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

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

Gayathri Pillai, Wei-Siang Tan, Cheng-Chi Chen and Sheng-Shian Li
2016 IEEE 11th Annual International Conference on Nano/Micro Engineered and Molecular Systems, NEMS 2016, pp.450-454
11/2016

Abstract

Bandwidth Contour mode Length extension mode Lithium Tantalate Temperature Coefficient of Frequency Wafer orientation Industrial and Manufacturing Engineering Mechanical Engineering Mechanics of Materials Electronic Optical and Magnetic Materials
This work presents an elaborate analytical analysis and finite element geometry modeling to investigate the Temperature Coefficient of Frequency (TC F ) 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 TC F and when oriented along (90°, 44°, 60°) it provides a maximum BW of 2.67%. Best values of both BW and TC F can be achieved simultaneously in a very close range of wafer orientation.

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