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An Interface ASIC for MEMS Vibratory Gyroscopes with Nonlinear Driving Control

机译:具有非线性驱动控制的MEMS振动陀螺仪的接口ASIC

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摘要

This paper proposes an interface application-specific-integrated-circuit (ASIC) for micro-electromechanical systems (MEMS) vibratory gyroscopes. A closed self-excited drive loop is employed for automatic amplitude stabilization based on peak detection and proportion-integration (PI) controller. A nonlinear multiplier terminating the drive loop is designed for rapid resonance oscillation and linearity improvement. Capacitance variation induced by mechanical motion is detected by a differential charge amplifier in sense mode. After phase demodulation and low-pass filtering an analog signal indicating the input angular velocity is obtained. Non-idealities are further suppressed by on-chip temperature drift calibration. In order for better compatibility with digital circuitry systems, a low passband incremental zoom sigma-delta (ΣΔ) analog-to-digital converter (ADC) is implemented for digital output. Manufactured in a standard 0.35 μm complementary metal-oxide-semiconductor (CMOS) technology, the whole interface occupies an active area of 3.2 mm2. Experimental results show a bias instability of 2.2 °/h and a nonlinearity of 0.016% over the full-scale range.
机译:本文提出了一种用于微机电系统(MEMS)振动陀螺仪的接口专用集成电路(ASIC)。闭环自激驱动环路用于基于峰值检测和比例积分(PI)控制器的自动幅度稳定。设计了一个终止于驱动回路的非线性乘法器,用于快速谐振振荡和线性度改善。由机械运动引起的电容变化由感测模式下的差分电荷放大器检测。在相位解调和低通滤波之后,获得指示输入角速度的模拟信号。片上温度漂移校准可进一步抑制非理想情况。为了更好地与数字电路系统兼容,为数字输出实现了低通带增量缩放sigma-delta(ΣΔ)模数转换器(ADC)。采用标准的0.35μm互补金属氧化物半导体(CMOS)技术制造,整个界面的有效面积为3.2 mm 2 。实验结果表明,在整个量程范围内,偏置不稳定性为2.2°/ h,非线性度为0.016%。

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