Voltage sourced converters (VSCs) in electric vehicle (EV) drive-trains are conventionally implemented by silicon Insulated Gate Bipolar Transistors (IGBTs) and p-i-n diodes. The emergence of SiC unipolar technologies opens up new avenues for power integration and energy conversion efficiency. This paper presents a comparative analysis between 1.2-kV SiC MOSFET/Schottky diodes and silicon IGBT/p-i-n diode technologies for EV drive-train performance. The switching performances of devices have been tested between -75 °C and 175 °C at different switching speeds modulated by a range of gate resistances. The temperature impact on the electromagnetic oscillations in SiC technologies and reverse recovery in silicon bipolar technologies is analyzed...
This thesis aims to bring an understanding to the silicon carbide (SiC) bipolar junction transistor ...
The temperature and dV/dt dependence of crosstalk has been analyzed for Si-IGBT and SiC-MOSFET power...
Many applications benefit from using converters which can operate at high temperatures among them; d...
The benefits of implementing SiC devices in EV powertrains has been widely reported in various studi...
Silicon carbide (SiC) is seen as a potential replacement power semiconductor material because it ca...
This paper investigates the potential performance of high speed SiC cascode JFETs in EV traction inv...
The energy conversion efficiency of voltage source converters based on 1.2 kV silicon carbide MOSFET...
The emergence of silicon carbide (SiC) semiconductors having superior properties when compared with ...
The emergence of silicon carbide (SiC) semiconductors having superior properties when compared with ...
The future of power conversion at low-to-medium voltages (around 650V) poses a very interesting deba...
A continuously growing penetration of electric (EV) and hybrid electric (HEV) vehicles, reinforced ...
The future of power conversion at low-to-medium voltages (around 650V) poses a very interesting deba...
A continuously growing penetration of electric (EV) and hybrid electric (HEV) vehicles, reinforced...
The advantage of Silicon Carbide (SiC) based devices are less thermal management requirements and sm...
This article presents the analysis of two topologies of power converters. Voltage Source Inverter (...
This thesis aims to bring an understanding to the silicon carbide (SiC) bipolar junction transistor ...
The temperature and dV/dt dependence of crosstalk has been analyzed for Si-IGBT and SiC-MOSFET power...
Many applications benefit from using converters which can operate at high temperatures among them; d...
The benefits of implementing SiC devices in EV powertrains has been widely reported in various studi...
Silicon carbide (SiC) is seen as a potential replacement power semiconductor material because it ca...
This paper investigates the potential performance of high speed SiC cascode JFETs in EV traction inv...
The energy conversion efficiency of voltage source converters based on 1.2 kV silicon carbide MOSFET...
The emergence of silicon carbide (SiC) semiconductors having superior properties when compared with ...
The emergence of silicon carbide (SiC) semiconductors having superior properties when compared with ...
The future of power conversion at low-to-medium voltages (around 650V) poses a very interesting deba...
A continuously growing penetration of electric (EV) and hybrid electric (HEV) vehicles, reinforced ...
The future of power conversion at low-to-medium voltages (around 650V) poses a very interesting deba...
A continuously growing penetration of electric (EV) and hybrid electric (HEV) vehicles, reinforced...
The advantage of Silicon Carbide (SiC) based devices are less thermal management requirements and sm...
This article presents the analysis of two topologies of power converters. Voltage Source Inverter (...
This thesis aims to bring an understanding to the silicon carbide (SiC) bipolar junction transistor ...
The temperature and dV/dt dependence of crosstalk has been analyzed for Si-IGBT and SiC-MOSFET power...
Many applications benefit from using converters which can operate at high temperatures among them; d...