A computer motherboard firmware function testing device
By designing a computer motherboard firmware function testing device with a rotating disk and simulated ventilation mechanism, the efficiency and accuracy issues of testing a large number of motherboards were solved, achieving efficient and accurate test results and environmental simulation, and optimizing the testing process.
Patent Information
- Application Number
- CN202510082866.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-20
- Publication Date
- 2025-12-19
- Estimated Expiration
- 2045-01-20
AI Technical Summary
Existing computer motherboard firmware function testing devices cannot achieve efficient and accurate testing of a large number of motherboards, and the testing environment differs greatly from the actual working environment, resulting in inaccurate test results.
A testing device comprising a rotary disk, a detection module, a simulated ventilation mechanism, and a feeding and conveying assembly was designed. It can realize continuous detection of multiple motherboards and simulate the actual working environment. The detection accuracy is improved by the rotary drive mechanism and the simulated ventilation mechanism.
It enables efficient and accurate testing of multiple motherboards, resulting in more accurate test results. It can simulate the real working environment, save testing processes, and improve testing efficiency.
Smart Images

Figure CN120011156B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of computer motherboard testing, and particularly relates to a computer motherboard firmware function testing device. BACKGROUND
[0002] In the current digital era, computers have become an indispensable tool in people's life and work. As one of the core components of a computer, the performance and quality of a computer motherboard directly affect the overall stability and reliability of the computer. The completeness and accuracy of the firmware function of the computer motherboard play a key role in the normal operation of the computer, so it is particularly important to comprehensively and accurately test the firmware function of the computer motherboard.
[0003] In the existing technical field of computer motherboard testing, traditional testing devices and methods have many shortcomings. In a large-scale computer motherboard production factory environment, it is necessary to test the firmware of a large number of computer motherboards. However, since the computer motherboard is a precision product, it cannot be stacked in large quantities, so it is necessary to individually take each computer motherboard from the placement table or production area to the detection area, which is very troublesome.
[0004] Secondly, the traditional test environment often has a large difference from the actual working environment of the computer motherboard. When the computer motherboard is working normally, it will be in a relatively closed and ventilated environment, and its running state will be affected by many factors such as temperature and airflow. However, many existing test devices only perform simple detection on the basic functions of the motherboard, ignoring these actual working environment factors. This makes the detection result unable to truly reflect the performance of the motherboard in the actual use process, resulting in a big discount in the accuracy of the detection data. For example, some motherboards may appear to be normal in terms of function during testing, but after being used for a period of time in actual installation, they may fail due to heat dissipation problems. This is caused by the failure to simulate the real working environment during testing.
[0005] In summary, the existing computer motherboard firmware function testing device has many problems in terms of detection environment simulation and feeding and discharging methods, and there is an urgent need for a new type of testing device to solve these problems. SUMMARY
[0006] The present application provides a computer motherboard firmware function testing device, which solves the problems raised in the background art.
[0007] To achieve the above-mentioned purpose, the present application provides the following technical solutions:
[0008] A kind of computer motherboard firmware function test device, including equipment seat, the top of the equipment seat is rotatably connected with rotary disc, rotary disc is fixed with multiple partitions, detection station is equipped between adjacent two partitions, rotary disc in detection station is placed with the motherboard to be measured, the side of each partition is fixed with detection module for detecting the motherboard to be measured, the top of the equipment seat is fixedly connected with detection cover, the both ends of detection cover are opened, and detection cover is located outside rotary disc;
[0009] The detection cover is connected with analog ventilation mechanism, and the rotary disc is connected with rotary drive mechanism.
[0010] The upper side of the equipment seat is also provided with feeding conveying assembly.
[0011] The feeding conveying assembly includes a vertical plate arranged above the equipment seat, and a mounting rod fixedly connected between the vertical plate and the detection cover.
[0012] The analog ventilation mechanism includes a wind cover arranged above the equipment seat, a plurality of air pipes fixedly connected between the wind cover and the detection cover, and a plurality of ventilation grooves formed in the side of the detection cover away from the wind cover.
[0013] As a preferred technical solution of the present application, the rotary drive mechanism includes a side drive chamber formed in the equipment seat, a drive motor fixedly arranged in the side drive chamber, a drive gear coaxially fixedly connected to the output shaft of the drive motor, a drive gear ring fixedly arranged at the bottom of the rotary disc, an annular groove corresponding to the drive gear ring formed at the top end of the equipment seat, the drive chamber and the annular groove being in communication, the drive gear ring being located in the annular groove and being in sliding connection with the annular groove, and the drive gear and the drive gear ring being in meshing connection.
[0014] As a preferred technical solution of the present application, the vertical plate is provided with a conveying drive mechanism, the conveying drive mechanism includes a transmission cover fixedly arranged on the back side of the vertical plate, a conveying motor fixedly arranged on the outside of the transmission cover, conveying rollers arranged at both ends of each feeding conveying belt, conveying shafts coaxially fixedly connected to the conveying rollers, and the output shaft of the conveying motor being coaxially fixedly connected to the conveying shafts.
[0015] As a preferred technical solution of the present application, a carrier plate is arranged directly below the two groups of feeding conveying belts.
[0016] As a preferred technical solution of the present application, the detection module includes a detection CPU and a power supply seat fixedly arranged on the partition, a plurality of plug-in connectors arranged on the side of the power supply seat, and elastic wires connected between each plug-in connector and the power supply seat.
[0017] As a preferred technical scheme of the present application, the inner side and the outer side of the rotating disc are fixedly provided with annularly arranged check rings.
[0018] As a preferred technical scheme of the present application, the air inducer is a negative pressure fan or a blower.
[0019] The present application has the following advantages: the present application can complete the sequential and continuous detection of multiple to-be-detected mainboards by arranging multiple detection stations, has the advantages of no intermediate delay and high efficiency in the detection process of the to-be-detected mainboard, can simulate the state of the computer mainboard in the normal working process by arranging the simulation ventilation mechanism and the detection cover, can make the detection result more accurate, has high detection data accuracy, can perform one-time batch feeding of multiple to-be-detected mainboards, and sequentially and automatically discharges each to-be-detected mainboard, has the capability of automatic discharge, can obviously save the test process, optimize the test process, and has strong auxiliary capability for computer mainboard testing. BRIEF DESCRIPTION OF DRAWINGS
[0020] Figure 1 It is a front side structure schematic view of the computer mainboard firmware function test device.
[0021] Figure 2 It is a rear side structure schematic view of the computer mainboard firmware function test device.
[0022] Figure 3 It is a partial three-dimensional structure schematic view of the computer mainboard firmware function test device.
[0023] Figure 4 It is a structure schematic view of the simulation ventilation mechanism in the computer mainboard firmware function test device.
[0024] Figure 5 It is a structure schematic view of the rotating drive mechanism in the computer mainboard firmware function test device.
[0025] Figure 6 It is a structure schematic view of the detection module in the computer mainboard firmware function test device.
[0026] In the figure: 1, equipment seat; 2, rotating disc; 3, partition; 4, detection module; 5, to-be-detected mainboard; 6, detection cover; 7, vertical plate; 8, feeding conveyor belt; 9, feeding conveying plate; 10, carrier plate; 11, air duct; 12, mounting rod; 13, transmission cover; 14, conveying motor; 15, ventilation groove; 16, air cover; 17, air pipe; 18, air inducer; 19, drive gear ring; 20, side drive chamber; 21, drive motor; 22, drive gear; 23, detection cpu; 24, power supply seat; 25, elastic wire; 26, plug. DETAILED DESCRIPTION
[0027] The preferred embodiments of the present application will be described below with reference to the drawings, and it should be understood that the preferred embodiments described herein are merely intended to illustrate and explain the present application, and are not intended to limit the present application.
[0028] It should be noted that the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the present application.
[0029] Please refer to Figures 1-6 A computer mainboard firmware function test device, comprising a device seat 1, a rotating disc 2 is rotatably connected to the top of the device seat 1, a plurality of partitions 3 are fixedly arranged on the rotating disc 2, a detection station is arranged between two adjacent partitions 3, and a mainboard to be tested 5 is placed on the rotating disc 2 in the detection station; a detection cover 6 is fixedly connected to the top of the device seat 1, both ends of the detection cover 6 are open, and the detection cover 6 is located outside the rotating disc 2;
[0030] The detection cover 6 is connected with an artificial ventilation mechanism, and the rotating disc 2 is connected with a rotating drive mechanism;
[0031] The device seat 1 is further provided with a feeding conveying assembly above;
[0032] The feeding conveying assembly comprises a vertical plate 7 arranged above the device seat 1, a mounting rod 12 fixedly connected between the vertical plate 7 and the detection cover 6, two groups of feeding conveying belts 8 arranged on one side of the vertical plate 7, and a plurality of feeding conveying plates 9 fixedly arranged outside the two groups of feeding conveying belts 8;
[0033] The artificial ventilation mechanism comprises a wind cover 16 arranged above the device seat 1, a plurality of air pipes 17 fixedly connected between the wind cover 16 and the detection cover 6, a plurality of ventilation grooves 15 arranged on the side of the detection cover 6 away from the wind cover 16, a wind channel 11 arranged in the device seat 1 and communicating with the wind cover 16, and an air guide fan 18 arranged in the wind channel 11.
[0034] The rotating drive mechanism comprises a side drive chamber 20 arranged in the device seat 1, a drive motor 21 fixedly arranged in the side drive chamber 20, a drive gear 22 coaxially fixedly connected to the output shaft of the drive motor 21, a drive gear ring 19 fixedly arranged at the bottom of the rotating disc 2, a ring-shaped groove arranged at the top end of the device seat 1 and corresponding to the drive gear ring 19, the drive chamber and the ring-shaped groove being in communication, the drive gear ring 19 being located in the ring-shaped groove and being in sliding connection with the ring-shaped groove, and the drive gear 22 being in meshing connection with the drive gear ring 19.
[0035] The vertical plate 7 is provided with a conveying driving mechanism, the conveying driving mechanism comprises a transmission cover 13 fixedly arranged on the back side of the vertical plate 7, a conveying motor 14 is fixedly arranged outside the transmission cover 13, conveying rollers are arranged at both ends in each upper feeding conveying belt 8, the conveying rollers are coaxially fixedly connected with conveying shafts, and the output shaft of the conveying motor 14 is coaxially fixedly connected with the conveying shafts.
[0036] A loading plate 10 is arranged below the two groups of upper feeding conveying belts 8, the loading plate 10 is arranged obliquely, and the loading plate 10 can be fixedly connected with the detection cover 6 or the air cover 16.
[0037] The detection module 4 comprises a detection CPU 23 and a power supply seat 24 fixedly arranged on the partition plate 3, a plurality of plug-in connectors 26 are arranged on one side of the power supply seat 24, and elastic wires 25 are connected between each plug-in connector 26 and the power supply seat 24.
[0038] The inner side and the outer side of the rotating disc 2 are fixedly provided with annular retaining rings.
[0039] The air suction fan 18 is a negative pressure fan or a blower.
[0040] In the implementation process of the present application, firstly, the conveying motor 14 is controlled to start, and the two upper feeding conveying belts 8 are driven to operate synchronously, then a plurality of to-be-detected test mainboards 5 are placed on the plurality of upper feeding conveying plates 9, so that the plurality of test mainboards 5 are stacked from top to bottom, and the two groups of upper feeding conveying belts 8 are filled with the test mainboards 5.
[0041] With the operation of the upper feeding conveying belt 8, the test mainboard 5 at the lowermost position falls onto the loading plate 10, the test mainboard 5 slides and moves to the detection station between the two partition plates 3 on the obliquely arranged loading plate 10, and then the plug-in connector 26 is plugged into the plug-in hole of the test mainboard 5.
[0042] Then the driving motor 21 is controlled to start, the driving motor 21 drives the driving gear 22 to rotate, the driving gear ring 19 and the rotating disc 2 are synchronously rotated, the rotating disc 2 drives the test mainboard 5 which is ready for detection to enter the detection cover 6, a relatively sealed space is formed between the two partition plates 3 and the detection cover 6, so that the detection environment conforms to the operation environment in the computer case, then the power supply seat 24 supplies power to the detection CPU 23 and the plug-in connector 26, and the test mainboard 5 is detected, in the detection process, the test mainboard 5 and the detection CPU 23 generate heat, the air suction fan 18 is controlled to start, so that the air in the detection cover 6 flows, the process of the fan in the computer mainframe in the operation process is simulated, after the detection is completed, the driving motor 21 is controlled to drive the rotating disc 2 to continue to rotate, so that the detected mainboard is moved out of the detection cover 6, and the plug-in connector 26 is pulled out of the mainboard.
[0043] Finally, it should be noted that the above only describes the preferred embodiments of the present application and is not intended to limit the present application. Although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art will appreciate that the technical solutions described in the foregoing embodiments can be modified or some technical features thereof can be replaced by equivalent ones. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.
Claims
1. A computer mainboard firmware function testing device, comprising a device seat (1), characterized in that, The top of the equipment seat (1) is rotationally connected with a rotating disc (2), a plurality of partitions (3) are fixedly arranged on the rotating disc (2), detection stations are arranged between adjacent two partitions (3), the rotating disc (2) in the detection station is arranged with a mainboard (5) to be detected, one side of each partition (3) is fixedly arranged with a detection module (4) for detecting the mainboard (5) to be detected, the top of the equipment seat (1) is fixedly connected with a detection cover (6), the two ends of the detection cover (6) are open, and the detection cover (6) is located outside the rotating disc (2); The detection cover (6) is connected with an analog ventilation mechanism, and the rotating disc (2) is connected with a rotating driving mechanism; The equipment seat (1) is further provided with a feeding conveying assembly above the equipment seat (1); The feeding conveying assembly comprises a vertical plate (7) arranged above the equipment seat (1), a mounting rod (12) fixedly connected between the vertical plate (7) and the detection cover (6), two groups of feeding conveying belts (8) arranged on one side of the vertical plate (7), and a plurality of feeding conveying plates (9) fixedly arranged outside the two groups of feeding conveying belts (8). The analog ventilation mechanism comprises a wind cover (16) arranged above the equipment seat (1), a plurality of air pipes (17) fixedly connected between the wind cover (16) and the detection cover (6), a plurality of ventilation grooves (15) formed in the side of the detection cover (6) away from the wind cover (16), and an air duct (11) formed in the equipment seat (1) and communicating with the wind cover (16), wherein an air blower (18) is arranged in the air duct (11). The rotating driving mechanism comprises a side driving chamber (20) formed in the equipment seat (1), a driving motor (21) fixedly arranged in the side driving chamber (20), a driving gear (22) coaxially fixedly connected with an output shaft of the driving motor (21), a driving gear ring (19) fixedly arranged at the bottom of the rotating disc (2), a ring-shaped groove corresponding to the driving gear ring (19) formed at the top end of the equipment seat (1), the driving chamber and the ring-shaped groove being in communication, the driving gear ring (19) being located in the ring-shaped groove and being in sliding connection with the ring-shaped groove, and the driving gear (22) being in meshing connection with the driving gear ring (19). The vertical plate (7) is provided with a conveying driving mechanism, the conveying driving mechanism comprises a transmission cover (13) fixedly arranged on the back side of the vertical plate (7), a conveying motor (14) fixedly arranged outside the transmission cover (13), conveying rollers arranged at both ends in each feeding conveying belt (8), conveying shafts coaxially fixedly connected with the conveying rollers, and an output shaft of the conveying motor (14) coaxially fixedly connected with the conveying shafts. The detection module (4) comprises a detection CPU (23) and a power supply seat (24) fixedly arranged on the partition (3), a plurality of plug-in connectors (26) arranged on one side of the power supply seat (24), and an elastic wire (25) connected between each plug-in connector (26) and the power supply seat (24).
2. The computer motherboard firmware function testing device of claim 1, wherein, A carrier plate (10) is arranged below the two groups of feeding conveying belts (8).
3. The computer motherboard firmware function testing device of claim 1, wherein, The inner side and the outer side of the rotating disc (2) are fixedly arranged with annular retaining rings.
4. The computer motherboard firmware function testing device of claim 1, wherein, The air blower (18) is a negative pressure blower or a blower.
Citation Information
Patent Citations
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CN113484769A
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CN117110911A