Plug-in device and test apparatus

CN224651850UActive Publication Date: 2026-08-18SHENZHEN LONGSYS ELECTRONICS CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202521945477.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-10
Publication Date
2026-08-18
Estimated Expiration
2035-09-10

AI Technical Summary

Technical Problem

[0003]本申请提供一种插拔装置和测试设备,旨在改善操作人员手动对硬盘进行插拔导致自动化程度低的问题

Benefits of technology

[0023]上述测试设备中,将插拔装置安装于背板,并通过插拔装置驱动硬盘移动使硬盘电连接插接口,使测试设备能够对硬盘进行测试,测试完成后通过插拔装置驱动硬盘与插接口断开连接,插拔装置能够完成硬盘的插拔,自动化程度高,能够降低操作人员的劳动强度。

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224651850U_ABST
    Figure CN224651850U_ABST
Patent Text Reader

Abstract

The application discloses a plugging device and a testing device. The plugging device is used for plugging a hard disk. The plugging device comprises a support, a mounting piece and a driving piece. The mounting piece is configured to be connected with the hard disk. The driving piece is arranged on the support and can move along a first direction relative to the support. The driving piece is configured to be connected with the mounting piece and drive the mounting piece to move along a second direction. The second direction intersects with the first direction. The plugging device can drive the hard disk to be plugged into or pulled out of a plug interface. The plugging device has high automation degree and can reduce the labor intensity of an operator.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This application belongs to the field of hard disk testing technology, and specifically relates to a plug-in / plug-out device and testing equipment. Background Technology

[0002] Before and after testing, hard drives are involved in being plugged in and out. In related technologies, operators manually plug and unplug the hard drives and must wait until the testing equipment has completed the test before they can leave the testing equipment. This results in high labor intensity for the operators and low automation. Utility Model Content

[0003] This application provides a plugging / unplugging device and a testing equipment, which aims to improve the problem of low automation caused by operators manually plugging and unplugging hard drives.

[0004] This application provides a plugging and unplugging device for plugging and unplugging a hard drive. The plugging and unplugging device includes a bracket, a mounting member, and a driving member. The mounting member is configured to connect to the hard drive. The driving member is disposed on the bracket and can move relative to the bracket in a first direction. The driving member is configured to connect to the mounting member and drive the mounting member to move in a second direction, which intersects with the first direction.

[0005] In the aforementioned insertion / removal device, the mounting component is located on the driving component. The driving component can move relative to the bracket in a first direction to adjust the position of the mounting component, aligning it with the interface of the test equipment. The driving component can also drive the mounting component to move in a second direction, allowing the hard drive mounted on the mounting component to be inserted into or removed from the interface, thus electrically connecting the test equipment to the hard drive. This insertion / removal device can drive the hard drive to be inserted into or removed from the interface, exhibiting a high degree of automation and reducing the workload of operators. By electrically connecting the adapter to the interface of the test equipment, the mounting component drives the hard drive to be inserted into or removed from the adapter, enabling the test equipment to test the hard drive. The adapter interface, in conjunction with the hard drive insertion / removal mechanism, prevents repeated insertion and removal of the hard drive from damaging the interface.

[0006] In some embodiments, the bracket is provided with a slide rail and a slider, the slider being slidably disposed on the slide rail, the slide rail being configured to guide the slider to move in a first direction, and the slider being configured to connect to an adapter.

[0007] The slider is guided by a slide rail to move the adapter along the first direction, which can adjust the position of the adapter in the first direction so that the adapter can be inserted into the interface and the interface can correspond to the mounting part, so that the hard drive and the adapter can be plugged in and mated.

[0008] In some embodiments, along a first direction, the side of the mounting member facing the adapter is configured to connect to a hard drive, and an adapter interface is located on the side of the adapter facing the mounting member, such that the adapter interface faces the hard drive.

[0009] Along the first direction, the hard drive and the adapter are located between the slider and the mounting piece, with the adapter facing the hard drive, so that the hard drive can be inserted into or removed from the adapter during the movement along the second direction.

[0010] In some embodiments, the mounting member has a receiving groove and a locking hole, the opening of the receiving groove facing the adapter, the locking hole communicating with the receiving groove, the receiving groove being configured to receive at least a portion of the hard drive; the mounting member is connected to a locking fastener, the locking fastener passing through the locking hole and connecting to the hard drive to secure the hard drive to the receiving groove.

[0011] The slot facing the adapter exposes the hard drive, allowing it to plug into the adapter. The mounting bracket positions the hard drive in the receiving slot and secures it within the receiving slot with fasteners, allowing the hard drive to move with the mounting bracket.

[0012] In some embodiments, the drive member includes a guide portion and a power portion. The guide portion is connected to the mounting member and configured to guide the mounting member to move in a second direction. The power portion is electrically connected to the guide portion and configured to drive the guide portion to move the mounting member in the second direction.

[0013] The power unit provides power to the guide unit, enabling the mounting component to move along the second direction under the guidance of the guide unit. The guide unit also guides the movement of the mounting component, preventing it from deviating from the second direction during movement.

[0014] In some embodiments, the support includes a base plate with a plurality of first adjustment holes spaced apart along a first direction; a drive member is disposed on a support plate, the support plate is stacked on the base plate and can move relative to the base plate along the first direction; the support plate is provided with a second adjustment hole, and the second adjustment hole is configured to correspond to the first adjustment hole; a positioning member is connected to the base plate, and the positioning member is configured to pass through the corresponding first adjustment hole and second adjustment hole to position the support plate to the base plate.

[0015] When the driving component moves relative to the bracket in the first direction, the bearing plate moves relative to the base plate in the first direction, so that the second adjustment hole corresponds to a different first adjustment hole. The positioning component passes through the corresponding first adjustment hole and second adjustment hole to position the bearing plate on the base plate, thereby fixing the bearing plate relative to the base plate.

[0016] In some embodiments, the second adjustment holes are located on opposite sides of the drive member in the first direction, and a positioning member is connected in each second adjustment hole.

[0017] When the positioning component positions the bearing plate on the base plate through the second adjustment hole, the positioning component is distributed around the opposite sides of the vibration source (driving component), which increases the connection strength between the bearing plate and the base plate and improves the connection stability between the bearing plate and the base plate.

[0018] In some embodiments, each first adjustment hole can be fixedly connected to a positioning member; the second adjustment hole extends along a first direction and is configured to correspond to at least two first adjustment holes; the second adjustment hole has two first inner walls and two second inner walls, the two first inner walls are arranged opposite each other along the first direction, and the two second inner walls are arranged opposite each other along the second direction; when the support plate moves relative to the bottom plate along the first direction, the positioning members in at least two first adjustment holes can pass through the second adjustment hole, in which each first inner wall is configured to abut against a positioning member, and both second inner walls are configured to abut against a positioning member.

[0019] When the support plate moves relative to the base plate in the first direction, the second adjustment hole can correspond to at least two first adjustment holes. A positioning member can be fixedly connected in each of the first adjustment holes corresponding to the second adjustment hole, so that at least two positioning members can pass through the second adjustment hole. In the second adjustment hole, the two second inner walls abut against the positioning members to restrict the movement of the support plate relative to the base plate in the second direction. Each first inner wall abuts against a positioning member to restrict the movement of the support plate relative to the base plate in the first direction, thereby fixing the support plate relative to the base plate.

[0020] In some embodiments, the bracket further includes a frame to which an extension plate is fixed, the extension plate being configured to connect to a test device.

[0021] By connecting the test equipment via the extension plate, the relative position of the bracket and the test equipment can be fixed. After the bracket position is fixed, the position of the drive component or adapter component can be adjusted so that the mounting component or adapter component corresponds to the plug interface, so that the hard drive can be inserted into the plug interface or the adapter component can be electrically plugged into the plug interface.

[0022] This application also provides a test device, including a backplane, a connector, and a plug-in / plug-out device as described in any of the above embodiments. The connector is disposed through the backplane, and the plug-in / plug-out device is detachably connected to the backplane and configured to drive a hard disk to move to electrically connect to the connector.

[0023] In the aforementioned testing equipment, the plug-in / plug-out device is installed on the back panel. The plug-in / plug-out device drives the hard drive to move and electrically connect the hard drive to the interface, enabling the testing equipment to test the hard drive. After the test is completed, the plug-in / plug-out device drives the hard drive to disconnect from the interface. The plug-in / plug-out device can complete the plugging and unplugging of the hard drive. It has a high degree of automation and can reduce the labor intensity of operators. Attached Figure Description

[0024] Figure 1 This is a schematic diagram of the testing equipment.

[0025] Figure 2 yes Figure 1 A schematic diagram of the plug-in / plug-out device.

[0026] Figure 3 yes Figure 2A schematic diagram of the structure when the plug-in device connects the adapter board and the hard drive.

[0027] Figure 4 yes Figure 3 A cross-sectional view of the plug-in device along IV-IV.

[0028] Figure 5 yes Figure 1 A diagram showing the intermediate converter board and hard drive not being connected.

[0029] Explanation of main component symbols 100. Insertion / removal device; 10. Bracket; 11. Frame; 111. Slide rail; 112. Slider; 12. Base plate; 121. First adjustment hole; 122. Positioning component; 13. Extension plate; 131. Connection hole; 20. Mounting component; 21. Receiving groove; 22. Locking hole; 23. Locking fastener; 30. Driving component; 31. Bearing plate; 311. Second adjustment hole; 3111. First inner wall; 3112. Second inner wall; 312. Mounting frame; 32. Guide part; 40. Adapter; 41. Adapter interface; 50. Intermediate component; 200. Hard disk; 2001. Insertion area; 300. Test equipment; 310. Back plate; 3001. Insertion interface; X, First direction; Y, Second direction.

[0030] The following detailed description, in conjunction with the accompanying drawings, will further illustrate this application. Detailed Implementation

[0031] The technical solutions of the embodiments of this application will be described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments.

[0032] In the description of the embodiments of this application, the technical terms "first", "second", etc. are used only to distinguish different objects and should not be construed as indicating or implying relative importance or implicitly indicating the number, specific order or primary and secondary relationship of the indicated technical features.

[0033] In the description of the embodiments in this application, the term "vertical" is used to describe the ideal state between two components. In actual production or use, two components may exist in a state that is approximately vertical.

[0034] In this document, the term "embodiment" means that a particular feature, structure, or characteristic described in connection with an embodiment may be included in at least one embodiment of this application. The appearance of this phrase in various places in the specification does not necessarily refer to the same embodiment, nor is it a separate or alternative embodiment that is mutually exclusive with other embodiments.

[0035] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs. The terminology used herein in the specification of this application is for the purpose of describing particular embodiments only and is not intended to be limiting of this application.

[0036] Before and after testing, hard drives are involved in being plugged in and out. In related technologies, operators manually plug and unplug the hard drives and must wait until the testing equipment has completed the test before they can leave the testing equipment. This results in high labor intensity for the operators and low automation.

[0037] This application provides a plugging and unplugging device for plugging and unplugging a hard drive. The plugging and unplugging device includes a bracket, a mounting member, and a driving member. The mounting member is configured to connect to the hard drive. The driving member is disposed on the bracket and can move relative to the bracket in a first direction. The driving member is configured to connect to the mounting member and drive the mounting member to move in a second direction, which intersects with the first direction.

[0038] In the aforementioned insertion / removal device, the mounting component is located on the driving component. The driving component can move relative to the bracket in a first direction to adjust the position of the mounting component so that it aligns with the insertion interface of the test equipment. The driving component can also drive the mounting component to move in a second direction, allowing the hard drive mounted on the mounting component to be inserted into or removed from the insertion interface, thus electrically connecting the test equipment to the hard drive. This insertion / removal device can drive the hard drive to be inserted into or removed from the insertion interface, exhibiting a high degree of automation and reducing the workload of operators.

[0039] The embodiments of this application will be further described below with reference to the accompanying drawings. Unless otherwise specified, the various embodiments in this application can be combined with each other.

[0040] Please combine Figure 1 This application provides a testing device 300, including a backplane 310, a connector 3001, and a plug-in / plug-out device 100. The connector 3001 is exposed to the plug-in / plug-out device 100, facilitating electrical connection between the hard disk 200 and the connector 3001. The plug-in / plug-out device 100 is detachably connected to the backplane 310 to facilitate installation and removal of the device, and the removed device 100 can be stored and carried separately. The plug-in / plug-out device 100 is used to connect the hard disk 200 and drive the hard disk 200 to move, enabling the hard disk 200 to electrically connect to or disconnect from the connector 3001.

[0041] When the insertion / removal device 100 moves the hard disk 200 toward the interface 3001, the hard disk 200 is electrically connected to the interface 3001. At this time, the testing device 300 is electrically connected to the hard disk 200 and can test the functions of the hard disk 200, such as its read / write speed and compatibility. When the insertion / removal device 100 moves the hard disk 200 away from the interface 3001, the hard disk 200 is disconnected from the interface 3001, and the testing device 300 is also disconnected from the hard disk 200.

[0042] Please see Figure 2 In some embodiments, the insertion / removal device 100 includes a bracket 10, a drive member 30, and a mounting member 20. The bracket 10 is detachably connected to a backplate 310, the drive member 30 is disposed on the bracket 10, and the mounting member 20 is connected to the drive member 30. The drive member 30 can move relative to the bracket 10 along a first direction X to adjust the position of the drive member 30 so that the mounting member 20 corresponds to the insertion interface 3001. The mounting member 20 is used to connect a hard disk 200, so that the hard disk 200 can move along a second direction Y under the drive of the drive member 30.

[0043] When the mounting component 20 corresponds to the interface 3001, the driving component 30 drives the mounting component 20 to move along the second direction Y. The mounting component 20 can drive the hard disk 200 to be inserted into or removed from the interface 3001, so that the test device 300 is electrically connected to the hard disk 200. At this time, the test device 300 can test the function of the hard disk 200.

[0044] In some embodiments, the first direction X intersects the second direction Y. For example, the first direction X and the second direction Y are two perpendicular horizontal directions.

[0045] Please see Figure 3 In some embodiments, the insertion / removal device 100 further includes an adapter 40, which has an adapter interface 41. The adapter 40 is disposed on the bracket 10 and can move relative to the bracket 10 in a first direction X to adjust the position of the adapter 40 so that the adapter 40 can be electrically inserted into the insertion interface 3001, and the adapter interface 41 can correspond to the mounting member 20 so that the hard disk 200 can be inserted and mated with the adapter interface 41.

[0046] When the adapter 40 is electrically plugged into the interface 3001, the drive 30 drives the mounting component 20 to insert or remove the hard disk 200 into the adapter 41, so that the test device 300 is electrically connected to the hard disk 200 through the adapter 40. At this time, the test device 300 tests the function of the hard disk 200.

[0047] During the testing of hard drive 200, it can be repeatedly plugged in and out to test its reliability, such as whether it can be properly recognized after being reinserted and whether the connection remains stable after repeated plugging and unplugging. The adapter interface 41 of the adapter 40, in conjunction with the hard drive 200, prevents wear or damage to the interface 3001 of the testing device 300 caused by repeated plugging and unplugging of the hard drive 200, thereby increasing the lifespan of the interface 3001.

[0048] Therefore, by driving the hard disk 200 to insert or remove it from the interface 3001 through the plug-in / plug-out device 100, or by driving the hard disk 200 to insert or remove it from the adapter 41, the test equipment 300 is electrically connected or disconnected from the hard disk 200, thereby enabling the test equipment 300 to measure the function and reliability of the hard disk 200. This method has a high degree of automation and can reduce the labor intensity of operators.

[0049] Please combine Figure 2 and Figure 3 In some embodiments, the support 10 includes a frame 11 and a base plate 12, with the base plate 12 fixedly connected to the frame 11. An extension plate 13 is fixed to the frame 11, and the extension plate 13 is used for detachable connection to the back plate 310 of the test equipment 300.

[0050] The extension plate 13 connects to the test equipment 300, which can fix the relative position of the bracket 10 and the test equipment 300. After the relative position of the bracket 10 and the test equipment 300 is fixed, the position of the drive component 30 or the adapter component 40 can be adjusted so that the mounting component 20 or the adapter component 40 corresponds to the plug interface 3001, so that the hard disk 200 can be inserted into the plug interface 3001, or so that the adapter component 40 can be electrically plugged into the plug interface 3001.

[0051] In some embodiments, along the first direction X, the frame 11 is provided with two extension plates 13 spaced apart, and the bottom plate 12 is located between the two extension plates 13. Each of the two extension plates 13 is provided with a connecting hole 131, and the extension plates 13 are detachably connected to the back plate 310 through the connecting hole 131.

[0052] In some embodiments, a protrusion (not shown) is provided on the back plate 310, and the connection hole 131 is engaged with the protrusion so that the bracket 10 is connected to the back plate 310.

[0053] In some embodiments, the back plate 310 is provided with mating holes (not shown) corresponding to the connecting holes 131. By inserting a locking member through the corresponding connecting holes 131 and mating holes, the bracket 10 can be positioned on the back plate 310. The locking member includes bolts, screws, or bolts, and this application does not limit the choice of which. Those skilled in the art can choose according to the actual situation.

[0054] In some embodiments, the base plate 12 is configured to mount the drive member 30. The drive member 30 is fixedly disposed on a support plate 31, which is stacked on the base plate 12.

[0055] Please see Figure 4 In some embodiments, along a first direction X, the base plate 12 is provided with a plurality of first adjustment holes 121 spaced apart. The support plate 31 is provided with second adjustment holes 311, which are configured to correspond to the first adjustment holes 121. The base plate 12 is connected to a positioning member 122, which is configured to pass through the corresponding first adjustment holes 121 and second adjustment holes 311 to position the support plate 31 on the base plate 12.

[0056] Please combine Figure 3 and Figure 4 When the driving member 30 is driven to move relative to the bracket 10 along the first direction X, the bearing plate 31 is driven to move relative to the bottom plate 12 along the first direction X, so that the second adjustment hole 311 corresponds to different first adjustment holes 121. The positioning member 122 passes through the corresponding first adjustment hole 121 and second adjustment hole 311 to position the bearing plate 31 on the bottom plate 12, thereby fixing the bearing plate 31 relative to the bottom plate 12.

[0057] In some embodiments, the positioning element 122 includes a bolt, threaded rod, screw, pin, or latch; this application does not limit the choice, and those skilled in the art can select according to the actual situation. The first adjusting hole 121 and the second adjusting hole 311 are of the same size, so as to be fixed to each other by the same positioning element 122.

[0058] In some embodiments, the dimensions of the first adjusting hole 121 and the second adjusting hole 311 may be different. Each first adjusting hole 121 can be fixedly connected to a positioning member 122. The second adjusting hole 311 extends along a first direction X and is configured to correspond to at least two first adjusting holes 121. The second adjusting hole 311 has two first inner walls 3111 and two second inner walls 3112, the two first inner walls 3111 being disposed opposite each other along the first direction X, and the two second inner walls 3112 being disposed opposite each other along the second direction Y. When the support plate 31 moves relative to the bottom plate 12 along the first direction X, the positioning members 122 in at least two of the first adjusting holes 121 can pass through the second adjusting hole 311. In the second adjusting hole 311, each first inner wall 3111 is configured to abut against a positioning member 122, and both second inner walls 3112 are configured to abut against the positioning member 122.

[0059] When the support plate 31 is driven to move relative to the bottom plate 12 in the first direction X, the second adjustment hole 311 can correspond to at least two first adjustment holes 121. A positioning member 122 can be fixedly connected in each of the first adjustment holes 121 corresponding to the second adjustment hole 311, so that at least two positioning members 122 can pass through the second adjustment hole 311. In the second adjustment hole 311, the two second inner walls 3112 abut against the positioning members 122 to restrict the support plate 31 from moving relative to the bottom plate 12 in the second direction Y. Each first inner wall 3111 abuts against a positioning member 122 to restrict the support plate 31 from moving relative to the bottom plate 12 in the first direction X, thereby fixing the support plate 31 relative to the bottom plate 12.

[0060] In some embodiments, the first adjustment hole 121 is a round hole and the second adjustment hole 311 is a square hole. Each second adjustment hole 311 corresponds to three first adjustment holes 121, that is, three positioning members 122 can pass through the first adjustment hole 121 into the second adjustment hole 311.

[0061] In some embodiments, there are multiple sets of corresponding second adjustment holes 311 and first adjustment holes 121, so that the support plate 31 can be stably fixed to the base plate 12.

[0062] In some embodiments, the second adjustment holes 311 are located on opposite sides of the drive member 30 in the first direction X, and each second adjustment hole 311 is connected to a positioning member 122. When the positioning member 122 positions the support plate 31 on the base plate 12 through the second adjustment holes 311, the positioning member 122 is distributed around the opposite sides of the vibration source (drive member 30), which can increase the connection strength between the support plate 31 and the base plate 12 and improve the connection stability between the support plate 31 and the base plate 12.

[0063] The drive unit 30 has a row of second adjustment holes 311 on each of the opposite sides in the first direction X. Each row of second adjustment holes 311 includes a plurality of second adjustment holes 311 arranged at intervals along the second direction Y, so as to make the connection between the support plate 31 and the base plate 12 stable and firm.

[0064] Please see Figure 2 and Figure 3 In some embodiments, the bracket 10 is provided with a slide rail 111, on which a slider 112 is slidably connected. The slider 112 is used to connect the adapter 40. The slide rail 111 extends along a first direction X and is used to guide the slider 112 to move along the first direction X, so that the adapter 40 can move relative to the bracket 10 along the first direction X, thereby adjusting the position of the adapter 40 in the first direction X.

[0065] In some embodiments, the slide rail 111 can be an electric guide rail, controlling the movement of the slider 112 via a drive structure (such as a motor), resulting in a high degree of automation. Alternatively, the slide rail 111 can be a manually adjustable guide rail, which requires direct human intervention from an operator to move the slider 112, thus reducing costs.

[0066] In some embodiments, the slider 112 can be detached from the slide rail 111. The slider 112 is bolted to the adapter 40.

[0067] Please combine Figure 2 and Figure 5 In some embodiments, along the first direction X, the side of the mounting member 20 facing the adapter 40 is configured to connect to the hard disk 200, and the adapter interface 41 is provided on the side of the adapter 40 facing the mounting member 20, such that the adapter interface 41 faces the hard disk 200.

[0068] Along the first direction X, the hard disk 200 and the adapter 40 are located between the slider 112 and the mounting piece 20, and the adapter interface 41 is set facing the hard disk 200, so that the hard disk 200 can be inserted into or removed from the adapter interface 41 during the movement along the second direction Y.

[0069] In some embodiments, the mounting member 20 has a receiving groove 21 and a locking hole 22, the opening of the receiving groove 21 facing the adapter 40. The locking hole 22 communicates with the receiving groove 21, which is configured to receive at least a portion of the hard disk 200. The mounting member 20 is connected to a locking fastener 23, which passes through the locking hole 22 and connects to the hard disk 200 to secure the hard disk 200 to the receiving groove 21.

[0070] The slot facing the adapter 40 exposes the hard drive 200, allowing the hard drive 200 to be plugged into the adapter 41. The mounting part 20 positions the hard drive 200 in the receiving slot 21 and secures the hard drive 200 in the receiving slot 21 with the locking fastener 23, allowing the hard drive 200 to move together with the mounting part 20.

[0071] In some embodiments, the locking device 23 includes a screw or threaded rod, and the locking hole 22 is a threaded hole. The outer surface of the hard disk 200 is provided with a threaded hole to engage with the locking device 23, so that the locking device 23 can fix the hard disk 200 in the mounting slot.

[0072] In some embodiments, different hard drives 200 can be installed into the mounting slot using different installation methods. When the insertion area 2001 of the hard drive 200 is located at the end of the hard drive 200, along the second direction Y, the hard drive 200 is partially exposed from the mounting member 20 and partially located within the receiving slot 21. The adapter interface 41 of the adapter 40 protrudes towards the mounting member 20, allowing the hard drive 200 to be inserted into the adapter interface 41 as the mounting member 20 moves along the second direction Y. It is understood that when the hard drive 200 is configured to directly connect to the insertion interface 3001, along the second direction Y, the hard drive 200 is configured to be partially exposed from the mounting member 20. When the insertion area 2001 of the hard drive 200 is located on the side of the hard drive 200 facing the adapter 40, the hard drive 200 can be partially located within the receiving slot 21, or the hard drive 200 can be completely located within the receiving slot 21.

[0073] Please see Figures 2 to 4 In some embodiments, the drive member 30 includes a guide portion and a power portion (not shown). The guide portion is connected to the mounting member 20 and configured to guide the mounting member 20 to move along a second direction Y. The power portion is electrically connected to the guide portion and configured to drive the guide portion to move the mounting member 20 along the second direction Y. Both the guide portion and the power portion are mounted on the upper surface of the support plate 31. The support plate 31 is provided with a mounting frame 312, which is configured to mount the power portion to position the power portion on the support plate 31.

[0074] The power unit provides power to the guide unit, enabling the mounting component 20 to move along the second direction Y under the guidance of the guide unit. The guide unit guides the movement of the mounting component 20, preventing the mounting component 20 from deviating relative to the second direction Y during the movement.

[0075] In some embodiments, the power unit is a motor. The guide unit is a slide module. The motor is electrically connected to the slide module to provide power to the slide module, causing the slide module to drive the mounting member 20 to move along the second direction Y. Exemplarily, the slide module is a lead screw assembly.

[0076] In some embodiments, an intermediate member 50 is connected between the guide portion and the mounting member 20. The intermediate member 50 extends along the second direction Y to increase the length of the mounting member 20 along the second direction Y and prevent the hard disk 200 from interfering with the guide portion.

[0077] In use, the bracket 10 is installed on the back plate 310 of the test equipment 300; the slider 112 is driven to move along the slide rail 111 so that the slider 112 corresponds to the interface 3001, the adapter 40 is electrically plugged into the interface 3001 and the adapter 40 is fixed to the slider 112; the drive member 30 is driven to move along the first direction X so that the mounting member 20 corresponds to the adapter 41; the drive member 30 drives the mounting member 20 to move the hard disk 200 along the second direction Y so that the hard disk 200 is inserted into the adapter 41, and the test equipment 300 is electrically connected to the hard disk 200 through the adapter 40 to test the function of the hard disk 200; the drive member 30 drives the mounting member 20 to move the hard disk 200 back and forth along the second direction Y to repeat the insertion and removal action of the hard disk 200 so that the test equipment 300 can test the stability of the hard disk 200; after the hard disk 200 is tested, the adapter 40 that is electrically plugged into the interface 3001 is unplugged.

[0078] Furthermore, those skilled in the art should recognize that the above embodiments are merely illustrative of this application and are not intended to limit this application. Any appropriate changes and variations made to the above embodiments within the essential spirit and scope of this application fall within the scope of this application's disclosure.

Claims

1. A plugging device for plugging a hard disk, characterized by: include: support; The mounting component is configured to connect to the hard drive; A driving member is disposed on the bracket and movable relative to the bracket in a first direction. The driving member is configured to connect to the mounting member and drive the mounting member to move in a second direction, which intersects the first direction. An adapter is configured as an interface for electrically connecting and testing equipment. The adapter has an interface configured to engage with the hard drive for plugging and unplugging.

2. The plug-in device according to claim 1, wherein: The bracket is provided with a slide rail and a slider, the slider is slidably disposed on the slide rail, the slide rail is configured to guide the slider to move along the first direction, and the slider is configured to connect to the adapter.

3. The plug-in device according to claim 2, wherein: Along the first direction, the side of the mounting member facing the adapter is configured to connect to the hard drive, and the adapter interface is located on the side of the adapter facing the mounting member, such that the adapter interface faces the hard drive.

4. The plug-in device according to claim 3, wherein: The mounting component has a receiving groove and a locking hole, the opening of the receiving groove faces the adapter, the locking hole communicates with the receiving groove, and the receiving groove is configured to accommodate at least a portion of the hard drive; The mounting component is connected to a locking fastener, which passes through the locking hole and connects to the hard drive to fix the hard drive in the receiving slot.

5. The plug-in device of claim 1, wherein: The drive unit includes a guide portion and a power portion. The guide portion is connected to the mounting member and configured to guide the mounting member to move in the second direction. The power portion is electrically connected to the guide portion and configured to drive the guide portion to move the mounting member in the second direction.

6. The plug-in device of claim 1, wherein: The support includes a base plate, and along the first direction, the base plate is provided with a plurality of first adjustment holes at intervals; The driving component is mounted on a support plate, which is stacked on the base plate and can move relative to the base plate along the first direction; the support plate is provided with a second adjustment hole, which is configured to correspond to the first adjustment hole; The base plate is connected to a positioning member, which is configured to pass through the corresponding first adjustment hole and second adjustment hole to position the support plate on the base plate.

7. The plug-in device according to claim 6, wherein: The second adjustment holes are located on opposite sides of the drive member in the first direction, and the positioning member is connected to each of the second adjustment holes.

8. The plug-in device of claim 6, wherein: Each of the first adjustment holes can be fixedly connected to one of the positioning elements; The second adjustment hole extends along the first direction and is configured to correspond to at least two of the first adjustment holes; the second adjustment hole has two first inner walls and two second inner walls, the two first inner walls are disposed opposite to each other along the first direction, and the two second inner walls are disposed opposite to each other along the second direction; When the support plate moves relative to the base plate in the first direction, the positioning members in at least two of the first adjustment holes can pass through the second adjustment hole. In the second adjustment hole, each of the first inner walls is configured to abut against one of the positioning members, and both of the second inner walls are configured to abut against the positioning members.

9. The plug-in device of claim 1, wherein: The bracket also includes a frame to which an extension plate is fixed, the extension plate being configured to detachably connect to the test equipment.

10. A test apparatus characterized by: The device includes a backplate, a connector, and a plug-in device as described in any one of claims 1 to 9, wherein the connector passes through the backplate, the plug-in device is detachably connected to the backplate, and is configured to drive the hard drive to move to electrically connect to the connector.