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Characterization of polymeric getter materials for MEMs/MOEMS and other microelectronic package service

机译:用于MEM / MOEMS和其他微电子封装服务的聚合物吸气剂材料的表征

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Various getter materials have been developed over the years to deal with hydrogen and moisture caused problems in MEMS/MOEMS packages. These materials consist of two major families, metal alloy systems and polymeric systems. Both systems have pluses and minuses for the MEMS/MOEMS packaging engineer. In order to determine applicability, careful characterization of these systems is critical.rnThe advent of a new class of polymeric getter materials originally developed for other industries has brought a need to readdress the issue of how to characterize such materials for MEMS/MOEMS service. While MIL-STD-883 gives a degree of guidance, it is not the complete answer. Characterization of these materials has consequently been clean sheeted to address the key areas of hydrogen and water capacity determination, and determination of ionics concentrations. Methods used and the results of this work will be discussed.
机译:这些年来,已经开发出各种吸气材料来应对氢/湿气引起的MEMS / MOEMS封装问题。这些材料包括两个主要族,金属合金体系和聚合物体系。两种系统对于MEMS / MOEMS封装工程师来说都是有利有弊。为了确定适用性,对这些系统进行仔细的表征至关重要。最初为其他行业开发的新型聚合物吸气剂材料的出现带来了需要重新解决如何表征此类材料以用于MEMS / MOEMS服务的问题。尽管MIL-STD-883提供了一定程度的指导,但这并不是完整的答案。因此,对这些材料的表征已经进行了整洁,以解决氢和水容量测定以及离子浓度测定的关键领域。将讨论使用的方法和这项工作的结果。

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