一种上下同步检测的视觉检测机构

By using a dual-platform, dual-camera inspection system with synchronized upper and lower inspection mechanisms, the problem of long product flipping inspection time in existing technologies has been solved, achieving efficient upper and lower surface inspection and improving production efficiency.

CN224518567UActive Publication Date: 2026-07-17KUNSHAN PUJIEKETE SEMICON CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
KUNSHAN PUJIEKETE SEMICON CO LTD
Filing Date
2025-06-13
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

In existing technologies, the inspection of the upper and lower surfaces of a product requires flipping it over, resulting in excessively long inspection times and low production efficiency.

Method used

The system employs a dual-platform, dual-camera inspection system. Through two sets of moving axes and corresponding camera vision inspection modules, it achieves synchronous inspection of the upper and lower surfaces of the product. The first camera vision inspection mechanism and the second camera vision inspection mechanism respectively inspect the upper and lower surfaces of the product.

Benefits of technology

This reduces the back-and-forth movement of the moving axis, lowers inspection time, and improves production efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

本实用新型涉及视觉检测技术领域,尤其涉及一种上下同步检测的视觉检测机构。其包括大理石平台、设置在所述大理石平台上的驱动模组、设置在所述大理石平台上的视觉检测支架、设置在所述视觉检测支架一侧的第一相机视觉检测机构以及设置在所述视觉检测支架另一侧的第二相机视觉检测机构。本实用新型的有益之处:本技术方案设置两套移动轴,每个检测项目使用上下两套相机检测系统,采用双平台,双相机检测系统,以针对不同的检测要求,使得移动轴不需要来回移动,检测时长降低,生产效率提升。
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Claims

1. A visual inspection mechanism for up-down synchronous detection, comprising a marble platform, a driving module arranged on the marble platform, a visual inspection support arranged on the marble platform, characterized in that: It also includes a first camera visual inspection mechanism disposed on one side of the visual inspection bracket and a second camera visual inspection mechanism disposed on the other side of the visual inspection bracket. The first camera visual inspection mechanism includes a first upper visual inspection module and a first lower visual inspection module disposed vertically and correspondingly. The second camera visual inspection mechanism includes a second upper visual inspection module and a second lower visual inspection module disposed vertically and correspondingly.

2. The vision inspection mechanism of claim 1, wherein: The first camera vision inspection mechanism and the second camera vision inspection mechanism are on the same horizontal line.

3. The vision inspection mechanism of claim 1, wherein: The drive module includes an X-axis transverse linear motor module mounted on a marble platform, a mounting plate of the X-axis transverse linear motor module, a Y-axis linear motor module mounted on the mounting plate, a fixture mounting plate driven by the Y-axis linear motor module, and a fixture mounted on the fixture mounting plate.

4. The vision inspection mechanism of claim 1, wherein: The first upper vision detection module includes a first upper drive module disposed on the vision detection bracket, a first upper camera mounting base driven by the first upper drive module, a first upper camera mounted on the first upper camera mounting base, and a first upper light source assembly mounted on the first upper camera mounting base and positioned below the lens of the first upper camera. The first lower vision detection module includes a first lower mounting base disposed on the marble platform, a first lower drive module disposed on the first lower mounting base, a first lower camera mounting base driven by the first lower drive module, a first lower camera lens mounted on the first lower camera mounting base, and a first lower light source assembly disposed on the first lower camera lens. The first upper light source assembly and the first lower light source assembly have the same structure, are arranged vertically and vertically, and are arranged in a conical structure, which includes several stacked light source layers.

5. The vision inspection mechanism of claim 1, wherein: The second upper visual inspection module includes a second upper drive module disposed on the visual inspection bracket, a second upper camera mounting base driven by the second upper drive module, a second upper camera mounted on the second upper camera mounting base, and a second upper light source assembly mounted on the second upper camera mounting base and positioned below the lens of the second upper camera. The second lower visual inspection module includes a second lower mounting base disposed on the marble platform, a second lower drive module disposed on the second lower mounting base, a second lower camera mounting base driven by the second lower drive module, a second lower camera lens mounted on the second lower camera mounting base, and a second lower light source assembly disposed on the second lower camera lens.

6. The vision inspection mechanism of claim 5, wherein: The second upper light source assembly and the second lower light source assembly have the same structure, including a beam splitter of a semi-reflective mirror placed in front of the camera lens, and the beam splitter is set perpendicular to the light emission direction of the camera lens.