2006•Unpublished venueRequires access

Design of Clocked Transmission Gate Adiabatic Logic Circuit Based on the 3ECEAC

Wang Pengjun, Junjun Yu, Jian Feng Xu

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Abstract

Based on investigation of the theory of three essential circuit elements for multi-valued circuits, this paper presented a universal circuit theory for adiabatic circuits, namely the theory of three essential circuit elements for adiabatic circuits (3ECEAC). This theory was applied to design a new cross-memory adiabatic circuit adopting two-phase power clocks-clocked transmission gate adiabatic logic (CTGAL) circuit. CTGAL circuit was simulated by HSPICE. The simulation results indicated that the logic function of CTGAL circuit designed based on the 3ECEAC was correct so as to verify the 3ECEAC, and CTGAL circuit had the character of remarkable low power

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What this paper is about

Based on investigation of the theory of three essential circuit elements for multi-valued circuits, this paper presented a universal circuit theory for adiabatic circuits, namely the theory of three essential circuit elements for adiabatic circuits (3ECEAC). This theory was applied to design a new cross-memory adiabatic circuit adopting two-phase power clocks-clocked transmission gate adiabatic logic (CTGAL) circuit. CTGAL circuit was simulated by HSPICE. The simulation results indicated that the logic function of CTGAL circuit designed based on the 3ECEAC was correct so as to verify the 3ECEAC, and CTGAL circuit had the character of remarkable low power

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Available abstract

Based on investigation of the theory of three essential circuit elements for multi-valued circuits, this paper presented a universal circuit theory for adiabatic circuits, namely the theory of three essential circuit elements for adiabatic circuits (3ECEAC). This theory was applied to design a new cross-memory adiabatic circuit adopting two-phase power clocks-clocked transmission gate adiabatic logic (CTGAL) circuit. CTGAL circuit was simulated by HSPICE. The simulation results indicated that the logic function of CTGAL circuit designed based on the 3ECEAC was correct so as to verify the 3ECEAC, and CTGAL circuit had the character of remarkable low power

Key concepts: Adiabatic circuit, Adiabatic process, Logic gate, Electronic circuit, Electronic engineering, Logic family, Computer science, Equivalent circuit

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