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Experimental evaluation of NRZ and duobinary up to 48 Gbit/s for electrical backplanes

(2015) ELECTRONICS LETTERS. 51(8). p.618-619
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Abstract
Transmission beyond 40 Gbit/s across a commercial Megtron 6, 11.5-inch electrical backplane is explored, and a record error-free serial electrical duobinary transmission of up to 48 Gbit/s including backplane connectors is demonstrated. Compared with non-return-to-zero (NRZ), the equalised duobinary transmission over the backplane demonstrates improved performance due to its higher bandwidth efficiency, and opens possibilities to increase the serial speed of backplane channels. Bit error rates are presented at different data rates and over different backplane channel lengths.
Keywords
non return-to-zero, equalised duobinary transmission, electrical backplane connector, serial electrical duobinary transmission, bit error rate, backplane channel length, commercial Megtron 6

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Chicago
Ban, Yu, Timothy De Keulenaer, Guy Torfs, Jeffrey Sinsky, Bartek Kozicki, and Johan Bauwelinck. 2015. “Experimental Evaluation of NRZ and Duobinary up to 48 Gbit/s for Electrical Backplanes.” Electronics Letters 51 (8): 618–619.
APA
Ban, Y., De Keulenaer, T., Torfs, G., Sinsky, J., Kozicki, B., & Bauwelinck, J. (2015). Experimental evaluation of NRZ and duobinary up to 48 Gbit/s for electrical backplanes. ELECTRONICS LETTERS, 51(8), 618–619.
Vancouver
1.
Ban Y, De Keulenaer T, Torfs G, Sinsky J, Kozicki B, Bauwelinck J. Experimental evaluation of NRZ and duobinary up to 48 Gbit/s for electrical backplanes. ELECTRONICS LETTERS. 2015;51(8):618–9.
MLA
Ban, Yu, Timothy De Keulenaer, Guy Torfs, et al. “Experimental Evaluation of NRZ and Duobinary up to 48 Gbit/s for Electrical Backplanes.” ELECTRONICS LETTERS 51.8 (2015): 618–619. Print.
@article{5946594,
  abstract     = {Transmission beyond 40 Gbit/s across a commercial Megtron 6, 11.5-inch electrical backplane is explored, and a record error-free serial electrical duobinary transmission of up to 48 Gbit/s including backplane connectors is demonstrated. Compared with non-return-to-zero (NRZ), the equalised duobinary transmission over the backplane demonstrates improved performance due to its higher bandwidth efficiency, and opens possibilities to increase the serial speed of backplane channels. Bit error rates are presented at different data rates and over different backplane channel lengths.},
  author       = {Ban, Yu and De Keulenaer, Timothy and Torfs, Guy and Sinsky, Jeffrey and Kozicki, Bartek and Bauwelinck, Johan},
  issn         = {0013-5194},
  journal      = {ELECTRONICS LETTERS},
  language     = {eng},
  number       = {8},
  pages        = {618--619},
  title        = {Experimental evaluation of NRZ and duobinary up to 48 Gbit/s for electrical backplanes},
  url          = {http://dx.doi.org/10.1049/el.2014.3710},
  volume       = {51},
  year         = {2015},
}

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