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  4. A 32 Gb/s PAM-16 TX and ADC-Based RX AFE with 2-tap embedded analog FFE in 28 nm FDSOI
 
research article

A 32 Gb/s PAM-16 TX and ADC-Based RX AFE with 2-tap embedded analog FFE in 28 nm FDSOI

Çelik, Firat  
•
Akkaya, Ayça  
•
Leblebici, Yusuf  
2021
Microelectronics Journal

This paper presents a 32 Gb/s 16-level pulse amplitude modulation (PAM-16) source-series-terminated transmitter (TX) and a receiver (RX) analog front-end (AFE) in 28 nm FDSOI. The 8-way time-interleaved successive-approximation register (SAR) analog-to-digital-converter (ADC) in the RX AFE has an embedded 2-tap analog feed-forward equalizer. The design objective is to optimize the energy efficiency for the target data rate and the moderate-loss channel. For this purpose, the optimum modulation order that has the least ISI sensitivity for the given equalization capability is decided with a modeling study. All the equalization is performed in the analog domain to avoid the circuit complexity and power consumption disadvantages of the digital equalization in the selected high-order modulation. Thanks to the spectral efficiency of PAM-16 and the analog-only equalization, the figure-of-merit is improved significantly. Post-layout simulations show that the TX consumes 26.85 mW while the RX AFE consumes 49.36 mW at 32 Gb/s with PAM-16, which corresponds to 2.38 pJ/bit for the whole system.

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Type
research article
DOI
10.1016/j.mejo.2020.104967
Author(s)
Çelik, Firat  
Akkaya, Ayça  
Leblebici, Yusuf  
Date Issued

2021

Published in
Microelectronics Journal
Volume

108

Article Number

104967

Subjects

Pulse amplitude modulation (PAM)

•

Source-series-terminated (SST) transmitter (TX)

•

Analog-to-digital-converter (ADC) based receiver (RX)

•

Embedded feed-forward equalizer (FFE)

•

Continuous-time linear equalizer (CTLE)

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

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Available on Infoscience
January 16, 2021
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/174741
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