A multi-station solid-state drive testing device
By designing a multi-station solid-state drive testing device, multiple hard drives can be tested simultaneously, solving the problem of low efficiency in testing a single hard drive in existing technologies, and improving batch testing efficiency and device stability.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- DONGGUAN FANCHI ELECTRONIC TECHNOLOGY CO LTD
- Filing Date
- 2025-10-21
- Publication Date
- 2026-07-17
AI Technical Summary
Existing solid-state drive (SSD) testing equipment can only test one SSD at a time, which cannot meet the high-efficiency testing requirements of mass production.
Design a multi-station solid-state drive testing device, which adopts multiple vertically distributed test components, each component is equipped with multiple mounting slots, and combined with the sliding groove and roller structure of the supporting components, to realize the simultaneous testing of multiple hard drives.
It improved testing efficiency, met the needs of batch testing, and enhanced the operational stability and reliability of the device.
Smart Images

Figure CN224519515U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of solid-state drive testing technology, specifically a multi-station solid-state drive testing device. Background Technology
[0002] Solid-state drives (SSDs) are storage devices with solid-state electronic storage chips at their core. With their characteristics of having no mechanical structure and high-speed read and write, they have become the mainstream storage solution and are widely used in personal computers, mobile devices, and enterprise-level scenarios. The purpose of SSD testing is to verify that the performance meets the standards, ensure data security, screen qualified products, and avoid lag, speed drops, or even data loss during use due to hardware defects, firmware problems, or compatibility failures.
[0003] Chinese Patent Publication No. CN 222354741 U discloses a solid-state drive (SSD) test bench, including a test platform. The top of the test platform is equipped with a cartridge-type hopper for storing SSDs, and the bottom of the cartridge-type hopper has a discharge port. The test platform has a first slide rail and a second slide rail. A test socket for interlocking with the gold finger portion of the SSD is slidably connected within the first slide rail. Driven by a motor and a lead screw, the test socket and push plate of this SSD test bench can move automatically and precisely, thereby achieving automatic feeding and docking of SSDs. The cartridge-type hopper design makes loading and unloading SSDs simple and quick, while the easy-access slot design further facilitates the retrieval of SSDs. The aforementioned test bench uses test sockets to test solid-state drives (SSDs). However, the test bench can only test one SSD at a time, while the demand for SSDs is extremely high. Therefore, batch testing is required during mass production. The efficiency of using the aforementioned test bench is low and cannot meet the needs of batch testing of SSDs. Utility Model Content
[0004] The purpose of this invention is to provide a multi-station solid-state drive (SSD) testing device. Multiple mounting plates are provided with multiple mounting slots, which can simultaneously install and fix multiple SSDs. Test lines are provided at each of the multiple mounting slots, enabling simultaneous testing of multiple SSDs and improving testing efficiency, thereby solving the technical problems mentioned in the background art.
[0005] To achieve the above objectives, this utility model provides the following technical solution: A multi-station solid-state drive testing device, including The test components, which are used to fix the solid-state drive, are provided in multiple units and are arranged vertically. A support component is used to support the test components. The bottom of the support component is fixedly connected to the base, and multiple test components are located inside the support component. The support assembly includes two upright plates, with multiple test components located between the two upright plates; multiple sliding grooves are evenly provided on the side of the two upright plates near the test components, and each sliding groove has an inner groove at its bottom, with multiple rollers rotatably connected in each inner groove; multiple through slots are provided on both upright plates, and the positions of the through slots correspond to the positions of the sliding grooves respectively. The test assembly includes a mounting plate with multiple mounting slots evenly distributed on its top for mounting solid-state drives; both ends of the mounting plate are fixedly connected to base plates by bolts; the sides of the two base plates away from the mounting plate are respectively located in the grooves of the two upright plates; the ends of the two base plates away from the mounting plate are threaded with two adjusting bolts, both of which are located inside the through grooves.
[0006] As a further technical solution of this utility model, the through groove extends through the vertical plate, and the width of the through groove is less than the width of the sliding groove; the length of the sliding groove is the same as the width of the vertical plate.
[0007] As a further technical solution of this utility model, the size of the inner groove is smaller than the size of the sliding groove, and the multiple rollers in the inner groove are evenly distributed in a straight line; the bottom of the two base plates are respectively attached to the top of the multiple rollers on the two upright plates.
[0008] Compared with the prior art, the beneficial effects of this utility model are: 1. This utility model, by setting up multiple vertically distributed test components, each test component has multiple mounting slots on its mounting plate, can simultaneously install and fix multiple solid-state drives for testing, thereby improving testing efficiency and meeting the needs of batch testing of solid-state drives.
[0009] 2. In this utility model, the sliding groove, inner groove and rollers provided on the two upright plates of the support component, together with the base plate of the test component, make the installation, movement and adjustment of the test component in the support component more convenient and stable, which is conducive to improving the operational stability and reliability of the entire test device.
[0010] 3. This utility model allows the base plate to move along the slide groove by loosening the adjusting bolts, thereby changing the position of multiple mounting plates, which facilitates the installation and testing of solid-state drives. Multiple rollers make the movement of the base plate smoother. The through groove can limit the adjusting bolts, thereby preventing the base plate from falling out of the slide groove. Tightening the adjusting bolts can connect the upright plate and the base plate, thereby ensuring the stability of the mounting plate. Attached Figure Description
[0011] Figure 1 This is a three-dimensional structural diagram of the present invention.
[0012] Figure 2 This utility model Figure 1 The main view.
[0013] Figure 3 This utility model Figure 1 Side view.
[0014] Figure 4 This utility model Figure 1 A partial structural diagram.
[0015] Figure 5 This utility model Figure 4 The main view.
[0016] Figure 6 This utility model Figure 2 A partial structural diagram.
[0017] Figure 7 This utility model Figure 6 A partial structural diagram.
[0018] Figure 8 This utility model Figure 7 Top view.
[0019] Figure 9 This utility model Figure 7 The main view.
[0020] In the diagram: 1-Support component, 2-Test component, 3-Solid State Drive, 4-Test cable, 5-Base; 11-Upright plate, 12-Slide groove, 13-Through groove, 14-Roller, 21-Mounting plate, 22-Mounting groove, 23-Auxiliary groove, 24-Base plate, 25-Adjusting bolt, 26-Fixing bolt. Detailed Implementation
[0021] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0022] Please see Figure 1-9 In this embodiment of the utility model, a multi-station solid-state drive testing device includes... Test component 2, multiple test components 2 are provided for fixing solid-state drive 3, and the multiple test components 2 are arranged vertically; Support component 1 is used to support test component 2. The bottom of support component 1 is fixedly connected to base 5, and multiple test components 2 are located inside support component 1. The support assembly 1 includes two upright plates 11, and multiple test components 2 are located between the two upright plates 11. Multiple sliding grooves 12 are evenly provided on the side of the two upright plates 11 near the test components 2. The bottom of the inner side of each sliding groove 12 is provided with an inner groove, and multiple rollers 14 are rotatably connected in each inner groove. Multiple through grooves 13 are provided on each of the two upright plates 11, and the positions of the multiple through grooves 13 correspond to the positions of the multiple sliding grooves 12. The test assembly 2 includes a mounting plate 21, the top of which is evenly provided with a plurality of mounting slots 22 for mounting solid-state drives 3; both ends of the mounting plate 21 are fixedly connected to base plates 24 by bolts; the sides of the two base plates 24 away from the mounting plate 21 are respectively located in the sliding grooves 12 of the two upright plates 11; the ends of the two base plates 24 away from the mounting plate 21 are threaded with two adjusting bolts 25, both of which are located inside the through grooves 13.
[0023] By adopting the above technical solution, and by setting up multiple vertically distributed test components 2, each test component 2 has multiple mounting slots 22 on its mounting plate 21, multiple solid-state drives 3 can be installed and fixed simultaneously for testing, which improves testing efficiency and meets the needs of batch testing of solid-state drives.
[0024] In this embodiment, the through groove 13 extends through the vertical plate 11, and the width of the through groove 13 is less than the width of the sliding groove 12; the length of the sliding groove 12 is the same as the width of the vertical plate 11. The inner groove is smaller than the chute 12, and the multiple rollers 14 in the inner groove are evenly distributed in a straight line; the bottoms of the two base plates 24 are respectively attached to the tops of the multiple rollers 14 on the two upright plates 11. The mounting plate 21 has an auxiliary groove 24 on its top, and the auxiliary groove 24 is connected to multiple mounting grooves 22; the inner side of the end of the multiple mounting grooves 22 away from the auxiliary groove 24 is connected with a fixing bolt 26 for fixing the solid-state drive 3.
[0025] By adopting the above technical solution, the sliding grooves 12, inner grooves and rollers 14 provided on the two upright plates 11 in the support component 1, together with the base plate 24 of the test component 2, make the installation, movement and adjustment of the test component 2 in the support component 1 more convenient and stable, which is conducive to improving the operational stability and reliability of the entire test device.
[0026] In this embodiment, each of the mounting slots 22 is provided with a test line 4 at the end away from the fixing bolt 26, which is connected to the solid-state drive 3 and used to test the solid-state drive 3. The top of the multiple base plates 24 on the side away from the mounting plate 21 respectively fits against the top inner wall of the groove 12 on the two upright plates 11.
[0027] By adopting the above technical solution, the base plate 24 can be moved along the slide groove 12 by loosening the adjusting bolt 25, thereby changing the position of multiple mounting plates 21, which facilitates the installation and testing of the solid-state drive 3. Multiple rollers 14 can make the movement of the base plate 24 smoother. The through groove 13 can limit the adjusting bolt 25, thereby preventing the base plate 24 from falling out of the slide groove 12. After tightening the adjusting bolt 25, the connection between the upright plate 11 and the base plate 24 can be realized, thereby ensuring the stability of the mounting plate 21.
[0028] The working principle of this utility model is as follows: by setting up multiple test components 2 arranged vertically, each test component 2 has multiple mounting slots 22 on its mounting plate 21, multiple solid-state drives 3 can be installed and fixed at the same time for testing, which improves testing efficiency and meets the needs of batch testing of solid-state drives. The sliding grooves 12, inner grooves and rollers 14 provided on the two upright plates 11 in the support assembly 1, together with the base plate 24 of the test assembly 2, make the installation, movement and adjustment of the test assembly 2 in the support assembly 1 more convenient and stable, which is conducive to improving the operational stability and reliability of the entire test device. By loosening the adjusting bolt 25, the base plate 24 can be moved along the slide groove 12, thereby changing the position of multiple mounting plates 21, which facilitates the installation and testing of the solid-state drive 3. Multiple rollers 14 make the movement of the base plate 24 smoother. The through groove 13 can limit the adjusting bolt 25, thereby preventing the base plate 24 from falling out of the slide groove 12. After tightening the adjusting bolt 25, the connection between the upright plate 11 and the base plate 24 can be realized, thereby ensuring the stability of the mounting plate 21.
[0029] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.
Claims
1. A multi-station solid state drive testing device, characterized by: include Test component (2), multiple test components (2) for fixing solid-state drive (3) are provided, and the multiple test components (2) are vertically distributed; Support component (1) is used to support test component (2). The bottom of support component (1) is fixedly connected to base (5). Multiple test components (2) are located inside support component (1). The support assembly (1) includes two upright plates (11), and multiple test components (2) are located between the two upright plates (11); multiple sliding grooves (12) are evenly provided on the side of the two upright plates (11) near the test components (2), and the bottom of the inner side of each sliding groove (12) is provided with an inner groove, and multiple rollers (14) are rotatably connected in each inner groove; multiple through grooves (13) are provided on each of the two upright plates (11), and the positions of the multiple through grooves (13) correspond to the positions of the multiple sliding grooves (12); The test assembly (2) includes a mounting plate (21), on which a plurality of mounting slots (22) for mounting solid-state drives (3) are evenly provided on the top. Both ends of the mounting plate (21) are fixedly connected to base plates (24) by bolts. The side of the two base plates (24) away from the mounting plate (21) is located in the grooves (12) of the two upright plates (11). The ends of the two base plates (24) away from the mounting plate (21) are threaded with two adjusting bolts (25), both of which are located inside the through groove (13).
2. The multi-position solid state drive testing device of claim 1, wherein: The through groove (13) extends through the vertical plate (11), and the width of the through groove (13) is less than the width of the sliding groove (12); the length of the sliding groove (12) is the same as the width of the vertical plate (11).
3. The multi-position solid state drive testing device of claim 1, wherein: The inner groove is smaller than the chute (12), and the multiple rollers (14) in the inner groove are evenly distributed in a straight line; the bottom of the two base plates (24) are respectively attached to the top of the multiple rollers (14) on the two upright plates (11).
4. The multi-position solid state drive testing device of claim 1, wherein: The mounting plate (21) is provided with an auxiliary groove (23) on the top, and the auxiliary groove (23) is connected to multiple mounting grooves (22); the inner side of the end of the multiple mounting grooves (22) away from the auxiliary groove (23) is connected with a fixing bolt (26) for fixing the solid-state drive (3).
5. The multi-position solid state drive testing device of claim 1, wherein: Each of the aforementioned mounting slots (22) has a test line (4) at the end away from the fixing bolt (26) for connecting to the solid-state drive (3) and for testing the solid-state drive (3).
6. The multi-position solid state drive testing device of claim 1, wherein: The top of the side of the multiple base plates (24) away from the mounting plate (21) respectively fits against the top inner wall of the groove (12) on the two upright plates (11).