Multi-Ring Disk Resonator with Elliptic Spokes for Frequency-Modulated Gyroscope

Author:

Wang Shihe1,Chen Jianlin12,Tsukamoto Takashiro1,Tanaka Shuji13

Affiliation:

1. Department of Robotics, Tohoku University, Sendai 9808579, Japan

2. School of Microelectronics, Shanghai University, Shanghai 201800, China

3. Micro System Integration Center (µSIC), Tohoku University, Sendai 9808579, Japan

Abstract

In this paper, we report a multi-ring disk resonator with elliptic spokes for compensating the aniso-elasticity of (100) single crystal silicon. The structural coupling between each ring segments can be controlled by replacing the straight beam spokes with the elliptic spokes. The degeneration of two n = 2 wineglass modes could be realized by optimizing the design parameters of the elliptic spokes. The mode-matched resonator could be obtained when the design parameter, aspect ratio of the elliptic spokes was 25/27. The proposed principle was demonstrated by both numerical simulation and experiment. A frequency mismatch as small as 1330 ± 900 ppm could be experimentally demonstrated, which was much smaller than that of the conventional disk resonator, which achieved as high as 30,000 ppm.

Publisher

MDPI AG

Subject

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

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1. A Two-Axis Orthogonal Resonator for Variable Sensitivity Mode Localization Sensing;Sensors;2024-06-21

2. Quadrature Error Correction System for Disk Ring Gyroscope Using (100) Single Crystal Silicon;2024 IEEE 19th International Conference on Nano/Micro Engineered and Molecular Systems (NEMS);2024-05-02

3. High Q-Factor and Mode-Matching Disk Ring Gyroscope Using (100) Single Crystal Silicon;2024 IEEE International Symposium on Inertial Sensors and Systems (INERTIAL);2024-03-25

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5. Mode-Matched Bulk Acoustic Wave Disk Gyroscope Utilizing Pseudo-Extensional Mode;2023 IEEE International Ultrasonics Symposium (IUS);2023-09-03

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