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A PTH Reliability Model Considering Barrel Stress Distributions and Multiple PTHs in a PWB

机译:考虑PWB中枪管应力分布和多个PTH的PTH可靠性模型

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Plated through hole (PTH) failure due to CTE-mismatch-induced fatigue is a major interconnection failure in electronic products. The IPC methodology that is widely used in industry for PTH reliability assessment assumes a uniform thermal stress distribution in PTH barrels and considers no effect of peripheral PTHs on the one under investigation. As a result, IPC-methodology-based PTH reliability assessment becomes insensitive to the factors, such as board thickness and PTH separations, which, however, are considered having considerable influence on PTH fatigue life. It also leads to deviation of prediction results from experimental ones. In this study, an improved analytical model that considers barrel stress distributions and the effect of multiple PTHs in a PWB is developed to address the issues. Comparisons between the analytical and FEM results indicate significantly improved correlation. This model verifies the maximum stress location at PTH barrels'' middle section. This result agrees with FEM results as well as failure observations on PTH barrel cracking in experiments and field. The model also provides a quantitative explanation on the strain distribution factor that is used to adjust assessment results for correlating with experiment in the existing IPC methodology
机译:由于CTE不匹配引起的疲劳而导致的镀通孔(PTH)故障是电子产品中的主要互连故障。工业界广泛用于PTH可靠性评估的IPC方法假设PTH桶中的热应力分布均匀,并且认为外围PTH对被调查者没有影响。结果,基于IPC方法的PTH可靠性评估对诸如板厚和PTH间距之类的因素不敏感,但是,这些因素被认为对PTH疲劳寿命有相当大的影响。这也会导致预测结果与实验结果的偏差。在这项研究中,开发了一种改进的分析模型,该模型考虑了桶应力分布以及PWB中多个PTH的影响,以解决这些问题。分析结果与FEM结果之间的比较表明相关性显着提高。该模型验证了PTH枪管中段的最大应力位置。该结果与有限元结果以及在实验和现场对PTH桶开裂的破坏观察结果一致。该模型还提供了应变分布因子的定量解释,可用于调整评估结果以与现有IPC方法中的实验相关

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