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Multi-axis chip-scale MEMS inertial measurement unit (IMU) based on frequency modulation

机译:基于调频的多轴芯片级MEMS惯性测量单元(IMU)

摘要

A multi-axis microelectromechanical-systems (MEMS) inertial measurement unit (IMU) is fabricated in a vacuum sealed single packaged device. An FM vibratory gyroscope and an FM resonant accelerometer both for generating FM output signals is fabricated in the silicon chip using MEMS. A signal processor is coupled to the an FM vibratory gyroscope and to the FM resonant accelerometer for receiving the FM gyroscopic output signals and the FM accelerometer output signals. The signal processor generates simultaneous and decoupled measurement of input acceleration, input rotation rate, and temperature and/or temperature distribution within the IMU, self-calibration of the biases and scale factors of the IMU and its support electronics against temperature variations and other common mode errors, and reduction of the cross axis sensitivity by reducing acceleration errors in the gyroscope and rotation errors in the accelerometer.
机译:多轴微机电系统(MEMS)惯性测量单元(IMU)是在真空密封的单封装设备中制造的。使用MEMS在硅芯片中制造了用于产生FM输出信号的FM振动陀螺仪和FM共振加速度计。信号处理器耦合到FM振动陀螺仪和FM谐振加速度计,以接收FM陀螺仪输出信号和FM加速度计输出信号。信号处理器可同时对IMU内的输入加速度,输入转速,温度和/或温度分布进行解耦测量,对IMU及其支持电子设备的偏置和比例因子进行自校准以抵抗温度变化和其他共模误差,并通过减少陀螺仪中的加速度误差和加速度计中的旋转误差来降低横轴灵敏度。

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