Solid state disk test frame

By designing adjustable placement components in the solid-state drive test rack, the problem of inconvenient adjustment of fixed disk slots in the prior art is solved, and stable clamping and positioning of solid-state drives of different sizes is achieved, and the practicality and working efficiency of the test rack are improved.

CN222952835UActive Publication Date: 2025-06-06鸿盈科技实业(深圳)有限公司
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Patent Information

Application Number
CN202421536538.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-02
Publication Date
2025-06-06
Estimated Expiration
2034-07-02

AI Technical Summary

Technical Problem

When testing solid-state drives of different sizes, the fixed disk slots are inconvenient to adjust, resulting in the need to change the test rack, which is inconvenient to operate, which reduces the practicality and working efficiency of the test rack.

Method used

A solid-state drive test rack is designed, adopting adjustable placement components, including support rods, bottom plates, side plates and telescopic plates. The clamping and positioning of different sizes of solid-state drives are realized through the electric push rod.

Benefits of technology

Through adjustable placement components, it can effectively clamp and position SSDs of different sizes, which improves the operation convenience and practicality of the test rack and enhances the working efficiency of SSD testing.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of hard disk testing, in particular to a solid state disk testing frame which comprises a base. The placing assembly is located on the base and used for clamping the solid state disk through an adjusting part; the positioning assembly is located on the base, is used for assisting the adjusting piece through a positioning rod and is used for adjusting the position through the guiding piece; and the test assembly is positioned on the base and is used for testing the solid state disk. The adjusting plate is arranged on the bottom plate, translates through the electric push rod instrument and is connected with the telescopic plate, and the telescopic plate adopts a telescopic mechanism, so that the adjusting plate is convenient to move, telescope and adjust, the telescopic plate is adjusted according to the size of the solid state disk, the solid state disk is clamped, the operation is convenient, and the practicability of the testing frame is improved; meanwhile, through holes are formed in the telescopic plates, heat generated in the testing process can be conveniently dissipated and used through the through holes, the using effect of the testing frame is further improved, the solid state disk testing work efficiency is improved, and using of the solid state disk testing frame is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of hard disk testing, in particular to a solid state hard disk testing frame. Background Art

[0002] The hard disk is one of the main storage media of the computer. It is composed of one or more aluminum or glass disks, and the disks are covered with ferromagnetic materials. There are solid-state hard disks, mechanical hard disks, and hybrid hard disks. SSDs use flash memory particles for storage, and mechanical hard disks use magnetic disks for storage. Hybrid hard disks are a kind of hard disk that integrates magnetic hard disks and flash memory. After the production of solid-state hard disks is completed, the finished solid-state hard disks need to be tested for performance to detect their read and write capabilities and storage capabilities, so as to determine whether the produced solid-state hard disks meet the standards.

[0003] According to the patent document entitled "A solid state hard disk test stand" with the authorization announcement number CN212944166U, the new type includes a test bench, a bracket and a controller are provided on the test bench, a fixed disk is provided on the bracket, and a test mechanism is symmetrically provided on both sides of the bracket. A suction cup mechanism is also provided on the test bench, and a recycling box is provided on one side of the suction cup mechanism; the fixed disk includes a bottom plate, a plurality of card slots are symmetrically provided on the bottom plate, and a positioning guard plate is also provided on the bottom plate. The test mechanism includes a mounting plate, a plurality of test sockets are fixedly installed on the mounting plate, and a push electric cylinder is also provided on the mounting plate, and the test socket is connected to a tester through a wire. When working, the solid state hard disk is installed in the card slot on the fixed disk, and the test socket is controlled to perform plug-in detection. The suction cup mechanism is used to screen out unqualified products, and the qualified products are removed after the test is completed. The utility model can realize automatic detection, has high detection efficiency, and can automatically screen out unqualified products.

[0004] The existing SSD test stand installs the SSD into a fixed disk slot, but the fixed disk slot is not easy to adjust. When SSDs of different sizes need to be tested, the test stand needs to be replaced, which causes inconvenience in operation, reduces the practicality of the test stand, and affects the efficiency of SSD testing. Utility Model Content

[0005] In view of the problems existing in the background technology, a solid state drive test stand is proposed.

[0006] The utility model provides a solid state hard disk test stand, comprising:

[0007] Pedestal;

[0008] A placement component is located on the base and is used to clamp the solid state hard disk through an adjustment piece;

[0009] A positioning assembly is located on the base and is used to assist the adjusting member through the positioning rod and to adjust the position through the guide member;

[0010] and a test assembly, located on the base, for testing the solid state drive.

[0011] Preferably, the placement assembly comprises a support rod located on a base, the support rod is provided with a bottom plate, the bottom plate is provided with a side plate, and the side plate is provided with a test hole;

[0012] The test hole is opposite to the test component and is used to test the solid state drive.

[0013] Preferably, the adjusting member comprises a telescopic plate located on the bottom plate, the telescopic plate is provided with a through hole, an adjusting plate is provided at the telescopic end of the telescopic plate, and the adjusting plate is provided with an electric push rod 1;

[0014] The adjusting plate is translated by the electric push rod, and the adjusting plate moves, so that the telescopic plate is telescopically adjusted, and finally cooperates with the side plate to clamp the solid state hard disk.

[0015] Preferably, the electric push rod 1 is provided with a mounting frame, which is connected to the base plate via bolts and is used to support the electric push rod 1.

[0016] Preferably, the positioning assembly comprises an electric push rod 2 located on the base, the electric push rod 2 is provided with a rotating platform, the rotating platform is provided with a bracket, and the bracket is provided with a positioning rod;

[0017] The bracket adjusts the height through the electric push rod 2, and adjusts the angle through the rotating platform, so that the positioning rod is adjusted synchronously for positioning the solid state hard disk.

[0018] Preferably, the guide member comprises a guide rod located on the bracket, the guide rod is provided with a universal wheel, the universal wheel is provided with a guide path, and the guide path is provided on the base;

[0019] The guide rod moves through the movement of the bracket, and finally the universal wheel moves on the guide path.

[0020] Preferably, the test assembly comprises a support frame located on the base, the support frame is provided with a driving electric cylinder, the driving electric cylinder is provided with a tester, and the tester is provided with a test socket;

[0021] The test socket is moved by pushing the electric cylinder to be connected to the through test hole and the solid state drive test interface for solid state drive testing.

[0022] Compared with the prior art, the utility model has the following beneficial technical effects:

[0023] The utility model sets an adjustment plate on a bottom plate, the adjustment plate is translated by an electric push rod, the adjustment plate is connected to a telescopic plate, the telescopic plate adopts a telescopic mechanism, and is convenient for telescopic adjustment by moving the adjustment plate. The telescopic plate is adjusted according to the size of the solid-state hard disk, and the solid-state hard disk is clamped to avoid position deviation of the solid-state hard disk, which is convenient for operation, improves the stability of the connection between the solid-state hard disk and the test socket, and improves the practicality of the test stand. At the same time, a through hole is set on the telescopic plate, and the through hole is convenient for dissipating the heat generated in the test, thereby further improving the use effect of the test stand and improving the efficiency of solid-state hard disk testing.

[0024] The utility model is provided with a positioning component, which is connected to the top of the solid-state hard disk through a positioning rod, so as to facilitate the positioning and use of the solid-state hard disk, facilitate the use of auxiliary placement components, further improve the connection stability between the test socket and the solid-state hard disk, and improve the use effect of the solid-state hard disk test stand. BRIEF DESCRIPTION OF THE DRAWINGS

[0025] Figure 1 It is a schematic diagram of the overall structure of the utility model;

[0026] Figure 2 This is a schematic diagram of the structure of the components placed in the utility model;

[0027] Figure 3 This is a schematic diagram of the structure of the adjusting member in the utility model;

[0028] Figure 4 It is a schematic diagram of the structure of the positioning component in the utility model.

[0029] Figure numerals: 1. base; 2. placement component; 201. support rod; 202. bottom plate; 203. side plate; 204. test hole; 205. telescopic plate; 206. through hole; 207. adjustment plate; 208. electric push rod one; 3. mounting frame; 4. positioning component; 401. electric push rod two; 402. rotating platform; 403. bracket; 404. positioning rod; 405. guide rod; 406. universal wheel; 407. guide way; 5. test component; 501. support frame; 502. pushing electric cylinder; 503. tester; 504. test socket. DETAILED DESCRIPTION

[0030] The specific implementation of the present disclosure is described in detail below in conjunction with the accompanying drawings. It should be understood that the specific implementation described herein is only used to illustrate and explain the present disclosure, and is not used to limit the present disclosure.

[0031] Embodiment 1

[0032] like Figure 1 - Figure 3As shown, a solid-state hard disk test stand proposed by the utility model includes: a base 1; a placement component 2, located on the base 1, and used to clamp the solid-state hard disk through an adjustment member; a positioning component 4, located on the base 1, used to assist the adjustment member through a positioning rod 404, and used to adjust the position through a guide member; and a test component 5, located on the base 1, used to test the solid-state hard disk.

[0033] Further explanation, the placement component 2 includes a support rod 201 located on the base 1, the support rod 201 is provided with a bottom plate 202, the bottom plate 202 is provided with a side plate 203, and the side plate 203 is provided with a test hole 204; the test hole 204 is opposite to the test component 5 and is used to test the solid state drive. The support rod 201 is set on the base 1 so as to support the bottom plate 202, the bottom plate 202 is provided with two sets of side plates 203, and the side plates 203 are provided with a test hole 204. The solid state drive is placed on the bottom plate 202 so that the test end interface and the test hole 204 are opposite to each other, so as to test the solid state drive.

[0034] Further explanation, the adjustment member includes a telescopic plate 205 located on the bottom plate 202, the telescopic plate 205 is provided with a through hole 206, an adjustment plate 207 is provided at the telescopic end of the telescopic plate 205, and the adjustment plate 207 is provided with an electric push rod 208; the adjustment plate 207 is translated by the electric push rod 208, and the adjustment plate 207 moves, so that the telescopic plate 205 is telescopically adjusted, and finally cooperates with the side plate 203 to clamp the solid state hard disk. The telescopic plate 205 is set on the bottom plate 202, and cooperates with the side plate 203 to divide the upper part into two groups of test areas for use, so as to improve the efficiency of the solid state hard disk test. At the same time, the telescopic plate 205 adopts a telescopic mechanism, and the adjustment plate 207 is driven to move by opening the electric push rod 208, and the adjustment plate 207 moves, so that the telescopic plate 205 is telescopically adjusted, and can be used to clamp solid state hard disks of different sizes, thereby improving the stability of the solid state hard disk test connection.

[0035] Further explanation, the electric push rod 208 is provided with a mounting frame 3, which is connected to the bottom plate 202 by bolts and is used to support the electric push rod 208. The mounting frame 3 is set as a trapezoidal structure, and bolts are used to penetrate from the bottom to the bottom of the bottom plate 202, so that the mounting frame 3 is installed at both ends of the bottom plate 202, which is convenient for increasing the application range of the bottom plate 202, and is used for supporting the electric push rod 208, and will be used in conjunction with the placement component 2.

[0036] Embodiment 2

[0037] like Figure 1 - Figure 4 As shown, the utility model proposes a solid state hard disk test stand. Based on the above embodiment, this embodiment also records in detail the specific components and matching methods.

[0038] Further explanation, the positioning assembly 4 includes an electric push rod 2 401 located on the base 1, the electric push rod 2 401 is provided with a rotating platform 402, the rotating platform 402 is provided with a bracket 403, and the bracket 403 is provided with a positioning rod 404; the bracket 403 is adjusted in height by the electric push rod 2 401, and the angle is adjusted by the rotating platform 402 at the same time, so that the positioning rod 404 is adjusted synchronously, which is used to position the solid state hard disk. The electric push rod 2 401 is set on the base 1, and the electric push rod 2 401 opens the height adjustment, which will be convenient to carry the rotating platform 402, the rotating platform 402 is provided with a bracket 403, and the bracket 403 is provided with a plurality of positioning rods 404, and the positioning rods 404 are used to position the solid state hard disk, the electric push rod 2 401 is convenient for height adjustment, and the use of the rotating platform 402 is convenient for angle adjustment, which is simple to operate and easy to use.

[0039] Further explanation, the guide member includes a guide rod 405 located on the bracket 403, the guide rod 405 is provided with a universal wheel 406, the universal wheel 406 is provided with a guide path 407, and the guide path 407 is provided on the base 1; the guide rod 405 moves through the movement of the bracket 403, and finally the universal wheel 406 moves in the guide path 407. The guide rod 405 is provided on the base 1, and the guide rod 405 adopts a telescopic mechanism, which is convenient for cooperating with the height adjustment of the electric push rod 2 401. The upper end of the guide rod 405 is connected to the bracket 403, and the lower end is provided with a universal wheel 406, and the universal wheel 406 is arranged to move in the guide path 407. When the angle of the bracket 403 is adjusted, the guide rod 405 moves synchronously, so that the universal wheel 406 moves and is used in the guide path 407, which is convenient for increasing the practicality of the bracket 403 and the positioning rod 404, and is convenient for the coordinated use between the solid state drive test frame structures.

[0040] Further explanation, the test assembly 5 includes a support frame 501 located on the base 1, the support frame 501 is provided with a push electric cylinder 502, the push electric cylinder 502 is provided with a tester 503, and the tester 503 is provided with a test socket 504; the test socket 504 is moved by the push electric cylinder 502, moved to the point where it penetrates the test hole 204 and is connected to the solid-state hard disk test interface for solid-state hard disk testing. The support frame 501 is set on the base 1, the support frame 501 is provided with a push electric cylinder 502, and the push electric cylinder 502 is opened to drive the tester 503 to move, and the tester 503 carries the test socket 504, and the test socket 504 penetrates the test hole 204 to achieve connection with the solid-state hard disk test interface, so as to facilitate the use of solid-state hard disk testing.

[0041] The working principle of the utility model is as follows: first, the solid-state hard disk to be tested is placed on the base plate 202, and the solid-state hard disk test interface and the test hole 204 are opposite to each other. Then, according to the different sizes of solid-state hard disks, the electric push rod 208 is turned on to drive the adjustment plate 207 to move toward the side of the solid-state hard disk. The adjustment plate 207 moves, and the telescopic plate 205 is telescopically adjusted to clamp the solid-state hard disk. The test hole 204 and the test socket 504 are opposite to each other, and the test socket 504 is connected to the tester 503. The tester 503 moves the tester 503 and the test socket 504 to the test hole 204 by pushing the electric cylinder 502 to connect the solid-state hard disk test interface to clamp the solid-state hard disk for testing. By opening the second electric push rod 401, the height of the rotating platform 402 and the bracket 403 can be adjusted. The rotating platform 402 is opened to adjust the angle of the bracket 403. The bracket 403 is equipped with a positioning rod 404, and the positioning rod 404 is used to position the solid-state hard disk. When the solid-state hard disk is placed on the base plate 202, the bracket 403 is driven to adjust the angle with the positioning rod 404 by opening the rotating platform 402, which will not affect the placement of the solid-state hard disk on the base plate 202. After placement, the angle and height can be adjusted as needed so that the positioning rod 404 and the solid-state hard disk are relative to each other, so as to achieve the positioning of the solid-state hard disk.

[0042] The implementation modes of the present invention are described in detail above in conjunction with the accompanying drawings, but the present invention is not limited thereto, and various changes can be made within the knowledge scope of technicians in the relevant technical field without departing from the purpose of the present invention.

Claims

1. A solid state hard disk test stand, characterized in that: include: Base (1); A placement component (2) is located on the base (1) and is used to clamp the solid state hard disk through an adjustment member; A positioning assembly (4) is located on the base (1) and is used to assist the adjusting member through the positioning rod (404) and to adjust the position through the guide member; And a testing component (5), located on the base (1), is used for testing the solid state hard disk.

2. A solid state hard disk test stand according to claim 1, characterized in that: The placement assembly (2) comprises a support rod (201) located on the base (1), the support rod (201) is provided with a bottom plate (202), the bottom plate (202) is provided with a side plate (203), and the side plate (203) is provided with a test hole (204); The test hole (204) is opposite to the test component (5) and is used for testing the solid state hard disk.

3. A solid state hard disk test stand according to claim 2, characterized in that: The adjusting member comprises a telescopic plate (205) located on the bottom plate (202), the telescopic plate (205) is provided with a through hole (206), an adjusting plate (207) is provided at the telescopic end of the telescopic plate (205), and the adjusting plate (207) is provided with an electric push rod (208); The adjustment plate (207) is translated by the electric push rod (208), and the adjustment plate (207) moves, so that the telescopic plate (205) is telescopically adjusted, and finally cooperates with the side plate (203) to clamp the solid state hard disk.

4. A solid state hard disk test stand according to claim 3, characterized in that: The electric push rod 1 (208) is provided with a mounting frame (3), and the mounting frame (3) is connected to the base plate (202) through bolts and is used to support the electric push rod 1 (208).

5. A solid state hard disk test stand according to claim 4, characterized in that: The positioning assembly (4) comprises a second electric push rod (401) located on the base (1), the second electric push rod (401) is provided with a rotating platform (402), the rotating platform (402) is provided with a bracket (403), and the bracket (403) is provided with a positioning rod (404); The bracket (403) is height-adjusted by the electric push rod 2 (401), and the angle is adjusted by the rotating platform (402) at the same time, so that the positioning rod (404) is adjusted synchronously, which is used for positioning the solid state hard disk.

6. A solid state hard disk test stand according to claim 5, characterized in that: The guide member comprises a guide rod (405) located on the bracket (403), the guide rod (405) is provided with a universal wheel (406), the universal wheel (406) is provided with a guide path (407), and the guide path (407) is provided on the base (1); The guide rod (405) moves through the movement of the bracket (403), and finally the universal wheel (406) moves on the guide path (407).

7. A solid state hard disk test stand according to claim 6, characterized in that: The test assembly (5) comprises a support frame (501) located on the base (1), the support frame (501) is provided with a driving electric cylinder (502), the driving electric cylinder (502) is provided with a tester (503), and the tester (503) is provided with a test socket (504); The test socket (504) is moved by pushing the electric cylinder (502) to pass through the test hole (204) and connect with the solid state hard disk test interface for solid state hard disk testing.

Citation Information

Patent Citations

  • Solid state disk test frame

    CN212944166U