DocumentCode :
381816
Title :
Simulation of characteristic of comb-gimbal micromachined gyroscope
Author :
Che, Lufeng ; Xiong, Bin ; Wang, Yuelin
Author_Institution :
State Key Lab of Transducer Technol., Shanghai Inst. of Microsystem & Inf. Technol., China
Volume :
2
fYear :
2002
fDate :
2002
Firstpage :
1095
Abstract :
A novel micromachined comb-gimbal gyroscope is presented, which is excited by electrostatic forces and its Coriolis acceleration induced torsional motion is read out capacitively. Since electrostatic comb driving and DRIE (deep reactive ion etching) technology are adopted, the large driving amplitude and higher sensitivity of the gyroscope can be achieved. Driving mode and sensing mode working in different planes may prevent mechanical coupling. Characteristic analysis results obtained from simulation show that when the driving mode frequency equals the sensing mode frequency, the gyroscope may achieve maximal sensitivity. Then according to the matching of the driving mode frequency and detection mode frequency, the structure dimensions of the gyroscope are optimized using the finite element method (FEM). Finally, an equivalent circuit model of the gyroscope is derived, which is available for detection oscillating properties analysis and also enables the simulation of the sensor with the interfacing electronics.
Keywords :
Coriolis force; equivalent circuits; finite element analysis; gyroscopes; microsensors; modelling; sensitivity analysis; Coriolis acceleration induced torsional motion; FEM; capacitive readout; comb-gimbal micromachined gyroscope; deep RIE technology; detection oscillating properties analysis; driving mode frequency; electrostatic comb driving; electrostatic forces; equivalent circuit model; finite element method; reactive ion etching; sensing mode frequency; sensitivity; Acceleration; Analytical models; Circuit simulation; Electrostatics; Equivalent circuits; Etching; Finite element methods; Frequency; Gyroscopes; Optimization methods;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Sensors, 2002. Proceedings of IEEE
Print_ISBN :
0-7803-7454-1
Type :
conf
DOI :
10.1109/ICSENS.2002.1037266
Filename :
1037266
Link To Document :
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