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Material transport in Al-metallizations of power-loaded SAW structures

机译:动力加载声表面波结构的铝金属化中的材料传输

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Material transport in Al/Ti-finger electrodes on LiNbO3 substrates of power-loaded surface acoustic wave (SAW) structures were investigated under microscopic observation with respect to stress-induced material transport. Additionally, investigations were carried out before and after SAW loading during lifetime experiments. For the experiments, a special power SAW test structure was applied realizing travelling SAWs. The results show that the microstructure of the electrodes was damaged by void and hillock formation even at moderate input power. This changes the electrical and acoustical properties of the SAW structures irreversibly. The logarithmic time-to-failure (TTF) of damaged SAW structures depends linearly on loading time and rf power. (c) 2005 Elsevier B.V. All rights reserved.
机译:在微观观察下,针对应力诱导的材料传输,研究了动力负载表面声波(SAW)结构的LiNbO3衬底上的Al / Ti指状电极中的材料传输。此外,在寿命实验期间,在SAW加载之前和之后进行了调查。为了进行实验,应用了一种特殊的功率SAW测试结构来实现行进SAW。结果表明,即使在中等输入功率下,电极的微观结构也会被空隙和小丘的形成所破坏。这不可改变地改变了SAW结构的电学和声学特性。损坏的SAW结构的对数失效时间(TTF)线性取决于加载时间和射频功率。 (c)2005 Elsevier B.V.保留所有权利。

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