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Real-time 100 Gb/s transmission using three-level electrical duobinary modulation for short-reach optical interconnects

(2017) JOURNAL OF LIGHTWAVE TECHNOLOGY. 35(7). p.1313-1319
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Abstract
Electrical duobinary modulation is considered as a promising way to realize high capacity because of the low bandwidth requirement on the optical/electrical components and high tolerance toward chromatic dispersion. In this paper, we demonstrate a 100 Gb/s electrical duobinary transmission over 2 km standard single-mode fiber reaching a bit error rate under 7% HD-FEC threshold with the use of PRBS7. This link is tested in real-time without any form of digital signal processing. In-house developed SiGe BiCMOS transmitter and receiver ICs are used to drive an electroabsorption modulated laser and decode the received signal from a PIN-photodiode. The performance of 50 and 70 Gb/s nonreturn-to-zero and electrical duobinary transmission are investigated for comparison.
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Citation

Please use this url to cite or link to this publication:

Chicago
Verplaetse, Michiel, Rui Lin, Joris Van Kerrebrouck, Oskars Ozolins, Timothy De Keulenaer, Xiaodan Pang, Ramses Pierco, et al. 2017. “Real-time 100 Gb/s Transmission Using Three-level Electrical Duobinary Modulation for Short-reach Optical Interconnects.” Journal of Lightwave Technology 35 (7): 1313–1319.
APA
Verplaetse, M., Lin, R., Van Kerrebrouck, J., Ozolins, O., De Keulenaer, T., Pang, X., Pierco, R., et al. (2017). Real-time 100 Gb/s transmission using three-level electrical duobinary modulation for short-reach optical interconnects. JOURNAL OF LIGHTWAVE TECHNOLOGY, 35(7), 1313–1319.
Vancouver
1.
Verplaetse M, Lin R, Van Kerrebrouck J, Ozolins O, De Keulenaer T, Pang X, et al. Real-time 100 Gb/s transmission using three-level electrical duobinary modulation for short-reach optical interconnects. JOURNAL OF LIGHTWAVE TECHNOLOGY. 2017;35(7):1313–9.
MLA
Verplaetse, Michiel, Rui Lin, Joris Van Kerrebrouck, et al. “Real-time 100 Gb/s Transmission Using Three-level Electrical Duobinary Modulation for Short-reach Optical Interconnects.” JOURNAL OF LIGHTWAVE TECHNOLOGY 35.7 (2017): 1313–1319. Print.
@article{8526511,
  abstract     = {Electrical duobinary modulation is considered as a promising way to realize high capacity because of the low bandwidth requirement on the optical/electrical components and high tolerance toward chromatic dispersion. In this paper, we demonstrate a 100 Gb/s electrical duobinary transmission over 2 km standard single-mode fiber reaching a bit error rate under 7\% HD-FEC threshold with the use of PRBS7. This link is tested in real-time without any form of digital signal processing. In-house developed SiGe BiCMOS transmitter and receiver ICs are used to drive an electroabsorption modulated laser and decode the received signal from a PIN-photodiode. The performance of 50 and 70 Gb/s nonreturn-to-zero and electrical duobinary transmission are investigated for comparison.},
  author       = {Verplaetse, Michiel and Lin, Rui and Van Kerrebrouck, Joris and Ozolins, Oskars and De Keulenaer, Timothy and Pang, Xiaodan and Pierco, Ramses and Vaernewyck, Renato and Vyncke, Arno and Schatz, Richard and Westergren, Urban and Jacobsen, Gunnar and Popov, Sergei and Chen, Jiajia and Torfs, Guy and Bauwelinck, Johan and Yin, Xin},
  issn         = {0733-8724},
  journal      = {JOURNAL OF LIGHTWAVE TECHNOLOGY},
  keyword      = {IBCN},
  language     = {eng},
  number       = {7},
  pages        = {1313--1319},
  title        = {Real-time 100 Gb/s transmission using three-level electrical duobinary modulation for short-reach optical interconnects},
  url          = {http://dx.doi.org/10.1109/JLT.2016.2643778},
  volume       = {35},
  year         = {2017},
}

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