Title :
Parallel-optical interconnects >100 gb/s
Author :
Windover, Lisa A Buckman ; Simon, Jonathan N. ; Rosenau, Steven A. ; Giboney, Kirk S. ; Flower, Graham M. ; Mirkarimi, Laura W. ; Grot, Annette ; Law, Benjamin ; Lin, Chao-Kun ; Tandon, Ashish ; Gruhlke, Russell W. ; Xia, Hui ; Rankin, Glenn ; Tan, Michae
Author_Institution :
Agilent Labs., Agilent Technol. Inc., Palo Alto, CA, USA
Abstract :
A parallel-optical interconnect with 12 channels operating at 8.5 Gb/s giving an aggregate data rate of 102 Gb/s is demonstrated, to the authors´ knowledge, for the first time. The paper describes and demonstrates 13 × 16-mm cross-section 12-channel parallel-optic transmitter and receiver modules with each channel operating at a data rate of 8.5-10 Gb/s. This was achieved using bottom-emitting 990-nm vertical-cavity surface-emitting lasers and bottom-illuminated InGaAs-InP photodetectors flip-chip bonded directly to 12-channel transmitter and receiver integrated circuits, respectively. In addition, 102-Gb/s link results are demonstrated over 100 m of 50-μm-core standard multimode ribbon fiber. A bit-error ratio of <10-13 was measured on a single channel after transmission through 100 m of multimode fiber at a data rate of 8.5 Gb/s with all 12 channels operating simultaneously.
Keywords :
data communication; error statistics; integrated optoelectronics; optical arrays; optical fibre communication; optical fibres; optical interconnections; optical receivers; optical transmitters; photodetectors; surface emitting lasers; 100 m; 102 Gbit/s; 12-channel parallel-optic transmitter; 13 mm; 16 mm; 50 mum; 8.5 to 10 Gbit/s; 990 nm; InGaAs-InP; InGaAs-InP photodetectors; bit-error ratio; bottom-illuminated photodetectors; data communication; flip-chip bonding; multimode fiber; optical arrays; optical fiber communication; parallel optics; parallel-optical interconnects; receiver integrated circuits; receiver modules; standard multimode ribbon fiber; vertical-cavity surface-emitting lasers; Bonding; Integrated circuit interconnections; Laboratories; Open source hardware; Optical fiber communication; Optical interconnections; Optical receivers; Optical transmitters; Surface emitting lasers; Vertical cavity surface emitting lasers; Data communication; interconnections; optical arrays; optical fiber communication; parallel optics; surface-emitting lasers;
Journal_Title :
Lightwave Technology, Journal of
DOI :
10.1109/JLT.2004.833258