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Anisotropic Conductive Film Interconnects for Fine-pitch MEMS

机译:各向异性导电膜互连用于细间距MEMS

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The flip-chip interconnection technology based on anisotropic conductive films (ACFs) has recently become an attractive solution for the assembly of micro-electromechanical systems (MEMS) and application specific integrated circuits (ASIC) in MEMS packages. In the present work, we have studied the fine pitch capability of ACF interconnects for MEMS applications such as fingerprint sensors and capacitive micromachined ultrasonic transducers, in which interconnects spread around MEMS and ASIC surface. The silicon test chips and substrates with different interconnect pitch were assembled using a single layer ACF. The electrical performance of ACF interconnects with varying pitch from 110 to 200 μm was compared. Furthermore, the distribution of conductive particles and the electrical resistance of ACF interconnects at both peripheral and central parts of the chips were evaluated. Effect of thermal shock cycling test (-40 to +125 °C) on samples was investigated. The results showed insignificant difference in the electrical performance between ACF interconnects with pitch varying from 110 to 200 μm. The particle distribution and the electrical resistance of ACF interconnects at different chip regions were similar. No significant effect of the thermal shock cycling test was observed. No failures (open/short circuit) occurred, both before and after the thermal shock cycling test.
机译:基于各向异性导电膜(ACF)的倒装芯片互连技术最近成为MEMS包装中的微机电系统(MEMS)和应用特定集成电路(ASIC)的有吸引力的解决方案。在本作工作中,我们研究了用于MEMS应用的ACF互连的精细音调能力,例如指纹传感器和电容式微机械超声换能器,其中互连围绕MEMS和ASIC表面。使用单层ACF组装具有不同互连间距的硅测试芯片和基板。比较了从110至200μm的不同间距的ACF互连的电气性能。此外,评估了导电颗粒的分布和芯片的外周和中心部分的ACF互连的电阻。研究了热冲击循环试验(-40至+125℃)样品的影响。结果表明,ACF互连之间的电气性能的差异显着差异,间距不同于110至200μm。不同芯片区域的ACF互连的颗粒分布和电阻是相似的。观察到热冲击循环试验没有显着影响。在热冲击循环试验之前和之后,不会发生故障(打开/短路)。

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