CISSOID & Silicon Mobility Announce A Partnership on SIC Inverters to Accelerate the Design of Compact & Efficient E-Motor Drives
CISSOID, the leader in high temperature Semiconductors and Power Modules, and Silicon Mobility, the technology leader inventor of the FPCU (Field Programmable Controller Unit) semiconductor architecture for ultra-fast and critically safe real-time control for New Energy Vehicles, announce the integration of Silicon Mobility's OLEA® FPCU controller with CISSOID's Silicon Carbide (SiC) Intelligent Power Module (IPM) platform. This new highly integrated platform will accelerate the development of compact and efficient SiC Inverters for EV motor drives.
The partnership will deliver a SiC Inverter modular platform offering highly integrated hardware and optimized software: a power module and its gate driver with protections and fault management, an ultra-fast FPCU controller and its application software optimized for e-motor control. CISSOID's IPMs integrate a 3-Phase 1200V/340A-550A SiC MOSFET Power Modules with a temperature-robust gate driver enabling low switching losses and high power density. Silicon Mobility OLEA® FPCU controller and OLEA® APP INVERTER software enable fast and highly efficient electric motor control.
Silicon Mobility ultra-fast OLEA FPCU is the perfect technology to control our SiC IPM platform in motor drive applications,”says Pierre Delatte, CTO of CISSOID.“The capability of SiC power modules to switch faster and to operate at higher frequencies makes it essentialto have access to a controller technology capable of runing real-time algorithms faster. OLEA FPCU low power consumption is also a key advantage in building highly compact and efficient traction inverters”.
“CISSOID SiC IPM platform is a great technology in helping to accelerate the development of SiC power converters”, says David Fresneau, VP Marketing and Business Development at Silicon Mobility.“By combining CISSOID technology with our OLEA® control solution , we are offering a unique hardware and software platform that will make possible the development of efficient and critically safe SiC inverters in only a few months”.
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