DocumentCode :
2231697
Title :
Design and realization of magnetic actuators for optical matrix micro-switches
Author :
Houlet, L. ; Reyne, G. ; Bourouina, T. ; Yasui, M. ; Hirabayashi, Y. ; Ozawa, T. ; Okano, Y. ; Fujita, H.
Author_Institution :
LIMMS/CNRS-IIS, Univ. of Tokyo, Japan
fYear :
2002
fDate :
20-23 Aug. 2002
Firstpage :
113
Lastpage :
114
Abstract :
The research presented here deals with the design and the realization of matrix of copper microcoils as flat magnetic actuators for the actuation of optical matrix micro-switches. The matrix of micro-switches is composed by an array of vertical mirror supported by a silicon base. The bases are supported by springs connected to the frame of the matrix. The fixed optical fibers are inserted on the outer frame inside V-grooves. Due to the diameter of the light beam from optic fibers, large out-of-plane vertical displacements of the mirrors (more than 100 /spl mu/m) are to be achieved. This is compatible with large range electromagnetic actuation rather than electrostatic actuation. Earlier calculations performed under ANSYS/sup TM/ 5.6 showed that a magnetic force of about one milinewton is able to move the mirrors with such displacement range. Magnetic simulations have been performed under FLUX2D/sup TM/ in order to appraise some parameters in a real actuation configuration where the matrix of micro-coils is located below the matrix of micro-switches.
Keywords :
electromagnetic actuators; micro-optics; optical switches; Cu; FLUX2D simulation; MOEMS technology; Si; copper microcoil; magnetic actuator; optical fiber; optical matrix microswitch; vertical mirror array; Actuators; Copper; Electromagnetic compatibility; Microswitches; Mirrors; Optical beams; Optical design; Optical fibers; Silicon; Springs;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Optical MEMs, 2002. Conference Digest. 2002 IEEE/LEOS International Conference on
Conference_Location :
Lugano, Switzerland
Print_ISBN :
0-7803-7595-5
Type :
conf
DOI :
10.1109/OMEMS.2002.1031469
Filename :
1031469
Link To Document :
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