2014Unpublished venueRequires access

Junctionless composite transistor for Ultra Low Power applications

Anand Kumar, Mukta Singh Parihar, Abhinav Kranti

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Abstract

In this work, we investigate the behavior of an Ultra Low Power (ULP) composite transistor in conventional inversion mode (INV) and junctionless (JL) topologies. JL ULP transistor shows enhanced on-to-off current ratio and lower leakage current at elevated temperatures. JL ULP inverter designed with composite transistor shows enhanced noise margin. The work demonstrates new opportunities for realizing future ULP circuits with junctionless transistor.

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What this paper is about

In this work, we investigate the behavior of an Ultra Low Power (ULP) composite transistor in conventional inversion mode (INV) and junctionless (JL) topologies. JL ULP transistor shows enhanced on-to-off current ratio and lower leakage current at elevated temperatures. JL ULP inverter designed with composite transistor shows enhanced noise margin. The work demonstrates new opportunities for realizing future ULP circuits with junctionless transistor.

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Available abstract

In this work, we investigate the behavior of an Ultra Low Power (ULP) composite transistor in conventional inversion mode (INV) and junctionless (JL) topologies. JL ULP transistor shows enhanced on-to-off current ratio and lower leakage current at elevated temperatures. JL ULP inverter designed with composite transistor shows enhanced noise margin. The work demonstrates new opportunities for realizing future ULP circuits with junctionless transistor.

Key concepts: Transistor, Noise margin, Electrical engineering, Materials science, Composite number, Inverter, Electronic circuit, Optoelectronics

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