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A Digital Closed-Loop Sense MEMS Disk Resonator Gyroscope Circuit Design Based on Integrated Analog Front-end

机译:基于综合模拟前端的数字闭环感测MEMS盘谐振器陀螺电路设计

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摘要

A digital closed-loop system design of a microelectromechanical systems (MEMS) disk resonator gyroscope (DRG) is proposed in this paper. Vibration models with non-ideal factors are provided based on the structure characteristics and operation mode of the sensing element. The DRG operates in force balance mode with four control loops. A closed self-excited loop realizes stable vibration amplitude on the basis of peak detection technology and phase control loop. Force-to-rebalance technology is employed for the closed sense loop. A high-frequency carrier loaded on an anchor weakens the effect of parasitic capacitances coupling. The signal detected by the charge amplifier is demodulated and converted into a digital output for subsequent processing. Considering compatibility with digital circuits and output precision demands, a low passband sigma-delta (ΣΔ) analog-to-digital converter (ADC) is implemented with a 111.8dB signal-to-noise ratio (SNR). The analog front-end and digital closed self-excited loop is manufactured with a standard 0.35 µm complementary metal-oxide-semiconductor (CMOS) technology. The experimental results show a bias instability of 2.1 °/h and a nonlinearity of 0.035% over the ± 400° full-scale range.
机译:本文提出了一种微机电系统(MEMS)盘谐振器陀螺仪(DRG)的数字闭环系统设计。基于传感元件的结构特性和操作模式,提供具有非理想因子的振动模型。 DRG在有4个控制循环的力平衡模式下运行。封闭的自激回路基于峰值检测技术和相位控制回路实现稳定的振动幅度。用于闭合感环路的力量对重新平衡技术。装载在锚上的高频载体削弱了寄生电容耦合的效果。由电荷放大器检测的信号被解调并转换成用于后续处理的数字输出。考虑到与数字电路的兼容性和输出精度要求,低通带Sigma-Delta(ΣΔ)模数转换器(ADC)以111.8dB的信噪比(SNR)实现。模拟前端和数字闭合自激回路由标准的0.35μm互补金属氧化物半导体(CMOS)技术制造。实验结果显示出2.1°/ h的偏置不稳定性,非线性为0.035%的±400°满量程范围。

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