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Journal Article 10-Gb/s Data Transmission Experiments Over Polymeric Waveguides With 850-nm Wavelength Multimode VCSEL Array
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Authors
Keun Byoung Yoon, In Kui Cho, Seung Ho Ahn
Issue Date
2004-09
Citation
IEEE Photonics Technology Letters, v.16, no.9, pp.2147-2149
ISSN
1041-1135
Publisher
IEEE
Language
English
Type
Journal Article
DOI
https://dx.doi.org/10.1109/LPT.2004.833049
Project Code
03MB4300, Integrated Optical Interconnection Module for 100Gbps Systems, Ahn Seung Ho
Abstract
A practical transmitter module was demonstrated, using a metal optical bench (MOB) and a tapered polymeric waveguide. The transmitter module was prepared for optical printed circuit board, which consists of the MOB, the driver chips, the vertical-cavity surface-emitting laser (VCSEL), and a tapered polymeric waveguide. We report a 10-Gb/s 223 - 1 pseudorandom bit sequence nonreturn-to-zero of data transmission from VCSEL to a multimode fiber block through a tapered polymeric waveguide. The tapered polymeric waveguide is fabricated with a large core size (100 × 60 μm 2) by means of a hot embossing technique. The propagation loss of a tapered polymeric waveguide was approximately 0.1 dB/cm at 850 nm. © 2004 IEEE.
KSP Keywords
850 nm, Core size, Data transmission, Hot embossing technique, Large core, Multimode fiber, Optical printed circuit board(OPCB), Propagation loss, Pseudorandom bit sequence, S 22, VCSEL array