Electrothermal Model of SiC Power BJT

Author:

Patrzyk Joanna,Bisewski Damian,Zarębski Janusz

Abstract

This paper refers to the issue of modelling characteristics of SiC power bipolar junction transistor (BJT), including the self-heating phenomenon. The electrothermal model of the tested device is demonstrated and experimentally verified. The electrical model is based on the isothermal Gummel–Poon model, but several modifications were made including the improved current gain factor (β) model and the modified model of the quasi-saturation region. The accuracy of the presented model was assessed by comparison of measurement and simulation results of selected characteristics of the BT1206-AC SiC BJT manufactured by TranSiC. In this paper, a single device characterization has only been performed. The demonstrated results of research show the evident temperature impact on the transistor d.c. characteristics. A good compliance between the measured and calculated characteristics of the considered transistor is observed even in quasi-saturation mode.

Publisher

MDPI AG

Subject

Energy (miscellaneous),Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment,Electrical and Electronic Engineering,Control and Optimization,Engineering (miscellaneous)

Reference28 articles.

1. An Improved SPICE Model of SiC BJT Incorporating Surface Recombination Effect

2. Modelling of Dynamic Properties of Silicon Carbide Junction Field-Effect Transistors (JFETs)

3. Measurements of thermal parameters of silicon carbide semiconductor devices;Zarębski;Przegląd Elektrotechniczny,2011

4. Catalog data of SiC BJT BT1206-AChttps://www.dacpol.eu/pl/elementy-polprzewodnikowe-z-weglika-krzemu/product/elementy-polprzewodnikowe-z-weglika-krzemu-1224

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