16-port solid state disk test equipment
By using quick connection components and multiple sets of tooling components in solid-state drive test equipment, the problem of inconvenient operation during disassembly and assembly and maintenance of existing equipment is solved, and the efficiency of rapid disassembly and assembly and replacement of tooling components is achieved.
Patent Information
- Application Number
- CN202421861103.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-02
- Publication Date
- 2025-05-27
- Estimated Expiration
- 2034-08-02
AI Technical Summary
The existing SSD's high and low temperature humidity and heat testing equipment is more troublesome when disassembling, assembled and maintained. The installation board is fixed by bolts, resulting in inconvenient operation.
A 16-port solid-state drive test device is designed, using quick connection components and multiple sets of tooling components. Through quick connection components, it quickly disassembles and assembles the installation board to adapt to different sizes of solid-state drives.
It realizes rapid and effective disassembly and assembly and installation board replacement, improves disassembly and assembly efficiency, and facilitates maintenance and adaptability to different sizes of solid-state drives.
Smart Images

Figure CN222914436U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of solid-state drive testing equipment, in particular to a 16-port solid-state drive testing equipment. Background Art
[0002] High and low temperature alternating humidity test chambers are widely used in technical fields such as electronics, medicine, and chemical industry. High and low temperature alternating humidity test chambers are essential test equipment in fields such as aviation, automobiles, household appliances, and scientific research, and are used to test and determine the parameters and performance of electrical, electronic, and other products and materials after temperature, humidity, or constant temperature environment changes.
[0003] The prior art 202322526025.2 discloses a 64-port high and low temperature humidity test equipment for SSDs. Although it has the above functions, the mounting plates installed on the fixed plate are all fixed by bolts, which is rather troublesome during disassembly, installation, and maintenance. Summary of the Utility Model
[0004] The purpose of the utility model is to provide a 16-port solid-state drive testing equipment to overcome the deficiencies of the prior art.
[0005] To achieve the above purpose, the technical solution adopted by the utility model is: a 16-port solid-state drive testing equipment, comprising a box body, a front cavity arranged on one side of the front of the box body, a rear cavity arranged on one side of the back of the box body at the position of the front cavity, a partition arranged between the front cavity and the rear cavity for separating the front cavity and the rear cavity, a plurality of detection holes arranged on the partition and communicating the front cavity and the rear cavity with each other, a fixing plate assembly arranged in the middle of the partition in the front cavity and forming a middle cavity with the partition for fixing a plurality of objects to be tested and for guiding air, a plurality of mounting plates arranged on the fixing plate assembly through a quick connection component, a plurality of tooling components arranged on the plurality of mounting plates for inserting solid-state drives, a heating and blowing component arranged at the bottom of the cavity for heating the objects to be tested, a testing component arranged on the partition in the rear cavity for detecting a plurality of objects to be tested; a monitoring and control component is arranged above the front of the box body; sealing doors are arranged on both the front cavity and the rear cavity; the middle cavity is a pressure balance area to ensure that the pressure of the entire test environment will not be too large, resulting in safety problems.
[0006] Preferably, the fixing plate assembly includes a fixing plate with air ducts on both the left and right sides, a plurality of air guiding plates arranged on the fixing plate at the positions of the air ducts on both the left and right sides, and a plurality of rectangular holes arranged in the middle of the fixing plate; the plurality of mounting plates are respectively installed in the plurality of rectangular holes through a quick connection component.
[0007] Preferably, each of the multiple groups of quick connection components includes a fixing block arranged on the fixing plate and placed along the four sides of the rectangular hole with a hollow middle part, a slot arranged on the side of the fixing block away from the fixing plate and placed around the hollow part, a plug block correspondingly arranged on the periphery of one side of the mounting plate for inserting into the slot, two extension blocks arranged on both side end faces of the mounting plate and fitting with the outer wall of the fixing block to form an L shape, two elongated pin slots respectively arranged on the side of the two extension blocks fitting with the outer wall of the fixing block, multiple pins sequentially and slidably arranged in the two pin slots with both ends respectively penetrating through the two extension blocks and extending to the outside, multiple limiting blocks respectively arranged on one ends of the multiple pins located in the pin slots, multiple springs respectively sleeved on one ends of the multiple pins located in the pin slots for pushing the multiple limiting blocks to drive the pins to move towards the outer wall of the fixing block, limiting slots correspondingly arranged on the outer wall of the fixing block for inserting the multiple pins, two connecting plates respectively arranged on the other ends of the multiple pins on both sides of the mounting plate, and two handles arranged on the two connecting plates.
[0008] Preferably, each of the multiple groups of tooling components includes two pairs of tooling blocks arranged on the mounting plate with multiple profiling grooves, and support plates respectively arranged at the bottoms of the multiple profiling grooves of the two pairs of tooling blocks.
[0009] Preferably, multiple heat dissipation holes are provided on each of the multiple support plates.
[0010] Due to the application of the above technical solutions, the present utility model has the following advantages compared with the prior art:
[0011] Through the quick connection component, the present utility model can quickly and effectively disassemble and assemble the mounting plate, so as to conveniently replace the tooling components suitable for solid state drives of different sizes, and improve the disassembly and assembly efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0012] The technical solutions of the present utility model will be further described below with reference to the drawings:
[0013] FIG Figure 1 is a front structural schematic diagram of the 16-port solid state drive testing device of the present utility model;
[0014] FIG Figure 2 is a front internal structural schematic diagram of the 16-port solid state drive testing device of the present utility model;
[0015] FIG Figure 3 is a side internal structural schematic diagram of the 16-port solid state drive testing device of the present utility model;
[0016] FIG Figure 4 is a front partial sectional structural schematic diagram of the quick connection component of the 16-port solid state drive testing device of the present utility model;
[0017] FIG Figure 5The 16-port solid-state drive testing device of the present utility model Figure 4 Schematic diagram of the partial enlarged structure at position A;
[0018] Appendix Figure 6 Schematic diagram of the side sectional structure of the quick connection component of the 16-port solid-state drive testing device of the present utility model;
[0019] Appendix Figure 7 The 16-port solid-state drive testing device of the present utility model Figure 6 Schematic diagram of the partial enlarged structure at position B;
[0020] Appendix Figure 8 Top view structure diagram of the support plate of the 16-port solid-state drive testing device of the present utility model.
[0021] Wherein: 1, box body; 2, partition board; 3, detection hole; 4, fixing plate assembly; 41, fixing plate; 42, air guide plate; 43, rectangular hole; 5, quick connection component; 5a, fixing block; 5b, extension block; 5c, plug slot; 5d, plug; 5e, spring; 5f, limit block; 5g, limit slot; 5h, connecting plate; 5i, handle; 5j, insertion block; 5k, slot; 6, mounting plate; 7, tooling component; 71, tooling block; 72, profiling groove; 73, support plate; 8, heating and blowing component; 9, testing component; 10, monitoring and control component; 11, sealing door; 12, heat dissipation hole. Specific embodiments
[0022] The present utility model will be further described in detail below with reference to the accompanying drawings and specific embodiments.
[0023] Appendix Figure 1-8The 16-port solid-state drive testing device described in the present utility model includes a box body 1, a front cavity provided on one side of the front surface of the box body 1, a rear cavity provided on one side of the back surface of the box body 1 at the position of the front cavity, a partition 2 provided between the front cavity and the rear cavity for separating the front cavity and the rear cavity, a number of detection holes 3 provided on the partition 2 for communicating the front cavity and the rear cavity with each other, a fixing plate 41 assembly 4 provided in the middle of the partition 2 in the front cavity and forming a middle cavity with the partition 2 for fixing a number of objects to be tested and for guiding air, a number of mounting plates 6 provided on the fixing plate 41 assembly 4 through a quick connection assembly 5, a number of tooling assemblies 7 provided on the number of mounting plates 6 for inserting solid-state drives, a heating and blowing assembly 8 provided at the bottom of the cavity for heating the objects to be tested, a testing assembly 9 provided on the partition 2 in the rear cavity for detecting a number of objects to be tested; a monitoring and control assembly 10 is provided above the front surface of the box body 1; sealing doors 11 are provided on both the front cavity and the rear cavity; the middle cavity is a pressure balance area to ensure that the pressure of the entire testing environment will not be too large, causing safety problems; the fixing plate 41 assembly 4 includes a fixing plate 41 with air ducts on both the left and right sides, a number of air guiding plates 42 provided on the fixing plate 41 at the positions of the air ducts on both the left and right sides, and a number of rectangular holes 43 provided in the middle of the fixing plate 41; the number of mounting plates 6 are respectively installed in the number of rectangular holes 43 through the quick connection assembly 5; each of the number of quick connection assemblies 5 includes a fixing block 5a provided on the fixing plate 41 and placed along the four sides of the rectangular hole 43 with a hollow middle, a slot 5k provided on the side of the fixing block 5a away from the fixing plate 41 along the periphery of the hollow part, a plug 5j correspondingly provided on the periphery of one side of the mounting plate 6 for inserting into the slot 5k, two extension blocks 5b provided on both end faces of the mounting plate 6 and fitting with the outer wall of the fixing block 5a to form an L shape, two elongated pin slots 5c respectively provided on the side of the two extension blocks 5b fitting with the outer wall of the fixing block 5a, a number of pins 5d respectively and slidably provided in the two pin slots 5c with both ends respectively passing through the two extension blocks 5b and extending to the outside, a number of limiting blocks 5f respectively provided on one end of the number of pins 5d located in the pin slots 5c, a number of springs 5e respectively sleeved on one end of the number of pins 5d located in the pin slots 5c for pushing the number of limiting blocks 5f to drive the pins 5d to move towards the outer wall of the fixing block 5a, a limiting groove 5g correspondingly provided on the outer wall of the fixing block 5a for inserting the number of pins 5d, two connecting plates 5h respectively provided on the other ends of the number of pins 5d on both sides of the mounting plate 6, and two handles 5i provided on the two connecting plates 5h; each of the number of tooling assemblies 7 includes two pairs of tooling blocks 71 provided on the mounting plate 6 with a number of profiling grooves 72, and support plates 73 respectively provided at the bottoms of the number of profiling grooves 72 of the two pairs of tooling blocks 71.
[0024] Preferably, each of the number of support plates 73 is provided with heat dissipation holes 12 to accelerate heat dissipation.
[0025] During use: First, insert the object to be tested into the profiling groove 72 on the tooling block 71 on the mounting plate 6. There are two mounting plates 6 on the fixing plate 41 in total. There are two pairs of tooling blocks 71 on each mounting plate 6, and there are four profiling grooves 72 on each pair of tooling blocks 71. Therefore, a total of sixteen solid-state drives to be tested can be fixed. After fixing, start the heating and blowing component 8 to blow air through the monitoring and control component 10. Immediately, the air enters one of the air ducts on the fixing plate 41. Since the air guide plate 42 evenly guides it into the fixing plate 41, then the air passes through the solid-state drive to be tested on the fixing block 5a and enters the air duct from the air guide plate 42 on the other side, and then returns to the heating and blowing component 8 to form a cycle for continuous heating. Subsequently, receive the test data through the test component 9 to complete the test. When it is necessary to remove the mounting plate 6, first pull the handles 5i on both sides of the mounting plate 6. Drive the connecting plate 5h to move through the handle 5i, and the connecting plate 5h drives the pin 5d to move in the direction of the extension block 5b. Immediately, the pin 5d disengages from the limiting groove 5g on the outer wall of the fixing block 5a, and then directly remove the mounting plate 6. Replace the tooling block 71 corresponding to the size of the solid-state drive. Finally, insert the insertion block 5j on the mounting plate 6 into the slot 5k of the fixing block 5a, and then release the handle 5i. Subsequently, the spring 5e pushes the limiting block 5f to drive the pin 5d to insert into the limiting groove 5g, and immediately the mounting plate 6 is fixed on the fixing plate 41. Since the heating and blowing component 8, the test component 9, and the monitoring and control component 10 are prior arts, they will not be described in detail herein.
[0026] The above is only a specific application example of the present invention, which does not constitute any limitation to the protection scope of the present invention. Any technical solutions formed by equivalent transformation or equivalent substitution fall within the scope of the rights protection of the present invention.
Claims
1. A 16-port solid state hard disk test device, characterized in that: The invention comprises a box body, a front cavity arranged on the front side of the box body, a rear cavity arranged on the back side of the box body at the front cavity, a partition arranged between the front cavity and the rear cavity for separating the front cavity and the rear cavity, a plurality of detection holes arranged on the partition and connecting the front cavity and the rear cavity to each other, a fixing plate assembly arranged in the middle of the partition in the front cavity and forming a middle cavity between the partition for fixing a plurality of objects to be tested and for guiding air, a plurality of mounting plates arranged on the fixing plate assembly through quick connection assemblies, a plurality of tooling assemblies arranged on a plurality of mounting plates for inserting solid-state hard disks, a heating and blowing assembly arranged at the bottom of the cavity for heating the objects to be tested, and a test assembly arranged on the partition in the rear cavity for detecting a plurality of objects to be tested; a monitoring and control assembly is arranged above the front side of the box body; a sealing door is arranged on both the front cavity and the rear cavity; the middle cavity is a pressure balance area to ensure that the pressure of the entire test environment is not too high, which may cause safety problems.
2. The 16-port solid state drive test equipment according to claim 1, characterized in that: The fixing plate assembly includes a fixing plate with air ducts on the left and right sides, a plurality of air guide plates arranged on the fixing plate at the air ducts on the left and right sides, and a plurality of rectangular holes arranged in the middle of the fixing plate; and a plurality of the mounting plates are respectively mounted on the plurality of rectangular holes through quick connection assemblies.
3. The 16-port solid state drive testing device according to claim 1, characterized in that: Several groups of the quick connection components all include a fixed block that is arranged on a fixed plate and is placed along four sides of a rectangular hole and is hollow in the middle, a slot that is arranged on one side of the fixed block away from the fixed plate and is placed around the hollow part, an insert block that is correspondingly arranged on one side of the mounting plate and is used to be inserted into the slot, two extension blocks that are arranged on both sides of the mounting plate and are in an L-shape with the end faces of the two sides of the mounting plate and are in contact with the outer wall of the fixed block, two long strip-shaped latch grooves that are respectively arranged on one side of the two extension blocks that are in contact with the outer wall of the fixed block, a plurality of latches that are slidably arranged in the two latch grooves in sequence and whose two ends respectively penetrate the two extension blocks and extend to the outside, a plurality of limiting blocks that are respectively arranged on one end of the plurality of latches located in the latch groove, a plurality of springs that are respectively sleeved on one end of the plurality of latches located in the latch groove and are used to push the plurality of limiting blocks to drive the latches to move toward the outer wall of the fixed block, a limiting groove that is correspondingly arranged on the outer wall of the fixed block for inserting the plurality of latches, two connecting plates that are respectively arranged on the other ends of the plurality of latches on both sides of the mounting plate, and two handles that are arranged on the two connecting plates.
4. The 16-port solid state drive testing device according to claim 1, characterized in that: The multiple sets of tooling components all include two pairs of tooling blocks with multiple profiling grooves arranged on the mounting plate, and support plates respectively arranged at the bottom of the multiple profiling grooves of the two pairs of tooling blocks.
5. The 16-port solid state drive testing device according to claim 4, characterized in that: The plurality of support plates are provided with heat dissipation holes.
Citation Information
Patent Citations
A 64-port high and low temperature damp heat test equipment for SSD
CN220969142U