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Magnetic chain coupling type memristor analog circuit with adjustable coupling coefficient

A technique for simulating circuits and coupling coefficients, applied in the direction of logic circuit coupling devices, logic circuit connection/interface layout, etc., to achieve an easy-to-implement effect

Active Publication Date: 2017-12-01
CHINA UNIV OF MINING & TECH
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  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

In large-scale integrated circuits composed of nanoscale memristors, the coupling phenomenon between closely arranged memristor elements cannot be ignored, but few existing memristor simulators involve the coupling phenomenon between memristors

Method used

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  • Magnetic chain coupling type memristor analog circuit with adjustable coupling coefficient
  • Magnetic chain coupling type memristor analog circuit with adjustable coupling coefficient
  • Magnetic chain coupling type memristor analog circuit with adjustable coupling coefficient

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Embodiment Construction

[0019] The present invention will be further described below in conjunction with the accompanying drawings.

[0020] A flux-linkage coupled memristor simulation circuit with adjustable coupling coefficient, comprising two memristor simulators and coupling resistors with the same structure, the memristor simulator is a flux-linkage controlled memristor simulator, The coupling resistance is a sliding rheostat whose potential can be continuously and smoothly adjusted; each memristor simulator includes two floating interfaces and at least one coupling interface, through which the equivalent magnetic field of another memristor simulator is connected. A variable that is proportional to the squared value of the chain signal. The scheme includes two parts of the design: one is the realization of the memristor simulator; the other is the coupling of two memristor simulators. These two parts and related calculations are described below.

[0021] 1. Realization of Memristor Simulator ...

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Abstract

The invention discloses a magnetic chain coupling type memristor analog circuit with an adjustable coupling coefficient. The magnetic chain coupling type memristor analog circuit comprises two memristor simulators and a coupling resistor, wherein the memristor simulator is a magnetic chain control type memristor simulator, and the coupling resistor is a sliding resistor with continuously smooth adjustable level; and each memristor simulator comprises two suspension interfaces and at least one coupling interface, and access a variable directly proportional to an equivalent magnetic chain signal square value of the other memristor simulator through the coupling interface. The magnetic chain coupling type memristor analog circuit can not only express the dynamics and stable state properties of the single memristor, but also can simulate the magnetic chain coupling relation between more than two memristors, so as to research the magnetic chain coupling type memristor analog circuit from experiments and the characteristics of a series parallel dynamic circuit of other circuit elements; and the magnetic chain coupling type memristor analog circuit can be easily expanded to a multi-magnetic chain coupling type memristor analog circuit to replace the common resistors for application in the design and development of non-volatile memorys, neural network feedback systems and logic operation and other novel circuits and function circuits.

Description

technical field [0001] The invention relates to a magnetic linkage coupled memristor analog circuit with adjustable coupling coefficient, which is composed of three active devices including a transconductance operational amplifier, an analog multiplier and an operational amplifier, and several circuit components such as resistors and capacitors. Background technique [0002] In 1976, Leon Chua and Sung Mo Kang, based on the relationship between the four variables of voltage, current, charge and flux linkage, proposed that there is a fourth circuit component in addition to resistance, inductance and capacitance, and named it memristor . It was not until 2008 that Hewlett-Packard Labs successfully developed nanoscale memristive components based on titanium dioxide thin films that research on memristors attracted widespread attention from scholars. It is a two-port passive nonlinear dynamic component with memory characteristics. The memristor value of the memristor is not a fi...

Claims

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Application Information

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IPC IPC(8): H03K19/0175
CPCH03K19/017545
Inventor 郑辞晏郭恒道于东升周知姚可正泰隆费尔南多
Owner CHINA UNIV OF MINING & TECH
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