SemiSouth - Enabling Brigher Shades of Green, Silicon Carbide	SiC, Silicon Carbide inverter, SiC inverter, Silicon Carbide converter, SiC converter, Silicon Carbide power supply, SiC power supply, Silicon Carbide fet, SiC fet, Silicon Carbide jfet, SiC jfet, Silicon Carbide mosfet, SiC mosfet, Silicon Carbide igbt, SiC igbt, Silicon carbide transistor, SiC transistor, Silicon Carbide diode, SiC diode, Silicon Carbide device, SiC device, High Efficiency Silicon Carbide, High Efficiency SiC, Silicon Carbide solar inverter, SiC solar inverter, High Temperature Silicon Carbide, High Temperature SiC  
 
 
SemiSouth - Enabling Brigher Shades of Green, Silicon Carbide	SiC, Silicon Carbide inverter, SiC inverter, Silicon Carbide converter, SiC converter, Silicon Carbide power supply, SiC power supply, Silicon Carbide fet, SiC fet, Silicon Carbide jfet, SiC jfet, Silicon Carbide mosfet, SiC mosfet, Silicon Carbide igbt, SiC igbt, Silicon carbide transistor, SiC transistor, Silicon Carbide diode, SiC diode, Silicon Carbide device, SiC device, High Efficiency Silicon Carbide, High Efficiency SiC, Silicon Carbide solar inverter, SiC solar inverter, High Temperature Silicon Carbide, High Temperature SiC Technical Notes
SemiSouth's core of SiC engineers and PhDs continuously document their findings and technological advances in the field of SiC processing and devices. In addition, SemiSouth's Application Engineers leverage these findings and advances into practical applications that help to provide solutions for our customers. Below are listings of some of SemiSouth's recent publications and key application notes.


Technical Notes:

NEW 1700 V Enhancement-mode SiC VJFET for High Voltage Auxiliary Flyback SMPS

A Physics-Based Model for a SiC JFET Accounting for Electric-Field-Dependent Mobility, U of South Carolina, 2009

PV Inverter Efficiency Exceeds 99 Percent (Fraunhofer).pdf

SiC Enhancement-Mode Junction Field Effect Transistor and Recommendation For Use

Inherently Safe Buck Converter Design.pdf


Publications:

Paper: Optimized Gate Drive for Enhancement-mode SiC JFET.pdf

Presentation: Applications of SiC Transistors in Photovoltaic Inverters (Fraunhofer).pdf

Presentation: Power Factor Correction using an Enhancement-mode SiC JFET.pdf

Paper: Characterization of Enhanced-Mode SiC VJFETs for High Temperature Applications.pdf

Paper: Scalable SiC Device for DC/DC Converter in Future Hybrid Electric Vehicles.pdf

Paper: SiC JFET Gate Driver Design for Use in DC/DC Converters.pdf

Paper: Inherently Safe DC/DC Converter Using a Normally-On SiC JFET.pdf


White Papers:

The SJEP120R063 Reduced Switching Losses in the New Low-Inductance Text Fixture

JFET Gate Driver and Layout Considerations









  SemiSouth - Enabling Brigher Shades of Green, Silicon Carbide	SiC, Silicon Carbide inverter, SiC inverter, Silicon Carbide converter, SiC converter, Silicon Carbide power supply, SiC power supply, Silicon Carbide fet, SiC fet, Silicon Carbide jfet, SiC jfet, Silicon Carbide mosfet, SiC mosfet, Silicon Carbide igbt, SiC igbt, Silicon carbide transistor, SiC transistor, Silicon Carbide diode, SiC diode, Silicon Carbide device, SiC device, High Efficiency Silicon Carbide, High Efficiency SiC, Silicon Carbide solar inverter, SiC solar inverter, High Temperature Silicon Carbide, High Temperature SiC