A 10 NANO-G/RT-HZ RESONANT MEMS ACCELEROMETER EMPLOYING ANTI-ALIASING CONTROL

Milind S. Pandit, G. Sobreviela, Callisto Pili, P. Steinmann, Douglas Young, Chun Zhao, Colin Baker, A. Seshia
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Abstract

Optimization of the oscillator front-end for resonant sensors is critical to addressing key metrics such as noise floor and output stability. This paper reports a method to improve the noise floor of resonant MEMS accelerometers by avoiding aliasing of high-frequency seismic noise for long-period measurements. In particular, the optimization of a Phase Locked Loop (PLL) front-end is employed for continuous tracking of the output. A noise floor improvement of 13x is seen in comparison to the case with no anti-aliasing control. A custom PLL is designed to mitigate the impact of high-frequency noise enabling the realization of a resonant accelerometer sensor module with a noise floor of 10 ng/√Hz.
采用抗混叠控制的10纳米g / rt-hz谐振mems加速度计
谐振传感器的振荡器前端优化对于解决诸如本底噪声和输出稳定性等关键指标至关重要。本文报道了一种通过避免长周期测量高频地震噪声混叠来改善谐振式MEMS加速度计本底噪声的方法。特别地,优化锁相环(PLL)前端用于输出的连续跟踪。与没有抗混叠控制的情况相比,噪声底改善了13倍。定制锁相环旨在减轻高频噪声的影响,从而实现10 ng/√Hz的谐振加速度计传感器模块。
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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