Effect of Bragg Acoustic Reflector on Thermal Processes in SMR under High Power Levels

A. Kozlov
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引用次数: 1

Abstract

The paper discusses the thermal processes in solidly mounted resonators with various types of a Bragg acoustic reflector. For modeling temperature distribution in the structure of the resonator, the 2D analytical model is used. The structure of the resonator is divided into seven regions. The region of the Bragg acoustic reflector is substituted by equivalent structure for which the equivalent thickness and thermal conductivity are determined. The parameters of other regions correspond directly to the ones of the resonator layers. For all regions, the stationary heat conduction equation and the corresponding boundary conditions are established. The solution of the heat equation is carried out by analytical method. Using this approach the overheating temperature distributions in the solidly mounted resonators consisting of a thin-film piezoelectric transducer based on AlN or ZnO layer and Bragg acoustic reflector based on 5 pair of Al-Mo or SiO2-Mo layers, were determined. Also the dependencies of the specific power generated in piezoelectric layer and the weighted average overheating temperature of this layer in the resonators with the various reflectors on the resonance frequency were found.
高功率下Bragg声反射器对SMR热过程的影响
本文讨论了具有不同类型布拉格声反射器的固体谐振器的热过程。为了模拟谐振腔结构中的温度分布,采用了二维解析模型。谐振器的结构分为七个区域。用等效结构代替布拉格声反射器的区域,确定等效厚度和导热系数。其他区域的参数直接对应谐振器层的参数。对于所有区域,建立了稳态热传导方程和相应的边界条件。用解析法对热方程进行了求解。利用该方法测定了由AlN或ZnO薄膜压电换能器和5对Al-Mo或SiO2-Mo层构成的Bragg声反射器组成的固体谐振器的过热温度分布。得到了不同反射器谐振腔中压电层产生的比功率和压电层过热温度的加权平均与谐振频率的关系。
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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