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一款具有低噪声振荡读出电路的、分辨率为14 μHz/√Hz且偏置不稳定性为32 μHz的MEMS石英谐振加速度计。

A 14 μHz/√Hz resolution and 32 μHz bias instability MEMS quartz resonant accelerometer with a low-noise oscillating readout circuit.

作者信息

Bu Kai, Li Cun, Xue Hong, Li Bo, Zhao Yulong

机构信息

State Key Laboratory for Manufacturing Systems Engineering, Xi'an Jiaotong University, 710049, Xi'an, China.

School of Mechanical Engineering, Xi'an Jiaotong University, 710049, Xi'an, China.

出版信息

Microsyst Nanoeng. 2024 Dec 23;10(1):200. doi: 10.1038/s41378-024-00849-4.

Abstract

A differential microelectromechanical system (MEMS) quartz resonant accelerometer with a novel oscillating readout circuit is proposed. The phase noise in a piezoelectric quartz resonant accelerometer has been systematically investigated. A high-performance front-end is used to extract the motional charge from a piezoelectric quartz resonator for the first time. This topology eliminates the tradeoff between the gain, bandwidth, and noise of the traditional front-end. The proposed bandpass front-end provides a 14.5 M gain at the oscillation frequency with a phase drift of 0.04°, ensuring a high-quality factor for the quartz resonator. The proposed bandpass front end also achieves input-referred current noise as low as 30.5 fA/√Hz, which helps improve the bias instability and resolution of the accelerometer. An anti-aliasing phase shifter is designed to regulate the loop bandwidth and compensate for additional phase drifts. To reduce the flicker noise introduced by the nonlinear effect, an amplitude limiter is used to set the resonator operating point. The accelerometer achieves a frequency resolution of 14 μHz/√Hz and bias instability of 32 μHz with a ± 70 g full scale, 54.5 Hz/g scale factor, and 552 Hz bandwidth.

摘要

提出了一种具有新型振荡读出电路的差分微机电系统(MEMS)石英谐振加速度计。对压电石英谐振加速度计中的相位噪声进行了系统研究。首次采用高性能前端从压电石英谐振器中提取运动电荷。这种拓扑结构消除了传统前端在增益、带宽和噪声之间的权衡。所提出的带通前端在振荡频率下提供14.5 M的增益,相位漂移为0.04°,确保了石英谐振器的高品质因数。所提出的带通前端还实现了低至30.5 fA/√Hz的输入参考电流噪声,这有助于提高加速度计的偏置不稳定性和分辨率。设计了一个抗混叠移相器来调节环路带宽并补偿额外的相位漂移。为了减少非线性效应引入的闪烁噪声,使用了一个限幅器来设置谐振器的工作点。该加速度计在±70 g满量程、54.5 Hz/g的比例因子和552 Hz的带宽下,实现了14 μHz/√Hz的频率分辨率和32 μHz的偏置不稳定性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/57fc/11666743/0b43db5a631f/41378_2024_849_Fig1_HTML.jpg

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