DocumentCode
3440463
Title
Novel ASIC architecture and synthesis methodologies for future multiplexed datapath designs
Author
Catthoor, Francky ; Wehn, Norbert ; Courtois, B. ; De Man, H. ; van Eijndhoven, J. ; Glesner, Manfred ; Goutis, C. ; Jess, J. ; Madsen, J. ; O´Brien, Kevin ; Olesen, O. ; Philipson, L. ; Pochmuller, P.
fYear
1991
fDate
13-16 May 1991
Firstpage
506
Lastpage
511
Abstract
An overview is presented of the main objectives and current achievements of the architecture synthesis work within part of the Basic Research Action ASCIS (architecture synthesis for complex integrated systems) project. The main goal of this work is to contribute to the solution of one of the major bottlenecks restricting the use of ASICs in industrial systems, namely, the lack of efficient design methodologies and corresponding CAD techniques which support the development of cost-effective application-specific architectures for given throughput or latency. The following areas of the project are emphasized: novel design methodologies and CAD techniques for partitioning, memory management, allocation, binding and scheduling; generic global optimization techniques to support those synthesis approaches; and performance-driven controller synthesis
Keywords
application specific integrated circuits; circuit CAD; ASIC architecture; CAD techniques; allocation; application-specific architectures; binding; generic global optimization; industrial systems; latency; memory management; multiplexed datapath designs; partitioning; performance-driven controller synthesis; scheduling; throughput; Application specific integrated circuits; Costs; Data processing; Delay; Design automation; Design methodology; Hardware; Real time systems; Signal processing; Throughput;
fLanguage
English
Publisher
ieee
Conference_Titel
CompEuro '91. Advanced Computer Technology, Reliable Systems and Applications. 5th Annual European Computer Conference. Proceedings.
Conference_Location
Bologna
Print_ISBN
0-8186-2141-9
Type
conf
DOI
10.1109/CMPEUR.1991.257438
Filename
257438
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