First Experimental Demonstration of Real-Time End-to-End Multi-Band 25.25Gb/s Optical OFDM Transmission over 300m OM2 MMFs Employing 4GS/s DACs/ADCs

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First Experimental Demonstration of Real-Time End-to-End Multi-Band 25.25Gb/s Optical OFDM Transmission over 300m OM2 MMFs Employing 4GS/s DACs/ADCs. / Giddings, Roger P.; Hugues-Salas, Emilio; Zhang, Qianwu W. et al.
Asia Communications and Photonics Conference 2013. 2013. AF1F.4.

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

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Giddings, RP, Hugues-Salas, E, Zhang, QW & Tang, JM 2013, First Experimental Demonstration of Real-Time End-to-End Multi-Band 25.25Gb/s Optical OFDM Transmission over 300m OM2 MMFs Employing 4GS/s DACs/ADCs. in Asia Communications and Photonics Conference 2013., AF1F.4, Asia Communications and Photonics Conference 2013, Beijing, China, 12/11/13. https://doi.org/10.1364/ACPC.2013.AF1F.4

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Giddings RP, Hugues-Salas E, Zhang QW, Tang JM. First Experimental Demonstration of Real-Time End-to-End Multi-Band 25.25Gb/s Optical OFDM Transmission over 300m OM2 MMFs Employing 4GS/s DACs/ADCs. In Asia Communications and Photonics Conference 2013. 2013. AF1F.4 doi: 10.1364/ACPC.2013.AF1F.4

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TY - GEN

T1 - First Experimental Demonstration of Real-Time End-to-End Multi-Band 25.25Gb/s Optical OFDM Transmission over 300m OM2 MMFs Employing 4GS/s DACs/ADCs

AU - Giddings, Roger P.

AU - Hugues-Salas, Emilio

AU - Zhang, Qianwu W.

AU - Tang, Jianming M.

N1 - ACPC; T3: OSA Technical Digest (online); ID: 90 M1 -

PY - 2013

Y1 - 2013

N2 - Record-high real-time 25.25Gb/s OOFDM transmissions over 300m MMFs are achieved using a baseband and IQ modulated passband. The adaptive bit/power-loaded, independently power-optimised sub-bands are combined to intensity modulate an EML. All sub-bands exhibit similar performance.

AB - Record-high real-time 25.25Gb/s OOFDM transmissions over 300m MMFs are achieved using a baseband and IQ modulated passband. The adaptive bit/power-loaded, independently power-optimised sub-bands are combined to intensity modulate an EML. All sub-bands exhibit similar performance.

U2 - 10.1364/ACPC.2013.AF1F.4

DO - 10.1364/ACPC.2013.AF1F.4

M3 - Conference contribution

BT - Asia Communications and Photonics Conference 2013

T2 - Asia Communications and Photonics Conference 2013

Y2 - 12 November 2013 through 15 November 2013

ER -