IEEE Industrial Electronics Magazine · 2012 · 401 citations · 39 references
Semiconductor TechnologyElectrical EngineeringTechnologyEngineeringPower DeviceNanoelectronicsApplied PhysicsPower Semiconductor DeviceSilicon CarbideCarbideSic TechnologyPower ElectronicsPower SemiconductorsMicroelectronicsSic Power ElectronicsNew EraSemiconductor Device
During recent years, silicon carbide (SiC) power electronics has gone from being a promising future technology to being a potent alternative to state-of-the-art silicon (Si) technology in high-efficiency, highfrequency, and high-temperature applications. The reasons for this are that SiC power electronics may have higher voltage ratings, lower voltage drops, higher maximum temperatures, and higher thermal conductivities. It is now a fact that several manufacturers are capable of developing and processing high-quality transistors at cost that permit introduction of new products in application areas where the benefits of the SiC technology can provide significant system advantages.
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J. Biela, Mario Schweizer, S. Waffler et al. · IEEE Transactions on Industrial Electronics · 2010 · 851 citations · Full text
Engineering, Power Electronic Systems, Power Electronics +16
Status and prospects for SiC power MOSFETs
James A. Cooper, M. R. Melloch, Ranbir Singh et al. · IEEE Transactions on Electron Devices · 2002 · 489 citations
Semiconductor Technology, Electrical Engineering, Engineering +10
The New Frontier of Smart Grids
Xinghuo Yu, Carlo Cecati, Tharam S. Dillon et al. · IEEE Industrial Electronics Magazine · 2011 · 376 citations
Jun Wang, Alex Q. Huang, Woongje Sung et al. · IEEE Industrial Electronics Magazine · 2009 · 256 citations
Advanced Power Conversion, Engineering, Power Electronic System +16