DocumentCode :
463110
Title :
Ray Trace Analysis in Optical PCB Systems Using Micro-optic Connectors for 90° Deflection of Light Beams
Author :
Kim, Do-Won ; Lim, Dong-Min ; Cho, Mu Hee ; Kang, Minho ; Park, Hyo-Hoon
Author_Institution :
Lab. of Opt. Interconnection & Switching, Inf. & Commun. Univ, Daejeon
Volume :
2
fYear :
2007
fDate :
12-14 Feb. 2007
Firstpage :
1402
Lastpage :
1406
Abstract :
Optical coupling efficiencies of distance and angular misalignment tolerances were investigated for a polymeric waveguide system and a silica fiber layer system through a ray trace simulation method. The polymeric waveguide system has 45deg-ended mirror connectors and a silica fiber layer system has 90deg-bent fiber connectors in an optical PCB. As misalignment tolerances have larger values, coupling efficiencies gradually decreased, which is more rapid at the second and third interfaces than the first interface of the optical transmission system. The lowest angular misalignment coupling efficiency within the test range is around 10 dB, which is larger loss than 5 dB in the case of distance misalignment. Optical 3 dB degradation distances of y-direction at the first interface are 320 mum and 390 mum for the polymeric waveguide system and fiber layer system respectively. Optical 3 dB degradation distances of other directions at three interfaces except for light propagation direction are within 50 mum.
Keywords :
micromirrors; optical communication equipment; optical couplers; optical waveguides; printed circuits; ray tracing; light beams deflection; light propagation direction; micro-optic connectors; mirror connectors; misalignment tolerances; optical PCB systems; optical coupling efficiencies; optical transmission system; polymeric waveguide system; ray trace analysis; silica fiber layer system; Connectors; Mirrors; Optical coupling; Optical fiber testing; Optical losses; Optical polymers; Optical propagation; Optical waveguides; Silicon compounds; Thermal degradation; 3 dB degradation distance; 45°-ended mirror connectors; 90°-bent fiber connectors; OPCB(Optical Printed Circuit Boards); Optical coupling efficiency; misalignment tolerance; polymeric waveguide; silica fiber layer;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Advanced Communication Technology, The 9th International Conference on
Conference_Location :
Gangwon-Do
ISSN :
1738-9445
Print_ISBN :
978-89-5519-131-8
Type :
conf
DOI :
10.1109/ICACT.2007.358618
Filename :
4195419
Link To Document :
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