20152015 2nd International Conference on Electronics and Communication Systems (ICECS)Requires access

Variation of power dissipation for Adiabatic CMOS and conventional CMOS digital circuits

Sakshi Goyal, Gurvinder Singh, Pushpinder Sharma

Open publisher page 14 citations

Abstract

From the past few decades, VLSI technologyhas been growing to the large extent. All credit for this goes to the increasing usage of integrated circuits for every embedded system, mobile technologies, computing systems, etc. Increasing growth and use of technology has increased the thirst for low energy or power consumption. An Adiabatic approach is perfect solution for the designing of power and energy efficient designs. The word `Adiabatic' refers to the change of state that occurs without the loss or gain of heat. This paper studies low power design techniques and justifies the need of energy recovery adiabatic circuits over conventional CMOS. The logic circuits based on traditional CMOS Logic and positive feedback Adiabatic Logic will be designed and simulated using standard 90nm CMOS technology at a frequency of 50MHz. Tanner EDA tool is used for designing the schematic and analysis. The S-EDIT is used to design the schematic and T-SPICE is used to Simulate and check the results of Power Dissipation. W-EDIT is used to display the simulation results in the form of waveform.

About this research paper

What this paper is about

From the past few decades, VLSI technologyhas been growing to the large extent. All credit for this goes to the increasing usage of integrated circuits for every embedded system, mobile technologies, computing systems, etc. Increasing growth and use of technology has increased the thirst for low energy or power consumption. An Adiabatic approach is perfect solution for the designing of power and energy efficient designs. The word `Adiabatic' refers to the change of state that occurs without the loss or gain of heat. This paper studies low power design techniques and justifies the need of energy recovery adiabatic circuits over conventional CMOS. The logic circuits based on traditional CMOS Logic and positive feedback Adiabatic Logic will be designed and simulated using standard 90nm CMOS technology at a frequency of 50MHz. Tanner EDA tool is used for designing the schematic and analysis. The S-EDIT is used to design the schematic and T-SPICE is used to Simulate and check the results of Power Dissipation. W-EDIT is used to display the simulation results in the form of waveform.

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Available abstract

From the past few decades, VLSI technologyhas been growing to the large extent. All credit for this goes to the increasing usage of integrated circuits for every embedded system, mobile technologies, computing systems, etc. Increasing growth and use of technology has increased the thirst for low energy or power consumption. An Adiabatic approach is perfect solution for the designing of power and energy efficient designs. The word `Adiabatic' refers to the change of state that occurs without the loss or gain of heat. This paper studies low power design techniques and justifies the need of energy recovery adiabatic circuits over conventional CMOS. The logic circuits based on traditional CMOS Logic and positive feedback Adiabatic Logic will be designed and simulated using standard 90nm CMOS technology at a frequency of 50MHz. Tanner EDA tool is used for designing the schematic and analysis. The S-EDIT is used to design the schematic and T-SPICE is used to Simulate and check the results of Power Dissipation. W-EDIT is used to display the simulation results in the form of waveform.

Key concepts: CMOS, Adiabatic circuit, Dissipation, Electronic circuit, Digital electronics, Integrated injection logic, Electronic engineering, Electrical engineering

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