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A memristive circuit model for p-n junction diodes

✍ Scribed by Leon O. Chua; Chong-Wei Tseng


Publisher
John Wiley and Sons
Year
1974
Tongue
English
Weight
997 KB
Volume
2
Category
Article
ISSN
0098-9886

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✦ Synopsis


Abstract

A new simple lumped circuit model for junction diodes is presented. The model contains only 4 elements; namely, 2 controlled current sources, a nonlinear capacitor, and a memristor. Each component bears a simple relationship with the physical operating mechanisms inside the diode. The model is shown capable of simulating realistically the diode's dynamic behaviours under reverse, forward, and sinusoidal operating modes. Both the storage time and the fall time of the diode can be accurately predicted. The model is also shown capable of mimicking various second order effects due to conductivity modulation. In particular, the model is shown to exhibit a predominantly capacitive incremental impedance under small forward bias and a predominantly inductive impedance under large forward bias. Moreover, it includes the standard two‐capacitor model as a special case.


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