杂化密封剂的可靠性评估:氟化网状聚合材料和有机硅

A. Christou
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引用次数: 0

摘要

海军系统的混合封装材料由有机硅和有机硅分散体组成。利用测试结构、AU-AI2O3微薄膜水分传感器和Auger/SIMS分析,确定了硅的水分渗透动力学,并与氟化网状聚合物材料进行了比较。对于正在考虑的新型聚合物涂层,已经确定了有关互指杂化物的MTF与基材表面水分水平的可靠性数据。以含氟前驱物为原料,合成了环氧树脂和聚氨酯的网状分子。结果表明,在相对湿度为20% ~ 95%时,有机硅和有机硅分散体的动力学活化能保持不变。实际活化能从20%时的1.3 eV变化到95%时的0.97 eV。氟化网状聚合物涂层的抗湿渗透性能显著提高。利用附加的测试结构来研究偏压、水分和离子污染在有机硅和聚合物中迁移引起的迁移电阻短路。最后,将合成的聚合物材料和硅分散体涂覆在由运算放大器组成的混合电路上。温度循环和湿度测试的结果将被展示,并与硅胶涂层混合动力车的结果进行比较。
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Reliability assessment of hybrid encapsulants: Fluorinated network polymeric materials and silicones
Hybrid encapsulation materials for Navy systems consist of silicones and silicone-dispersions. Utilizing test structures, a micro-thin film AU-AI2O3 moisture sensor and Auger/SIMS analysis, the mositure penetration kinetics for silicon was determined and compared with fluorinated network polymeric materials. Reliability data relating MTF of interdigitated hybrids to moisture levels on the substrate surface has been determined for the new class of polymeric coatings under consideration. The polymeric materials have been synthesized from fluorinated percursors to produce network molecules of epoxies and polyurethanes. It was determined that the kinetics activation energy remained constant for silicones and silicone-dispersions at relative humidity levels from 20% to 95%. The actual activation enegy varied from 1.3 eV at 20% to 0.97 eV at 95%. Significant improvement in moisture penetration resistance was observed with fluorinated network polymeric coatings. Additional test structures were utilized to study the migrative resistance shorts induced by bias, moisture and ionic contamination migration through the silicones and polymers. Finally, hybrid circuits consisting of operational amplifiers, were coated with the present synthesized polymeric materials and silicone-dispersions. Results from temperature-cycling and moisture tests will be presented and compared to results obtained from silicone coated hybrids.
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