Average-case optimized technology mapping of one-hot domino circuits*

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Publication Type Journal Article
School or College College of Engineering
Department Electrical & Computer Engineering
Creator Myers, Chris J.; Stevens, Kenneth
Other Author Chou, Wei-chun; Beerel, Peter A.; Ginosar, Ran; Kol, Rakefet; Rotem, Shai; Yun, Kenneth Y.
Title Average-case optimized technology mapping of one-hot domino circuits*
Date 1998
Description This paper presents a technology mapping technique for optimizing the average-case delay of asynchronous combinational circuits implemented using domino logic and one-hot encoded outputs. The technique minimizes the critical path for common input patterns at the possible expense of making less common critical paths longer. To demonstrate the application of this technique, we present a case study of a combinational length decoding block, an integral component of an Asynchronous Instruction Length Decoder (AILD) which can be used in PentiumR processors. The experimental results demonstrate that the average-case delay of our mapped circuits can be dramatically lower than the worst-case delay of the circuits obtained using conventional worst-case mapping techniques.
Type Text
Publisher Institute of Electrical and Electronics Engineers (IEEE)
First Page 1
Last Page 12
Language eng
Bibliographic Citation Chou, W., Beerel, P. A., Ginosar, R., Kol, R., Myers, C. J., Rotem, S., Stevens, K., & Yun, K. Y. (1998). Average-case optimized technology mapping of one-hot domino circuits. The Fourth International Symposium on Advanced Research in Asynchronous Circuits and Systems, 1-12. April.
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Format Medium application/pdf
Format Extent 240,574 bytes
Identifier ir-main,15048
ARK ark:/87278/s61v5zg6
Setname ir_uspace
ID 705706
Reference URL https://collections.lib.utah.edu/ark:/87278/s61v5zg6
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