DocumentCode :
1937289
Title :
1060-nm 10-Gb/s × 12-channel parallel-optical modules for optical interconnects
Author :
Uemura, Toshinori ; Ishikawa, Yozo ; Nekado, Yoshinobu ; Izawa, Atsushi ; Yoshihara, Masakazu ; Nasu, Hideyuki
Author_Institution :
FITEL Photonics Lab., Furukawa Electr. Co., Ltd., Chiba, Japan
fYear :
2010
fDate :
24-26 Aug. 2010
Firstpage :
1
Lastpage :
4
Abstract :
Optical interconnects has been a key technology to realize signal transmission in rack-to-rack application where active optical cables (AOCs) such as QSFP have been employed so far. At present, it is required to mount parallel-optical modules with high-density to increase multiple numbers of signals in board-to-board applications which are highly expected in the next order of rack-to-rack applications. On the other hand, power reduction is a key issue in the next generation board-to-board optical interconnects where a low power consumption as same as 10 mW/Gb/s/link is required based on the trend of power reduction. To realize low power optical interconnects, we have been proposing 1060-nm optical interconnects which also achieve high speed modulation, high reliability, and high signal quality. We fabricated TX and RX 1060-nm 10-Gb/s × 12-channel parallel-optical modules. The mechanical size is as small as 13 mm × 13 mm × 3.4 mm. Operating all 12 channels in TX and RX parallel-optical modules simultaneously, we have achieved error-free transmission over the case temperature range ranging up 15°C to 80°C in back-to-back. We also achieved error-free transmission for a legacy OM-2 multimode fiber of 300m with the power penalty less than 2.0 dB. By using high-efficient 1060 nm VCSELs, power reduction is expected where we achieved optical link power of 7 mW/Gb/s/link at the case temperature of 80°C. We performed reliability tests based on Tercordia GR-468. The results show that the optical modules are highly reliable since the variation of optical output power is less than ±10% in all reliability tests.
Keywords :
optical interconnections; reliability; 12-channel parallel optical module; Tercordia GR-468; active optical cable; board-to-board application; error-free transmission; high reliability; high signal quality; high speed modulation; low power consumption; low power optical interconnect; next generation board-to-board optical interconnect; optical link power; optical output power; power reduction; rack-to-rack application; reliability test; signal transmission; size 1060 nm; Adaptive optics; High speed optical techniques; Optical attenuators; Optical fibers; Optical interconnections;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
CPMT Symposium Japan, 2010 IEEE
Conference_Location :
Tokyo
Print_ISBN :
978-1-4244-7593-3
Type :
conf
DOI :
10.1109/CPMTSYMPJ.2010.5680209
Filename :
5680209
Link To Document :
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