光纤陀螺仪科里奥利力.pdf

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Japanese Journal of Applied Physics 48 (2009) 06FK09 REGULAR PAPER Enhanced Sensitivity of Novel Surface Acoustic Wave Microelectromechanical System-Interdigital Transducer Gyroscope 1;2 1 1 1 1 Wen Wang , Haekwan Oh , Keekeun Lee , Sungjin Yoon , and Sangsik Yang 1 Division of Electronics Engineering, Ajou University, Suwon 443-749, Korea 2 Institute of Acoustics, Chinese Academy of Sciences, Beijing, China Received November 28, 2008; accepted January 25, 2009; published online June 22, 2009 In this paper, we present a novel microelectromechanical system-interdigital transducer (MEMS-IDT) surface acoustic wave (SAW) gyroscope with an 80 MHz central frequency on a 128 Y X LiNbO3 wafer. The developed MEMS-IDT gyroscope is composed of a two-port SAW resonator, a dual delay line oscillator, and metallic dots. The SAW resonator provides a stable standing wave, and the vibrating metallic dot at an antinode of the standing wave induces the second SAW in the normal direction of its vibrating axis. The dual delay line oscillator detects the Coriolis force by comparing the resonant frequencies between two oscillators through the interference effect. The coupling of mode (COM) modeling was used to extract the optimal design parameters prior to fabrication. In the electrical testing by the network analyzer, the fabricated SAW resonator and delay lines showed low insertion loss and similar operation frequencies between a resonator and delay lines. When the device was rotated, the resonant frequency differences between two oscillators linearly varied owing to the Coriolis force. The obtained sensitivity was approximately 119 Hz deg1 s1 in the angular rate range of 0–1000 deg/s. Satisfactory linear

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