DocumentCode
2430213
Title
RBSOA study of high voltage SiC bipolar devices
Author
Wang, Jun ; Huang, Alex Q. ; Baliga, B.Jayant
Author_Institution
Future Renewable Electr. Energy Delivery & Manage. (FREEDM), State Univ., Raleigh, NC, USA
fYear
2009
fDate
14-18 June 2009
Firstpage
263
Lastpage
266
Abstract
Rapid improvement of 4H-SiC material quality and maturation of SiC device processing have enabled the development of high voltage SiC bipolar devices for high voltage switching applications. As one of the major concern of bipolar devices, the onset of dynamic avalanche breakdown and reverse biased safe operating area (RBSOA) of SiC pnp and npn transistors have been systematically analyzed in this paper. The theoretical analysis predicts the onset power density of dynamic avalanche breakdown of SiC bipolar devices is more than twenty times larger than that of Si bipolar devices, and SiC bipolar devices have a near square RBSOA. The predicted rugged turn-off behavior of SiC bipolar devices is verified by numerical simulations of 10-kV SiC emitter turn-off thyristors (ETOs). The excellent ruggedness of SiC bipolar devices make them attractive for high voltage (ges 10-kV) switching applications.
Keywords
bipolar transistors; thyristors; 4H-SiC material quality; SiC npn transistor; SiC pnp transistors; dynamic avalanche breakdown; emitter turn-off thyristors; high voltage SiC bipolar devices; high voltage switching applications; reverse biased safe operating area; voltage 10 kV; Avalanche breakdown; Current density; Electron mobility; Insulated gate bipolar transistors; MOSFETs; Silicon carbide; Space charge; Temperature; Thyristors; Voltage;
fLanguage
English
Publisher
ieee
Conference_Titel
Power Semiconductor Devices & IC's, 2009. ISPSD 2009. 21st International Symposium on
Conference_Location
Barcelona
ISSN
1943-653X
Print_ISBN
978-1-4244-3525-8
Electronic_ISBN
1943-653X
Type
conf
DOI
10.1109/ISPSD.2009.5158052
Filename
5158052
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