Logic Synthesis Method for Dual-Rail RSFQ Digital Circuits Using Root-Shared Binary Decision Diagrams(VLSI Design Technology and CAD)
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概要
- 論文の詳細を見る
We propose a new method of logic synthesis for dual-rail RSFQ (rapid single-flux-quantum) digital circuits. RSFQ circuit technology is one of the strongest candidates for the next generation technology of digital circuits. For representing logic functions, we use a root-shared binary decision diagram (RSBDD) which is a directed acyclic graph constructed from binary decision diagrams. In the method, first we construct an RSBDD from given logic functions, and then reduce the number of nodes in the constructed RSBDD by variable re-ordering. Finally, we synthesize a dual-rail RSFQ circuit from the reduced RSBDD. We have implemented the method and have synthesized benchmark circuits. We have synthesized dual-rail circuits that consist of about 27% fewer logic elements than those synthesized by a Transduction-based method on average.
- 社団法人電子情報通信学会の論文
- 2007-01-01
著者
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Obata Koji
Department of Phamacology, Achigakuin University School of Dentistry
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Obata Koji
Nagoya Univ. Nagoya‐shi Jpn
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Takagi Kazuyoshi
Department Of Surgery Kurume University School Of Medicine
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Takagi Kazuyoshi
Department Of Information Engineering Nagoya University
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TAKAGI Naofumi
Department of Information Engineering, Nagoya University
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Obata Koji
Department Of Information Engineering Nagoya University
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Takagi Kazuyoshi
Nagoya Univ. Nagoya‐shi Jpn
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Takagi Kazuyoshi
Graduate School Of Information Science Nagoya University
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Takagi Naofumi
Department Of Information Engineering Nagoya University
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Takagi Naofumi
Graduate School Of Information Science Nagoya University
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Takagi Kazuyoshi
Department Of Applied Chemistry Faculty Of Life Sciences Ritsumeikan University
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Takagi Naofumi
Department Of Communications And Computer Engineering Kyoto University
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