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考虑耗散情况下石英晶体谐振器电学参数的测定

The determination of electrical parameters of quartz crystal resonators with the consideration of dissipation.

作者信息

Wang Ji, Zhao Wenhua, Du Jianke

机构信息

Mechanics and Materials Science Research Center, School of Engineering, Ningbo University, 818 Fenghua Road, Ningbo, Zhejiang 315211, China.

出版信息

Ultrasonics. 2006 Dec 22;44 Suppl 1:e869-73. doi: 10.1016/j.ultras.2006.05.033. Epub 2006 Jun 9.

Abstract

Recently, as the dissipation of quartz crystal through material viscosity is being considered in vibrations of piezoelectric plates, we have the opportunity to obtain electrical parameters from vibration solutions of a crystal plate representing an ideal resonator. Since the solutions are readily available with complex elastic constants from Mindlin plate equations for thickness-shear vibrations, the calculation of resistance and other parameters related to both mechanical deformation and electrical potential is straightforward. We start with the first-order Mindlin plate equations of a piezoelectric plate for the thickness-shear vibration analysis of a simple resonator model. The electrical parameters are derived with emphasis on the resistance that is related to the imaginary part of complex elastic constants, or the viscosity. All the electrical parameters are frequency dependent, enabling the study of the frequency behavior of crystal resonators with a direct formulation. Through the full consideration of complications like partial electrodes and supporting structures, we should be able obtain electrical parameters for practical applications in resonator design.

摘要

最近,由于在压电板振动中考虑了石英晶体通过材料粘性的耗散,我们有机会从代表理想谐振器的晶体板振动解中获得电学参数。由于从用于厚度剪切振动的明德林板方程中可以很容易地得到具有复弹性常数的解,因此与机械变形和电势相关的电阻及其他参数的计算很直接。我们从压电板的一阶明德林板方程开始,用于简单谐振器模型的厚度剪切振动分析。推导电学参数时重点关注与复弹性常数虚部(即粘性)相关的电阻。所有电学参数都与频率有关,从而能够通过直接公式研究晶体谐振器的频率特性。通过充分考虑诸如部分电极和支撑结构等复杂因素,我们应该能够获得用于谐振器设计实际应用的电学参数。

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