首页> 外文会议>2003 International Electronic Packaging Technical Conference and Exhibition; Jul 6-11, 2003; Maui, Hawaii >CHARACTERISATION OF ANISOTROPIC CONDUCTIVE ADHESIVE COMPRESSION DURING THE ASSEMBLY PROCESS
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CHARACTERISATION OF ANISOTROPIC CONDUCTIVE ADHESIVE COMPRESSION DURING THE ASSEMBLY PROCESS

机译:组装过程中各向异性导电胶压缩的表征

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摘要

Models of the anisotropic conductive adhesive assembly process have previously been developed. Such models may be used to predict the time for adhesive resin flow out and whether this can be successfully achieved before resin cure. Modelling has also been used to provide significant insights into the effects of component and substrate bond pad geometry on the resin flow distribution and hence on the resulting conductive particle distribution. These models have however only been experimentally validated to a very limited extent. This paper will describe a new experimental technique, which has been developed to allow continuous monitoring of the adhesive thickness throughout the compression process. This technique applies a controlled assembly force through a linear 'Voice coil" type actuator and the resulting changes in capacitance of the adhesive material can be used to monitor its thickness. The data from tests using this technique show, for example, the effect of the conductor particle stiffness on the rate of adhesive compression during the later stages of the compression process. Such data will be used to further improve more sophisticated models of the ACA assembly process, which will both lead to a better understanding of the process and also facilitate establishment of design rules for different applications.
机译:先前已经开发了各向异性导电粘合剂组装过程的模型。这样的模型可以用于预测粘性树脂流出的时间以及在树脂固化之前是否可以成功实现这一点。还已经使用建模来提供对组件和基板键合焊盘几何形状对树脂流动分布以及因此对所得的导电颗粒分布的影响的重要见解。但是,这些模型仅在非常有限的程度上经过实验验证。本文将介绍一种新的实验技术,该技术已经开发出来,可以在整个压缩过程中连续监控粘合剂的厚度。该技术通过线性“语音线圈”型执行器施加受控的组装力,由此产生的胶粘剂电容变化可用于监测其厚度。导体颗粒刚度对压缩过程后期的粘合剂压缩速率的影响,这些数据将用于进一步改进ACA组装过程的更复杂模型,这将有助于加深对过程的理解并有助于建立不同应用程序的设计规则。

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