Applications
- Vehicle Traction Inverters
 - Active Front-Ends
 - Uninterruptible Power Supplies
 - Industrial Motor Drives
 - Energy Storage
 - Grid-Tied Distributed Generation: Solar and Wind
 - Smart-Grid / Flexible AC Transmission Systems
 
The 600kW three-phase inverter demonstrates system-level power density and efficiency obtained by using by using six of Wolfspeed’s XM3 half-bridge power modules. With half the weight and volume of a standard 62mm module; the XM3 footprint maximizes power density while minimizing loop inductance for low-loss; high-frequency operation with simple power bussing.
Advanced double-sided cold plate and highly-integrated DC Link capacitor reduce component count and increase power density. The three-phase dual inverter has greater than 4x the power density of comparable Si based designs and greater than 98% efficiency.
This design features:
Specifications
Reference Design Files for
System design files for
Dual Core MCU with control algorithms on a controlCARD development board
Form-factor-fitting two channel gate driver board optimized for XM3 power modules
Form-factor-fitting two channel gate driver board optimized for XM3 power modules
4A, High Voltage, Isolated Gate Driver with Internal Miller Clamp and DESAT protection for MOD1-6
4A, High Voltage, Isolated Gate Driver with Internal Miller Clamp and DESAT protection for MOD1-6
2W Isolated DC-DC Converter Vin=12V, Vout= +15V/-4V
2W Isolated DC-DC Converter Vin=12V, Vout= +15V/-4V
Silicon Carbide Power 1200V, 450A All-Silicon Carbide Conduction Optimized Half-Bridge Module
Silicon Carbide Power 1200V, 450A All-Silicon Carbide Conduction Optimized Half-Bridge Module
Silicon Carbide Power 1200V, 450A All-Silicon Carbide Conduction Optimized Half-Bridge Module
Silicon Carbide Power 1200V, 450A All-Silicon Carbide Conduction Optimized Half-Bridge Module
Silicon Carbide Power 1200V, 450A All-Silicon Carbide Conduction Optimized Half-Bridge Module
Silicon Carbide Power 1200V, 450A All-Silicon Carbide Conduction Optimized Half-Bridge Module