Master data

Title: A 16 Gbps, Full-Duplex Transceiver over Lossy On-Chip Interconnects in 28 nm CMOS Technology
Subtitle:
Abstract:

A high-speed full-duplex transceiver (FDT) over lossy on-chip interconnects is presented. The FDT employs a hybrid circuit to separate the inbound and outbound signals from each other and also performs echo-cancellation with the help of the main and the auxiliary drivers. A hybrid MOS device is utilized for impedance matching and conversion of the received voltage signal into a current signal for amplification. Moreover, a compensation capacitance (Cc) is used at the output of the main driver to minimize the residual echo signal and achieve a higher data rate. The entire FDT architecture has been designed in TSMC 28 nm CMOS standard process with 0.9 V supply voltage. The performance results validate a 16 Gbps FD operation with a root-mean-square (RMS) jitter of 16.4 ps, and a power efficiency of 0.16 pJ/b/mm over a 5 mm on-chip interconnect without significant effect due to process-voltage-temperature (PVT) variations. To the best knowledge of the authors, this work shows the highest achievable full-duplex data rate, among the solutions reported in the literature to date, yet with low complexity, low layout area of 1581 µm2 and competitive power efficiency.

Keywords: bidirectional; CMOS; echo-cancellation; full-duplex; high-speed; low-voltage; on-chip interconnect; simultaneous; transceiver
Publication type: Article in journal (Authorship)
Publication date: 26.04.2020 (Online)
Published by: Electronics
Electronics
to publication
 ( MDPI Publishing; )
Title of the series: -
Volume number: -
Issue: -
First publication: Yes
Version: -
Page: pp. 1 - 13

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Keine Version vorhanden
Publication date: 26.04.2020
ISBN (e-book): -
eISSN: 2079-9292
DOI: http://dx.doi.org/10.3390/electronics9050717
Homepage: https://www.mdpi.com/2079-9292/9/5/717
Open access
  • Appeared in open access journal

Assignment

Organisation Address
Fakultät für Technische Wissenschaften
 
Institut für Vernetzte und Eingebettete Systeme
Universitätsstraße 65-67
9020 Klagenfurt am Wörthersee
Austria
  -993640
   kornelia.lienbacher@aau.at
https://nes.aau.at/
To organisation
Universitätsstraße 65-67
AT - 9020  Klagenfurt am Wörthersee

Categorisation

Subject areas
Research Cluster No research Research Cluster selected
Citation index
  • Science Citation Index Expanded (SCI Expanded)
Information about the citation index: Master Journal List
Peer reviewed
  • Yes
Publication focus
  • Science to Science (Quality indicator: I)
Classification raster of the assigned organisational units:
working groups
  • Embedded Communication Systems Group

Cooperations

Organisation Address
Fachhochschule Kärnten (Campus Villach)
Europastraße 4
9524 Villach
Austria - Carinthia
Europastraße 4
AT - 9524  Villach

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