DocumentCode
3561121
Title
Comb-Actuated Resonant Torsional Microscanner With Mechanical Amplification
Author
Arslan, Aslihan ; Brown, Dean ; Davis, Wyatt O. ; Holmstr?¶m, Sven ; Gokce, Sertan Kutal ; Urey, Hakan
Author_Institution
Dept. of Electr. Eng., Koc Univ., Istanbul, Turkey
Volume
19
Issue
4
fYear
2010
Firstpage
936
Lastpage
943
Abstract
A comb-actuated torsional microscanner is developed for high-resolution laser-scanning display systems. Typical torsional comb-drive scanners have fingers placed around the perimeter of the scanning mirror. In contrast, the structure in this paper uses cascaded frames, where the comb fingers are placed on an outer drive frame, and the motion is transferred to the inner mirror frame with a mechanical gain. The structure works only in resonant mode without requiring any offset in the comb fingers, keeping the silicon-on-insulator-based process quite simple. The design intent is to improve actuator efficiency by removing the high-drag fingers from the high-velocity scanning mirror. Placing them on the lower velocity drive frame reduces their contribution to the damping torque. Furthermore, placement on the drive frame allows an increase of the number of fingers and their capacity to impart torque. The microscanner exhibits a parametric response, and as such, the maximum deflection is found when actuated at twice its natural frequency. Analytical formulas are given for the coupled-mode equations and frame deflections. A simple formula is derived for the mechanical-gain factor. For a 1-mm × 1.5-mm oblong scanning mirror, a 76° total optical scan angle is achieved at 21.8 kHz with 196-V peak-to-peak excitation voltages.
Keywords
elastic waves; mirrors; optical scanners; comb-actuated resonant torsional microscanner; coupled-mode equations; frame deflections; high-resolution laser-scanning display systems; maximum deflection; mechanical amplification; scanning mirror; Comb drive; display; high-frequency scanning; mechanical coupling; torsional microscanner;
fLanguage
English
Journal_Title
Microelectromechanical Systems, Journal of
Publisher
ieee
Conference_Location
6/7/2010 12:00:00 AM
ISSN
1057-7157
Type
jour
DOI
10.1109/JMEMS.2010.2048095
Filename
5482108
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