JOURNAL ARTICLE

Chopper Stabilized, Low-Power, Low-Noise, Front End Interface Circuit for Capacitive CMOS MEMS Sensor Applications

N. Y. SutriJohn Ojur DennisMohd Haris Md KhirMuhammad Umer MianTong Boon Tang

Year: 2013 Journal:   Modern Applied Science Vol: 7 (12)   Publisher: Canadian Center of Science and Education

Abstract

In this paper, a chopper stabilized fully differential CMOS pre-amplifier circuit is presented. The proposed circuit is designed for sub-atto Farad capacitive CMOS MEMS sensing applications. Chopper stabilization technique is employed to minimize flicker (1/f) noise and offsets in the circuit. The proposed circuit is designed using MIMOS 0.35 ?m AMS CMOS 3.3 V technology and simulation results from Cadence Virtuoso Spectre circuit simulator show that the proposed circuit is able to detect capacitance changes ranging from 0.0375 aF to 37.5 fF, attain an input inferred noise of 0.9 nV/ , gain of 18.1 dB at 3-dB frequency of 5.5 MHz with total power consumption of 0.33 mW.

Keywords:
Chopper CMOS Capacitive sensing Electrical engineering Capacitance Cadence Noise (video) Flicker noise Amplifier Materials science Electronic engineering Computer science Noise figure Voltage Engineering Physics

Metrics

7
Cited By
0.62
FWCI (Field Weighted Citation Impact)
22
Refs
0.76
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

Advanced MEMS and NEMS Technologies
Physical Sciences →  Engineering →  Electrical and Electronic Engineering
Analog and Mixed-Signal Circuit Design
Physical Sciences →  Engineering →  Biomedical Engineering
Mechanical and Optical Resonators
Physical Sciences →  Physics and Astronomy →  Atomic and Molecular Physics, and Optics

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