Electronic equipment interface detection equipment

By designing an electronic device interface testing equipment that includes a rack, a fixed module, and a mobile platform, the problems of inaccurate testing and low efficiency were solved, pressure value consistency testing was achieved, costs were reduced, and testing efficiency was improved.

CN223883327UActive Publication Date: 2026-02-06TECH FRONT (SHANGHAI) COMPUTER CO LTD +4
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Patent Information

Application Number
CN202520021319.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-03
Publication Date
2026-02-06
Estimated Expiration
2035-01-03

AI Technical Summary

Technical Problem

Existing technologies for testing electronic device interfaces are inaccurate and inefficient. Manual testing is prone to inconsistencies and risks damaging products, and is also costly.

Method used

Design an electronic device interface testing device, including a frame, a fixed module, first and second moving platforms and a testing module. The moving platform drives the testing module to move in different directions. A pressure sensor detects the pressure value of the pressure plate on the testing surface. The position of the pressure plate is rotated and adjusted to ensure consistency.

Benefits of technology

It improves the accuracy and efficiency of testing, avoids damage to the parts being tested, and reduces costs.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223883327U_ABST
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Abstract

The utility model belongs to the technical field of detection equipment, and provides electronic equipment interface detection equipment, which comprises a rack, a fixed module, a first mobile platform, a second mobile platform and a detection module, and is characterized in that the rack is provided with a working platform; the fixing module and the first moving platform are both connected to the working platform and are oppositely arranged, and the fixing module is used for fixing a to-be-detected piece; the second mobile platform is connected to the movable end of the first mobile platform, the detection module is connected to the movable end of the second mobile platform, and the first mobile platform and the second mobile platform drive the detection module to move along a first direction and a second direction relative to the to-be-detected piece; the detection module comprises a driving assembly, a pressing plate and a pressure sensor connected to the pressing plate, and the driving assembly can drive the pressing plate and the pressure sensor to rotate. According to the utility model, the detection accuracy is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to detection equipment technical field especially relates to a kind of electronic equipment interface detection equipment. BACKGROUND

[0002] Computer assembly is completed and needs to detect the structural strength of interface set on computer, and in prior art, testing is usually carried out manually. After cable is inserted into interface, operating personnel exerts pressure on each surface of the connection between cable and interface by pushing pull dynamometer, to detect the structural strength of interface. Operating personnel exerts force on different detection surfaces by hand feeling when pushing pull dynamometer, and the force value cannot be ensured consistent, leading to difference in detection of different detection surfaces, and the accuracy of detection result cannot be guaranteed;And there is the risk of damaging product.

[0003] Furthermore, manual detection requires large investment in labor cost, but detection efficiency is difficult to improve.

[0004] Therefore, a new scheme is needed to solve the above technical problems. UTILITARY MODEL CONTENT

[0005] In view of the above-mentioned shortcomings of prior art, the purpose of the utility model is to provide an electronic equipment interface detection equipment, to solve the problem of inaccurate detection of electronic equipment interface in prior art.

[0006] To achieve the above-mentioned purpose and other related purposes, the utility model provides an electronic equipment interface detection equipment, which is specifically set as follows: a rack, a fixing module, a first moving platform, a second moving platform and a detection module are included, and a workbench is arranged on the rack;The fixing module is connected to the workbench and used for fixing the detected part;The first moving platform is connected to the workbench and arranged opposite to the fixing module;The second moving platform is connected to the movable end of the first moving platform, and the first moving platform drives the second moving platform to move along the first direction relative to the detected part;The detection module is connected to the movable end of the second moving platform, and the second moving platform drives the detection module to move along the second direction relative to the detected part;The detection module includes a driving assembly, a pressing plate and a pressure sensor connected to the pressing plate, and the driving assembly can drive the pressing plate and the pressure sensor to rotate;Wherein, the first direction and the second direction are perpendicular.

[0007] Optionally, the fixing module includes a placing platform and clamping assemblies located on both sides of the placing platform, the placing platform is used for placing the detected part, and the clamping assemblies can move along the direction close to or away from the placing platform, and when the two clamping assemblies simultaneously close to the placing platform, the detected part is fixed on the placing platform.

[0008] Optionally, the fixing module further comprises a first mounting plate located on both sides of the placement platform, and a first limiting piece connected to the first mounting plate; the placement platform is arranged as a lifting platform, and the first limiting piece abuts against the side wall in the height direction of the to-be-detected piece; the lifting platform cooperates with the first limiting piece to limit the height direction of the to-be-detected piece.

[0009] Optionally, the clamping assembly is connected to the first mounting plate, and the clamping assembly comprises a driving component, a second mounting plate connected to the driving end of the driving component, and a second limiting piece connected to the second mounting plate; when the driving component drives the second mounting plate to move close to the placement platform, the second limiting piece is driven to abut against the side wall in the width direction of the to-be-detected piece, so as to limit the width direction of the to-be-detected piece.

[0010] Optionally, the second mounting plate and the second limiting piece are respectively located on opposite sides of the first mounting plate, and the first mounting plate is provided with a hollow groove, and the second limiting piece passes through the hollow groove to be connected to the second mounting plate.

[0011] Optionally, the second limiting piece comprises a first limiting part and a second limiting part connected to each other, and the first limiting part abuts against the side wall in the width direction of the to-be-detected piece; the second mounting plate is further connected with a pressing component, and a pressing part of the pressing component passes through the hollow groove and a gap hole in the second mounting plate, so as to abut the second limiting part and the pressing part against the two sides in the thickness direction of the to-be-detected piece, respectively.

[0012] Optionally, the first limiting piece comprises a third limiting part and a fourth limiting part connected to each other, and the third limiting part abuts against the side wall in the height direction of the to-be-detected piece, and the fourth limiting part abuts against the side wall in the thickness direction of the to-be-detected piece.

[0013] And / or, the first limiting part, the second limiting part, the third limiting part and the fourth limiting part are all provided with a buffer pad on the contact surface of the to-be-detected piece.

[0014] Optionally, the working platform is further provided with a third moving platform, and the fixing module is connected to the movable end of the third moving platform; the third moving platform drives the fixing module to move close to or away from the first moving platform.

[0015] Optionally, the electronic device interface detection device further comprises a control module electrically connected to the first moving platform, the second moving platform and the detection module; when the pressure value detected by the pressure sensor is equal to the preset pressure value, the control module controls the first moving platform or the second moving platform to stop driving the detection module to move.

[0016] Optionally, the control module comprises an operation display screen connected to the rack.

[0017] As described above, the electronic equipment interface detection device has the following beneficial effects:

[0018] The fixing module is used for fixing the to-be-detected piece on the working platform, then the first moving platform and the second moving platform drive the detection module to move in the first direction and the second direction relative to the to-be-detected piece, so as to move the pressing plate of the detection module to the detection surface of the cable plug inserted in the interface of the to-be-detected piece, then the first moving platform or the second moving platform drives the pressing plate to move, so as to press the detection surface of the cable plug, the pressure sensor connected to the pressing plate detects the pressure value applied by the pressing plate to the detection surface of the cable plug, so as to ensure that the pressing plate applies the same pressure value to each detection surface, which is beneficial to improve the detection accuracy and avoid damaging the to-be-detected piece, thereby reducing the cost. BRIEF DESCRIPTION OF DRAWINGS

[0019] Figure 1 A structure schematic diagram of an electronic equipment interface detection device according to an embodiment of the present application is shown;

[0020] Figure 2 An application structure schematic diagram of an electronic equipment interface detection device according to an embodiment of the present application is shown;

[0021] Figure 3 A first partial structure schematic diagram of an electronic equipment interface detection device according to an embodiment of the present application is shown;

[0022] Figure 4 A second partial structure schematic diagram of an electronic equipment interface detection device according to an embodiment of the present application is shown;

[0023] Figure 5 A structure schematic diagram of an electronic equipment interface detection device according to an embodiment of the present application is shown from another perspective; Figure 4

[0024] MARKS

[0025] 1-rack; 11-working platform;

[0026] ​2-fixing module; 21-placing platform; 22-clamping assembly; 221-second mounting plate; 222-second limiting piece; 2221-first limiting part; 2222-second limiting part; 223-fifth driving piece; 224-fourth transmission screw rod; 225-fourth transmission nut; 226-fourth guide piece; 227-fourth bearing seat; 228-sixth driving piece; 229-pressing head; 23-first mounting plate; 231-hollow groove; 24-first limiting piece; 241-third limiting part; 242-fourth limiting part; 25-cushion pad;

[0027] 3-first moving platform; 31-first driving piece; 32-first transmission screw rod; 33-first transmission nut; 34-first moving plate; 35-first guide piece; 36-first bearing seat;

[0028] 4-second moving platform; 41-third mounting plate; 42-second driving piece; 43-second transmission screw rod; 44-second moving plate; 45-second guide piece; 46-bracket;

[0029] 5-detecting module; 51-pressing plate; 52-pressure sensor; 53-supporting column; 54-connecting piece; 55-adapting piece; 56-third driving piece; 57-connector;

[0030] 6-detecting piece;

[0031] 7-control module; 71-operation display screen;

[0032] 8-third moving platform; 81-adapting plate; 82-fourth driving piece; 83-third transmission screw rod; 84-third transmission nut; 85-third moving plate; 86-third guide piece; 87-third bearing seat. DETAILED DESCRIPTION

[0033] The embodiments of the present application will be described in detail with specific examples. Those skilled in the art can easily understand other advantages and functions of the present application from the content disclosed in the specification. The present application can also be implemented or applied in other different embodiments, and each detail in the specification can be modified or changed based on different viewpoints and applications without departing from the spirit of the present application.

[0034] It needs to be explained that the diagram provided in the embodiment only illustrates the basic concept of the utility model in a schematic way, and only shows the components related to the utility model in the diagram, not drawn according to the component number, shape and size in actual implementation. The shape, number and proportion of each component in actual implementation can be changed at will, and the component layout form can also be more complex. The structure, proportion, size, etc. shown in the diagram attached to the specification are only used to cooperate with the content disclosed in the specification, for understanding and reading by those skilled in the art, and are not used to limit the implementation conditions of the utility model. Therefore, it does not have substantial technical significance. Any modification of structure, change of proportion relationship or adjustment of size, without affecting the effect and purpose that the utility model can produce, should still fall within the scope of the technical content disclosed by the utility model. At the same time, the terms such as "upper", "lower", "left", "right", "middle" and "one" in the specification are only for the convenience of clear description, not for limiting the scope of the utility model. The change or adjustment of relative relationship, without substantial change of technical content, is also regarded as the scope of the utility model.

[0035] As shown in Figures 1 to 5 Some embodiments of the application provide an electronic device interface detection device, which comprises a rack 1, a fixing module 2, a first moving platform 3, a second moving platform 4 and a detection module 5. The rack 1 is provided with a working platform 11, and the fixing module 2 and the first moving platform 3 are both installed on the working platform 11, and the fixing module 2 is arranged opposite to the first moving platform 3. The fixing module 2 is used for fixing a to-be-detected piece 6 on the working platform 11.

[0036] The second moving platform 4 is installed on the movable end of the first moving platform 3, so that the first moving platform 3 can drive the second moving platform 4 to move along a first direction relative to the to-be-detected piece 6. The detection module 5 is installed on the movable end of the second moving platform 4, so that the second moving platform 4 can drive the detection module 5 to move along a second direction relative to the to-be-detected piece 6. The first direction and the second direction are arranged vertically. The detection module 5 is moved to the detection surface of the cable plug inserted into the interface of the to-be-detected piece 6 by moving the detection module 5 along the first direction by the first moving platform 3 and moving the detection module 5 along the second direction by the second moving platform 4, so that the detection module 5 can press the detection surface.

[0037] The detection module 5 comprises a driving assembly, a pressing plate 51 and a pressure sensor 52 mounted on the pressing plate 51. When the pressing plate 51 is pressed against the detection surface by the first moving platform 3 and the second moving platform 4, the pressure sensor 52 detects the pressure value applied by the pressing plate 51 to the detection surface, so as to ensure that the pressing plate 51 applies the same pressure value to each detection surface, thereby improving the detection accuracy. When the detection of one detection surface is completed and the next detection surface is arranged at an angle with the previous detection surface, the driving assembly drives the pressing plate 51 and the pressure sensor 52 to rotate, so that the pressing plate 51 is arranged in parallel with the next detection surface, facilitating the pressing of the next detection surface by the pressing plate 51, and improving the detection efficiency of the detection module 5.

[0038] In an application example, when the detection of the to-be-detected piece 6 is needed, the to-be-detected piece 6 is placed on the working platform 11 and is completely fixed on the working platform 11 by the fixing module 2. At this time, the cable plug is inserted into the interface of the to-be-detected piece 6. Then, the first moving platform 3 and the second moving platform 4 drive the pressing plate 51 to move to the detection surface of the cable plug, and the pressing plate 51 is pressed against the detection surface by the first moving platform 3 or the second moving platform 4. The detection surface transmits the pressure to the joint inserted into the interface, and the joint applies the same pressure to the inner wall of the interface, so as to detect the strength of the interface structure on the to-be-detected piece 6. During the pressing of the detection surface by the pressing plate 51, the pressure sensor 52 detects the pressure value applied by the pressing plate 51 to the detection surface, so as to ensure that the pressing plate 51 applies the same pressure value to each detection surface, thereby improving the detection accuracy.

[0039] In an example, the first direction is along the width direction of the to-be-detected piece 6, and the second direction is along the height direction of the to-be-detected piece 6. The detection surface of the cable plug comprises an upper detection surface, a lower detection surface, a left detection surface and a right detection surface. The detection sequence of the detection surfaces can be the upper and lower detection surfaces first and then the left and right detection surfaces, or can be detected in sequence along the clockwise or counterclockwise direction, or can be detected in any sequence.

[0040] When the upper and lower detection surfaces are detected, the second moving platform 4 moves the pressing plate 51 to be close to or away from the upper and lower detection surfaces. When the left and right detection surfaces are detected, the first moving platform 3 moves the pressing plate 51 to be close to or away from the left and right detection surfaces. When the pressing plate 51 changes from the detection of the upper and lower detection surfaces to the detection of the left and right detection surfaces, the driving assembly drives the pressing plate 51 to rotate to change the direction of the pressing plate 51, and the first moving platform 3 and the second moving platform 4 adjust the position of the pressing plate 51 relative to the width direction and the height direction of the to-be-detected piece 6, so that the pressing plate 51 is arranged opposite to the detection surface and the center lines are aligned.

[0041] In another example, the first direction is along the height direction of the piece to be detected 6, and the second direction is along the width direction of the piece to be detected 6, and the first moving platform 3 is used to adjust the position of the pressing plate 51 relative to the height direction of the piece to be detected 6, and the second moving platform 4 is used to adjust the position of the pressing plate 51 relative to the width direction of the piece to be detected 6.

[0042] In some embodiments, the first moving platform 3, the second moving platform 4 and the detection module 5 are electrically connected with a control module 7. When the pressure sensor 52 connected to the pressing plate 51 detects that the pressure value applied by the pressing plate 51 to the detection surface is equal to the preset pressure value, the control module 7 controls the first moving platform 3 or the second moving platform 4 to stop moving the detection module 5, so as to ensure that the pressure value applied by the pressing plate 51 to each detection surface is maintained at the preset pressure value.

[0043] In an example, the control module 7 includes an operation display screen 71 installed on the rack 1. An operator can turn on or off the electronic device interface detection device of the present application through the operation display screen 71, and can input the preset pressure value and the number of detections of each detection surface through the operation display screen 71, and can also use the operation display screen 71 to display the detection results, record and store the detection results, etc.

[0044] In some embodiments, the first moving platform 3 includes a first driving member 31, a first transmission screw rod 32 installed on the driving end of the first driving member 31, a first transmission nut 33 installed on the first transmission screw rod 32, a first moving plate 34 installed on the first transmission nut 33, and first guide members 35 arranged on both sides of the first transmission screw rod 32. The first moving plate 34 is connected with the first transmission nut 33 and the first guide members 35 at the same time. When the first driving member 31 drives the first transmission screw rod 32 to rotate, the first transmission nut 33 drives the first moving plate 34 to move along the first direction, so as to realize the movement of the second moving platform 4 along the first direction driven by the first moving platform 3. The two ends of the first transmission screw rod 32 are installed on the working platform 11 through first bearing seats 36, and the first guide members 35 are also installed on the working platform 11.

[0045] The second moving platform 4 comprises a third mounting plate 41 mounted on the first moving plate 34, a second driving member 42, a second transmission screw rod 43 mounted on a driving end of the second driving member 42, a second transmission nut mounted on the second transmission screw rod 43, a second moving plate 44 mounted on the second transmission nut, and second guide members 45 arranged on both sides of the second transmission screw rod 43. The second moving plate 44 is connected with the second transmission nut and the second guide members 45 at the same time. When the second driving member 42 drives the second transmission screw rod 43 to rotate, the second transmission nut drives the second moving plate 44 to move in the second direction, so as to realize the movement of the detection module 5 in the second direction driven by the second moving platform 4. The two ends of the second transmission screw rod 43 are mounted on the third mounting plate 41 through a second bearing seat, and the second guide members 45 are also mounted on the third mounting plate 41.

[0046] For example, the first driving member 31 provides driving force for the rotation of the first transmission screw rod 32, and the second driving member 42 provides driving force for the rotation of the second transmission screw rod 43. The first driving member 31 and the second driving member 42 include, but are not limited to, a motor and the like.

[0047] In an example, when the second moving platform 4 is used to adjust the position of the pressing plate 51 relative to the height direction of the to-be-detected member 6, the second moving platform 4 further comprises a support 46 connected with the first moving plate 34 and the third mounting plate 41 at the same time, so as to improve the stability of the connection between the third mounting plate 41 and the first moving plate 34.

[0048] In some embodiments, the detection module 5 further comprises a plurality of support columns 53 mounted on the second moving plate 44, a connecting member 54 mounted on the support columns 53, and an adapter 55, wherein a driving assembly is mounted on the connecting member 54, and the adapter 55 is connected with the driving end of the driving assembly and the pressure sensor 52 at the same time. The driving assembly drives the adapter 55 to rotate, so as to drive the pressure sensor 52 and the pressing plate 51 to rotate synchronously.

[0049] In some embodiments, the driving assembly comprises a third driving member 56, a driving wheel mounted on a driving end of the third driving member 56, a driven wheel, a transmission belt connected with the driving wheel and the driven wheel at the same time, a connector 57 mounted on the axis of the driven wheel, and a bearing mounted on the connecting member 54. The connector 57 is connected with the bearing in a matched mode. When the third driving member 56 drives the driving wheel to rotate, the driven wheel rotates synchronously with the driving wheel, so as to drive the connector 57 to rotate synchronously, thereby realizing the rotation of the pressing plate 51.

[0050] For example, the third driving member 56 provides driving force for the rotation of the driving wheel, and includes, but is not limited to, a motor and the like.

[0051] In some embodiments, a third moving platform 8 is also installed on the working platform 11, and the fixed module 2 is installed on the moving end of the third moving platform 8, so that the third moving platform 8 can drive the fixed module 2 to move close to or away from the first moving platform 3.

[0052] When it is necessary to place the to-be-detected piece 6 on the working platform 11 or take the to-be-detected piece 6 away from the working platform 11, the third moving platform 8 drives the fixed module 2 to move away from the first moving platform 3 to provide space for the to-be-detected piece 6 to be placed or taken away. When the to-be-detected piece 6 is fixed by the fixed module 2 and is ready for detection, the third moving platform 8 drives the fixed module 2 to move close to the first moving platform 3, so that the pressing plate 51 can press on the detection surface of the cable plug inserted into the interface of the to-be-detected piece 6.

[0053] In some embodiments, the third moving platform 8 includes a conversion plate 81 installed on the working platform 11, a fourth driving piece 82, a third transmission screw rod 83 installed on the driving end of the fourth driving piece 82, a third transmission nut 84 installed on the third transmission screw rod 83, a third moving plate 85 installed on the third transmission nut 84, and third guide pieces 86 arranged on both sides of the third transmission screw rod 83. The third moving plate 85 is connected with the third transmission nut 84 and the third guide pieces 86 at the same time, and when the fourth driving piece 82 drives the third transmission screw rod 83 to rotate, the third transmission nut 84 drives the third moving plate 85 to move close to or away from the first moving platform 3, so as to realize the to-be-detected piece 6 moving close to or away from the detection module 5. The two ends of the third transmission screw rod 83 are installed on the working platform 11 through third bearing seats 87, and the third guide pieces 86 are installed on the conversion plate 81.

[0054] For example, the fourth driving piece 82 provides driving force for the rotation of the third transmission screw rod 83, which includes but is not limited to being configured as a motor or the like.

[0055] In an example, the third moving platform 8 is electrically connected with the control module 7, so that the control module 7 can control the movement of the third moving platform 8.

[0056] In some embodiments, the fixed module 2 includes a placement platform 21 for placing the to-be-detected piece 6 and clamping assemblies 22 arranged on both sides of the placement platform 21. The clamping assemblies 22 can move in the direction close to or away from the placement platform 21. When the two clamping assemblies 22 move close to the placement platform 21 at the same time, the to-be-detected piece 6 is fixed on the placement platform 21, which facilitates the detection of the to-be-detected piece 6 by the detection module 5.

[0057] In an example, the placement platform 21 is a flat plate installed on the third moving plate 85. When the to-be-detected piece 6 is placed on the placement platform 21, the height direction of the to-be-detected piece 6 cannot be moved.

[0058] In another example, the fixing module 2 further comprises a first mounting plate 23 located on both sides of the placing platform 21, and a first limiting piece 24 mounted on the first mounting plate 23, and the first mounting plate 23 is mounted on the third moving plate 85. The placing platform 21 is arranged as a lifting platform, and the first limiting piece 24 abuts against the side wall in the height direction of the to-be-detected piece 6, and the lifting platform cooperates with the first limiting piece 24 to limit the height direction of the to-be-detected piece 6 and can adapt to to-be-detected pieces 6 of different height specifications.

[0059] In an application example, when the to-be-detected piece 6 is arranged as a display screen of a desktop computer, the base of the display screen is placed on the lifting platform, and the first limiting piece 24 is located on the lower side wall of the display screen, and the first limiting piece 24 plays a limiting and supporting role on the display screen. In another application example, the first limiting piece 24 is located on the upper side wall of the display screen, and the first limiting piece 24 plays a limiting role on the display screen.

[0060] In some embodiments, the clamping assembly 22 is mounted on the first mounting plate 23, and the clamping assembly 22 comprises a driving component, a second mounting plate 221 mounted on the driving end of the driving component, and a second limiting piece 222 mounted on the second mounting plate 221. When the driving component drives the second mounting plate 221 to move close to the placing platform 21, the second limiting piece 222 is driven to abut against the side wall in the width direction of the to-be-detected piece 6 to limit the width direction of the to-be-detected piece 6.

[0061] In an example, the driving component comprises a fifth driving piece 223, a fourth transmission screw rod 224 mounted on the driving end of the fifth driving piece 223, a fourth transmission nut 225 mounted on the fourth transmission screw rod 224, and fourth guide pieces 226 arranged on both sides of the fourth transmission screw rod 224, and the second mounting plate 221 is connected with the fourth transmission nut 225 and the fourth guide pieces 226 at the same time. When the fifth driving piece 223 drives the fourth transmission screw rod 224 to rotate, the fourth transmission nut 225 drives the second mounting plate 221 to move close to or away from the placing platform 21, so as to realize the second limiting piece 222 to move close to or away from the to-be-detected piece 6. The two ends of the fourth transmission screw rod 224 are mounted on the first mounting plate 23 through fourth bearing seats 227, and the fourth guide pieces 226 are also mounted on the first mounting plate 23.

[0062] Illustratively, the fifth driving piece 223 provides driving force for the rotation of the fourth transmission screw rod 224, including but not limited to being arranged as a motor, a hand wheel, etc.

[0063] In some embodiments, the second mounting plate 221 and the second limiting member 222 are respectively located on opposite sides of the first mounting plate 23, the first mounting plate 23 is provided with a hollow slot 231, and the second limiting member 222 is connected with the second mounting plate 221 through the hollow slot 231. When the to-be-detected member 6 is a display screen of a desktop computer, the above structure can make the side wall of the display screen in the thickness direction close to the first mounting plate 23 abut on the first mounting plate 23, so that the first mounting plate 23 plays a role of stabilizing the display screen.

[0064] In some embodiments, the second limiting member 222 includes a first limiting part 2221 and a second limiting part 2222 connected with each other, and the first limiting part 2221 is used to abut on the side wall in the width direction of the to-be-detected member 6. The second mounting plate 221 is further provided with a pressing member, and a pressing part of the pressing member penetrates through a gap hole on the second mounting plate 221 and the hollow slot 231 on the first mounting plate 23, so that the second limiting part 2222 and the pressing part of the pressing member abut on the two sides in the thickness direction of the to-be-detected member 6 respectively, to limit the thickness direction of the to-be-detected member 6.

[0065] In an example, the pressing member includes a sixth driving member 228 and a pressure head 229 mounted on a driving end of the sixth driving member 228, and the pressing part of the pressing member is a pressing surface of the pressure head 229, and the pressure head 229 penetrates through the gap hole on the second mounting plate 221 and the hollow slot 231 on the first mounting plate 23. The sixth driving member 228 drives the pressure head 229 to move close to or away from the to-be-detected member 6, so as to realize the pressing and releasing of the pressure head 229 to the to-be-detected member 6.

[0066] For example, the sixth driving member 228 provides driving force for the movement of the pressure head 229, including but not limited to a gas cylinder, an elbow clamp, etc.

[0067] In some embodiments, the first limiting member 24 includes a third limiting part 241 and a fourth limiting part 242 connected with each other, the third limiting part 241 abuts on the side wall in the height direction of the to-be-detected member 6, and the fourth limiting part 242 abuts on the side wall in the thickness direction of the to-be-detected member 6, so that the first limiting member 24 can realize the limiting of the height direction and the thickness direction of the to-be-detected member 6.

[0068] In an example, the included angle between the first limiting part 2221 and the second limiting part 2222 is adaptively set according to the included angle between the side wall in the width direction and the side wall in the thickness direction of the to-be-detected member 6, and the included angle between the third limiting part 241 and the fourth limiting part 242 is adaptively set according to the included angle between the side wall in the height direction and the side wall in the thickness direction of the to-be-detected member 6.

[0069] In some embodiments, the first limiting part 2221, the second limiting part 2222, the third limiting part 241 and the fourth limiting part 242 are provided with a buffer pad 25 on the contact surface of the to-be-detected piece 6, so as to avoid damage to the to-be-detected piece 6 caused by the first limiting part 24 and the second limiting part 222 during the limiting process of the to-be-detected piece 6.

[0070] In an example, the material of the buffer pad 25 includes, but is not limited to, a flexible material such as foam.

[0071] In an example, the fixing module 2 is electrically connected with the control module 7, and the control module 7 controls the fixing module 2 to fix the to-be-detected piece 6.

[0072] In an application example, after the to-be-detected piece 6 is completely fixed on the placing platform 21, the control module 7 can be inputted with movement data by manual operation, so as to control the movement of the first moving platform 3 and the second moving platform 4 to move the pressing plate 51 to the detection surface of the cable plug; the position of the cable plug can also be recognized by the visual recognition module, so as to drive the first moving platform 3 and the second moving platform 4 to move according to the position of the cable plug recognized by the visual recognition module, to move the pressing plate 51 to the detection surface of the cable plug; the detection interface of the to-be-detected piece 6 can also be adjusted to the same position by the fixing module 2 each time, so as to move the pressing head 229 of the detection module 5 to the detection surface of the cable plug according to the preset movement path of the first moving platform 3 and the second moving platform 4.

[0073] In summary, the electronic device interface detection device provided by the utility model fixes the to-be-detected piece on the working platform through the fixing module, then drives the detection module to move in the first direction and the second direction relative to the to-be-detected piece through the first moving platform and the second moving platform, to move the pressing plate of the detection module to the detection surface of the cable plug inserted in the interface of the to-be-detected piece, then the first moving platform or the second moving platform drives the pressing plate to move to press the detection surface of the cable plug, and the pressure sensor connected with the pressing plate detects the pressure value applied by the pressing plate to the detection surface of the cable plug, to ensure that the pressure value applied by the pressing plate to each detection surface is consistent, which is beneficial to improve the detection accuracy and avoid damage to the to-be-detected piece, thereby reducing the cost. Furthermore, when the next detection surface is arranged at an angle with the previous detection surface after the detection of one detection surface is completed, the pressing plate and the pressure sensor can be driven by the driving assembly to rotate, so that the pressing plate is arranged in parallel with the next detection surface, which is convenient for the pressing plate to press the next detection surface, and is beneficial to improve the detection efficiency of the detection module.

[0074] The above embodiments only exemplarily illustrate the principles and effects of the present application, and are not used to limit the present application. Any person skilled in the art can modify or change the above embodiments without departing from the spirit and scope of the present application. Therefore, all equivalent modifications or changes completed by those skilled in the art without departing from the spirit and technical thought disclosed by the present application should be covered by the claims of the present application.

Claims

1. An electronic device interface detection apparatus, characterized by: The utility model relates to a kind of detection device for the detection of the height, width and thickness of the piece, comprising: Rack, it is provided with work platform; Fixed module, it is connected on the work platform, for fixing piece to be detected; First mobile platform, it is connected on the work platform and is oppositely arranged with the fixed module; Second mobile platform, it is connected on the movable end of the first mobile platform, and the first mobile platform drives the second mobile platform to move along the first direction relative to the piece to be detected; Detection module, it is connected on the movable end of the second mobile platform, and the second mobile platform drives the detection module to move along the second direction relative to the piece to be detected;The detection module includes drive assembly, pressing plate and the pressure sensor connected on the pressing plate, and the drive assembly can drive the pressing plate and the pressure sensor rotate; Wherein, the first direction and the second direction are vertically arranged.

2. The electronic device interface detection apparatus of claim 1, wherein: The fixed module includes placement platform and the clamping assembly located on both sides of the placement platform, the placement platform is used to place the piece to be detected, and the clamping assembly can move along the direction close to or away from the placement platform, when two clamping assemblies simultaneously close to the placement platform, to fix the piece to be detected on the placement platform.

3. The electronic device interface detection apparatus of claim 2, wherein: The fixed module further includes first mounting plate located on both sides of the placement platform, and first limiting piece connected on the first mounting plate, the placement platform is set as lifting platform, the first limiting piece is abutted on the side wall in the height direction of the piece to be detected, and the lifting platform cooperates with the first limiting piece to limit the height direction of the piece to be detected.

4. The electronic device interface detection apparatus of claim 3, wherein: The clamping assembly is connected on the first mounting plate, and the clamping assembly includes drive component, second mounting plate connected on the drive end of the drive component, and second limiting piece connected on the second mounting plate, when the drive component drives the second mounting plate to close to the placement platform, drives the second limiting piece to be abutted on the side wall in the width direction of the piece to be detected, to limit the width direction of the piece to be detected.

5. The electronic device interface detection apparatus of claim 4, wherein: The second mounting plate and the second limiting piece are respectively located on the opposite sides of the first mounting plate, and the first mounting plate is provided with hollow slot, and the second limiting piece passes through the hollow slot and is connected with the second mounting plate.

6. The electronic device interface detection apparatus of claim 5, wherein: The second limiting piece includes first limiting part and second limiting part connected, and the first limiting part is abutted on the side wall in the width direction of the piece to be detected;Second mounting plate is also connected with extrusion component, and the pressing part of the extrusion component passes through the hollow slot and the second mounting plate on the give hole, to make the second limiting part and the extrusion component be abutted on both sides in the thickness direction of the piece to be detected.

7. The electronic device interface detection apparatus of claim 6, wherein: The first limiting piece includes third limiting part and fourth limiting part connected, and the third limiting part is abutted on the side wall in the height direction of the piece to be detected, and the fourth limiting part is abutted on the side wall in the thickness direction of the piece to be detected; And / or, the first limiting part, second limiting part, third limiting part and fourth limiting part are all provided with buffer pad on the contact surface of the piece to be detected.

8. The electronic device interface detection apparatus of any of claims 1-7, wherein: The third moving platform is arranged on the working platform, and the fixed module is connected to a movable end of the third moving platform.

9. The electronic device interface detection apparatus of claim 8, wherein: The electronic equipment interface detection device further comprises a control module electrically connected to the first moving platform, the second moving platform and the detection module.

10. The electronic device interface detection apparatus of claim 9, wherein: The control module comprises an operation display screen connected to the rack.