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RECENT progress in wide bandgap power (WBG) switches shows great potential. Silicon carbide (SiC) is a promising material for power devices with breakdown voltages of several hundred volts up to 10 kV. SiC Schottky power diodes have achieved widespread commercial acceptance. Recently, much progress has been made on active SiC switches, including JFETs, thyristors, BJTs, IGBTs, and MOSFETs. Many a...
A 6.5 kV 25 A dual IGBT module is customized and packaged specially for high voltage low current application like solid state transformer and its characteristics and losses have been tested under the low current operation and compared with 10 kV SiC MOSFET. Based on the test results, the switching losses under different frequencies in a 20 kVA Solid-State Transformer (SST) has been calculated for...
This paper presents a high efficiency 10 kVA high-frequency input and output Si IGBT and SiC Schottky diode 3-level neutral point clamped voltage dc-link back-to-back converter (3LNPC-VLBBC). A switching frequency of 48 kHz makes the converter suitable for driving high-speed and low-inductive machines. A detailed loss analysis reveals that only four of the six diodes in a 3-level bridge-leg have to...
4H-SiC DMOSFETs designed to conduct up to 20 A and block in excess of 1200 V are described, and a performance comparison with comparably rated Si MOSFETs and IGBTs is presented. The 4H-SiC DMOSFETs show comparable to slightly improved on-state losses compared to the Si IGBTs and significantly improved performance over the Si MOSFET. Leakage currents of the 4H-SiC DMOSFETs are two orders of magnitude...
The turnoff behavior of high-voltage 4H-SiC p-channel insulated gate bipolar transistors is investigated by 2-D numerical simulations. Minority carrier lifetime in the nonpunch-through buffer layer is found to be the major factor determining switching loss.
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