2018•Unpublished venueRequires access

A Survey on Adiabatic Logic Families for Implementing Reversible Logic Circuits

R. M. Bommi, Raja S Selvakumar

Open publisher page 5 citations

Abstract

In the current scenario, Power utilization plays a major role in VLSI design technology. The need for low power consuming logic devices is rising rapidly and the adiabatic logic provides a great solution. This paper presents performance of adiabatic logic in CMOS with complete analysis and assessment of static adiabatic logic circuits. The current flow all the way through the circuit is controlled such that the energy dissipation because of capacitor dissipation and switching is minimized. When compared to dynamic adiabatic logic, the switching energy is reduced in static adiabatic logic. This improvement is due to the fact that facilitate the discharging operation on a node occurs just when the input signal transition requires a change in the status of the output.

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What this paper is about

In the current scenario, Power utilization plays a major role in VLSI design technology. The need for low power consuming logic devices is rising rapidly and the adiabatic logic provides a great solution. This paper presents performance of adiabatic logic in CMOS with complete analysis and assessment of static adiabatic logic circuits. The current flow all the way through the circuit is controlled such that the energy dissipation because of capacitor dissipation and switching is minimized. When compared to dynamic adiabatic logic, the switching energy is reduced in static adiabatic logic. This improvement is due to the fact that facilitate the discharging operation on a node occurs just when the input signal transition requires a change in the status of the output.

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Available abstract

In the current scenario, Power utilization plays a major role in VLSI design technology. The need for low power consuming logic devices is rising rapidly and the adiabatic logic provides a great solution. This paper presents performance of adiabatic logic in CMOS with complete analysis and assessment of static adiabatic logic circuits. The current flow all the way through the circuit is controlled such that the energy dissipation because of capacitor dissipation and switching is minimized. When compared to dynamic adiabatic logic, the switching energy is reduced in static adiabatic logic. This improvement is due to the fact that facilitate the discharging operation on a node occurs just when the input signal transition requires a change in the status of the output.

Key concepts: Adiabatic circuit, Pass transistor logic, Logic family, Logic gate, Adiabatic process, Pull-up resistor, Emitter-coupled logic, Logic level

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