确定最优的物理数学模型和计算表面声波对位变换器拓扑结构的权重函数

Y. Lepikh
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引用次数: 0

摘要

本文致力于分析现有的描述表面声波(SAW)的瑞利反针变换器的物理和数学模型,这种变换器广泛应用于声电子学中创建各种功能用途的微电子器件。分析了加权函数,利用加权函数对反入变换器的拓扑结构进行了调整,以减小吉布斯脉动的影响。还考虑了每种物理模型和数学模型的优缺点,以及从实现特性曲线上器件特性的规定要求的角度考虑加权函数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
DETERMINATION OF THE OPTIMAL PHYSICAL AND MATHEMATICAL MODEL AND WEIGHT FUNCTIONS FOR CALCULATING THE TOPOLOGY OF COUNTERPINE CONVERTERS OF SURFACE ACOUSTIC WAVES
The article is devoted to the analysis of existing physical and mathematical models describing the operation of Rayleigh’s counter-pin converters of surface acoustic waves (SAW), which are widely used in acoustoelectronics in the creation of microelectronic devices of various functional purposes. The weighting functions are also analyzed, with the help of which the topology of the counter-in converters is adjusted in order to reduce the influence of Gibbs pulsations. The advantages and disadvantages of each of the physical and mathematical models, as well as weighting functions from the point of view of achieving the specified requirements for the characteristics of devices on the characteristic curve, are also considered.
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