(Enter summary)
Abstract: Asynchronous design techniques for digital circuits have during the recent years gained more
attention. The major motivation for this is that synchronous circuits cannot fully take advantage
of the improvements made in integrated circuit technology. In complex high performance circuits,
in state-of-the-art CMOS technologies, the global clock distribution net is the speed limiting
factor and a major source of power dissipation. Asynchronous circuits remove the
requirements on global... (Update)
Context of citations to this paper: More
...in the system. To overcome this problem at a system level, the designer could use different design techniques e.g. asynchronous logic [55], highly parallel low speed structures [13,17] isosynchronous techniques [1] electronic packaging and design for production have...
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BibTeX entry: (Update)
Bengt Oelmann, "Design and performance evaluation of asynchronous micropipeline circuits for digital radio", Lic. thesis, ISSN 1104-8697, Royal Institute of Technology, Stockholm, Sweden, 1996. http://citeseer.ist.psu.edu/oelmann96design.html More
@misc{ oelmann96design,
author = "B. Oelmann",
title = "Design and performance evaluation of asynchronous micropipeline circuits
for digital radio",
text = "Bengt Oelmann, Design and performance evaluation of asynchronous micropipeline
circuits for digital radio, Lic. thesis, ISSN 1104-8697, Royal Institute
of Technology, Stockholm, Sweden, 1996.",
year = "1996",
url = "citeseer.ist.psu.edu/oelmann96design.html" }
Citations (may not include all citations):
40
CMOS circuit speed and buffer optimization (context) - Hedenstierna, Jeppson - 1986
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A Fully-Asynchronous Low-Power Error Corrector for the DCC P.. (context) - van Berkel, Burgess et al. - 1994
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