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Detail publikace
ŠEVČÍK, B. BRANČÍK, L. KUBÍČEK, M.
Originální název
Optimized Signaling Method for High-Speed Transmission Channels with Higher Order Transfer Function
Typ
článek v časopise ve Web of Science, Jimp
Jazyk
angličtina
Originální abstrakt
In this paper, the selected results from testing of optimized CMOS friendly signaling method for high speed communications over cables and printed circuit boards (PCBs) are presented and discussed. The proposed signaling scheme uses modified concept of pulse width modulated (PWM) signal which enables to better equalize significant channel losses during data high-speed transmission. Thus, the very effective signaling method to overcome losses in transmission channels with higher order transfer function, typical for long cables and multilayer PCBs, is clearly analyzed in the time and frequency domain. Experimental results of the measurements include the performance comparison of conventional PWM scheme and clearly show the great potential of the modified signaling method for use in low power CMOS friendly equalization circuits, commonly considered in modern communication standards as PCI-Express, SATA or in Multigigabit SerDes interconnects.
Klíčová slova
high-speed signaling; equalization; pulse-width modulation; signal integrity; channel loss; multi-gigabit
Autoři
ŠEVČÍK, B.; BRANČÍK, L.; KUBÍČEK, M.
Vydáno
1. 9. 2017
Nakladatel
Institute of Measurement Science, Slovak Academy of Sciences
Místo
Bratislava, Slovakia
ISSN
1335-8871
Periodikum
Measurement Science Review
Ročník
17
Číslo
4
Stát
Slovenská republika
Strany od
178
Strany do
186
Strany počet
9
URL
http://www.degruyter.com/view/j/msr.2017.17.issue-4/msr-2017-0021/msr-2017-0021.xml?format=INT
BibTex
@article{BUT141084, author="Břetislav {Ševčík} and Lubomír {Brančík} and Michal {Kubíček}", title="Optimized Signaling Method for High-Speed Transmission Channels with Higher Order Transfer Function", journal="Measurement Science Review", year="2017", volume="17", number="4", pages="178--186", doi="10.1515/msr-2017-0021", issn="1335-8871", url="http://www.degruyter.com/view/j/msr.2017.17.issue-4/msr-2017-0021/msr-2017-0021.xml?format=INT" }