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A micromachined gyroscope with piezoresistance for both high performance Coriolis-effect detection and torsional vibration monitoring

机译:具有压渗透压的微加工陀螺仪,用于高性能科里奥利效应检测和扭转振动监测

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A micromachined vibrating gyroscope with a novel piezoresistive scheme is designed, fabricated and tested. A piezoresistive sensing method for Coriolis-acceleration detection is used with both high sensitivity and high resonant frequency. A four-terminal piezoresistive element is used to monitor and stabilize the vibration amplitude of the driving mode through a feedback loop. With the same loop, temperature drift of the gyro's piezoresistive output can be on-chip compensated effectively. The gyro performance is measured, with the following results: resonance frequency in detection mode is 989 Hz; angular rate measurement range is /spl plusmn/ 300/spl deg//s; noise-limited angular rate resolution is 0.33/spl deg//s.
机译:设计,制造和测试具有新型压阻式方案的微机械振动陀螺仪。具有高灵敏度和高谐振频率的Coriolis-加速度检测的压阻性传感方法。四端压阻元件用于通过反馈回路监测和稳定驱动模式的振动幅度。具有相同的环路,陀螺压阻输出的温度漂移可以有效地进行片上补偿。测量陀螺性能,以下结果:检测模式中的共振频率为989 Hz;角速率测量范围是/ SPL PLUSMN / 300 / SPL DEG / S;噪声限制的角速率分辨率为0.33 / SPL DEG // s。

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