DocumentCode
1425167
Title
Fabrication of High Glass Transition Temperature Graded-Index Plastic Optical Fiber: Part 2—Fiber Fabrication and Characterizations
Author
Nakao, Ryosuke ; Kondo, Atsushi ; Koike, Yasuhiro
Author_Institution
Sekisui Chem. Co., Ltd., Kyoto, Japan
Volume
30
Issue
7
fYear
2012
fDate
4/1/2012 12:00:00 AM
Firstpage
969
Lastpage
973
Abstract
Graded-index plastic optical fiber (GI POF) whose core material consisted of copolymer of 2,2,2-trichloroethyl methacrylate and N-cyclohexyl maleimide, and diphenyl sulfide (DPS) as dopant was fabricated by the dopant diffusion coextrusion process, where poly(methyl methacrylate) and polycarbonate were employed as cladding and overcladding material, respectively. The glass transition temperature Tg of the core material was set to 115 ° C by modifying copolymer composition ratio and DPS content. The attenuation of the copolymer-based GI POF was 132 and 330 dB/km at the wavelengths of 660 and 780 nm, respectively. The bandwidths were 1.7 GHz and over 2 GHz for 774 and 654 nm wavelength, respectively. Due to the high numerical aperture of 0.3, the bending loss of the sample fiber consisting of 250 μm core diameter was ca. 0.03 dB under conditions of 180° , 10 mm radius, one time bending. As a result of heat resistance performance evaluation, the attenuation was preserved for more than 2000 h at 100 ° C. In mechanical property evaluation, the elongation at yield point was ca. 6.7% and tensile load at yield point was 26.2 N (61.0 N/mm2), and sufficient flexibility was confirmed by the kink stress test. From these results, the GI POF can be used as high-speed data transmissible lines in automobiles and aircraft, and interconnections inside electric appliances.
Keywords
bending; gradient index optics; optical fibre cladding; optical fibre fabrication; optical fibre losses; optical fibre testing; polymer blends; polymer fibres; bandwidth 1.7 GHz; copolymer composition ratio; diphenyl sulfide; dopant diffusion coextrusion process; fiber fabrication; graded-index plastic optical fiber; heat resistance performance evaluation; high glass transition temperature; kink stress test; overcladding material; polycarbonate were; size 250 mum; temperature 100 degC; temperature 115 degC; tensile load; time 2000 h; wavelength 654 nm; wavelength 660 nm; wavelength 774 nm; wavelength 780 nm; yield point; Attenuation; Optical fiber testing; Optical fibers; Plastics; Polymers; Coextrusion process; graded-index plastic optical fiber (GI POF); high glass transition temperature; poly(2,2,2-trichloroethyl methacrylate-$co$ - $N$ -cyclohexyl maleimide);
fLanguage
English
Journal_Title
Lightwave Technology, Journal of
Publisher
ieee
ISSN
0733-8724
Type
jour
DOI
10.1109/JLT.2012.2184740
Filename
6133320
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