2012Unpublished venueRequires access

An improved feedthrough logic for low power circuit design

Soumya Sahoo, Kamala Kanta Mahapatra

Open publisher page 5 citations

Abstract

This paper presents the design of a low power dynamic circuit using a new CMOS domino logic family called feedthrough logic. Dynamic logic circuits are more significant because of its faster speed and lesser transistor requirement as compared to static CMOS logic circuits. The proposed circuit has very low dynamic power consumption compared to the recently proposed circuit techniques for the dynamic logic styles. The concept is validated through extensive simulation. The problem of requirement of output inverter and non-inverting logic are also completely eliminated in the proposed design.

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What this paper is about

This paper presents the design of a low power dynamic circuit using a new CMOS domino logic family called feedthrough logic. Dynamic logic circuits are more significant because of its faster speed and lesser transistor requirement as compared to static CMOS logic circuits. The proposed circuit has very low dynamic power consumption compared to the recently proposed circuit techniques for the dynamic logic styles. The concept is validated through extensive simulation. The problem of requirement of output inverter and non-inverting logic are also completely eliminated in the proposed design.

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OpenAlex reports 5 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

This paper presents the design of a low power dynamic circuit using a new CMOS domino logic family called feedthrough logic. Dynamic logic circuits are more significant because of its faster speed and lesser transistor requirement as compared to static CMOS logic circuits. The proposed circuit has very low dynamic power consumption compared to the recently proposed circuit techniques for the dynamic logic styles. The concept is validated through extensive simulation. The problem of requirement of output inverter and non-inverting logic are also completely eliminated in the proposed design.

Key concepts: Pass transistor logic, Feedthrough, Logic family, Dynamic logic (digital electronics), Domino logic, Logic gate, Logic optimization, Electronic engineering

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