Modeling of zero TCF and maximum bandwidth orientation for Lithium Tantalate RF MEMS resonators

Gayathri Pillai, W. Tan, Cheng-Chi Chen, Sheng-Shian Li
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引用次数: 3

Abstract

This work presents an elaborate analytical analysis and finite element geometry modeling to investigate the Temperature Coefficient of Frequency (TCF) and resonator bandwidth (BW) for different orientations and modes of operation in Lithium Tantalate (LT) MEMS resonators. Optimum cut algorithm is used to find the ideal wafer orientation and the proposed algorithm is cross-verified using Finite Element Method. Length extension mode resonators operating in the fundamental mode transcend the performance of contour mode resonators. LT resonators with a wafer orientation of (90°, 41°, 60°) operating in the fundamental length extension mode yield close to zero TCF and when oriented along (90°, 44°, 60°) it provides a maximum BW of 2.67%. Best values of both BW and TCF can be achieved simultaneously in a very close range of wafer orientation.
钽酸锂射频MEMS谐振器的零TCF和最大带宽方向建模
这项工作提出了一个详细的分析分析和有限元几何建模,以研究钽酸锂(LT) MEMS谐振器中不同方向和工作模式下的频率温度系数(TCF)和谐振器带宽(BW)。采用最优切割算法寻找理想的晶圆方向,并用有限元法对该算法进行了交叉验证。工作在基模下的长度扩展模谐振器超越了轮廓模谐振器的性能。当晶圆方向为(90°,41°,60°)时,在基长扩展模式下工作的低电压谐振器的TCF接近于零,当晶圆方向为(90°,44°,60°)时,其最大BW为2.67%。在非常接近晶圆方向的范围内,可以同时获得最佳的BW和TCF值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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