DocumentCode :
758276
Title :
Current drive methods to extend the range of travel of electrostatic microactuators beyond the voltage pull-in point
Author :
Nadal-Guardia, R. ; Dehé, A. ; Aigner, R. ; Castañer, L.M.
Author_Institution :
Wireless Products, Infineon Technol. AG, Munich, Germany
Volume :
11
Issue :
3
fYear :
2002
fDate :
6/1/2002 12:00:00 AM
Firstpage :
255
Lastpage :
263
Abstract :
When a voltage source drives an electrostatic parallel plate actuator, the well-known pull-in instability limits the range of displacement to 1/3 of the gap. Different strategies have been reported to overcome this limitation. More recently, experimental results have been presented using a capacitor in series with the actuator. Nevertheless, this strategy requires higher voltage than the pull-in voltage value to achieve full range of travel. In order to reduce the operating voltage, a switched-capacitor configuration has been also proposed. In this paper, two different approaches are introduced to control charge in the actuator by means of current driving. Theoretical equations derived for each method show that full range of travel can be achieved without voltage penalty. Both approaches are based on the use of current pulses injecting the required amount of charge to fix the position of the movable plate. Experimental measurements, showing that displacement beyond the pull-in point can be achieved, are in good agreement with the theoretical and the predicted simulated behavior
Keywords :
capacitance; electrostatic actuators; semiconductor device models; current drive methods; current pulses; electrostatic microactuators; operating voltage; parallel plate actuator; pull-in instability; series capacitance; simulated behavior; switched-capacitor configuration; voltage pull-in point; Capacitance; Capacitors; Drives; Electrodes; Electrostatic actuators; Equations; Leakage current; Microactuators; Position control; Voltage;
fLanguage :
English
Journal_Title :
Microelectromechanical Systems, Journal of
Publisher :
ieee
ISSN :
1057-7157
Type :
jour
DOI :
10.1109/JMEMS.2002.1007404
Filename :
1007404
Link To Document :
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