塑料封装剂和钝化层对湿应力作用下铝薄膜腐蚀的影响

S. Sim, R. Lawson
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引用次数: 28

摘要

在钝化层和塑料密封剂存在的情况下,对湿气引起的铝腐蚀的研究表明,腐蚀速率是由在模具表面形成的水层的表面导电性决定的。表面电导率是由外部环境和与模具表面接触的层的附着力(它们共同控制水膜),从塑料或钝化层进入水膜的杂质以及施加的偏压决定的。杂质可以通过分解铝上的保护性氧化物来加快腐蚀速度,但它们也可以通过形成限制电解电流流动的空间电荷来延缓严重腐蚀的发生。当单独使用时,有机硅和有机硅环氧树脂具有最好的防腐蚀作用,其次是环氧酸酐和环氧新伏拉克树脂。采用含磷量为1.8%的CVD二氧化硅作为最佳钝化层,其寿命取决于塑料封装剂的选择。寿命仅与含有高杂质的模具钝化层的塑料密封剂类型无关。阳极和阴极铝腐蚀机制的温度依赖性与塑料封装组件中杂质的性质无关,可以用约0.75 ev的活化能来描述。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Influence of Plastic Encapsulants and Passivation Layers on the Corrosion of Thin Aluminium Films Subjected to Humidity Stress
The study of moisture induced aluminium corrosion in the presence of passivation layers and plastic encapsulants has shown that the corrosion rate is determined by the surface conductivity of the water layer that forms on the die surface. The surface conductivity is determined by the external environment and the adhesion of the layer in contact with the die surface (which together control the water film), the impurities that enter the water film from the plastic or passivation layer and the applied bias. The impurities can accelerate the corrosion rate by breaking down protective oxides on the aluminium but they also can delay the onset of severe corrosion by forming space charges that limit the electrolytic currents that can flow. Silicone and silicone-epoxy resins give the best protection against corrosion when used alone followed by epoxy anhydride and epoxy novolac resins in that order. With the best passivation layer used, 1.8% phosphorous content CVD silicon dioxide, the lifetime was dependent on the choice of plastic encapsulant. The lifetime was only independent of the type of plastic encapsulant for die passivation layers containing high levels of impurity. The temperature dependence of the anodic and cathodic aluminium corrosion mechanisms is independent of the nature of the impurities found in a plastic encapsulated component and can be described by an activation energy of about 0.75 ev.
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