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Mathematical framework for three cross-over memristor and its realization employing OTAs

Kapil Bhardwaj (Department of Electronics and Communication Engineering, National Institute of Technology Jamshedpur, Jamshedpur, India)
Mayank Srivastava (Department of Electronics and Communication Engineering, National Institute of Technology Jamshedpur, Jamshedpur, India)

Circuit World

ISSN: 0305-6120

Article publication date: 5 March 2021

Issue publication date: 23 March 2022

242

Abstract

Purpose

The purpose of the paper is to report an emulation configuration of a three pinch-off memristor (TPM), whose transient characteristics consist three cross-over points on the voltage-current plane, which is dissimilar to a conventional memristor. These characteristics can be very useful in memristor-based multi-bit memory devices and hyperchaotic oscillators.

Design/methodology/approach

The work describes the Mathematical framework for TPM and a circuit emulator based on the derived conditions. The configuration is based on five operational transconductance amplifier (OTAs) and four grounded passive elements. After which, we have verified its operation using personal simulation program with integrated circuit emphasis simulation environment. Finally, the implementation of OTA-based TPM using commercial integrated circuit (IC) LM13700 has also been presented.

Findings

It has been shown that a flux-dependent memductance expression of cubic order can show three intersections on the VI contour under certain parameter related constraints. Moreover, the OTA-based emulator reported in the work is very compact in nature because of the no use of external multiplier IC/circuitry, which has been popular in previous emulators.

Originality/value

For the first time, a multiple cross-over memristor emulator has been reported which can operate under practical operating conditions such as at practical operating frequencies and sinusoidal excitation.

Keywords

Citation

Bhardwaj, K. and Srivastava, M. (2022), "Mathematical framework for three cross-over memristor and its realization employing OTAs", Circuit World, Vol. 48 No. 2, pp. 160-173. https://doi.org/10.1108/CW-05-2020-0076

Publisher

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Emerald Publishing Limited

Copyright © 2021, Emerald Publishing Limited

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