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Main Authors: S, Lephe, S, Gifrin Fredik Raj, A, Abijesh Euphrine, S, Janaki, C, Jamina, L, Arun Jose
Format: Preprint
Published: 2023
Subjects:
Online Access:https://arxiv.org/abs/2312.08351
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author S, Lephe
S, Gifrin Fredik Raj
A, Abijesh Euphrine
S, Janaki
C, Jamina
L, Arun Jose
author_facet S, Lephe
S, Gifrin Fredik Raj
A, Abijesh Euphrine
S, Janaki
C, Jamina
L, Arun Jose
contents Desirably, the world relies on the devices being compact, as they could drive to the increased functionality of integrated circuits at the provided footstep, that is becoming more reliable. To reduce the scalability over the devices, approach has been outlined utilizing the NDR mode reconfigurable functionality over the transistors. Being an individual device efficient in exhibiting different task with the different configurations in the same physical circuitry. On the view of reconfigurable transistors, possibly authorize the reconfiguration from a p-type to n-type channel transistor has been expelled as an emerging application such as static memory cells, fast switching logic circuits as well as energy efficient computational multi valued logic. This article emphasizes NDR mode RFET along with its classification, followed by enhancing the RFET technology concepts and RFETs future potential has been discussed briefing with the growing applications like hardware security as well as neuro-inspired computing.
format Preprint
id arxiv_https___arxiv_org_abs_2312_08351
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Challenges and Opportunities in Implementing Negative Differential Resistance Mode Reconfigurable Field Effect Transistors
S, Lephe
S, Gifrin Fredik Raj
A, Abijesh Euphrine
S, Janaki
C, Jamina
L, Arun Jose
Materials Science
Disordered Systems and Neural Networks
Applied Physics
Desirably, the world relies on the devices being compact, as they could drive to the increased functionality of integrated circuits at the provided footstep, that is becoming more reliable. To reduce the scalability over the devices, approach has been outlined utilizing the NDR mode reconfigurable functionality over the transistors. Being an individual device efficient in exhibiting different task with the different configurations in the same physical circuitry. On the view of reconfigurable transistors, possibly authorize the reconfiguration from a p-type to n-type channel transistor has been expelled as an emerging application such as static memory cells, fast switching logic circuits as well as energy efficient computational multi valued logic. This article emphasizes NDR mode RFET along with its classification, followed by enhancing the RFET technology concepts and RFETs future potential has been discussed briefing with the growing applications like hardware security as well as neuro-inspired computing.
title Challenges and Opportunities in Implementing Negative Differential Resistance Mode Reconfigurable Field Effect Transistors
topic Materials Science
Disordered Systems and Neural Networks
Applied Physics
url https://arxiv.org/abs/2312.08351