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Random dispersion effects of conductive particles on anisotropic conductive film's (ACF's) bonding yield

机译:导电颗粒对各向异性导电膜(ACF)粘接收率的随机分散效应

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摘要

In this study, the authors try to analyze the failure probability of Anisotropic Conductive Film (ACF) packages using V-shaped curve method considering the random effects with random dispersion of conductive particles. It is shown that the dependencies of the coefficient of variation (CV) and the failure probability on the volume fraction are investigated and the results are then used to construct a correlation between the random error and the CV for a specified volume fraction. The results presented in this study have shown that the failure probability and random error are reduced as the value of the volume fraction approaches the values corresponding to the tip of the V-shaped curve. In additional, the V-shaped curves in the failure probabilities are moved from lower to higher with the increasing CV, and the optimal designed volume fraction will linearly increase with increasing CV. Hence, when specifying the composition of the ACF compound with any random error, the volume fraction should be assigned the tip value in order to maximize the reliability of the failure probability.
机译:在这项研究中,作者试图使用V形曲线方法分析各向异性导电膜(ACF)包装的失效概率,考虑到导电颗粒随机分散的随机效应。结果表明,研究了变异系数(CV)和体积分数上的失效概率的依赖性,然后使用结果来构建随机误差和CV之间的相关性,用于指定体积分数。本研究中提出的结果表明,随着体积分数的值接近对应于V形曲线的尖端的值,减小了故障概率和随机误差。在另外,在增加的CV增加,故障概率中的V形曲线从较低到更高,并且随着CV的增加,最佳设计的体积分数将线性增加。因此,当用任何随机误差指定ACF化合物的组成时,应将体积分数分配尖端值,以最大化故障概率的可靠性。

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