Design, Optimization and Performance Assessment of Single Port Film Bulk Acoustic Resonator through Finite Element Simulation

Author:

Patel Raju1ORCID,Adhikari Manoj Singh2ORCID,Tripathi Shailendra Kumar3,Sahu Sourabh4ORCID

Affiliation:

1. School of Electronics Engineering (SENSE), Vellore Institute of Technology (VIT), Chennai 600127, India

2. School of Electronics & Electrical Engineering, Lovely Professional University, Phagwara 144411, India

3. Department of Electronics & Communication Engineering, KL University, Guntur 522502, India

4. Department of Electronics & Communication Engineering, Gyan Ganga Institute of Technology and Sciences, Jabalpur 482003, India

Abstract

In this paper, the study is supported by design, FEA simulation, and practical RF measurements on fabricated single-port-cavity-based acoustic resonator for gas sensing applications. In the FEA simulation, frequency domain analysis was performed to enhance the performance of the acoustic resonator. The structural and surface morphologies of the deposited ZnO as a piezoelectric layer have been studied using XRD and AFM. The XRD pattern of deposited bulk ZnO film indicates the perfect single crystalline nature of the film with dominant phase (002) at 2θ = 34.58°. The AFM micrograph indicates that deposited piezoelectric film has a very smooth surface and small grain size. In the fabrication process, use of bulk micro machined oxide (SiO2) for the production of a thin membrane as a support layer is adopted. A vector network analyzer (Model MS2028C, Anritsu) was used to measure the radio frequency response of the resonators from 1 GHz to 2.5 GHz. As a result, we have successfully fabricated an acoustic resonator operating at 1.84 GHz with a quality factor Q of 214 and an effective electromechanical coupling coefficient of 10.57%.

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Biochemistry,Instrumentation,Atomic and Molecular Physics, and Optics,Analytical Chemistry

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