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A Gaussian-shaped AT-cut quartz crystal resonator

机译:高斯型AT切割石英晶体谐振器

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摘要

This paper reports the design and fabrication of a Gaussian-shaped AT-cut quartz crystal resonator. The thickness distribution of the resonator was designed following a Gaussian-type function. The distribution was based on the analysis of thickness shearing vibration calculated using finite element analysis for a flat-shaped resonator. The vibration analysis showed improvement of the energy trapping effect, and the vibration at the wafer edge was negligible. For the experimental verification, we attempted to fabricate a Gaussian-shaped resonator using microfabrication technologies. The resonant characteristics were substantially improved by the shaping.
机译:本文报道了高斯形AT切石英晶体谐振器的设计与制造。按照高斯型函数设计谐振器的厚度分布。该分布基于对平板形谐振器进行的有限元分析所计算出的厚度剪切振动的分析。振动分析表明能量俘获效果得到改善,晶片边缘的振动可以忽略不计。为了进行实验验证,我们尝试使用微细加工技术制造高斯形谐振器。通过成形,共振特性得到了显着改善。

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