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Journal Article Demonstration of high-speed transmission through waveguide-embedded optical backplane
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Authors
Seung Ho Ahn, In Kui Cho, Sang Pil Han, Keun Byoung Yoon, Man Seop Lee
Issue Date
2006-08
Citation
Optical Engineering, v.45, no.8, pp.1-34
ISSN
0091-3286
Publisher
SPIE
Language
English
Type
Journal Article
DOI
https://dx.doi.org/10.1117/1.2338557
Abstract
The system performance of data- and telecommunication equipment must keep up with the increasing network speed. Optical interconnections technology is a promising alternative for high-throughput systems. We demonstrate the optical backplane system using a waveguide-embedded optical backplane and two processing boards. The transmitter and receiver modules were prepared for optical printed circuit boards (PCBs), which consists of the metal optical bench, the driver chips, vertical-cavity surface-emitting lasers (VCSELs), photodiodes, and a tapered polymeric waveguide. We report high-speed transmission of 27-1 pseudorandom bit sequence (PRBS) nonreturn to zero (NRZ) data up to 10 Gbits/s through the optical backplane system. The results demonstrate that the optical backplane system can be practical and valuable for the future high-throughput systems by using metal optical bench and precisely machined optical plug-adaptor structure to achieve stable board-to-board interconnection. © 2006 Society of Photo-Optical Instrumentation Engineers.
KSP Keywords
Board-to-board, High throughput(HTP), High-speed transmission, Network speed, Optical backplane, Optical instrumentation, Optical interconnection, Optical printed circuit board(OPCB), Pseudorandom bit sequence, System performance, Transmitter and receiver