Our solutions include the industry’s broadest and most diverse portfolio of SiC MOSFETs, diodes and gate drivers. With over twenty years of experience in the development, design, manufacturing and support of SiC devices and power solutions, we can help you adopt SiC with ease, speed and confidence.
We offer a variety of time-saving reference designs, evaluation kits, models, simulation tools and application notes to accelerate your SiC-based design.
This reference design is for a 3-phase Vienna PFC for hybrid HEV/EV chargers and high-power Switch Mode Power Supply (SMPS) applications.
Designers of EVs, commercial transportation, renewable energy and energy storage systems can benefit from SiC stack solutions that drive performance and cost efficiencies and accelerate time to market.
You can use high-voltage auxiliary E-Fuse technology for HEV, EV and other non-automotive DC solid-state circuit breaker applications.
SiC transforms automotive and transportation systems with its exceptional performance and ultra-low switching losses. This results in enhanced efficiency, reduced heat generation, improved performance and longer-lasting battery life.
SiC's remarkable power density allows E-Mobility system manufacturers to create smaller and more compact designs, minimizing space requirements and lowering the weight of devices.
SiC has three times higher thermal conductivity over silicon, ensuring efficient heat dissipation and enabling transportation systems to operate optimally under the most demanding conditions.
Leveraging superior thermal properties, SiC solutions require fewer cooling mechanisms, resulting in smaller-sized devices and improved system layout and packaging.
SiC devices can withstand higher operating temperatures, ensuring device reliability and increased power density. This robustness enables system designers to have confidence in the performance of critical devices.