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Silicone as an optical material = : Silikon als Optikwerkstoff

It has been experimentally proved that silicone eleastomers (SiRs) have sufficiently good optical waveguide performance in two different areas of applications: fiberoptic devices and biochemical instrumentation. An UV-curable SiR has been used as a waveguide in a 1:8 splitter and in a fiberoptical t... Full description

Published: Berlin, Offenbach, VDE-Verlag, 1994
Kongresse: International Conference on Micro Electro 1994.10.19-1994.10.21 Berlin, DE
Micro System Technologies 4 1994.10.19-1994.10.21 Berlin, DE
International Conference on Micro Electro 1994.10.19-1994.10.21 Berlin, DE
Micro System Technologies 94 1994.10.19-1994.10.21 Berlin, DE
Micro Systems Technology 94 1994.10.19-1994.10.21 Berlin, DE
Contained in: Micro Systems Technology 94, Micro System Technologies, International Conference on Micro Electro, Opto, Mechanical Systems and Components, 4 (1994), p. 1055-1062
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Additional Keywords: BIOCHEMIE
ELASTOMER
FASEROPTIK
KOSTEN
OPTIKWERKSTOFF
SILICON:POLYMER
Notes: Copyright: Metadaten: TEMA, Copyright WTI-Frankfurt eG
Copyright: (C) Alle Rechte beim Herausgeber
Physical Description: 8 Seiten, 5 Bilder, 10 Quellen
PPN (Catalogue-ID): WTI031594794
Note: WTI TEMA DB
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Internes Format
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084 |a 3KXO  |a 3GSB  |2 FON2006 
245 0 0 |a Silicone as an optical material =  |b Silikon als Optikwerkstoff 
264 3 1 |a Berlin, Offenbach  |b VDE-Verlag  |c 1994 
300 |a 8 Seiten, 5 Bilder, 10 Quellen 
500 |a Copyright: Metadaten: TEMA, Copyright WTI-Frankfurt eG 
500 |a Copyright: (C) Alle Rechte beim Herausgeber 
520 |a It has been experimentally proved that silicone eleastomers (SiRs) have sufficiently good optical waveguide performance in two different areas of applications: fiberoptic devices and biochemical instrumentation. An UV-curable SiR has been used as a waveguide in a 1:8 splitter and in a fiberoptical transmitter module, as well as in a chemical analysis system with a fluorescent detector. This demonstrates that these materials have a potential of being widely used in future low cost optoelectronic microsystems. 
653 4 |a SILICON:POLYMER 
653 4 |a OPTIKWERKSTOFF 
653 4 |a FASEROPTIK 
653 4 |a ELASTOMER 
653 4 |a BIOCHEMIE 
653 4 |a KOSTEN 
711 2 |a International Conference on Micro Electro  |d 1994.10.19-1994.10.21  |c Berlin, DE 
711 2 |a Micro System Technologies  |n 4  |d 1994.10.19-1994.10.21  |c Berlin, DE 
711 2 |a International Conference on Micro Electro  |d 1994.10.19-1994.10.21  |c Berlin, DE 
711 2 |a Micro System Technologies  |n 94  |d 1994.10.19-1994.10.21  |c Berlin, DE 
711 2 |a Micro Systems Technology 94  |d 1994.10.19-1994.10.21  |c Berlin, DE 
773 0 8 |i In  |t Micro Systems Technology 94, Micro System Technologies, International Conference on Micro Electro, Opto, Mechanical Systems and Components, 4  |g (1994), p. 1055-1062  |q <1055-1062  |z 3-8007-2058-2  |z 3-8007-2058-2 
912 |a GBV_WTI 
950 |a Silikon (Polymer)  |a Optikwerkstoff  |a Faseroptik  |a Elastomer  |a Biochemie  |a Kosten  |2 DE-601 
951 |a AR 
952 |j 1994  |h 1055-1062