A Memristor-Based Colpitts Oscillator Circuit

Author:

Zhou LingORCID,You Zhenzhen,Liang Xiaolin,Li Xiaowu

Abstract

This paper investigates a simple memristor emulator consisting of a diode bridge and a capacitor. It exhibits pinched hysteresis loops, and what is more striking is the higher frequency, as it operates up to greater than 5 MHz. Based on the proposed memristor, a higher-frequency Colpitts circuit was established. According to the mathematical model of the system, the system only possesses one unstable equilibrium point. Period doubling bifurcation, reverse periodic doubling bifurcation, different types of periodic and chaotic orbits, transient chaos, coexisting bifurcations and offset boosting are depicted. More interestingly, it has coexisting multiple attractors with different topologies, such as a chaotic attractor accompanied with periodic orbits, period-1 orbits with bicuspid structure and periodic-2 orbits with tridentate structure. Moreover, a hardware circuit using discrete components was fabricated and experimental measurements were consistent with the MATLAB numerical results, further confirming the real feasibility of the proposed circuit.

Funder

National Natural Science Foundation of China

Outstanding Youth Foundation of Hunan Province

construct program of applied characteristic discipline in Hunan University of Science and Engineering

Publisher

MDPI AG

Subject

General Mathematics,Engineering (miscellaneous),Computer Science (miscellaneous)

Reference43 articles.

1. Memristor-The missing circuit element;Chua;IEEE Trans. Circuit Theory,1971

2. The missing memristor found;Strukov;Nature,2008

3. Memristor based unbalanced ternary logic gates;Khalid;Anal. Integr. Circuits Signal Process.,2016

4. High-Density Memristor-CMOS Ternary Logic Family;Wang;IEEE Trans. Circuits Syst. I Regul. Pap.,2021

5. Fault Modeling and Efficient Testing of Memristor-Based Memory;Liu;IEEE Trans. Circuits Syst. I Regul. Pap.,2021

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