Mechanic–electric–circuit coupling analysis of BAW filter based on FDTD method

Author:

Chen Shitao12ORCID,Li Zheng3,Yin Qiupeng4,Hong Sicheng3,Bao Huaguang5ORCID,Chen Ming2,Wang Wei2,Ding Dazhi5,Yu Ming6ORCID

Affiliation:

1. Information Materials and Intelligent Sensing Laboratory of Anhui Province, Anhui Province Key Laboratory of Target Recognition and Feature Extraction Anhui University Hefei China

2. East China Research Institute of Electronic Engineering Hefei China

3. Majoring in Electronic Science and Technology Anhui University Hefei China

4. 32th Research Institute of China Electronics Technology Group Corporation Shanghai China

5. Department of Communication Engineering Nanjing University of Science and Technology Nanjing China

6. Department of Electrical and Electronic Engineering The Southern University of Science and Technology (SUSTech) Shenzhen China

Abstract

AbstractIn this paper, mechanic–electric–circuit coupling algorithm based on the finite‐difference time‐domain (FDTD) method is proposed to analyze a one‐order microwave bulk acoustic wave (BAW) filter. FDTD method is used to solve the coupled mechanic–electric–circuit system equations to obtain the voltage and current at port position of the BAW filter in the time domain. Then S parameters of the BAW filter in the frequency domain are calculated using the Fourier transform. In our work, a one‐order BAW filter consists of two film bulk acoustic resonators (FBARs) by means of series and parallel. These two FBARs in the BAW filter are coupled together through an equivalent electrical connection. Similarly, multiphysical mechanic–electric–circuit analysis of the BAW filter is implemented in the commercial software COMSOL, which is realized by the time‐domain finite element method. The accuracy of the proposed method is verified by comparison with simulation results in COMSOL. In addition, the computational time and memory of the proposed method have obvious advantages over those of COMSOL.

Publisher

Wiley

Subject

Electrical and Electronic Engineering,Condensed Matter Physics,Atomic and Molecular Physics, and Optics,Electronic, Optical and Magnetic Materials

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