Synthesis of hazard-free customized CMOS complex-gate networks under multiple-input changes

This paper addresses the problem of realizing hazard-free single-output Boolean functions through a network of customized complex CMOS gates tailored to a given asynchronous controller specification. A customized CMOS gate network can either be a single CMOS gate or a multilevel network of CMOS gate...

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Veröffentlicht in:33rd Design Automation Conference Proceedings, 1996 S. 77 - 82
Hauptverfasser: Kudva, P., Gopalakrishnan, G., Jacobson, H., Nowick, S.M.
Format: Tagungsbericht
Sprache:Englisch
Veröffentlicht: IEEE 1996
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ISBN:0780332946, 9780780332942
ISSN:0738-100X
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Abstract This paper addresses the problem of realizing hazard-free single-output Boolean functions through a network of customized complex CMOS gates tailored to a given asynchronous controller specification. A customized CMOS gate network can either be a single CMOS gate or a multilevel network of CMOS gates. It is shown that hazard-free requirements for such networks are less restrictive than for simple gate networks. Analysis and efficient synthesis methods to generate such networks under a multiple-input change assumption (MIC) are presented.
AbstractList This paper addresses the problem of realizing hazard-free single-output Boolean functions through a network of customized complex CMOS gates tailored to a given asynchronous controller specification. A customized CMOS gate network can either be a single CMOS gate or a multilevel network of CMOS gates. It is shown that hazard-free requirements for such networks are less restrictive than for simple gate networks. Analysis and efficient synthesis methods to generate such networks under a multiple-input change assumption (MIC) are presented.
Author Gopalakrishnan, G.
Kudva, P.
Jacobson, H.
Nowick, S.M.
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Snippet This paper addresses the problem of realizing hazard-free single-output Boolean functions through a network of customized complex CMOS gates tailored to a...
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StartPage 77
SubjectTerms Boolean functions
Circuit synthesis
Computer science
Control system synthesis
Hazards
Logic gates
Microwave integrated circuits
Minimization
Network synthesis
Permission
Title Synthesis of hazard-free customized CMOS complex-gate networks under multiple-input changes
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