A Single Memristorbased TTL NOT logic

This article presents a NOT logic gate circuit based on a single memristor, and analyzes it for different biological memristive samples based on extracted resistances. The simple resistorvoltage representation of the memristor in the logic circuit is used to formulate a methodology to tune the para...

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Main Authors: Hirakjyoti Choudhury, Suvankar Paul, Deepjyoti Deb, Prachuryya Subash Das, Rupam Goswami
Format: Article
Language:Spanish
Published: Instituto Tecnológico de Costa Rica 2023-06-01
Series:Tecnología en Marcha
Subjects:
Online Access:https://172.20.14.50/index.php/tec_marcha/article/view/6771
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author Hirakjyoti Choudhury
Suvankar Paul
Deepjyoti Deb
Prachuryya Subash Das
Rupam Goswami
author_facet Hirakjyoti Choudhury
Suvankar Paul
Deepjyoti Deb
Prachuryya Subash Das
Rupam Goswami
author_sort Hirakjyoti Choudhury
collection DOAJ
description This article presents a NOT logic gate circuit based on a single memristor, and analyzes it for different biological memristive samples based on extracted resistances. The simple resistorvoltage representation of the memristor in the logic circuit is used to formulate a methodology to tune the parameters of the circuit in accordance with TTL voltage values. The logic circuit consists of two resistors in series with the memristor. The input is connected to one end of the memristor, and the output is drawn across the series connection of the second resistor, and the memristor. The methodology comprises of two steps, where, in the first step, the logic ‘low’ TTLinput voltages are examined, and in the second step, the circuit is evaluated for logic ‘high’ TTLinput voltages. The methodology reveals that there is a mínimum voltage value of ‘high’ TTL-input beyond which the output does not fall within the logic ‘low’ TTL-output. The proposed technique may be extended to evaluate novel memristive materials for single memristor-based NOT logic.
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spelling doaj.art-facf3a29502549fcb771c61127fafcae2023-10-23T14:26:51ZspaInstituto Tecnológico de Costa RicaTecnología en Marcha0379-39822215-32412023-06-0136610.18845/tm.v36i6.6771A Single Memristorbased TTL NOT logicHirakjyoti ChoudhurySuvankar PaulDeepjyoti DebPrachuryya Subash DasRupam Goswami This article presents a NOT logic gate circuit based on a single memristor, and analyzes it for different biological memristive samples based on extracted resistances. The simple resistorvoltage representation of the memristor in the logic circuit is used to formulate a methodology to tune the parameters of the circuit in accordance with TTL voltage values. The logic circuit consists of two resistors in series with the memristor. The input is connected to one end of the memristor, and the output is drawn across the series connection of the second resistor, and the memristor. The methodology comprises of two steps, where, in the first step, the logic ‘low’ TTLinput voltages are examined, and in the second step, the circuit is evaluated for logic ‘high’ TTLinput voltages. The methodology reveals that there is a mínimum voltage value of ‘high’ TTL-input beyond which the output does not fall within the logic ‘low’ TTL-output. The proposed technique may be extended to evaluate novel memristive materials for single memristor-based NOT logic. https://172.20.14.50/index.php/tec_marcha/article/view/6771MemristorNOT logicTTLhysteresisgreen electronicsbiodegradable electronics
spellingShingle Hirakjyoti Choudhury
Suvankar Paul
Deepjyoti Deb
Prachuryya Subash Das
Rupam Goswami
A Single Memristorbased TTL NOT logic
Tecnología en Marcha
Memristor
NOT logic
TTL
hysteresis
green electronics
biodegradable electronics
title A Single Memristorbased TTL NOT logic
title_full A Single Memristorbased TTL NOT logic
title_fullStr A Single Memristorbased TTL NOT logic
title_full_unstemmed A Single Memristorbased TTL NOT logic
title_short A Single Memristorbased TTL NOT logic
title_sort single memristorbased ttl not logic
topic Memristor
NOT logic
TTL
hysteresis
green electronics
biodegradable electronics
url https://172.20.14.50/index.php/tec_marcha/article/view/6771
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