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Process Capability Evaluation for Square Bumps with Mean Shift

机译:具有均值漂移的方凸块的工艺能力评估

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Process capability indices have been widely used in manufacturing industries to provide numerical measures of process potential and performance. In in-plant applications, some inevitable process mean shift may be undetected when the statistical process control charts are applied, particularly, in the bumping process for square bumps. Bothe in 2002 provided a statistical reason for considering such a shift in the process mean to accommodate the undetected mean shifts for normally distributed processes when evaluating process capability. In this paper, we consider a bumping process for square bumps in which the data can be formulated as a non-central chi-square distribution, a class of non-normal distributions. To evaluate the popular yield-based process capability Cpk more accurately, we accommodate the magnitudes of undetected mean shifts using the modified capability evaluation formula and tabulate the detection powers under various subgroup sizes and non-central chi-square parameters. Based on the modified process capability evaluation, we can provide a more reliable process capability evaluation of capability index C k for square bumps and make more correct decisions. For illustration purpose, a real application in a bumping factory which is located on the Science-based Industrial Park in Hsinchu, Taiwan, is presented.
机译:过程能力指数已在制造业中广泛使用,以提供过程潜力和性能的数值度量。在工厂内应用中,当应用统计过程控制图时,尤其是在方形凸块的凸凹过程中,可能无法检测到某些不可避免的过程均值偏移。 2002年,Bothe提供了统计上的理由来考虑过程均值的这种变化,以适应评估过程能力时正态分布过程未检测到的均值变化。在本文中,我们考虑了方形凹凸的凹凸过程,其中数据可以表述为非中心卡方分布(一类非正态分布)。为了更准确地评估基于产量的流行过程能力Cpk,我们使用改进的能力评估公式来适应未检测到的均值漂移的幅度,并列出各种子组大小和非中心卡方参数下的检测能力。基于修改后的过程能力评估,我们可以为方凸块的能力指数C k提供更可靠的过程能力评估,并做出更正确的决策。出于说明目的,本文介绍了在台湾新竹科学园区内的一家颠簸工厂中的实际应用。

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