128-port solid state disk test equipment

By using quick connection components in the 128-port solid-state drive test equipment, the problem of inconvenient disassembly and debugging of CELL test modules in the prior art is solved, and a more efficient testing process is achieved.

CN223022916UActive Publication Date: 2025-06-24SUZHOU OCONNOR ELECTRONIC TECH CO LTD
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Patent Information

Application Number
CN202422219413.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-11
Publication Date
2025-06-24
Estimated Expiration
2034-09-11

AI Technical Summary

Technical Problem

The CELL test module in the existing high and low temperature alternating test chamber is inconvenient to disassemble and debug, which affects the detection efficiency.

Method used

A 128-port solid-state drive test equipment was designed, and the quick connection components were used to directly fast fix the test system components in the installation slot without bolts, simplifying the disassembly and assembly process.

Benefits of technology

This greatly shortens the disassembly and debugging time of test system components and improves testing efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a 128-port solid state disk test device. The front cavity and the rear cavity are arranged in the box body, the partition plate is arranged between the front cavity and the rear cavity, the detection holes are formed in the partition plate, the baffle is arranged in the middle of the partition plate in the front cavity and divides the front cavity into a left heating area and a right heating area, the air guide assembly is arranged in the front cavity, the blast heating assembly is arranged in the heating area of the front cavity, and the CELL frame body is arranged in the rear cavity. The mounting grooves are formed in the CELL frame main body, the L-shaped slide ways are arranged on the two sides of the bottoms in the mounting grooves, the test system assemblies are arranged in the mounting grooves in a sliding mode, the quick connection assemblies are arranged on the CELL frame main body, and the sealing door is arranged on the outer surface of the box body and located in a front cavity. The monitoring display screen is arranged on one side of the sealing door on the outer surface of the box body; according to the utility model, through the rapid connection assembly, the rapid connection assembly can be directly and rapidly fixed and limited in the installation groove without a bolt, thereby greatly shortening the time of dismounting and debugging of the test system assembly, and improving the test efficiency.
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Description

Technical Field

[0001] The utility model relates to the field of solid-state drive testing equipment, in particular to a 128-port solid-state drive testing equipment. Background Art

[0002] High and low temperature alternating test chambers are widely used in technical fields such as electronics, medical treatment, and chemical industry. High and low temperature alternating 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 or constant tests in a changing temperature environment.

[0003] The existing CELL test module in the high and low temperature alternating test chamber is fixed on the support frame in the high and low temperature alternating test chamber by bolts, and disassembly, installation, and debugging are relatively inconvenient, affecting the detection efficiency. For example, the prior art 202322526213.5 discloses a 256-port high and low temperature test equipment for SSDs. Summary of the Utility Model

[0004] The purpose of the utility model is to provide a 128-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 128-port solid-state drive testing equipment, including a box body, a front cavity and a rear cavity respectively arranged in the box body, 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 baffle vertically arranged in the middle of the partition in the front cavity to divide the front cavity into left and right heating areas, two groups of air guiding components respectively arranged on the partition in the left and right heating areas of the front cavity and forming a middle cavity with a middle air duct and left and right air ducts between the partition and the two groups of air guiding components for fixing a plurality of objects to be tested, air blowing and heating components respectively arranged at the bottoms of the two heating areas in the front cavity, a CELL frame body arranged in the rear cavity, a plurality of installation grooves arranged in the CELL frame body, a plurality of L-shaped slideways respectively arranged on both sides of the bottoms of the plurality of installation grooves, a plurality of test system components respectively slidably arranged in the installation grooves, a plurality of quick connection components respectively arranged on the CELL frame body and at the positions of the plurality of installation grooves for installing the plurality of test system components on the CELL frame body, a sealing door arranged on the outer surface of the box body at the position of the front cavity, and a monitoring display screen arranged on the outer surface of the box body on one side of the sealing door.

[0006] Preferably, each of the plurality of test system components includes a CELL test module for docking with a plurality of objects to be tested on the air guiding component, a handle arranged in the middle of one side of the CELL test module at the entrance of the installation groove, and two fixing ears arranged on both sides of the bottom of one side of the CELL test module at the entrance of the installation groove and embedded in the CELL frame body.

[0007] Preferably, several groups of the quick connection components each include two limit blocks respectively arranged on both sides of the CELL frame body at the entrance of the installation groove, two profiling grooves respectively arranged on the two limit blocks for the insertion of two fixing ears, two limit plates respectively slidably arranged in the two limit blocks, two grooves respectively arranged on the two limit plates at the profiling grooves of the two limit blocks and having the same shape as the two profiling grooves, two tension springs respectively arranged at the inner bottoms of the two limit blocks for always pulling the two limit plates inward into the limit blocks, two guide posts arranged on the CELL frame body directly above the two limit plates, two connecting ropes with one ends respectively connected to the outer ends of the two limit plates outside the two limit blocks and the other ends respectively closely attached to the two guide posts and extending to directly above the middle of the handle, and hooks with one ends hooked to the two connecting ropes and the other ends hooked to the handle.

[0008] Preferably, each of the two groups of air guiding components includes an air guiding frame arranged on the partition board with a middle air duct for air outlet in the middle and left and right air ducts formed between the two sides and the inner wall of the front cavity and the baffle, a plurality of air guiding openings respectively arranged on the inner walls of the two sides in the middle air duct and one side of the inner walls of the left and right air ducts of the air guiding frame, a plurality of air guiding plates arranged on the plurality of air guiding openings for evenly guiding air into the fixing components in the air guiding frame, a plurality of rectangular holes respectively arranged on the side of the air guiding frame facing the partition board and penetrating through the middle cavity and respectively facing a plurality of detection holes, a plurality of mounting plates respectively arranged on the plurality of rectangular holes, and a plurality of tooling seats respectively arranged on the plurality of mounting plates for the insertion of solid state drives.

[0009] Preferably, anti-static silica gel pads are respectively arranged on the inner walls of the plurality of rectangular holes.

[0010] Preferably, each of the two groups of air blowing and heating components includes two blowers respectively arranged on both sides at the lower end of the heating area of the front cavity, an evaporator arranged in the heating area of the front cavity between the air guiding frame and the two blowers, and a heating wire arranged at the bottom of the heating area of the front cavity.

[0011] Due to the application of the above technical solutions, the present utility model has the following advantages compared with the prior art:

[0012] Through the quick connection components, the present utility model can be directly and quickly fixed and limited in the installation groove without bolts, greatly shortening the time for disassembly, assembly and debugging of the test system components and improving the test efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0013] The technical solutions of the present utility model will be further described below with reference to the drawings:

[0014] Attached Figure 1 is a front structural schematic diagram of the 128-port solid state drive test device of the present utility model;

[0015] Attached Figure 2Schematic diagram of the front internal structure of the 128-port solid-state drive testing device described in the present utility model;

[0016] Appendix Figure 3 The 128-port solid-state drive testing device described in the present utility model Figure 2 Schematic diagram of the partially enlarged structure at location A;

[0017] Appendix Figure 4 Schematic diagram of the side sectional structure of the 128-port solid-state drive testing device described in the present utility model;

[0018] Appendix Figure 5 Schematic diagram of the front partial sectional structure of the quick connection component of the 128-port solid-state drive testing device described in the present utility model;

[0019] Appendix Figure 6 The 128-port solid-state drive testing device described in the present utility model Figure 5 Schematic diagram of the enlarged structure at location B;

[0020] Appendix Figure 7 Schematic diagram of the side partial sectional structure of the quick connection component of the 128-port solid-state drive testing device described in the present utility model;

[0021] Appendix Figure 8 The 128-port solid-state drive testing device described in the present utility model Figure 7 Schematic diagram of the partially enlarged structure at location C.

[0022] Wherein: 1. Box body; 2. Front cavity; 3. Rear cavity; 4. Partition board; 5. Detection hole; 6. Air guiding component; 61. Air guiding frame; 62. Air guiding port; 63. Air guiding plate; 64. Rectangular hole; 65. Mounting plate; 66. Tooling seat; 7. Blowing and heating component; 71. Blower; 72. Evaporator; 73. Heating wire; 8. CELL frame body; 9. Installation groove; 10. Slideway; 11. Testing system component; 111. CELL testing module; 112. Handle; 113. Fixed ear; 12. Quick connection component; 121. Limit block; 122. Profiled groove; 123. Limit plate; 124. Groove; 125. Tension spring; 126. Guide post; 127. Connecting rope; 128. Hook; 13. Sealing door; 14. Monitoring display screen; 15. Anti-static silica gel pad; 16. Baffle; 17. Middle cavity. Specific embodiments

[0023] The present utility model will be further described in detail below in conjunction with the accompanying drawings and specific embodiments.

[0024] Appendix Figures 1-8The 128-port solid-state drive testing device described in the present utility model includes a box body 1, a front cavity 2 and a rear cavity 3 respectively arranged in the box body 1, a partition plate 4 arranged between the front cavity 2 and the rear cavity 3 for separating the front cavity 2 and the rear cavity 3, a number of detection holes 5 arranged on the partition plate 4 and communicating the front cavity 2 and the rear cavity 3 with each other, a baffle 16 vertically arranged in the middle of the partition plate 4 in the front cavity 2 to divide the front cavity 2 into left and right heating zones, two groups of air guiding components 6 respectively arranged on the partition plate 4 in the left and right heating zones of the front cavity 2 and forming a middle cavity 17 with the partition plate 4, having a middle air duct and left and right air ducts for fixing a number of objects to be tested, air blowing and heating components 7 respectively arranged at the bottoms of the two heating zones of the front cavity 2, a CELL frame body 8 arranged in the rear cavity 3, a number of mounting grooves 9 arranged inside the CELL frame body 8, a number of L-shaped sliding grooves 10 respectively arranged on both sides of the bottoms of the number of mounting grooves 9, a number of test system components 11 respectively slidably arranged in the mounting grooves 9, a number of quick connection components 12 respectively arranged on the CELL frame body 8 at the positions of the number of mounting grooves 9 for mounting the number of test system components 11 on the CELL frame body 8, a sealing door 13 arranged on the outer surface of the box body 1 at the position of the front cavity 2, and a monitoring display screen 14 arranged on the outer surface of the box body 1 on one side of the sealing door 13; each of the number of test system components 11 includes a CELL test module 111 for docking with a number of objects to be tested on the air guiding component 6, a handle 112 arranged in the middle of one side of the CELL test module 111 at the entrance of the mounting groove 9, and two fixing ears 113 arranged on both sides of the bottom of one side of the CELL test module 111 at the entrance of the mounting groove 9 and embedded in the CELL frame body 8; each of the number of groups of quick connection components 12 includes two limiting blocks 121 respectively arranged on both sides of the CELL frame body 8 at the entrance of the mounting groove 9, two profiling grooves 122 respectively arranged on the two limiting blocks 121 for inserting the two fixing ears 113, two limiting plates 123 respectively slidably arranged in the two limiting blocks 121, two grooves 124 respectively arranged on the two limiting plates 123 at the profiling grooves 122 of the two limiting blocks 121 and having the same shape as the two profiling grooves 122, two tension springs 125 respectively arranged at the bottoms of the two limiting blocks 121 for always pulling the two limiting plates 123 towards the inside of the limiting blocks 121, two guide posts 126 arranged on the CELL frame body 8 directly above the two limiting plates 123, two connecting ropes 127 with one ends respectively connected to the outer ends of the two limiting plates 123 outside the two limiting blocks 121 and the other ends respectively extending closely along the two guide posts 126 to directly above the middle of the handle 112, and a hook 128 with one end connected to the two connecting ropes 127 and the other end hooked on the handle 112;The air guiding assembly 6 includes an air guiding frame 61 disposed on the partition plate 4 with a middle air duct and left and right air ducts formed between the inner walls of the front cavity 2 on both sides, a plurality of air guiding openings 62 are disposed on the inner walls of the air guiding frame 61 on both sides in the middle air duct and on one side in the left and right air ducts, a plurality of air guiding plates 63 are disposed on the plurality of air guiding openings 62 to uniformly introduce air into the fixing assembly in the air guiding frame 61, a plurality of rectangular holes 64 are disposed on the side of the air guiding frame 61 facing the partition plate 4 and penetrate through the middle cavity 17 and are respectively opposite to a plurality of detection holes 5, a plurality of mounting plates 65 are respectively disposed on the plurality of rectangular holes 64, and a plurality of tooling seats 66 for inserting solid state drives are respectively disposed on the plurality of mounting plates 65; both groups of the air blowing and heating assemblies 7 include two blowers 71 disposed on both sides at the lower end of the front cavity heating area, an evaporator 72 disposed in the front cavity heating area between the air guiding frame and the two blowers 71, and a heating wire 73 disposed at the bottom of the front cavity heating area.;

[0025] Further, antistatic silica gel pads 15 are disposed on the inner walls of the plurality of rectangular holes 64, which improves the sealing performance between the front cavity and the middle cavity 17 and at the same time prevents component collision during the installation process.

[0026] During use: When installing the CELL test module 111, first align the tail end of the CELL test module 111 with the installation slot 9 on the CELL frame body 8, and then place the two sides at the bottom of the CELL test module 111 on the two slideways 10 and slide it into the installation slot 9. When the tail end of the CELL test module 111 slides into the end of the installation slot 9, the fixing ears 113 on both sides at the bottom of the front surface of the CELL test module 111 just insert into the profiling grooves 122 of the limit blocks 121. Then, pull the hook 128 in the direction of the handle 112. Immediately, the hook 128 drives the connecting rope 127 to move. Immediately, the connecting rope 127 pulls the limit plate 123 to move upward in the limit block 121 against the tension of the tension spring 125. Immediately, the groove 124 of the limit plate 123 moves into the limit block 121, and the part without the groove 124 moves to the front of the fixing ear. Immediately, the fixing ear is limited, so that the CELL test module 111 is fixedly limited in the installation slot 9. When it is necessary to replace the CELL test module 111, only need to remove the hook 128 hooked on the handle 112. Immediately, the tension spring 125 drives the limit plate 123 to reset. The groove 124 on the limit plate 123 communicates with the profiling groove 122 of the limit block 121. Immediately, the fixing ear 113 loses the block. Then, take out the CELL test module 111 from the installation slot 9, and replace it with a new CELL test module 111. Then, insert the object to be tested onto the tooling seat 66 on the mounting plate 65. Since there are a total of sixteen mounting plates 65 on the two air guiding frames 61, and eight solid-state drives can be inserted into the tooling seat 66 on each mounting plate 65, a total of one hundred and twenty-eight solid-state drives can be inserted on the air guiding frame 61. After fixing, start the air blowing and heating component 7 through the monitoring display screen 14, start the blower 71. The blower 71 blows air through the evaporator 72, and then enters from the left and right air ducts on both sides of the air guiding frame 61, and then is introduced to the air guiding port 63 through the air guiding plate 62 and enters the air guiding frame 61. Then, the air passes through the solid-state drives on the mounting plate 65, and then flows downward through the evaporator 72 in the middle air duct of the air guiding frame 61 and returns to the blower 71. Then, the evaporator 72 and the heating wire 73 heat the air, and then blow it back into the air guiding frame 61 to form a cycle until it is raised to the specified temperature. Subsequently, receive the test data through the CELL test module 111 to complete the test.

[0027] The above is only a specific application example of the present invention, and it does not constitute any limitation to the protection scope of the present invention. Any technical solutions formed by equivalent transformation or equivalent replacement fall within the scope of the protection of the rights of the present invention.

Claims

1. A 128-port solid state drive test device, characterized in that: The utility model comprises a box body, a front cavity and a rear cavity respectively arranged in the box body, 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 baffle arranged vertically in the middle of the partition in the front cavity to divide the front cavity into left and right heating zones, two groups of air guide components respectively arranged on the partition and located in the left and right heating zones of the front cavity and forming a middle cavity with a middle air duct and left and right air ducts for fixing a plurality of objects to be tested, an air blast heating component respectively arranged at the bottom of the two heating zones of the front cavity, a CELL frame body arranged in the rear cavity, a plurality of installation grooves arranged on the CELL frame body, a plurality of L-shaped slideways respectively arranged at both sides of the bottom of the plurality of installation grooves, a plurality of test system components respectively slidably arranged in the installation grooves, a plurality of quick connection components respectively arranged on the CELL frame body and located at the plurality of installation grooves for installing the plurality of test system components on the CELL frame body, a sealing door arranged on the outer surface of the box body at the front cavity, and a monitoring display screen arranged on the outer surface of the box body at one side of the sealing door.

2. The 128-port solid state drive test device according to claim 1, characterized in that: Several of the test system components include a CELL test module for docking with several objects to be tested on the air guide assembly, a handle arranged in the middle of one side of the CELL test module at the entrance of the installation slot, and two fixing ears embedded in the CELL frame body on both sides of the bottom of one side of the CELL test module at the entrance of the installation slot.

3. The 128-port solid state drive test device according to claim 1, characterized in that: Several groups of the quick connection components all include two limit blocks respectively arranged on the CELL frame body at both sides of the entrance of the installation groove, two contour grooves respectively arranged on the two limit blocks for inserting two fixing ears, two limit plates respectively slidably arranged in the two limit blocks, two grooves respectively arranged on the two limit plates at the contour grooves of the two limit blocks and having the same shape as the two contour grooves, two tension springs respectively arranged at the bottom of the two limit blocks for always pulling the two limit plates toward the limit blocks, two guide posts respectively arranged on the CELL frame body just above the two limit plates, two connecting ropes one end of which is respectively connected to one end of the two limit plates located outside the two limit blocks and the other end of which is respectively close to the two guide posts and extends to the middle of the handle and is placed just above, and a hook at one end of which is connected to the two connecting ropes and the other end of which is hooked on the handle.

4. The 128-port solid state drive testing device according to claim 1, characterized in that: The two groups of air guide components include an air guide frame arranged in the middle of the partition with a central air duct for air outlet and a left air duct and a right air duct formed between the inner wall of the front cavity and the baffle on both sides, a plurality of air guide ports are arranged on the inner walls of the air guide frame on both sides in the central air duct and on one side in the left air duct and the right air duct, a plurality of air guide plates arranged on the plurality of air guide ports to evenly guide the wind to the fixed components in the air guide frame, a plurality of rectangular holes arranged on a side of the air guide frame facing the partition and passing through the central cavity and facing the plurality of detection holes respectively, a plurality of mounting plates respectively arranged on the plurality of rectangular holes, and a plurality of tooling seats respectively arranged on the plurality of mounting plates for inserting solid state hard drives.

5. The 128-port solid state drive testing device according to claim 4, characterized in that: Antistatic silicone pads are arranged on the inner walls of the plurality of rectangular holes.

6. The 128-port solid state drive testing device according to claim 4, characterized in that: The two groups of air blowing and heating components include two blowers arranged on both sides of the lower end of the front cavity heating zone, an evaporator arranged in the front cavity heating zone between the air guide frame and the two blowers, and a heating wire arranged at the bottom of the front cavity heating zone.

Citation Information

Patent Citations

  • 256 port high and low temperature test equipment for SSD (Solid State Disk)

    CN220861492U