Title : 
Three-level inverter with 60 A, 4.5 kV Si IGBT/SiC JBS power modules for marine applications
         
        
            Author : 
Lentijo, K. ; Hobart, K.
         
        
            Author_Institution : 
GE Energy Power Conversion Naval Syst., Inc., Pittsburgh, PA, USA
         
        
        
        
        
        
            Abstract : 
Semiconductor modules with medium-voltage (MV) Si IGBTs and anti-parallel silicon-carbide (SiC) junction-barrier Schottky (JBS) diodes are of interest in commercial and naval converters as they allow for significantly reduced switching losses and at present are more cost-effective than an all-SiC switch. A three-level converter is being built and tested using custom modules made with 60A (120A pulsed), 4.5kV Si IGBTs and SiC JBS diodes. This work provides a platform to de-risk and evaluate the integration of SiC JBS diodes at MV using commercial modulation strategies and gating electronics with standard industry topologies for a range of switching frequencies. A comparison of SiC JBS diodes for MV, such as the decrease in turn-on IGBT losses and the elimination of snappy or avalanche recoveries is reviewed, and ways to make SiC more cost effective via topology and packaging choices are discussed.
         
        
            Keywords : 
Schottky diodes; insulated gate bipolar transistors; invertors; marine power systems; silicon; silicon compounds; Si; Si IGBT-SiC JBS power modules; SiC; antiparallel silicon-carbide; current 60 A; gating electronics; junction-barrier Schottky diodes; marine applications; medium-voltage Si IGBT; naval converters; semiconductor modules; three-level converter; three-level inverter; voltage 4.5 kV; Inductance; Insulated gate bipolar transistors; Semiconductor diodes; Silicon; Silicon carbide; Switches; Topology;
         
        
        
        
            Conference_Titel : 
Electric Ship Technologies Symposium (ESTS), 2013 IEEE
         
        
            Conference_Location : 
Arlington, VA
         
        
            Print_ISBN : 
978-1-4673-5243-7
         
        
        
            DOI : 
10.1109/ESTS.2013.6523728