Design and simulation of a novel micromachined comb-gimbal gyroscope

Lufeng Che, Xin Li, B. Xiong, Yaozhi Chen, Yuelin Wang
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Abstract

A novel micromachined comb-gimbal gyroscope is presented, which will be excited by electrostatic forces and the coriolis acceleration induced torsion motion will be read out capacitively. Since electrostatic comb driving and DRIE (deep reactive ion etching) technology are adopted, large driving amplitude can be achieved and sensitivity of gyroscope can be increased. Based on the modal analysis of the gyroscope by FEM method, the structure dimensions are optimized according to resonant frequency matching of the driving mode and detection mode. The fabrication sequences of the gyroscope are discussed in detail.
一种新型微机械梳架陀螺仪的设计与仿真
提出了一种新型的微机械梳架陀螺仪,该陀螺仪在静电力的激励下,以电容方式读出科氏加速度引起的扭转运动。由于采用静电梳状驱动和深度反应离子刻蚀技术,可以实现较大的驱动幅值,提高陀螺仪的灵敏度。在有限元法对陀螺仪进行模态分析的基础上,根据驱动模式和检测模式的谐振频率匹配,优化了陀螺仪的结构尺寸。详细讨论了陀螺仪的制作工艺。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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