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Hybrid Full-Wave Analysis of Surface Acoustic Wave Devices for Accuracy and Fast Performance Prediction

机译:表面声波装置的混合全波分析用于精度和快速性能预测

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摘要

In this paper, a hybrid full-wave analysis of surface acoustic wave (SAW) devices is proposed to achieve accurate and fast simulation. The partial differential equation (PDE) models of the physical system in question and graphics processing unit (GPU)-assisted hierarchical cascading technology (HCT) are used to calculate acoustic-electric characteristics of a SAW filter. The practical solid model of the radio frequency (RF) filter package is constructed in High Frequency Structure Simulator (HFSS) software and the parasitic electromagnetics of the entire package is considered in the design process. The PDE-based models of the two-dimensional finite element method (2D-FEM) are derived in detail and solved by the PDE module embedded in COMSOL Multiphysics. Due to the advantages of PDE-based 2D-FEM, it is universal, efficient and not restricted to handling arbitrary materials and crystal cuts, electrode shapes, and multi-layered substrate. Combining COMSOL Multiphysics with a user-friendly interface, a flexible way of modeling and mesh generation, it can greatly reduce the complicated process of modeling and physical properties definition. Based on a hybrid full-wave analysis, we present an example application of this approach on a TC-SAW ladder filter with 5° YX-cut LiNbO3 substrate. Numerical results and measurements were calculated for comparison, and the accuracy and efficiency of the proposed method were verified.
机译:本文提出了一种表面声波(SAW)器件的混合全波分析,以实现精确快速的模拟。问题和图形处理单元(GPU) - 分类分层级联技术(HCT)的物理系统的部分微分方程(PDE)模型用于计算SAW滤波器的声学电气特性。射频(RF)滤波器包的实际固体模型是在高频结构模拟器(HFSS)软件中构建的,并且在设计过程中考虑了整个包装的寄生电磁。二维有限元方法(2D-FEM)的基于PDE的模型是详细的,并由嵌入在COMSOL Multiphysics中的PDE模块解决。由于基于PDE的2D-FEM的优点,它是通用的,有效的,并且不限于处理任意材料和晶体切割,电极形状和多层基板。将COMSOL Multiphysics与用户友好的界面相结合,一种灵活的建模和网格生成方式,它可以大大减少建模和物理属性定义的复杂过程。基于混合动力全波分析,我们在具有5°YX-CUT LINBO3基板上的TC锯梯形过滤器上的这种方法的示例应用。计算数值结果和测量以进行比较,验证了所提出的方法的准确性和效率。

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