Title :
A polymer waveguide-based 40 Gb/s optical bus backplane for board-level optical interconnects
Author :
Bamiedakis, N. ; Hashim, Aniqah ; Penty, Richard V. ; White, Ian H.
Author_Institution :
Dept. of Eng., Univ. of Cambridge, Cambridge, UK
Abstract :
Optical interconnects are increasingly considered for use in high-performance electronic systems. Multimode polymer waveguides are a promising technology for the formation of optical backplanes as they enable cost-effective integration of optical links onto standard printed circuit boards. In this paper, we present a 40 Gb/s optical backplane demonstrator based on the use of polymer multimode waveguides and a regenerative shared bus architecture. The system allows bus extension by cascading multiple polymeric bus modules through 3R regenerator units enabling the connection of an arbitrary number of electrical cards onto the bus. The proof-of-principle demonstrator reported here is formed with low-cost, commercially-available active devices and electronic components mounted on conventional FR4 substrates and achieves error-free 4×10 Gb/s optical interconnection between any two card interfaces on the bus.
Keywords :
modules; optical backplanes; optical links; optical polymers; optical waveguides; printed circuits; system buses; 3R regenerator; FR4 substrates; bit rate 10 Gbit/s; bit rate 40 Gbit/s; board-level optical interconnects; bus extension; cost-effective integration; multimode polymer waveguides; multiple polymeric bus modules; optical bus backplane; optical links; regenerative shared bus architecture; Integrated optics; Optical device fabrication; Optical interconnections; Optical polymers; Optical waveguides; Repeaters; board-level optoelectronic integration; optical backplane; optical interconnects; polymer waveguides;
Conference_Titel :
Transparent Optical Networks (ICTON), 2013 15th International Conference on
Conference_Location :
Cartagena
DOI :
10.1109/ICTON.2013.6602918