaged with the driving gear (132), the outer gear ring (133) is arranged on the penetrating end of the second rotating shaft (121), and one side of the outer gear ring (133) is fixedly connected with one side of the connecting plate (134).
6. The electronic product testing fixture of claim 1, wherein, The key testing assembly (20) further comprises a vertical plate (23) having a set height and located on one side of the rotating assembly (10). The mechanical arm (21) is connected with the top end of the vertical plate (23), so that the touch rod (22) is located above the rotating assembly (10).
7. The electronic product testing fixture of claim 1, wherein The key testing assembly (20) further comprises an image acquisition device. The image acquisition device is used to acquire image information of the rotating assembly (10) and / or the electronic product to be tested.
8. The electronic product testing fixture of claim 7, wherein, The image acquisition device comprises a first camera (24) used to acquire image information of the touch pressure position of the touch rod (22). And / or The image acquisition device comprises a second camera (25) used to acquire image information of the rotating part of the electronic product to be tested. And / or The image acquisition device comprises a third camera (26) used to acquire rotation information of the driving structure (13).
9. The electronic product testing fixture of claim 1, wherein, Further comprising a console (30) comprising a base and a controller, the controller being arranged in the base, the rotating assembly (10) and the key testing assembly (20) being arranged on the top of the base.
10. The electronic product testing fixture of claim 9, wherein, Further comprising a supporting assembly (40) having a set height, one end of the supporting assembly (40) being connected with the top of the base, and the other end being connected with the rotating assembly (10).