A systematic, accurate and robust evaluating method for fine pitch printed circuit board (PCB) positioning assessment in testing fixture is developed. Targeting reliability of bed-of-nails tester is successfully eva...A systematic, accurate and robust evaluating method for fine pitch printed circuit board (PCB) positioning assessment in testing fixture is developed. Targeting reliability of bed-of-nails tester is successfully evaluated by the 2D pattern transform. Probe offset vector with its Weibull and Gaussian distribution estimates are obtained for further investigation about the causes of misalignment on the basis of a batch tests for same kind of PCBs.展开更多
选择圆钉、麻花钉与4种厚度定向刨花板(OSB),测试不同因素水平组合下板材的抗拔握钉力和侧压握钉力。结果表明:OSB的抗拔握钉力和侧压握钉力分别为0.223~1.156 k N和1.383~2.678 k N,握钉力均随板材厚度的增加而增大,麻花钉增加速率明...选择圆钉、麻花钉与4种厚度定向刨花板(OSB),测试不同因素水平组合下板材的抗拔握钉力和侧压握钉力。结果表明:OSB的抗拔握钉力和侧压握钉力分别为0.223~1.156 k N和1.383~2.678 k N,握钉力均随板材厚度的增加而增大,麻花钉增加速率明显快于圆钉。展开更多
基金This project is supported by US Pennsylvania Dept. of Community & Economic Development(No.20-906-0015)National Natural Science Foundation of China(No.50390064, No.50575230)National Basic Research Program of China(973 Program, No.2003CB716202).
文摘A systematic, accurate and robust evaluating method for fine pitch printed circuit board (PCB) positioning assessment in testing fixture is developed. Targeting reliability of bed-of-nails tester is successfully evaluated by the 2D pattern transform. Probe offset vector with its Weibull and Gaussian distribution estimates are obtained for further investigation about the causes of misalignment on the basis of a batch tests for same kind of PCBs.