DocumentCode
1115349
Title
SU-8 Optical Accelerometers
Author
Llobera, Andreu ; Seidemann, Volker ; Plaza, José A. ; Cadarso, Víctor Javier ; Büttgenbach, Stephanus
Author_Institution
Inst. fur Mikrotechnik, Tech. Univ. Braunschweig
Volume
16
Issue
1
fYear
2007
Firstpage
111
Lastpage
121
Abstract
This paper presents the optimization and characterization of SU-8 quad beam optical accelerometers based on intensity modulation. An applied acceleration causes a misalignment between three waveguides, resulting in variation of losses. Mechanical simulations have focused on the evaluation of sensitivity and the design of a robust junction between the mechanical beams and the inertial mass. Results demonstrate that perfectly rounded structures show at least 4.4 times less stress than L-shaped counterparts. Optical simulation predicts that the optimal configuration in terms of sensitivity is obtained when the waveguides are not completely misaligned, since then losses are insensitive to variations in acceleration. Numerical sensitivities ranging between 11.12 and 32.14 dB/g have been obtained. Fabrication has been simplified, now requiring only two photolithographic steps and electroplating Cu as a sacrificial layer. Experimental results show a reproducible experimental sensitivity of at least 13.1 dB/g
Keywords
accelerometers; electroplating; micromechanical devices; optimisation; photolithography; polymers; MOEMS; SU-8; compliant structures; electroplating; inertial mass; intensity modulation; mechanical beams; microoptoelectromechanical systems; optical accelerometers; optimization; photolithographic steps; polymer technology; Acceleration; Accelerometers; Intensity modulation; Optical beams; Optical losses; Optical modulation; Optical sensors; Optical waveguides; Robustness; Stress; Accelerometer; SU-8; compliant structures; microoptoelectromechanical systems (MOEMS); polymer technology;
fLanguage
English
Journal_Title
Microelectromechanical Systems, Journal of
Publisher
ieee
ISSN
1057-7157
Type
jour
DOI
10.1109/JMEMS.2006.885845
Filename
4099370
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