Adjustable chip visual inspection device

By designing an adjustable chip visual inspection device, the chip is automatically flipped and double-sided detection using components such as clamps, screws and motors, the problem of low chip detection efficiency in the existing technology is solved, the detection efficiency and accuracy are improved, and manual operation is reduced.

CN223166626UActive Publication Date: 2025-07-29SUZHOU NAVITECH ELECTRONIC TECH CO LTD
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Patent Information

Application Number
CN202421955115.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-13
Publication Date
2025-07-29
Estimated Expiration
2034-08-13

AI Technical Summary

Technical Problem

Existing chip detection equipment can only realize single-sided detection of the chip, and cannot flip the back of the chip, and it needs to be flipped manually, resulting in insufficiency of detection.

Method used

An adjustable chip visual detection device is designed. By setting up components such as clamps, screws and motors, the chip is automatically flipped and double-sided detection, combined with buffer pads to prevent chip damage, the position and height of the detection components are adjusted using sliders and tracks, and LED lights provide a bright detection environment, and automated operations are achieved through controllers and display operators.

Benefits of technology

It realizes automatic detection of the chip on both sides, improves detection efficiency, reduces manual flip steps, protects the chip from damage, and improves detection accuracy and operation convenience.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223166626U_ABST
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Abstract

The utility model relates to the technical field of chip visual inspection devices, in particular to an adjustable chip visual inspection device which comprises a working table, supporting legs are arranged at the lower end of the working table, a first track is arranged at the upper end of the working table, a first sliding block is arranged on the first track in a sliding mode, and a second sliding block is arranged on the second track in a sliding mode. A fixing column is fixed to the upper end of the first sliding block, a second motor is arranged on one side of the fixing column, a guide rail is connected to one side of the second motor through a shaft, and fixing plates are arranged at the two ends of the guide rail. The clamping plates are arranged to clamp the chip, the screw rod is arranged to adjust the distance between the clamping plates, and the first motor is arranged to realize rotation of the clamping plates, so that detection of two surfaces of the chip can be realized.
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Description

Technical Field

[0001] The utility model relates to the technical field of an adjustable chip vision detection device, in particular to an adjustable chip vision detection device. Background Technique

[0002] When producing some chips for electronic product motherboards, after production, it is necessary to first detect the appearance to ensure the integrity of the appearance, and then conduct tests before they can be put on the market. The traditional chip detection methods are manual detection and automated detection, each with its own advantages and disadvantages, and it is necessary to select a suitable method for appearance detection according to specific requirements.

[0003] Automated detection is a technology based on computer vision and image processing. By performing operations such as preprocessing, feature extraction, and matching on appearance images, automated detection of the appearance is achieved, which has advantages such as high efficiency and accuracy.

[0004] The following disadvantages exist in existing detection equipment:

[0005] When detecting chips, the detection equipment can only detect one side of the chip and cannot flip the chip to detect the back side of the chip, which requires manual flipping, increasing manual labor and reducing the detection efficiency. Content of the Utility Model

[0006] (1) Technical Problems to be Solved

[0007] In view of the deficiencies of the prior art, the utility model provides an adjustable chip vision detection device, which solves the problem that when detecting chips, it can only detect one side of the chip and cannot flip the chip to detect the back side of the chip, which requires manual flipping, increasing manual labor and reducing the detection efficiency.

[0008] (2) Technical Solutions

[0009] To achieve the above objectives, the utility model is realized through the following technical solutions: It includes a workbench, and is characterized in that: legs are provided at the lower end of the workbench, a first track is provided at the upper end of the workbench, a first slider is slidably provided on the first track, a fixed column is fixed at the upper end of the first slider, a second motor is provided on one side of the fixed column, a guide rail is connected to the second motor through a shaft on one side, fixing plates are provided at both ends of the guide rail, a first motor is fixedly provided on one side of the fixing plate, a second screw rod is provided on one side of the first motor, a support plate is provided at one end of the second screw rod, a third slider is threadedly connected to the second screw rod, a first clamping plate is fixed on one side of the third slider, a second clamping plate is provided on the opposite side of the first clamping plate, and buffer pads are respectively provided on the opposite surfaces of the second clamping plate and the first clamping plate.

[0010] As a preferred embodiment of the present utility model, a second track is fixed to the upper end of the workbench, and a third motor is fixed to the upper end of the second track.

[0011] As a preferred embodiment of the present utility model, a first screw rod is connected to the bottom of the third motor, and a second slider is arranged on the first screw rod in a threaded manner.

[0012] As a preferred embodiment of the present utility model, a telescopic rod is fixed to the front end of the second slider through a bolt, and a fixed block is fixed to the front end of the telescopic rod.

[0013] As a preferred embodiment of the present utility model, a detection head assembly is fixedly arranged through the fixed block.

[0014] As a preferred embodiment of the present utility model, several LED lights are fixed to the bottom end of the fixed block through bolts.

[0015] As a preferred embodiment of the present utility model, a bearing is arranged on the upper end of the second track, and the bearing is sleeved on the bottom end of the first screw rod.

[0016] As a preferred embodiment of the present utility model, a controller is arranged on the upper end of the workbench. The controller is electrically connected to other electrical devices. A bracket is fixed to the upper end of the workbench through a bolt, and a display operator is fixed to the upper end of the bracket.

[0017] (III) Beneficial effects

[0018] The present utility model provides an adjustable chip vision detection device, which has the following beneficial effects:

[0019] 1. The adjustable chip vision detection device of the present utility model is provided with clamping plates for clamping the chip, a screw rod for adjusting the distance between the clamping plates, and a first motor. The rotation of the clamping plates can be realized, and the detection of both sides of the chip can be achieved.

[0020] 2. The adjustable chip vision detection device of the present utility model is provided with buffer pads for buffering the clamping of the chip to prevent damage to the chip during clamping.

[0021] 3. The adjustable chip vision detection device of the present utility model is provided with sliders, and the adjustment of the telescopic height of the detection assembly can be realized. Brief description of the drawings

[0022] The drawings are used to provide a further understanding of the present utility model, and constitute a part of the specification. Together with the embodiments of the present utility model, they are used to explain the present utility model, and do not constitute a limitation to the present utility model. In the drawings:

[0023] Figure 1 is a schematic diagram of the overall structure of the present utility model;

[0024] Figure 2 This is the schematic diagram of the main structure of the utility model;

[0025] Figure 3 This is the schematic diagram of the right structure of the utility model;

[0026] Figure 4 This is the schematic diagram of the partial structure of the clamping plate of the utility model;

[0027] In the figure: 1, leg; 2, workbench; 3, first slider; 4, first track; 5, fixed column; 6, first motor; 7, second motor; 8, guide rail; 9, buffer pad; 10, first clamping plate; 11, second clamping plate; 12, fixed block; 13, detection head assembly; 14, third motor; 15, second slider; 16, telescopic rod; 17, LED lamp; 18, first screw; 19, display operator; 20, controller; 21, bracket; 22, bearing; 23, third slider; 24, second screw; 25, fixed plate; 26, support plate; 27, second track. Specific embodiments

[0028] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Based on the embodiments in the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.

[0029] Please refer to Figures 1 to 4 , the present utility model provides a technical solution: an adjustable chip vision detection device, including a workbench 2, legs 1 are provided at the lower end of the workbench 2, a first track 4 is provided at the upper end of the workbench 2, a first slider 3 is slidably provided on the first track 4, a fixed column 5 is fixed at the upper end of the first slider 3, a second motor 7 is provided on one side of the fixed column 5, a guide rail 8 is connected to the second motor 7 through a shaft on one side, fixing plates 25 are provided at both ends of the guide rail 8, a first motor 6 is fixedly provided on one side of the fixing plate 25, a second screw 24 is provided on one side of the first motor 6, a support plate 26 is provided at one end of the second screw 24, a third slider 23 is threadedly connected to the second screw 24, a first clamping plate 10 is fixed on one side of the third slider 23, a second clamping plate 11 is provided on the opposite side of the first clamping plate 10, and buffer pads 9 are respectively provided on the opposite surfaces of the second clamping plate 11 and the first clamping plate 10.

[0030] In a specific embodiment of the present utility model, legs 1 are provided at the lower end of the workbench 2 for supporting the entire device. A first track 4 is provided at the upper end of the workbench 2 for providing a sliding track for the first slider 3. The first slider 3 is slidably arranged on the first track 4 and can move on both sides during chip detection. A fixed column 5 is fixed at the upper end of the first slider 3 for installing and fixing the second motor 7. A second motor 7 is arranged on one side of the fixed column 5 to rotate the guide rail 8, enabling double-sided chip detection. The second motor 7 is connected to the guide rail 8 through a shaft on one side for installing the fixing plate 25. Fixing plates 25 are provided at both ends of the guide rail 8 for installing and fixing the first motor 6. A first motor 6 is fixedly arranged on one side of the fixing plate 25 to drive the second screw rod 24 to rotate and control the distance between the clamping plates, realizing the clamping of the chip. A second screw rod 24 is arranged on one side of the first motor 6 for threadedly connecting the third slider 23. A support plate 26 is provided at one end of the second screw rod 24 to assist in supporting the second screw rod 24 and ensure the stable operation of the second screw rod 24. The second screw rod 24 is threadedly connected to the third slider 23 for installing the first clamping plate 10. A first clamping plate 10 is fixed on one side of the third slider 23. A second clamping plate 11 is arranged on the opposite side of the first clamping plate 10, and the chip is clamped through the cooperation of the two. Buffer pads 9 are respectively arranged on the opposite surfaces of the second clamping plate 11 and the first clamping plate 10 to provide buffering for chip clamping and prevent chip damage during clamping.

[0031] Specifically, a second track 27 is fixed at the upper end of the workbench 2, and a third motor 14 is fixed at the upper end of the second track 27.

[0032] To solve the problem of installing other devices, such as Figure 1 As shown, a second track 27 is fixed at the upper end of the workbench 2 for installing the third motor 14. The third motor 14 is fixed at the upper end of the second track 27 to provide driving force for the movement of other devices.

[0033] Specifically, the bottom of the third motor 14 is connected to a first screw rod 18, and the second slider 15 is threadedly arranged on the first screw rod 18.

[0034] To solve the problem of the second slider being movable up and down, such as Figure 1 As shown, the bottom of the third motor 14 is connected to a first screw rod 18 for realizing the vertical height adjustment of the second slider 15. The second slider 15 is threadedly arranged on the first screw rod 18 for installing and providing support for the installation of other devices.

[0035] Specifically, a telescopic rod 16 is fixed at the front end of the second slider 15 through a bolt, and a fixed block 12 is fixed at the front end of the telescopic rod 16.

[0036] To solve the problem that the detection component can be telescopically adjusted, such as Figure 1As shown in the figure, a telescopic rod 16 is fixed to the front end of the second slider 15, which is used to fixedly install the fixing block 12 and can realize front-back telescopic adjustment at the same time. The fixing block 12 is fixed to the front end of the telescopic rod 16 and is used to install and fix other devices.

[0037] Specifically, a detection head assembly 13 is fixedly penetrated through the fixing block 12.

[0038] To solve the problem of chip detection, such as Figure 1 As shown in the figure, a detection head assembly 13 is fixedly penetrated through the fixing block 12, which is used to realize chip detection. At the same time, multiple parts are adjusted cooperatively, so that the detection head assembly 13 can always be directly above the chip, improving the detection accuracy.

[0039] Specifically, several LED lights 17 are fixed to the bottom end of the fixing block 12 by bolts.

[0040] To solve the problem that the detection component can take clear pictures, such as Figure 1 As shown in the figure, several LED lights 17 are fixed to the bottom end of the fixing block 12, providing a bright detection environment for the detection head assembly 13 to detect.

[0041] Specifically, a bearing 22 is arranged at the upper end of the second track 27, and the bearing 22 is sleeved on the bottom end of the first screw rod 18.

[0042] To solve the problem of the stable operation of the first screw rod, such as Figure 1 As shown in the figure, a bearing 22 is arranged at the upper end of the second track 27, and the bearing 22 is sleeved on the bottom end of the first screw rod 18, making the operation of the first screw rod 18 more stable.

[0043] Specifically, a controller 20 is arranged at the upper end of the workbench 2. The controller 20 is electrically connected to other electrical devices. A bracket 21 is fixed to the upper end of the workbench 2 by bolts, and a display operator 19 is fixed to the upper end of the bracket 21.

[0044] To solve the problem of the operation control of the device, such as Figure 1 As shown in the figure, a controller 20 is arranged at the upper end of the workbench 2. The controller 20 is electrically connected to other electrical devices and controls them. A bracket 21 is fixed to the upper end of the workbench 2 for installing the display operator 19, and a display operator 19 is fixed to the upper end of the bracket 21 for displaying various data recorded by the detection head assembly 13 during detection. At the same time, the user can operate the device through the display operator 19.

[0045] In the specific implementation manner of the present disclosure, the detailed descriptions of known functions and known components are omitted. To ensure the compatibility of the device, the operation means adopted are all consistent with the parameters of market instruments.

[0046] In summary, the working principle and usage process of the present utility model are as follows: Legs 1 are provided at the lower end of the workbench 2 to support the entire device. A first rail 4 is provided at the upper end of the workbench 2 to provide a sliding rail for the first slider 3. The first slider 3 is slidably arranged on the first rail 4 and can move on both sides during chip detection. A fixed column 5 is fixed at the upper end of the first slider 3 to install and fix the second motor 7. A second motor 7 is provided on one side of the fixed column 5 to rotate the guide rail 8, enabling double-sided chip detection. The second motor 7 is connected to the guide rail 8 through a shaft on one side to install the fixing plate 25. Fixing plates 25 are provided at both ends of the guide rail 8 to install and fix the first motor 6. A first motor 6 is fixedly arranged on one side of the fixing plate 25 to drive the second screw rod 24 to rotate and control the distance between the clamping plates, realizing the clamping of the chip. A second screw rod 24 is provided on one side of the first motor 6 for threaded connection with the third slider 23. A support plate 26 is provided at one end of the second screw rod 24 to assist in supporting the second screw rod 24 and making the operation of the second screw rod 24 stable. The second screw rod 24 is threadedly connected with the third slider 23 to install the first clamping plate 10. A first clamping plate 10 is fixed on one side of the third slider 23. A second clamping plate 11 is provided on the opposite side of the first clamping plate 10, and the clamping of the chip is realized through the cooperation of the two. Buffer pads 9 are respectively provided on the opposite surfaces of the second clamping plate 11 and the first clamping plate 10 to provide buffering for chip clamping and prevent chip damage during clamping. A second rail 27 is fixed at the upper end of the workbench 2 to install the third motor 14. The third motor 14 is fixed at the upper end of the second rail 27 to provide driving force for the movement of other devices. The bottom of the third motor 14 is connected to a first screw rod 18 to realize the up and down height adjustment of the second slider 15. The first screw rod 18 is threadedly arranged with the second slider 15 to install and provide support for other devices. A telescopic rod 16 is fixed at the front end of the second slider 15 to fixedly install the fixing block 12 and can also realize front and back telescopic adjustment. The fixing block 12 is fixed at the front end of the telescopic rod 16 to install and fix other devices. A detection head assembly 13 is fixed through the fixing block 12 to realize chip detection. At the same time, through the coordinated adjustment of multiple parts, the detection head assembly 13 can always be directly above the chip, improving the detection accuracy. Several LED lights 17 are fixed at the bottom end of the fixing block 12 to provide a bright detection environment for the detection of the detection head assembly 13. A bearing 22 is provided at the upper end of the second rail 27, and the bearing 22 is sleeved at the bottom end of the first screw rod 18 to make the operation of the first screw rod 18 more stable. A controller 20 is provided at the upper end of the workbench 2. The controller 20 is electrically connected to other electrical devices and controls them. A bracket 21 is fixed at the upper end of the workbench 2 to install the display operator 19. The display operator 19 is fixed at the upper end of the bracket 21 to display various data recorded by the detection head assembly 13 during detection. At the same time, the user can operate the device through the display operator 19.

[0047] Although embodiments of the present utility model have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present utility model. The scope of the present utility model is defined by the appended claims and their equivalents.

Claims

1. An adjustable chip vision detection device, characterized in that: It includes a workbench (2), legs (1) are provided at the lower end of the workbench (2), a first track (4) is provided at the upper end of the workbench (2), a first slider (3) is slidably arranged on the first track (4), a fixing column (5) is fixed to the upper end of the first slider (3), a second motor (7) is arranged on one side of the fixing column (5), a guide rail (8) is connected to the second motor (7) through a shaft on one side, fixing plates (25) are arranged at both ends of the guide rail (8), a first motor (6) is fixedly arranged on one side of the fixing plate (25), a second screw rod (24) is arranged on one side of the first motor (6), a support plate (26) is arranged at one end of the second screw rod (24), a third slider (23) is threadedly connected to the second screw rod (24), a first clamping plate (10) is fixed to one side of the third slider (23), a second clamping plate (11) is arranged on the opposite side of the first clamping plate (10), and buffer pads (9) are respectively arranged on the opposite surfaces of the second clamping plate (11) and the first clamping plate (10).

2. An adjustable chip vision detection device according to claim 1, characterized in that: A second track (27) is fixed to the upper end of the workbench (2), and a third motor (14) is fixed to the upper end of the second track (27).

3. An adjustable chip vision detection device according to claim 2, characterized in that: The bottom of the third motor (14) is connected to a first screw rod (18), and a second slider (15) is threadedly arranged on the first screw rod (18).

4. An adjustable chip vision detection device according to claim 3, characterized in that: The front end of the second slider (15) is fixed to a telescopic rod (16) through a bolt, and a fixing block (12) is fixed to the front end of the telescopic rod (16).

5. An adjustable chip vision detection device according to claim 4, characterized in that: A detection head assembly (13) is fixedly arranged through the fixing block (12).

6. An adjustable chip vision detection device according to claim 5, characterized in that: Several LED lights (17) are fixed to the bottom end of the fixing block (12) through bolts.

7. An adjustable chip vision detection device according to claim 6, characterized in that: A bearing (22) is arranged at the upper end of the second track (27), and the bearing (22) is sleeved on the bottom end of the first screw rod (18).

8. An adjustable chip vision detection device according to claim 7, characterized in that: A controller (20) is arranged at the upper end of the workbench (2), the controller (20) is electrically connected to other electrical devices, a bracket (21) is fixed to the upper end of the workbench (2) through bolts, and a display operator (19) is fixed to the upper end of the bracket (21).

Citation Information

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