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A Monolithic Tri-axis MEMS Gyroscope Operating in Air
Conference paper

A Monolithic Tri-axis MEMS Gyroscope Operating in Air

Kuan-Ju Tseng, Ming-Huang Li and Sheng-Shian Li
INERTIAL 2020 - 7th IEEE International Symposium on Inertial Sensors and Systems, Proceedings, 9090013
03/2020

Abstract

ambient pressure gyroscope inertial MEMS monolithic Control and Systems Engineering Electrical and Electronic Engineering Safety Risk Reliability and Quality Electronic Optical and Magnetic Materials Control and Optimization Instrumentation Atomic and Molecular Physics and Optics
In this work, a monolithic tri-axis MEMS gyroscope is realized through a TSMC SOI-MEMS platform and the device is characterized in ambient pressure. To fully make use of the limited chip area, the device is based on a single driving loop to couple the vibrating energy to three axes of sensing loops through Coriolis force. The resonator behavior is first characterized in vacuum, and then the rate measurements are evaluated through the use of spectrum analyzer and Lock-in Amplifier in air. Finally, angle random walks of 24.6 deg/rtsec, 25.4 deg/rt-sec, 9.52 deg/rt-sec, and bias instabilities of 8.78 dps, 11.32 dps, 4.92 dps are measured, respectively.

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