Journal of Microelectromechanical Systems · 2010 · 16 citations · 21 references
Out-of-plane MicromirrorEngineeringMechanical DesignMicrofabricationAerospace EngineeringOptic DesignOptomechanical SystemMechanical SystemsPolysilicon MicromirrorFreeform OpticOptical SwitchingOptomechanicsMicropositioningOptical SystemsMicro-optical ComponentOptical TolerancingOptical System AnalysisMicro-electromechanical System
Out-of-plane micromirrors have been developed for a wide range of applications including optical switching, beam steering, and precise transmission and reception of bio-optical signals. This paper focuses on the design, simulation, and testing of a rotating out-of-plane micromirror. The system consists of a polysilicon micromirror, which is erected to an out-of-plane position using a relatively simple postprocessing procedure. The mirror is mounted on a gear which has a rotational freedom of 360° and can be driven at frequencies ranging from 1 to 1000 Hz using an electrostatically actuated rotational drive. Multiple out-of-plane configurations of the mirror are possible, with each utilizing a serpentine spring that attaches the mirror to the gear and a position specific ¿catch block¿ to allow 30 °, 45° , 60°, 75°, and 90° orientations of the mirror. This paper focuses on the 45° out-of-plane mirror, and it was tested for robustness as well as optical performance. A good correlation was found between experiment and various simulations.
21
David Huang, Eric A. Swanson, Charles P. Lin et al. · Science · 1991 · 13.5K citations
A MEMS-based projection display
Peter F. Van Kessel, Larry J. Hornbeck, Reto Meier et al. · Proceedings of the IEEE · 1998 · 611 citations
Mems-based Projection Display, Engineering, Display Industry +18
Kristofer S. J. Pister, Michael W. Judy, Steve R. Burgett et al. · Sensors and Actuators A Physical · 1992 · 279 citations