An 8-Gb/s optical backplane bus based on microchannel interconnects: Design, fabrication, and performance measurements

Citation
G. Kim et al., An 8-Gb/s optical backplane bus based on microchannel interconnects: Design, fabrication, and performance measurements, J LIGHTW T, 18(11), 2000, pp. 1477-1486
Citations number
15
Categorie Soggetti
Optics & Acoustics
Journal title
JOURNAL OF LIGHTWAVE TECHNOLOGY
ISSN journal
07338724 → ACNP
Volume
18
Issue
11
Year of publication
2000
Pages
1477 - 1486
Database
ISI
SICI code
0733-8724(200011)18:11<1477:A8OBBB>2.0.ZU;2-K
Abstract
We describe the characteristics of a microchannel-based optical backplane i ncluding signal-to-noise ratio (SNR), interconnect distances, and data tran sfer rates. The backplane employs 250 mum-spacing two-dimensional (2-D) ver tical cavity surface emitting Lasers (VCSELs) and a microlens array to impl ement 500 mum-, 750 mum-, and 1-mm optical beam arrays. By integrating the transmitter and a multiplexed polymeric hologram as a deflector/beam-splitt er for the guided-wave optical backplane, the result demonstrates a multibu s line architecture and its high-speed characteristics. Maximum interconnec t distances of 6 cm and 14 cm can be achieved to satisfy 10(-12) bit error rate (BER) using 2 x 2 beams of 500 mum- and 1 mm-spacing array devices. Th e total data transfer rate of the developed backplane has shown 8 Gb/s from eye diagram measurements.