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Wideband Mechanical Excitation by a Microcorona-Driven Vibrating Element

Authors
Chua, BeeleeLogeeswaran, V. J.Chan, Mei-LinPark, HyunkyuHorsley, David A.Tien, Norman C.
Issue Date
2월-2015
Publisher
IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
Keywords
Microcorona; space charge; excitation; resonator; oscillation
Citation
JOURNAL OF MICROELECTROMECHANICAL SYSTEMS, v.24, no.1, pp.224 - 231
Indexed
SCIE
SCOPUS
Journal Title
JOURNAL OF MICROELECTROMECHANICAL SYSTEMS
Volume
24
Number
1
Start Page
224
End Page
231
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/94545
DOI
10.1109/JMEMS.2014.2328615
ISSN
1057-7157
Abstract
We have designed, fabricated, and tested a microcorona driven (MCD) vibrating element. The vibrating element consists of a mass plate at the end of a cantilever. The proof mass is selectively driven by either one or two microcorona ionizers. During the dc negative corona discharge, the build-up of negative space charge electrostatically repelled the cathodes on the mass plate against the mechanical elastic force of the spring, damping force, and electrostatic force. This resulted in the wideband mechanical self-excitation of the MCD vibrating element. Using laser Doppler vibrometry (LDV), two resonance frequencies of out-of-plane modes were measured experimentally at peak values of 896 and 1312 Hz, and it was consistent with the ANSYS finite element modal analysis results at similar to 823 and 1323 Hz, respectively. The transition from Trichel pulse mode to diffuse glow mode resulted in a discontinuity in the experimental plot of proof mass velocity versus applied voltage. The MCD vibrating element consumed a maximum power of similar to 100 mW and had a maximum resultant driving force of similar to 0.45 mu N in the first observed driving mode. The maximum out-of-plane oscillation amplitude measured was to be similar to 2 mu m. [2013-0374]
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공과대학 (전기전자공학부)
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