DocumentCode :
2923528
Title :
Surface-normal electrostatic/pneumatic actuator
Author :
Gabriel, K.J. ; Tabata, O. ; Shimaoka, K. ; Sugiyama, S. ; Fujita, H.
fYear :
1992
fDate :
4-7 Feb 1992
Firstpage :
128
Lastpage :
132
Abstract :
An electrostatically driven, pneumatic actuator able to generate surface-normal deflections is described. Two sealed, air-filled, concentric chambers that share a membrane and are connected by channels make up the actuator. The portion of the membrane suspended over the outer chamber serves as the movable electrode plate while the conducting substrate acts as the fixed, opposing electrode plate of an electrostatic actuator. When a voltage is applied across the two plates, the outer-chamber membrane deflects towards the substrate, decreasing the volume in the outer chamber. The decreased volume produces a concomitant increase in the pressure in both the outer and inner chamber, causing the membrane over the inner chamber to deflect away from the substrate. The deflection of the membrane over the inner chamber is not only in the opposite direction to the outer membrane deflection, but is also amplified. Prototype surface-normal actuators have been fabricated with inner chamber radii ranging between 100 and 250 μm and outer chamber radii ranging between 200 and 750 μm
Keywords :
electric actuators; electropneumatic control equipment; electrostatic devices; membranes; micromechanical devices; air-filled; concentric chambers; electrostatic actuator; electrostatically driven; microactuator; outer-chamber membrane; pneumatic actuator; surface-normal deflections; Biomedical computing; Biomedical engineering; Biomembranes; Dielectric materials; Electrodes; Electrostatic actuators; Laboratories; Pneumatic actuators; Research and development; Voltage;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Micro Electro Mechanical Systems, 1992, MEMS '92, Proceedings. An Investigation of Micro Structures, Sensors, Actuators, Machines and Robot. IEEE
Conference_Location :
Travemunde
Print_ISBN :
0-7803-0497-7
Type :
conf
DOI :
10.1109/MEMSYS.1992.187703
Filename :
187703
Link To Document :
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