![]() To meet the power efficiency and size improvement goals, design of systems need to exploit the advancement in power switches and utilize better suited architectures and solutions in the circuit. One such example is power supplies that are pushing to meet 80 Plus Titanium efficiency levels for wide variety of power conversion applications such as telecom, server and data center or other industrial power supplies. These trends put lots of pressure on power engineers and architects to extend existing power technology boundaries to achieve higher system efficiencies, faster response times, and reliable and robust, smaller size solutions with reduced part counts for lower cost in new generations of electronics system designs. The overall global electrical power demand is also rapidly increasing and is also driving additional demand. Worldwide, the Electronics Industry is seeing substantial changes – driven by Artificial Intelligence, cloud based IoT, next generation RF technologies, Electric Vehicles (EV) and their Advance Driver-Assistance Systems (ADAS) and Autonomous Driving needs, – to the widespread adoption of wide-bandgap power switches based on Silicon Carbide (SiC) and/or Gallium Nitride (GaN) semiconductors.
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