Modelling of Dynamic Properties of Silicon Carbide Junction Field-Effect Transistors (JFETs)
Kamil Bargieł, Damian Bisewski, J. Zarębski
Abstract
Open-access reader
Kamil Bargieł, Damian Bisewski, J. Zarębski
Abstract
Open-access reader
The paper deals with the problem of modelling and analyzing the dynamic properties of a Junction Field Effect Transistor (JFET) made of silicon carbide. An examination of the usefulness of the built-in JFET Simulation Program with Integrated Circuit Emphasis (SPICE) model was performed. A modified model of silicon carbide JFET was proposed to increase modelling accuracy. An evaluation of the accuracy of the modified model was performed by comparison of the measured and calculated capacitance–voltage characteristics as well as the switching characteristics of JFETs.
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The paper deals with the problem of modelling and analyzing the dynamic properties of a Junction Field Effect Transistor (JFET) made of silicon carbide. An examination of the usefulness of the built-in JFET Simulation Program with Integrated Circuit Emphasis (SPICE) model was performed. A modified model of silicon carbide JFET was proposed to increase modelling accuracy. An evaluation of the accuracy of the modified model was performed by comparison of the measured and calculated capacitance–voltage characteristics as well as the switching characteristics of JFETs.
Key concepts: JFET, Silicon carbide, Spice, Materials science, Capacitance, Field-effect transistor, Transistor, MESFET