DocumentCode :
830872
Title :
An approach for increasing drive-mode bandwidth of MEMS vibratory gyroscopes
Author :
Acar, Cenk ; Shkel, Andrei M.
Author_Institution :
Mech. & Aerosp. Eng. Dept., Univ. of California, Irvine, CA, USA
Volume :
14
Issue :
3
fYear :
2005
fDate :
6/1/2005 12:00:00 AM
Firstpage :
520
Lastpage :
528
Abstract :
The limitations of the photolithography-based micromachining technologies defines the upper-bound on the performance and robustness of micromachined gyroscopes. Conventional gyroscope designs based on matching (or near-matching) the drive and sense modes are extremely sensitive to variations in oscillatory system parameters that shift the natural frequencies and introduce quadrature errors. Nonconventional design concepts have been reported that increase bandwidth to improve robustness, but with the expense of response gain reduction. This paper presents a new approach that may yield robust vibratory MEMS gyroscopes with better gain characteristics while retaining the wide bandwidth. The approach is based on utilizing multiple drive-mode oscillators with incrementally spaced resonance frequencies to achieve wide-bandwidth response in the drive-mode, leading to improved robustness to structural and thermal parameter fluctuations. Enhanced mode-decoupling is achieved by distributing the linear drive-mode oscillators radially and symmetrically, to form a multidirectional linear drive-mode and a torsional sense-mode; minimizing quadrature error and zero-rate output. The approach has been implemented on bulk-micromachined prototypes fabricated in a silicon-on-insulator (SOI)-based process, and experimentally demonstrated.
Keywords :
gyroscopes; inertial systems; micromachining; microsensors; photolithography; MEMS vibratory gyroscopes; drive-mode bandwidth; enhanced mode-decoupling; inertial sensors; linear drive-mode oscillators; micromachined gyroscopes; multiple drive-mode oscillators; natural frequencies; oscillatory system parameters; photolithography-based micromachining technologies; quadrature errors; rate sensors; resonance frequencies; response gain reduction; sense modes; silicon-on-insulator-based process; structural parameter fluctuations; thermal parameter fluctuations; torsional sense-mode; zero-rate output; Bandwidth; Fluctuations; Gyroscopes; Micromachining; Micromechanical devices; Oscillators; Prototypes; Resonance; Resonant frequency; Robustness; Inertial sensors; MEMS; micromachined gyroscopes; rate sensors;
fLanguage :
English
Journal_Title :
Microelectromechanical Systems, Journal of
Publisher :
ieee
ISSN :
1057-7157
Type :
jour
DOI :
10.1109/JMEMS.2005.844801
Filename :
1438422
Link To Document :
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