Rapid detection equipment for computer hardware

By combining a hardware fixing structure and heat dissipation design, the problems of unstable hardware fixing, unreasonable detection channel layout and insufficient heat dissipation are solved, achieving stable graphics card, high detection efficiency and uniform CPU heat dissipation, ensuring the accuracy and stability of detection results.

CN223926895UActive Publication Date: 2026-02-17INNER MONGOLIA ELECTRONICS INFORMATION VOCATIONAL TECHN COLLEGE
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Patent Information

Application Number
CN202520441256.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-13
Publication Date
2026-02-17
Estimated Expiration
2035-03-13

AI Technical Summary

Technical Problem

Existing rapid computer hardware testing equipment suffers from several issues regarding hardware fixation. Firstly, the hardware is not securely fixed, the testing channel layout is unreasonable, affecting testing efficiency. Secondly, the heat dissipation structure is defective, failing to provide uniform and efficient cooling for high-load CPUs, leading to overheating and impacting testing accuracy.

Method used

It adopts a modular hardware fixing structure, including adjustable support arms and auxiliary fixing blocks, precise slot design, stable pressure plates and limit blocks, reasonable layout of detection channels, and a heat dissipation structure composed of a through-hole air duct and a cooling fan to ensure uniform heat dissipation of the CPU.

Benefits of technology

The graphics card is securely fixed, the detection channels are reasonably designed to improve detection efficiency, and the CPU is cooled evenly to ensure the accuracy and stability of the detection results.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides computer hardware rapid detection equipment, which belongs to the field of computer hardware detection, aims to solve the problem of inaccurate detection results caused by unstable hardware fixation, poor detection channel layout and poor heat dissipation, and comprises a detection host, a control sliding block is slidably connected to the top of the left end of the rear side of the detection host, an adjustable supporting arm is rotatably connected into the control sliding block, an auxiliary fixing block is hinged to the top of the left end of the front side of the detection host, and an adjustable fixing block is slidably connected into the end face of the bottom of the auxiliary fixing block. A graphics card mounting plate is longitudinally mounted in the middle of the top end face of the adjustable fixing block, jacking plates are arranged on the left sides of grooves formed in the top of the graphics card mounting plate at equal intervals, and a fixing pressing plate is hinged to the left side wall of the graphics card mounting plate on the front sides of the jacking plates. According to the rapid computer hardware detection equipment, due to the reasonable layout of the detection channels, multiple groups of CPUs, memories and graphics cards are allowed to be detected at the same time, the detection efficiency is greatly improved, and the efficient requirement of modern computer hardware detection is met.
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Description

TECHNICAL FIELD

[0001] The utility model relates to computer hardware detection technical field especially relates to a computer hardware rapid detection equipment. BACKGROUND

[0002] The existing computer hardware rapid detection equipment lacks accurate and stable structure in hardware fixing, for example, the design of the video card slot is not accurate, the pressing plate and the limiting block are easy to displace due to poor stability, which interferes with the detection result, the detection channel layout is unreasonable, it is difficult to simultaneously and efficiently detect multiple groups of CPU, memory and video card, which restricts the detection efficiency, and the heat dissipation structure has defects, cannot provide uniform and efficient heat dissipation for the CPU running for a long time under high load, and leads to overheating affecting the detection accuracy. UTILITY MODEL CONTENTS

[0003] The utility model aims at providing a computer hardware rapid detection equipment to solve the problems of unstable hardware fixing, poor detection channel layout, affecting detection efficiency, and overheating due to the inability to uniformly dissipate heat for high-load CPU in the background art.

[0004] The purpose and function of the utility model computer hardware rapid detection equipment are achieved by the following specific technical means:

[0005] A computer hardware rapid detection equipment, wherein the computer hardware rapid detection equipment comprises a detection host; a control sliding block is slidably connected to the top of the left end of the rear side of the detection host, an adjustable support arm is rotatably connected in the control sliding block, an auxiliary fixing block is hingedly connected to the top of the left end of the front side of the detection host, an adjustable fixing block is slidably connected to the bottom end face of the auxiliary fixing block, a video card mounting plate is vertically installed in the middle of the top end face of the adjustable fixing block, a top supporting plate is arranged on the left side of the recess of the top of the video card mounting plate, a fixed pressing plate is hingedly connected to the left side wall of the video card mounting plate on the front side of the top supporting plate, a fixed limiting block is connected to the top of the rear end of the fixed pressing plate, and the right side top of the fixed limiting block is connected to the top of the rear side of the recess of the video card mounting plate through a locking bolt.

[0006] Further, four CPU sockets are installed on the left side of the top end face of the detection host at equal distances, a memory slot is installed on the top end face of the right side of each CPU socket, a video card slot is arranged at the corresponding position of the top end face of the detection host on the right side of the video card mounting plate and the memory slot, and twelve installation feet are installed in a rectangular array on the bottom of the detection host.

[0007] Further, two sliding supports are symmetrically arranged on the left end of the rear side of the detection host, limiting sliding grooves are formed in the front and rear side walls of the sliding supports, two control sliding blocks are symmetrically arranged on the top of the control sliding block, the limiting sliding blocks on the front and rear side walls of the two control sliding blocks are slidably connected in different limiting sliding grooves, and a supporting spring is connected to the top of the control sliding block.

[0008] Further, the rear end of the adjustable support arm is rotatably connected to a control slider on the left and right sides, and a through air duct is connected to the adjustable support arm at equal distances, the bottom of the through air duct is tapered, and the bottom is provided with an air outlet at equal distances, the position of the through air duct corresponds to the CPU socket of the detection host, and a cooling fan is installed at the top of the through air duct.

[0009] Further, the front side wall of the detection host is hingedly connected with an auxiliary fixing block at the top of the left end, an arc-shaped recessed clamping groove is formed in the middle of the bottom of the auxiliary fixing block, a adjustable fixing block is slidably connected to the middle of the top of the auxiliary fixing block, guide sliding rods are slidably connected to the auxiliary fixing block on the left and right sides of the top of the adjustable fixing block, and a adjusting screw is rotatably connected to the rotating seat in the middle of the top of the adjustable fixing block.

[0010] Further, the CPU socket, the memory slot and the graphics card slot on the top end face of the detection host are a detection channel.

[0011] The utility model provides a kind of computer hardware rapid detection equipment, with following beneficial effects:

[0012] 1. From the structure design level, the innovative combination hardware fixation and heat dissipation structure greatly improves the stability and efficiency of detection process, and the graphics card fixed structure is designed by accurate slot, firm pressing plate and limiting block, to ensure that graphics card does not move during detection, to avoid displacement interference detection result, the reasonable layout of detection channel allows simultaneously detecting multiple CPUs, memories and graphics cards, greatly improves detection efficiency, and meets the efficient needs of modern computer hardware detection.

[0013] 2. From the heat dissipation and equipment support angle, the unique CPU heat dissipation structure uses the through air duct of tapered air outlet to blow cold air evenly and efficiently to CPU surface, to prevent it from overheating due to long time high load operation, to provide guarantee for the accuracy of detection result, and the rectangular array design of mounting leg provides reliable support for detection host, reduces equipment shaking, and further ensures the reliability of detection result. ACCURACY

[0014] Figure 1 It is the right front side shaft structure schematic view of the utility model;

[0015] Figure 2 It is the left rear side shaft structure schematic view of the utility model;

[0016] Figure 3 It is the overall split structure schematic view of the utility model;

[0017] Figure 4 It is the adjustable support arm turnover structure schematic view of the utility model;

[0018] Figure 5 It is adjustable support arm bottom view structure schematic diagram of the utility model;

[0019] Figure 6 It is auxiliary fixed block cut structure schematic diagram of the utility model.

[0020] In the figure, the corresponding relationship of component name and figure number is:

[0021] 1, detection host computer;101, CPU socket;102, memory slot;103, display card mounting plate;10301, top supporting plate;104, display card slot;105, mounting foot;106, sliding support;107, limiting sliding slot;2, control sliding block;201, limiting sliding block;3, supporting spring;4, adjustable support arm;401, through air cylinder;402, air outlet;5, cooling fan;6, auxiliary fixed block;601, clamping groove;7, adjustable fixed block;701, guide sliding rod;702, rotating seat;8, adjusting screw;9, fixed limiting block;901, locking bolt;10, fixed pressing plate. DETAILED DESCRIPTION

[0022] The embodiment of the utility model is further described in detail below in combination with the drawings and examples.

[0023] Example one:

[0024] As shown in the accompanying Figure 1 to the accompanying Figure 6 As shown:

[0025] The utility model provides a kind of computer hardware rapid detection equipment, including: detection host 1, the rear side left end top of detection host 1 is slidably connected with control slider 2, adjustable support arm 4 is rotatably connected in control slider 2, the front side left end top of detection host 1 is hinged with auxiliary fixed block 6, the bottom end surface of auxiliary fixed block 6 is slidably connected with adjustable fixed block 7, the top end surface of adjustable fixed block 7 is vertically installed with video card mounting plate 103, recess is provided in the top of video card mounting plate 103, and the left side of each recess is equipped with top plate 10301, the left side wall of the front side of video card mounting plate 103 is hinged with fixed pressing plate 10, the top rear end of fixed pressing plate 10 is connected with fixed limiting block 9, the right side top of fixed limiting block 9 is connected with the recess top rear side of video card mounting plate 103 by locking bolt 901, specific effect, by the mounting plate of video card is accurately inserted into the recess of the top of video card mounting plate 103, and it is fully contacted with top plate 10301, then fixed pressing plate 10 is stably pressed on the top of video card mounting plate 103, and fixed limiting block 9 is firmly installed on the top rear end of fixed pressing plate 10 with the aid of locking bolt 901, this operation procedure can be fixed to video card stably in all directions, ensure that video card position is stable during detection, avoid to influence detection result due to shaking or displacement.

[0026] Wherein, the left side of the top end surface of detection host 1 is installed with four CPU sockets 101 at equal distance, the right side of each CPU socket 101 is installed with memory slot 102 on the top end surface of detection host 1, the right side of video card mounting plate 103 is provided with video card slot 104 at the corresponding place of the top end surface of detection host 1 and memory slot 102, the bottom of detection host 1 is installed with twelve installation legs 105 in rectangular array, the CPU socket 101, memory slot 102 and video card slot 104 in a column on the top end surface of detection host 1 are a detection channel, specific effect, the CPU socket 101, memory slot 102 and video card slot 104 arranged horizontally on the top end surface of detection host 1 jointly constitute detection channel, this design makes the detection equipment can detect multiple computer hardware, i.e. CPU, memory and video card simultaneously, greatly improves detection efficiency, the layout of different types of hardware slots is carefully planned, strictly follows the conventional combination mode of computer hardware, not only facilitates the installation and connection of hardware, but also facilitates the operation of detection personnel, wherein, CPU socket 101 is specially designed for fixing CPU, memory slot 102 is used for accurately inserting memory, and video card slot 104 is the exclusive position for installing video card, they work together, highly simulate the actual connection state of hardware in computer host, so as to realize accurate detection of hardware performance, and installation leg 105 is installed in rectangular array on the bottom of detection host 1, which provides stable and reliable support for detection host 1, ensures that the equipment does not shake during detection, and effectively guarantees the accuracy and reliability of detection results.

[0027] Two sliding supports 106 are symmetrically arranged at the left end of the rear side of the detection host 1, limit sliding grooves 107 are arranged in the front and rear side walls of the sliding support 106, two control sliding blocks 2 are symmetrically arranged, the limit sliding blocks 201 on the front and rear side walls of the control sliding block 2 are slidably connected in different limit sliding grooves 107, a support spring 3 is connected to the top of the control sliding block 2, the rear ends of the left and right sides of the adjustable supporting arm 4 are rotatably connected to one control sliding block 2, equidistantly connected adjustable supporting arm 4 is provided with a penetrating air cylinder 401, the bottom of the penetrating air cylinder 401 is tapered and equidistantly provided with an air outlet 402, the position of the penetrating air cylinder 401 corresponds to the CPU socket 101 of the detection host 1, a cooling fan 5 is installed on the top of the penetrating air cylinder 401, the specific role, the control sliding block 2 and the adjustable supporting arm 4 work together, when the adjustable supporting arm 4 is turned over, the penetrating air cylinder 401 is accurately pressed on the CPU on the top of the CPU socket 101 to be detected, the cold air generated by the cooling fan 5 will pass through the penetrating air cylinder 401 and be evenly blown out from the air outlet 402 at the bottom thereof, directly acting on the surface of the CPU, the bottom of the penetrating air cylinder 401 is designed in a tapered shape, which can make the blown air more evenly and efficiently distributed on the surface of the CPU, significantly improving the cooling effect, during the hardware detection process, the cooling structure can cool the CPU in time and effectively, effectively preventing the CPU from overheating due to long-time high-load operation, providing a solid guarantee for the accuracy and stability of the detection result.

[0028] The top of the left end of the front side wall of the detection host 1 is hingedly connected with an auxiliary fixing block 6, an arc-shaped recessed clamping groove 601 is arranged in the middle of the bottom of the auxiliary fixing block 6, an adjustable fixing block 7 is slidably connected to the middle of the top of the auxiliary fixing block 6, guide sliding rods 701 are arranged on the left and right sides of the top of the adjustable fixing block 7 and slidably connected in the auxiliary fixing block 6, a rotating seat 702 in the middle of the top of the adjustable fixing block 7 is rotatably connected with an adjusting screw 8, the adjusting screw 8 is threadedly connected in the auxiliary fixing block 6, and the specific role is that when the adjustable supporting arm 4 is in a horizontal state, the auxiliary fixing block 6 is turned over to the top of the front end of the adjustable supporting arm 4, then the adjusting screw 8 is rotated, and the rotation of the adjusting screw 8 can accurately control the adjustable fixing block 7 to approach the top of the front end of the adjustable supporting arm 4 until it is tightly attached, at this time, the adjustable fixing block 7 can apply stable pressure to the front end of the adjustable supporting arm 4, so that the bottom of the penetrating air cylinder 401 on the adjustable supporting arm 4 is tightly attached to the surface of the CPU, and the fixing of the CPU is ensured while the cooling effect is optimized.

[0029] The specific use and role of the embodiment are as follows:

[0030] In the use of the computer hardware rapid detection equipment, first, the CPU to be detected is inserted into the CPU socket 101 on the top end face of the detection host 1, ensuring that the CPU pins are accurately aligned with the socket pins, gently press the CPU to make it firmly installed in the socket, then turn the adjustable support arm 4 so that the through air cylinder 401 is aligned with the CPU installed on the top of the CPU socket 101, ensure that the bottom of the through air cylinder 401 is tightly attached to the surface of the CPU, turn on the cooling fan 5, let the cold air blow out from the bottom air outlet 402 through the through air cylinder 401, and cool the CPU, if you need to further fix the adjustable support arm 4, turn the auxiliary fixing block 6 from the left end top of the front side wall of the detection host 1 to the front end top of the adjustable support arm 4, turn the adjusting screw 8, so that the adjustable fixing block 7 is close to the front end top of the adjustable support arm 4, apply pressure to the front end of the adjustable support arm 4, ensure that the bottom of the through air cylinder 401 is always tightly attached to the CPU, then select the appropriate memory stick, vertically align it with the memory slot 102, and evenly insert the memory stick into the slot until the buckles on both sides of the memory stick automatically hold the memory stick, complete the memory installation, then insert the graphics card mounting plate into the groove on the top of the graphics card mounting plate 103, so that the mounting plate is in close contact with the top supporting plate 10301, then press the fixed pressing plate 10 on the top of the graphics card mounting plate 103, use the locking bolt 901 to install the fixed limiting block 9 on the top of the fixed pressing plate 10 rear end, firmly fix the graphics card, start the detection host 1, run the matching detection software, and operate according to the software prompts to detect the performance of the installed CPU, memory, graphics card and other hardware. During the detection process, pay close attention to the data displayed by the detection software, such as CPU operation speed, memory read / write speed, graphics processing capability of graphics card, etc.

[0031] Example two:

[0032] When detecting the CPU, memory and graphics card of a notebook computer, due to the small size and high integration of notebook hardware, the detection channel layout advantage of the detection equipment is highlighted. The notebook CPU adapter board is installed on the CPU socket 101, the adapter board can be customized according to different notebook CPU interface types, the memory slot 102 can be inserted into the notebook dedicated memory stick for detection, for notebook graphics card, the graphics card dock can be connected to the graphics card slot 104, then the notebook graphics card is connected to the graphics card dock, and the cooling structure of the equipment is used to cool the notebook CPU, simulate the actual running environment of the notebook, and comprehensively detect the hardware performance to determine whether there is compatibility or performance problem.

Claims

1. A rapid testing device for computer hardware, characterized in that: Including detection host (1), the left end top of rear side of detection host (1) is slidably connected with control slider (2), and the rotation is connected with adjustable support arm (4) in control slider (2), the left end top of front side of detection host (1) is hinged with auxiliary fixed block (6), the bottom end surface of auxiliary fixed block (6) is slidably connected with adjustable fixed block (7), the top end surface of adjustable fixed block (7) is longitudinally installed with video card mounting plate (103), the left side of recess of top end surface of video card mounting plate (103) is provided with top supporting plate (10301), the left side wall of video card mounting plate (103) of front side of top supporting plate (10301) is hinged with fixed pressing plate (10), the top rear end of fixed pressing plate (10) is connected with fixed limiting block (9), and the right side top of fixed limiting block (9) is connected in the recess top rear side of video card mounting plate (103) through locking bolt (901).

2. The computer hardware quick detection device according to claim 1, wherein: The left side of top end surface of detection host (1) is installed with four CPU sockets (101), the right side of each CPU socket (101) is installed with memory slot (102) on the top end surface of detection host (1), and the right side of video card mounting plate (103) is provided with video card slot (104) on the top end surface of detection host (1) and the corresponding place of memory slot (102), and the bottom of detection host (1) is installed with twelve installation supporting legs (105) in rectangular array.

3. The computer hardware quick detection device according to claim 1, wherein: The left end of rear side of detection host (1) is symmetrically provided with two sliding supports (106), the front and back side walls of sliding support (106) are both provided with limiting sliding slot (107), two control sliders (2) are symmetrically provided, and the limiting sliding blocks (201) on the front and back side walls of two control sliders (2) are slidably connected in different limiting sliding slots (107), and the top of control slider (2) is connected with supporting spring (3).

4. The computer hardware quick detection device according to claim 1, wherein: The rear end of adjustable support arm (4) is rotatably connected with one control slider (2) on the left and right sides, and adjustable support arm (4) is connected with through air cylinder (401) at equal intervals, the bottom of through air cylinder (401) is tapered and is provided with air outlet (402) at equal intervals, the position of through air cylinder (401) corresponds to the CPU socket (101) of detection host (1), and the top of through air cylinder (401) is provided with cooling fan (5).

5. The computer hardware quick detection device according to claim 1, wherein: The left end top of front side wall of detection host (1) is hinged with auxiliary fixed block (6), the middle of bottom of auxiliary fixed block (6) is provided with arc-shaped recessed clamping groove (601), the middle of top of clamping groove (601) is slidably connected with adjustable fixed block (7), the left and right sides of top of adjustable fixed block (7) are both provided with guide sliding rod (701) slidably connected in auxiliary fixed block (6), the rotation seat (702) in the middle of top of adjustable fixed block (7) is rotatably connected with adjusting screw (8), and adjusting screw (8) is threadedly connected in auxiliary fixed block (6).

6. The computer hardware quick detection device according to claim 1, wherein: The CPU socket (101), memory slot (102) and video card slot (104) in a column on the top end surface of detection host (1) are a detection channel.