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PCB Fault Detection Using Image Processing

机译:使用图像处理PCB故障检测

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摘要

The importance of the Printed Circuit Board inspection process has been magnified by requirements of the modern manufacturing environment where delivery of 100% defect free PCBs is the expectation. To meet such expectations, identifying various defects and their types becomes the first step. In this PCB inspection system the inspection algorithm mainly focuses on the defect detection using the natural images. Many practical issues like tilt of the images, bad light conditions, height at which images are taken etc. are to be considered to ensure good quality of the image which can then be used for defect detection. Printed circuit board (PCB) fabrication is a multidisciplinary process, and etching is the most critical part in the PCB manufacturing process. The main objective of Etching process is to remove the exposed unwanted copper other than the required circuit pattern. In order to minimize scrap caused by the wrongly etched PCB panel, inspection has to be done in ear71y stage. However, all of the inspections are done after the etching process where any defective PCB found is no longer useful and is simply thrown away. Since etching process costs 0% of the entire PCB fabrication, it is uneconomical to simply discard the defective PCBs . In this paper a method to identify the defects in natural PCB images and associated practical issues are addressed using Software tools and some of the major types of single layer PCB defects are Pattern Cut, Pin hole, Pattern Short, Nick etc., Therefore the defects should be identified before the etching process so that the PCB would be reprocessed. In the present approach expected to improve the efficiency of the system in detecting the defects even in low quality images
机译:印刷电路板检查过程的重要性已通过现代制造环境的要求放大,其中100%缺陷免费PCB的交付是期望。为了满足此类期望,识别各种缺陷及其类型成为第一步。在该PCB检测系统中,检查算法主要专注于使用自然图像的缺陷检测。许多实际问题,如图像的倾斜,光线状况不佳,拍摄图像的高度等被认为是确保可以用于缺陷检测的良好质量。印刷电路板(PCB)制造是多学科工艺,蚀刻是PCB制造过程中最关键的部分。蚀刻过程的主要目的是除去除了所需电路图案之外的暴露的不需要的铜。为了最大限度地减少由错误蚀刻的PCB面板引起的废料,检查必须在EAR71Y阶段进行检查。然而,所有检查都在蚀刻过程之后完成,其中发现任何有缺陷的PCB不再有用并且简单地抛弃。由于蚀刻工艺成本为整个PCB制造的0%,因此简单地丢弃缺陷的PCB是不经济的。在本文中,使用软件工具识别天然PCB图像中的缺陷和相关实际问题的方法,以及一些主要类型的单层PCB缺陷是图案切割,引脚孔,图案短,缺口等。因此缺陷应该在蚀刻过程之前识别,使PCB将重新加工。在本方法中,预期提高系统效率,即使在低质量图像中也可以检测缺陷

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