Notebook computer plugging detection device

By designing an automated laptop computer plug-in detection device, using transmission components and sensing components to identify the interface position, and clamping components to automatically insert and remove connectors, the problem of low efficiency in laptop computer interface detection is solved, and efficient and accurate detection is achieved.

CN223421791UActive Publication Date: 2025-10-10TECH-FRONT (CHONGQING) COMPUTER CO LTD
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Patent Information

Application Number
CN202422641748.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-30
Publication Date
2025-10-10
Estimated Expiration
2034-10-30

AI Technical Summary

Technical Problem

In the prior art, the detection efficiency of laptop computer interfaces is low, and missed detection and detection errors are prone to occur.

Method used

A laptop computer plug-in detection device is designed, which includes a detection platform, a transmission component, a connector, a clamping component and a sensing component. The device is sent to the detection station by the transmission component, the sensing component identifies the interface position, and the clamping component automatically inserts and removes the connector for detection.

Benefits of technology

It improves detection efficiency, reduces missed detection and detection errors, and realizes automated interface detection.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of notebook computer detection, and provides a notebook computer plug-in detection device, which comprises a first rack, a second rack, a third rack and a fourth rack, the first rack is provided with a detection platform, and the detection platform is provided with a detection station for placing a to-be-detected notebook computer; the first conveying assembly comprises first conveying belts oppositely arranged on the two sides of the detection station, and the to-be-detected notebook computer is conveyed into the detection station through the first conveying belts to be subjected to insertion detection; the plug connector is arranged on one side of the detection station and used for being inserted into an interface of the notebook computer to be detected for detection; the clamping assembly is arranged on the first rack and used for clamping the plug connector to be inserted into the interface of the notebook computer to be tested or pulled out of the interface of the notebook computer to be tested; the sensing assembly is arranged on the first rack and used for identifying the interface position of the notebook computer to be tested and driving the clamping assembly to grab the plug connector to move; according to the invention, the plug-in detection of the notebook computer interface can be automatically carried out, and the production efficiency is improved.
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Description

Technical Field

[0001] The present application relates to the technical field of notebook computer detection, and in particular to a notebook computer plug detection device. Background Art

[0002] Laptop interfaces are the gateway for data transmission between the laptop and external hardware devices and for adding external expansion functions. Interfaces are divided according to their functions, such as USB, HDMI, audio, and Type-C interfaces. Before a laptop leaves the factory, these interfaces need to be tested to ensure quality.

[0003] In the related art, the functional testing of the laptop computer's interface is mainly carried out by manually plugging and testing the interfaces of the laptop computer to be tested one by one. Manual testing may result in missed detection or detection errors during the plugging and unplugging process, which leads to low detection efficiency. Utility Model Content

[0004] In view of the above shortcomings of the prior art, the purpose of this application is to provide a laptop computer plug detection device to solve the problem of low detection efficiency of the laptop computer interface detection method in the prior art.

[0005] To achieve the above-mentioned and other related purposes, the present application provides a laptop computer plug detection device, comprising:

[0006] A first frame, wherein a testing platform is provided on the first frame, and the testing platform has a testing station for placing a laptop computer to be tested;

[0007] a first conveying assembly, the first conveying assembly comprising first conveyor belts disposed on opposite sides of the inspection station, and conveying the laptop computer to be tested into the inspection station for insertion testing via the first conveyor belts;

[0008] A connector, provided on one side of the testing station, for inserting into an interface of the laptop computer to be tested for testing;

[0009] a clamping assembly, disposed on the first frame, for clamping the connector to insert into or remove from the interface of the laptop computer to be tested;

[0010] The sensing component is arranged on the first frame and is used for identifying the interface position of the notebook computer to be tested and driving the clamping component to grab the connector and move it.

[0011] Optionally, the sensing component includes a lens module and a moving module, the lens module includes a connecting plate and a lens, the moving module includes a first slide rail, a second driving member and a first mounting plate, the first slide rail is arranged on the first frame in a horizontal direction, the first mounting plate is vertically arranged on the first slide rail in a horizontal direction, the first mounting plate can move on the first slide rail, the first mounting plate is provided with a second slide rail, a third driving member and a second mounting plate, the connecting plate is provided on the second mounting plate, the second mounting plate is movably provided on the second slide rail, the lens module is driven to move on the first slide rail by the second driving member, and the lens module is driven to move on the second slide rail by the third driving member.

[0012] Optionally, a third slide rail and a fourth driving member are provided on the connecting plate, and the clamping assembly includes a third mounting plate, a clamping jaw and a second cylinder. The third mounting plate is movably provided on the third slide rail, and the clamping assembly is driven to move on the third slide rail by the fourth driving member. A gripping portion is provided at the end of the clamping jaw, and the gripping portion is a boss structure. The second cylinder drives the clamping jaws to move closer to or away from each other to grip or release the connector.

[0013] Optionally, there are multiple connectors, and the connector is provided with a plug connector that matches the interface of the laptop computer to be tested, and the top of the connector is provided with a recessed structure that matches the grabbing portion. The detection platform is also provided with a positioning column for positioning the connector, and the bottom of the connector is provided with a positioning hole that matches the positioning column.

[0014] Optionally, a lifting plate is provided between the first conveyor belts, and a first cylinder is provided at the bottom of the lifting plate. When the laptop computer to be tested enters the testing station, the first cylinder drives the lifting plate to lift the laptop computer to be tested.

[0015] Optionally, a limit plate is further provided at the end of the first conveyor belt for positioning the laptop computer to be tested in the conveying direction of the first conveyor belt. The first conveyor belt conveys the laptop computer to be tested into the testing station and stops after being blocked by the limit plate.

[0016] Optionally, the detection platform is also provided with a limit assembly for positioning the laptop computer to be tested in the vertical direction, the limit assembly includes a first limit member and a first driving member arranged relatively to each other, the first limit member is rotatably set on the first driving member, when the lifting plate lifts the laptop computer to be tested, the first driving member drives the first limit member to rotate to a position parallel to the keyboard surface of the laptop computer to be tested, the lifting plate continues to lift the laptop computer to be tested, and the first limit member is in contact with the surface of the laptop computer to be tested to position the laptop computer to be tested in the vertical direction.

[0017] Optionally, a limit block is further provided on the detection platform for limiting the rotational travel of the first limit member. When the first limit member rotates, the first limit member stops rotating after being at least partially blocked by the limit block, so that the first limit member stays in a position parallel to the keyboard surface of the laptop computer to be tested.

[0018] Optionally, two first conveyor belts are provided, and the two first conveyor belts can approach or move away from each other to adjust the size of the inspection station. A second limiting member is provided on the side of the first conveyor belt that is away from each other for positioning the laptop computer to be tested in the horizontal direction. The second limiting member can move following the first conveyor belt. After the first conveyor belt sends the laptop computer to be tested into the inspection station, the first conveyor belts approach each other and drive the second limiting member to move toward each other to position the laptop computer to be tested in the horizontal direction.

[0019] Optionally, the second limiting member has a guide portion on the entrance side of the first conveyor belt for guiding the laptop computer to be tested entering the first conveyor belt, and the guide portion forms an outwardly expanding opening structure on the entrance side of the first conveyor belt.

[0020] In the laptop computer plug-in detection device provided in the present application, the first conveying component first sends the laptop computer to be tested into the detection station for plug-in detection, identifies the interface position of the laptop computer to be tested through the sensing component, and then drives the clamping component to grab the connector and move it, and inserts the connector into the interface of the laptop computer to be tested for detection. After the detection is completed, the clamping component is driven to grab the connector and pull it out from the interface of the laptop computer. The laptop computer interface can be automatically plugged in and detected, thereby improving production efficiency and effectively reducing the occurrence of missed detections and detection errors. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] Figure 1 This is a structural diagram of a laptop computer plug detection device according to an embodiment of the present application;

[0022] Figure 2This is a structural diagram of the first frame of a laptop computer plug detection device according to an embodiment of the present application;

[0023] Figure 3 for Figure 2 Schematic diagram of the structure on the detection platform;

[0024] Figure 4 for Figure 2 A schematic diagram of the first-person perspective structure of the middle sensing component;

[0025] Figure 5 for Figure 2 A schematic diagram of the second perspective structure of the middle sensing component;

[0026] Figure 6 for Figure 5 A schematic diagram of the enlarged structure of the clamping assembly;

[0027] Figure 7 This is a schematic structural diagram of a plug connector according to an embodiment of the present application;

[0028] Figure 8 This is a structural diagram of the second frame of a notebook computer plug detection device shown in one embodiment of the present application.

[0029] Part Number Description

[0030] 1-First frame; 2-Detection platform; 3-Second frame; 4-Feeding platform; 5-Discharging platform; 6-Controller; 7-Sensing component; 8-Clamping component; 9-Fourth mounting plate; 10-Fourth slide rail; 11-First conveyor belt; 12-First stopper; 13-First driving component; 14-Stop block; 15-Connector; 16-Positioning column; 17-Second stopper; 18-Guide; 19-Stop plate; 20-First cylinder; 21-Lifting plate; 22-First slide rail; 23 -Second driving member; 24-First mounting plate; 25-Second slide rail; 26-Third driving member; 27-Connecting plate; 28-Lens; 29-Clamping claw; 30-Third cylinder; 31-Second mounting plate; 32-Fourth driving member; 33-Third slide rail; 34-Third mounting plate; 35-Second cylinder; 36-Plug connector; 37-Recessed structure; 38-Positioning hole; 39-Grabbing part; 40-Second conveyor belt; 41-Third conveyor belt; 42-Fourth conveyor belt; 43-Fifth conveyor belt. DETAILED DESCRIPTION

[0031] The following describes the implementation of the present application through specific embodiments. People familiar with this technology can easily understand other advantages and effects of the present application from the contents disclosed in this specification.

[0032] It should be noted that the structures, proportions, sizes, etc. illustrated in the drawings of this specification are only used to match the contents disclosed in the specification for people familiar with this technology to understand and read, and are not used to limit the limiting conditions for the implementation of this application. Therefore, they have no substantial technical significance. Any modification of the structure, change in the proportional relationship, or adjustment of the size should still fall within the scope of the technical content disclosed in this application without affecting the efficacy and purpose that can be achieved by this application. At the same time, terms such as "front", "back", "left", "right", "middle" and "one" quoted in this specification are only for the convenience of description and are not used to limit the scope of the implementation of this application. Changes or adjustments in their relative relationships should also be regarded as the scope of the implementation of this application without substantially changing the technical content.

[0033] See also Figures 1 to 8 The present application exemplarily provides a laptop computer plug detection device, comprising:

[0034] A first frame 1 is provided with a testing platform 2, and the testing platform 2 has a testing station for placing a laptop computer to be tested;

[0035] The first conveying assembly includes a first conveyor belt 11 disposed on both sides of the inspection station. The laptop computer to be tested is conveyed to the inspection station for insertion inspection via the first conveyor belt 11.

[0036] The connector 15 is provided at one side of the testing station and is used to be inserted into the interface of the laptop computer to be tested for testing;

[0037] A clamping assembly 8 is provided on the first frame 1 and is used to clamp the connector 15 so as to insert it into or remove it from the interface of the laptop computer to be tested;

[0038] The sensing component 7 is provided on the first frame 1 and is used to identify the interface position of the laptop computer to be tested and drive the clamping component 8 to grab the connector 15 and move it.

[0039] In the laptop computer plug-in detection device provided in the present application, the first conveying component first sends the laptop computer to be tested into the detection station for plug-in detection, identifies the interface position of the laptop computer to be tested through the sensing component 7, and then drives the clamping component 8 to grab the connector 15 and move it, and inserts the connector 15 into the interface of the laptop computer to be tested for detection. After the detection is completed, the clamping component 8 is driven to grab the connector 15 and unplug it from the interface of the laptop computer. The laptop computer interface can be automatically plugged in and detected, thereby improving production efficiency and effectively reducing the occurrence of missed detections and detection errors.

[0040] In this embodiment, the sensing component 7 includes a lens module and a moving module. The lens module includes a connecting plate 27 and a lens 28. The moving module includes a first slide rail 22, a second driving member 23 and a first mounting plate 24. The first slide rail 22 is arranged on the first frame 1 in the horizontal direction. The first mounting plate 24 is vertically arranged on the first slide rail 22 in the horizontal direction. The first mounting plate 24 can move on the first slide rail 22. The first mounting plate 24 is provided with a second slide rail 25, a third driving member 26 and a second mounting plate 31. The connecting plate 27 is arranged on the second mounting plate 31. The second mounting plate 24 is provided with a connecting plate 27. The mounting plate 31 is movably arranged on the second slide rail 25, and the lens 28 module is driven to move on the first slide rail 22 by the second driving member 23, and the lens 28 module is driven to move on the second slide rail 25 by the third driving member 26. Specifically, a third cylinder 30 is also provided on the connecting plate 27, and the lens 28 is driven to move in the vertical direction on the connecting plate 27 by the third cylinder 30. The second driving member 23 and the third driving member 26 can be set as a driving motor and a screw rod, and the driving motor drives the screw rod to rotate, so as to provide driving force for driving, which is not limited here.

[0041] In the above embodiment, a third slide rail 33 and a fourth driving member 32 are provided on the connecting plate 27, and the clamping assembly 8 includes a third mounting plate 34, a clamping jaw 29 and a second cylinder 35. The third mounting plate 34 is movably provided on the third slide rail 33, and the clamping assembly 8 is driven to move on the third slide rail 33 by the fourth driving member 32. The fourth driving member 32 can be provided as a cylinder or a motor, which is not limited here. A gripping portion 39 is provided at the end of the clamping jaw 29, and the gripping portion 39 is a boss structure. The two cylinders 35 drive the clamping jaws 29 to move closer to or away from each other to grab or release the connector 15. Specifically, the sensing component 7 and the clamping component 8 are arranged together, and the movement of the sensing component 7 and the clamping component 8 can be achieved through a moving module, and the fourth driving member 32 is used to independently control the movement of the clamping jaws 29 in the vertical direction to move closer to or away from the connector 15, so as to avoid the lens 28 touching the connector 15 when the clamping jaws 29 grab the connector 15, thereby damaging the lens 28, thereby effectively protecting the lens 28.

[0042] In the above embodiment, there are multiple connectors 15, and the connector 15 is provided with a connector 36 that matches the interface of the laptop computer to be tested. The top of the connector 15 is provided with a recessed structure 37 that matches the grabbing portion 39. When the clamping jaw 29 grabs the connector 15, the clamping jaw 29 approaches the connector 15 and closes the grabbing portion 39, so that the boss structure cooperates with the recessed portion to achieve stable grasping. At the same time, when plugging and unplugging the connector 15, the boss structure cooperates with the recessed portion to provide a more stable contact surface for the clamping jaw 29 and the connector 15, ensuring that the clamping jaw 29 can smoothly plug and unplug the connector 15, avoiding insufficient plugging and unplugging force resulting in incomplete plugging or plugging errors, resulting in detection errors or damage to the interface, thereby improving detection efficiency.

[0043] In detail, the detection platform 2 is also provided with a positioning column 16 for positioning the connector 15, and the bottom of the connector 15 is provided with a positioning hole 38 matching the positioning column 16. When placing the connector 15, the positioning column 16 is extended into the positioning hole 38 to firmly place the connector 15 on the detection platform 2 to prevent the connector 15 from falling or shifting in position, thereby ensuring that the connection detection is carried out normally.

[0044] It can be understood that in the present application, according to the testing requirements of different laptop computers, a clamping assembly 8, a sensing assembly 7 and a connector 15 are provided on both sides of the detection station. The interface position of the laptop computer to be tested is obtained through the lens 28 and the connector 15 corresponding to the interface is identified, and the obtained information is transmitted to the controller 6. The controller 6 drives the clamping assembly 8 to move according to the signal. The interface of the laptop computer may include a Type C socket, an audio socket, an HDMI socket, a USB socket, etc. The connector 36 may include a Type C plug, an audio plug, an HDMI plug, a USB plug, etc. Due to the different models of the laptop computers to be tested, the interface types to be tested are different. The interface position and type of the laptop computer to be tested are detected through the lens 28, and the controller 6 controls the clamping assembly 8 to grab the connector 15 with the corresponding connector 36 for plug detection. Specifically, the connector 15 and the controller 6 are electrically connected. When the connector 36 of the connector 15 is inserted into the interface of the laptop computer to be tested, the connector 15 transmits a detection signal to the controller 6, and the controller 6 receives the detection signal to make a qualified judgment on the interface. This is not limited here.

[0045] In this embodiment, a lifting plate 21 is provided between the first conveyor belts 11, and a first cylinder 20 is provided at the bottom of the lifting plate 21. When the laptop computer to be tested enters the detection station, the first cylinder 20 drives the lifting plate 21 to lift the laptop computer to be tested. When the first conveyor belt 11 conveys the laptop computer to be tested into position, the laptop computer to be tested is lifted by the lifting plate 21 to expose the interface, so that the lens 28 can identify the interface.

[0046] In some embodiments, a limit plate 19 is further provided at the end of the first conveyor belt 11 for positioning the laptop computer to be tested in the conveying direction of the first conveyor belt 11. The first conveyor belt 11 delivers the laptop computer to be tested into the inspection station, stops after being blocked by the limit plate 19, and positions the laptop computer to be tested in the conveying direction of the first conveyor belt 11 by the limit plate 19.

[0047] In some embodiments, the detection platform 2 is also provided with a limit component for positioning the laptop computer to be tested in the vertical direction. The limit component includes a first limit member 12 and a first driving member 13 arranged relatively to each other. The first limit member 12 is rotatably set on the first driving member 13. When the lifting plate 21 lifts the laptop computer to be tested, the first driving member 13 drives the first limit member 12 to rotate to a position parallel to the keyboard surface of the laptop computer to be tested. The lifting plate 21 continues to lift the laptop computer to be tested. The first limit member 12 is in contact with the surface of the laptop computer to be tested to position the laptop computer to be tested in the vertical direction. The laptop computer to be tested is positioned in the vertical direction by the first limit member 12. Specifically, the first driving member 13 can be an element such as a motor that can drive the first limit member 12 to rotate, and is not limited here.

[0048] In this embodiment, a limit block 14 for limiting the rotational travel of the first limit member 12 is also provided on the detection platform 2. When the first limit member 12 rotates, the first limit member 12 stops rotating after being at least partially blocked by the limit block 14, so as to keep the first limit member 12 in a position parallel to the keyboard surface of the laptop computer to be tested. Specifically, when the first limit member 12 is rotated into place, one end of the first limit member 12 is connected to the first driving member 13, and the other end extends and hangs above the laptop computer to be tested, and is parallel to the keyboard surface of the laptop computer to be tested. The first limit member 12 has an extension toward the first limit block 14, and the extension contacts the limit block 14 and is blocked by the limit block 14. The first limit member 12 stops rotating, and the rotational travel of the first limit member 12 is limited by the limit block 14 to avoid damage to the laptop computer to be tested caused by excessive rotation of the first limit member 12.

[0049] In some embodiments, two first conveyor belts 11 are provided, and the two first conveyor belts 11 can be moved closer to or farther away from each other to adjust the size of the inspection station, and can be adapted for inspection of different types of laptop computers. A second limiting member 17 for positioning the laptop computer to be tested in the horizontal direction is provided on the side of the first conveyor belt 11 that is away from each other. The second limiting member 17 can move following the first conveyor belt 11. After the first conveyor belt 11 sends the laptop computer to be tested into the inspection station, the first conveyor belts 11 approach each other and drive the second limiting member 17 to move toward each other to position the laptop computer to be tested in the horizontal direction, and the laptop computer to be tested is positioned in the horizontal direction by the second limiting member 17.

[0050] It is worth noting that when the laptop computer to be tested enters the inspection station, the laptop computer to be tested is positioned in the horizontal direction, the conveying direction of the first conveyor belt 11 and the vertical direction respectively by the second limit member 17, the limit plate 19 and the first limit member 12 to ensure that the laptop computer will not be offset during the inspection process, thereby avoiding inspection errors and improving inspection efficiency.

[0051] In this embodiment, the second limit member 17 has a guide portion 18 on the entrance side of the first conveyor belt 11 for guiding the laptop computer to be tested entering the first conveyor belt 11. The guide portion 18 forms an outwardly expanding opening structure on the entrance side of the first conveyor belt 11. Through the guidance of the opening portion, laptop computers of different models can be sent into the inspection station through the first conveyor belt 11, thereby improving applicability.

[0052] In some embodiments, the laptop computer plug-in detection device also includes a second frame 3, a feeding platform 4 and a discharging platform 5 are provided on the second frame 3, a second conveying assembly is provided on the feeding platform 4, the second conveying assembly includes a second conveyor belt 40 and a third conveyor belt 41, the second conveyor belt 40 is arranged between the third conveyor belt 41, the second conveyor belt 40 has the same transmission direction as the first conveyor belt 11, the transmission direction of the third conveyor belt 41 is perpendicular to the transmission direction of the first conveyor belt 11 and the second conveyor belt 40, and is connected to the previous production line through the third conveyor belt 41, and the laptop computer to be tested is transmitted to the second conveyor belt 40 through the third conveyor belt 41, and the transmission direction is changed by the second conveyor belt 40, and the laptop computer to be tested is sent to the detection station for detection in cooperation with the first conveyor belt 11, thereby improving the applicability of the present application in the actual production line, and can be flexibly combined with the production line according to needs to realize automated plug-in detection.

[0053] In the above embodiment, a third conveying assembly is provided on the discharging platform 5, and the third conveying assembly includes a fourth conveyor belt 42 and a fifth conveyor belt 43. The fourth conveyor belt 42 has the same transmission direction as the second conveyor belt 40, and the fifth conveyor belt 43 has the same transmission direction as the third conveyor belt 41. Specifically, a fourth slide rail 10 is also provided on the first frame 1, and a fourth mounting plate 9 is clamped on the fourth slide rail 10. The fourth mounting plate 9 can move on the fourth slide rail 10. The fourth mounting plate 9 is used to support the first conveyor belt 11, the inspection station, the lifting plate 21 and the first cylinder 20. After the plug-in inspection of the laptop computer to be tested is completed, the fourth mounting plate 9 is moved on the fourth slide rail 10 to move the laptop computer to the discharging platform 5. The first conveyor belt 11 sends the laptop computer out of the inspection station and cooperates with the fourth conveyor belt 42 to transport the laptop computer to the fifth conveyor belt 43. The fifth conveyor belt 43 changes the transmission direction and transports the laptop computer to the next station.

[0054] In summary, in the laptop computer plug-in detection device provided in the present application, the first conveying component first sends the laptop computer to be tested into the detection station for plug-in detection, identifies the interface position of the laptop computer to be tested through the sensing component 7, and then drives the clamping component 8 to grab the connector 15 and move it, and inserts the connector 15 into the interface of the laptop computer to be tested for detection. After the detection is completed, the clamping component 8 is driven to grab the connector 15 and unplug it from the interface of the laptop computer. The laptop computer interface can be automatically plugged in and detected, thereby improving production efficiency and effectively reducing the occurrence of missed detections and detection errors.

[0055] The above embodiments are merely illustrative of the principles and effects of this application and are not intended to limit this application. Anyone skilled in the art may modify or alter the above embodiments without departing from the spirit and scope of this application. Therefore, any equivalent modifications or alterations accomplished by a person of ordinary skill in the art without departing from the spirit and technical concepts disclosed in this application shall be covered by the claims of this application.

Claims

1. A laptop computer plug detection device, characterized in that: include: A first frame, wherein a testing platform is provided on the first frame, and the testing platform has a testing station for placing a laptop computer to be tested; a first conveying assembly, the first conveying assembly comprising first conveyor belts disposed on opposite sides of the inspection station, and conveying the laptop computer to be tested into the inspection station for insertion testing via the first conveyor belts; A connector, provided on one side of the testing station, for inserting into an interface of the laptop computer to be tested for testing; a clamping assembly, disposed on the first frame, for clamping the connector to insert into or remove from the interface of the laptop computer to be tested; The sensing component is arranged on the first frame and is used for identifying the interface position of the notebook computer to be tested and driving the clamping component to grab the connector and move it.

2. The laptop computer plug detection device according to claim 1, characterized in that: The sensing component includes a lens module and a moving module, the lens module includes a connecting plate and a lens, the moving module includes a first slide rail, a second driving member and a first mounting plate, the first slide rail is arranged on the first frame in a horizontal direction, the first mounting plate is vertically arranged on the first slide rail in a horizontal direction, the first mounting plate can move on the first slide rail, the first mounting plate is provided with a second slide rail, a third driving member and a second mounting plate, the connecting plate is provided on the second mounting plate, the second mounting plate is movably provided on the second slide rail, the lens module is driven to move on the first slide rail by the second driving member, and the lens module is driven to move on the second slide rail by the third driving member.

3. The laptop computer plug detection device according to claim 2, characterized in that: A third slide rail and a fourth driving member are provided on the connecting plate, and the clamping assembly includes a third mounting plate, a clamping jaw and a second cylinder. The third mounting plate is movably provided on the third slide rail, and the clamping assembly is driven to move on the third slide rail by the fourth driving member. A gripping portion is provided at the end of the clamping jaw, and the gripping portion is a boss structure. The second cylinder drives the clamping jaws to move closer to or away from each other to grip or release the connector.

4. The notebook computer plug detection device according to claim 3, characterized in that: There are multiple connectors, each of which is provided with a plug connector that matches the interface of the laptop computer to be tested. The top of the connector is provided with a recessed structure that matches the grabbing portion. The detection platform is also provided with a positioning column for positioning the connector, and the bottom of the connector is provided with a positioning hole that matches the positioning column.

5. The notebook computer plug detection device according to claim 1, characterized in that: A lifting plate is provided between the first conveyor belts, and a first cylinder is provided at the bottom of the lifting plate. When the laptop computer to be tested enters the testing station, the first cylinder drives the lifting plate to lift the laptop computer to be tested.

6. The notebook computer plug detection device according to claim 5, characterized in that: A limiting plate is further provided at the end of the first conveyor belt for positioning the laptop computer to be tested in the conveying direction of the first conveyor belt. The first conveyor belt conveys the laptop computer to be tested into the testing station and stops after being blocked by the limiting plate.

7. The notebook computer plug detection device according to claim 6, characterized in that: The detection platform is also provided with a limiting component for positioning the laptop computer under test in the vertical direction. The limiting component includes a first limiting member and a first driving member arranged relatively to each other. The first limiting member is rotatably set on the first driving member. When the lifting plate lifts the laptop computer under test, the first driving member drives the first limiting member to rotate to a position parallel to the keyboard surface of the laptop computer under test. The lifting plate continues to lift the laptop computer under test, and the first limiting member is in contact with the surface of the laptop computer under test to position the laptop computer under test in the vertical direction.

8. The notebook computer plug detection device according to claim 7, characterized in that: The detection platform is also provided with a limit block for limiting the rotational travel of the first limit member. When the first limit member rotates, the first limit member stops rotating after being at least partially blocked by the limit block, so that the first limit member stays in a position parallel to the keyboard surface of the laptop computer to be tested.

9. The notebook computer plug detection device according to claim 1, characterized in that: Two first conveyor belts are provided, and the two first conveyor belts can approach or move away from each other to adjust the size of the inspection station. A second limiting member is provided on the side of the first conveyor belt that is away from each other, for positioning the laptop computer to be tested in the horizontal direction. The second limiting member can move following the first conveyor belt. After the first conveyor belt sends the laptop computer to be tested into the inspection station, the first conveyor belts approach each other and drive the second limiting member to move toward each other to position the laptop computer to be tested in the horizontal direction.

10. The notebook computer plug detection device according to claim 9, characterized in that: The second limiting member has a guide portion on the entrance side of the first conveyor belt for guiding the laptop computer to be tested entering the first conveyor belt, and the guide portion forms an outwardly expanding opening structure on the entrance side of the first conveyor belt.