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Design and FPGA verification of a quasi-cyclic LDPC code for optical communication systems.

, , , , and . LATINCOM, page 1-6. IEEE, (2016)

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An Error Backpropagation-based Background Calibration of Pipeline TI-ADCs for 256-QAM Optical Coherent Receivers., , , , and . LASCAS, page 1-4. IEEE, (2021)Design and FPGA verification of a quasi-cyclic LDPC code for optical communication systems., , , , and . LATINCOM, page 1-6. IEEE, (2016)A 90 nm CMOS DSP MLSD Transceiver With Integrated AFE for Electronic Dispersion Compensation of Multimode Optical Fibers at 10 Gb/s., , , , , , , , , and 13 other author(s). IEEE J. Solid State Circuits, 43 (12): 2939-2957 (2008)On the Markovian approximation for block-errors in DS-CDMA transmissions over slow fading channels with multicarrier transmit diversity.. ICC, page 737-741. IEEE, (2002)On first-order Markov modeling for block errors on fading channels.. VTC Spring, page 1336-1339. IEEE, (2002)Backpropagation Based Background Compensation of TI-DAC Errors in High-Speed Transmitters., , , and . MWSCAS, page 1-4. IEEE, (2022)Joint sampling-time error and channel skew calibration of time-interleaved ADC in multichannel fiber optic receivers., , , and . ISCAS, page 2981-2984. IEEE, (2012)Carrier phase recovery without pilot symbols for non-differential coherent receivers., , and . OFC, page 1-3. IEEE, (2016)Background Compensation of Frequency Interleaved DAC for Optical Transceivers., , , and . LASCAS, page 1-4. IEEE, (2021)Evaluation of the Performance Impact of Clock Jitter and Phase Noise in a Two-Band Frequency-Interleaved ADC., , , and . ICECS, page 1-4. IEEE, (2023)