Resonance frequency control and digital correction for capacitive MEMS gyroscopes within electromechanical bandpass delta-sigma-modulators

M. Maurer, S. Rombach, Y. Manoli
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引用次数: 2

Abstract

This paper reports on a resonance frequency control for vibratory MEMS gyroscopes. The angular rate readout system is based on a continuous-time electromechanical bandpass Delta-Sigma Modulator (emDSM). Due to mismatch of the mechanical resonance frequencies of the gyroscope the in-band noise (IBN) of the readout system is increased. The presented frequency control concept consists of a digital resonance frequency detection based on injected testsignals and a frequency control which controls the resonance frequency of the gyroscope's detection mass to achieve matched mode condition. The frequency control voltages make use of the spring softening effect. Due to the applied voltages also the feedback force is affected. This causes modulation effects. A novel digital correction will be presented which is able to compensate the modulation effect and decreases the IBN by up to 40 dB.
机电带通δ - σ调制器中电容式MEMS陀螺仪的谐振频率控制和数字校正
本文报道了一种振动式微机电系统陀螺仪的谐振频率控制方法。角速率读出系统是基于一个连续时间机电带通δ - σ调制器(emDSM)。由于陀螺仪的机械谐振频率不匹配,导致读出系统的带内噪声(IBN)增大。提出的频率控制概念包括基于注入测试信号的数字谐振频率检测和控制陀螺仪检测质量的谐振频率以达到匹配模式条件的频率控制。频率控制电压利用了弹簧软化效应。由于施加的电压,反馈力也受到影响。这会引起调制效应。本文提出了一种新的数字校正方法,能够补偿调制效应并将IBN降低40 dB。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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