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A fast non-destructive defect detection method for complex PCB surfaces

机译:复杂PCB表面的快速无损缺陷检测方法

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In the manufacturing process of a ceramic resonant cavity with a PCB, different components of the PCB have different light reflectivity, which greatly reduce the defect detection accuracy. In this paper, a defect detection system with its defect detection algorithm for complex PCB surface is proposed, which is suitable for manufacturing workshop. Some images of good samples are selected in advance and are fused as the template image. Then the template image is divided into three parts due to the light reflectivity of different material bases. Through the template matching between the template image and the image to be detected, an affine transformation matrix is obtained. After matching, the difference between the template and the target image can greatly reduce the interference caused by the different light reflectivity of the material base, and improve the detection efficiency of cross-regional defects. The algorithm has been well applied in actual production. At present, the number of samples detected has exceeded 100,000, and the average detection speed is about 1s/piece. Using the result of manual inspection as standard, every actual defective sample is selected, and the precision rate of samples is 98.3%.
机译:在具有PCB的陶瓷谐振腔的制造过程中,PCB的不同部件具有不同的光反射率,这大大降低了缺陷检测精度。本文提出了一种缺陷检测系统,其具有其缺陷PCB表面的缺陷检测算法,适用于制造车间。提前选择一些良好样本的图像,并融合为模板图像。然后由于不同材料碱基的光反射率,模板图像被分成三个部分。通过模板图像与要检测的图像之间的模板匹配,获得仿射变换矩阵。在匹配之后,模板和目标图像之间的差异可以大大减少由材料基础的不同光反射率引起的干扰,并提高跨区域缺陷的检测效率。该算法在实际生产中得到了很好应用。目前,检测到的样品数量超过100,000,并且平均检测速度为约1s /件。使用手动检查结果作为标准,选择了每种实际缺陷的样本,样品的精度率为98.3%。

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