DocumentCode :
1124918
Title :
Higher Order Noise-Shaping Filters for High-Performance Micromachined Accelerometers
Author :
Dong, Yufeng ; Kraft, Michael ; Redman, William
Author_Institution :
Southampton Univ., Southampton
Volume :
56
Issue :
5
fYear :
2007
Firstpage :
1666
Lastpage :
1674
Abstract :
Micromachined inertial sensors that have been incorporated in sigma-delta force-feedback loops have been proven to improve linearity, dynamic range, and bandwidth, and also provide a direct digital output. Previous work mainly focused on using the sensing element only to form a second-order single-loop sigma-delta modulator (SigmaDeltaM); however, the advantages of higher order single-loop electromechanical SigmaDeltaM have not been fully explored. High-performance inertial sensors require higher signal-to-quantization noise ratio (SQNR). This paper presents topologies for higher order single-loop electromechanical SigmaDeltaM with optimal stable coefficients that lead to a better SQNR. The topologies have good immunity to fabrication tolerances, which was verified by Monte Carlo analysis. The topologies are applicable not only to accelerometers but also to other inertial sensors such as gyroscopes.
Keywords :
Monte Carlo methods; accelerometers; filters; micromachining; microsensors; sigma-delta modulation; Monte Carlo analysis; SQNR; SigmaDeltaM; fabrication tolerances; high-performance micromachined accelerometers; higher order noise-shaping filters; micromachined inertial sensors; second-order single-loop sigma-delta modulator; sigma-della force-feedback loops; signal-to-quantization noise ratio; Accelerometers; Bandwidth; Delta-sigma modulation; Dynamic range; Electromechanical sensors; Filters; Linearity; Noise shaping; Signal to noise ratio; Topology; Filter topologies; higher order; inertial sensors; microelectromechanical systems (MEMS); noise transfer function (NTF); sigma–delta modulation;
fLanguage :
English
Journal_Title :
Instrumentation and Measurement, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9456
Type :
jour
DOI :
10.1109/TIM.2007.904477
Filename :
4303399
Link To Document :
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