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  4. A 161-mW 56-Gb/s ADC-Based Discrete Multitone Wireline Receiver Data-Path in 14-nm FinFET
 
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research article

A 161-mW 56-Gb/s ADC-Based Discrete Multitone Wireline Receiver Data-Path in 14-nm FinFET

Kim, Gain  
•
Kull, Lukas
•
Luu, Danny
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January 1, 2020
Ieee Journal Of Solid-State Circuits

This article introduces a wireline receiver (RX) data-path employing discrete multi-tone (DMT) modulation for communicating over electrical links. The DMT RX incorporates a fully digital equalization data-path, with a synthesized and automatically placed and routed digital signal processor (DSP) following a 10-bit time-interleaved pipelined successive-approximation register analog-to-digital converter (TI-PISAR ADC). The prototype RX chip implemented in a 14-nm FinFET process demonstrates a lane data rate of 56 Gb/s dissipating 161 mW including the ADC and the DSP power. The energy efficiency of 1.2 pJ/b for the DSP and 2.9 pJ/b for the entire RX was achieved with the data-rate of 56 Gb/s for communicating over channels exhibiting up to 28-dB loss at 14 GHz with a bit-error-rate (BER) better than 2e-4.

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Type
research article
DOI
10.1109/JSSC.2019.2938414
Web of Science ID

WOS:000505792900005

Author(s)
Kim, Gain  
•
Kull, Lukas
•
Luu, Danny
•
Braendli, Matthias
•
Menolfi, Christian
•
Francese, Pier-Andrea
•
Yueksel, Hazar
•
Aprile, Cosimo  
•
Morf, Thomas
•
Kossel, Marcel
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Date Issued

2020-01-01

Publisher

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC

Published in
Ieee Journal Of Solid-State Circuits
Volume

55

Issue

1

Start page

38

End page

48

Subjects

Engineering, Electrical & Electronic

•

Engineering

•

bandwidth

•

quadrature amplitude modulation

•

ofdm

•

time-domain analysis

•

discrete fourier transforms

•

receivers

•

discrete multi-tone (dmt)

•

inter-symbol interference (isi)

•

orthogonal frequency-division multiplexing (ofdm)

•

receiver

•

serdes

•

serial-data transceiver

•

wireline

•

serial data transceiver

•

pam4

Note

IEEE International Solid- State Circuits Conference (ISSCC), Feb 17-21, 2019, San Francisco, CA

Peer reviewed

REVIEWED

Written at

EPFL

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Available on Infoscience
March 3, 2020
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/166824
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