DocumentCode
814444
Title
Analytical approach and numerical α-lines method for pull-in hyper-surface extraction of electrostatic actuators with multiple uncoupled voltage sources
Author
Elata, David ; Bochobza-Degani, Ofir ; Nemirovsky, Yael
Author_Institution
Mech. Eng. Dept., Technion Israel Inst. of Technol., Haifa, Israel
Volume
12
Issue
5
fYear
2003
Firstpage
681
Lastpage
691
Abstract
This work presents a systematic analysis of electrostatic actuators driven by multiple uncoupled voltage sources. The use of multiple uncoupled voltage sources has the potential of enriching the electromechanical response of electrostatically actuated deformable elements. This in turn may enable novel MEMS devices with improved and even new capabilities. It is therefore important to develop methods for analyzing this class of actuators. Pull-in is an inherent instability phenomenon that emanates from the nonlinear nature of the electromechanical coupling in electrostatic actuators. The character of pull-in in actuators with multiple uncoupled voltage sources is studied, and new insights regarding pull-in are presented. An analytical method for extracting the pull-in hyper-surface by directly solving the voltage-free K-N pull-in equations derived here, is proposed. Solving simple but interesting example problems illustrate these new insights. In addition, a novel α-lines numerical method for extracting the pull-in hyper-surface of general electrostatic actuators is presented and illustrated. This α-lines method is motivated by new features of pull-in, that are exhibited only in electrostatic actuators with multiple uncoupled voltage sources. This numerical method permits the analysis of electrostatic actuators that could not have been analyzed by using current methods.
Keywords
capacitance; electrostatic actuators; numerical analysis; stability; MEMS devices; clamped-clamped beam actuator; electromechanical coupling; electromechanical response; electrostatically actuated deformable elements; general electrostatic actuators; interdigitated fingers actuator; multiple uncoupled voltage sources; numerical α-lines method; pull-in hyper-surface extraction; pull-in instability phenomenon; voltage free K-N pull-in equations; Electric variables control; Electrostatic actuators; Electrostatic analysis; Equations; Microelectromechanical devices; Micromechanical devices; Micromirrors; Optical variables control; Stability; Voltage control;
fLanguage
English
Journal_Title
Microelectromechanical Systems, Journal of
Publisher
ieee
ISSN
1057-7157
Type
jour
DOI
10.1109/JMEMS.2003.818456
Filename
1240139
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