On the design and optimization of a switched-capacitor interface circuit for MEMS capacitive sensors

N. Seraji, M. Yavari
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引用次数: 2

Abstract

In this paper a switched-capacitor (SC) interface circuit that is intended for MEMS capacitive sensors is proposed and designed. In the proposed architecture, both correlated double sampling (CDS) and chopper stabilization (CHS) noise reduction techniques are applied to the interface circuit to reduce the amplifier offset and low frequency noise. The effects of parasitic capacitances between the sensor and its interface circuit which are usually larger than the sense capacitances are carefully analyzed and used to optimize the readout performance. In other words, by analyzing the circuit offset and noise performance in presence of these parasitic capacitances, the suitable values of the circuit parameters such as sampling frequency, chopping frequency, and amplifier unity gain bandwidth are calculated. In comparison to the circuit using only CDS or CHS technique, the resolution variation of the proposed readout circuit is less than 1aF in presence of parasitic capacitances varying up to 20 pF.
MEMS电容式传感器开关电容接口电路的设计与优化
本文提出并设计了一种用于MEMS电容式传感器的开关电容接口电路。在该结构中,在接口电路中采用了相关双采样(CDS)和斩波稳定(CHS)降噪技术,以降低放大器偏置和低频噪声。仔细分析了传感器及其接口电路之间寄生电容的影响,并利用寄生电容来优化读出性能。换句话说,通过分析这些寄生电容存在时的电路失调和噪声性能,计算出采样频率、斩波频率和放大器单位增益带宽等电路参数的合适值。与仅使用CDS或CHS技术的电路相比,在寄生电容变化高达20pf的情况下,所提出的读出电路的分辨率变化小于1aF。
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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