진동형 미세 구조 각속도 센서의 공진 특성 해석 및 설계design and Resonant Characteristics Analysis of a Vibrating Angular Rate Senser of Microstructure

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A vibrating angular rate sensor with tuning fork type resonator of microstructure (940*820 .mu. m2) was designed and will be fabricated by polysilicon surface micromaching. The angular rate sensor is driven in a lateral direction by electrostatic force of comb drive electrodes, and vertical vibrations of the sensor, thich is detected capacitively, are produced by Coriolis forces due to an external angular rate. Mechanical Q factors and a difference between the frequencies of the two resonant modes, the driving mode and detecting mode, play a great role in increasing the sensitivity of the sensor. To be a highly sensitive sensor, it was designed to have as small frequency discrepancy of the two resonant modes as possible. Finite element method was used for the modal analysis. Several design parameters were selected and their contributions to the modal frequencies were investigated. A method was presented for tuning the detecting mode frequency by DC bias on the drive electrodes.
Publisher
한국정밀공학회
Issue Date
1996
Language
KOR
Citation

한국정밀공학회 96년 춘계학술대회, pp.156 - 160

URI
http://hdl.handle.net/10203/124615
Appears in Collection
ME-Conference Papers(학술회의논문)ME-Conference Papers(학술회의논문)
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