Xiinergy provides a portfolio of wide‑bandgap and advanced silicon power semiconductors—including GaN HEMTs, low‑voltage SGT MOSFETs, IGBTs, and GaN integrated power modules—designed to lower conduction and switching losses while supporting higher switching frequencies. These components enable power‑electronics engineers and OEMs to build more compact, efficient converters for automotive electrification, renewable‑energy inverters, data‑center, and industrial applications.
Funding
Funding not disclosed
Founders
Product
Problem
Conventional silicon-based power semiconductors constrain efficiency, size, and switching speed in modern power‑conversion systems, leading to higher losses and larger thermal management requirements.
Solution
Xiinergy supplies a portfolio of wide‑bandgap and advanced silicon devices—including GaN HEMTs, low‑voltage SGT MOSFETs, IGBTs, and GaN integrated power modules (IPMs)—designed to reduce conduction and switching losses while enabling higher switching frequencies. These components are engineered for robust operation across demanding voltage ranges, allowing designers to create more compact, efficient converters for applications such as automotive electrification, renewable energy inverters, and industrial motor drives. By offering both discrete devices and integrated modules, Xiinergy supports streamlined system design and faster time‑to‑market for power‑electronics products.
Target Audience
Primary customers are power‑electronics engineers and OEMs developing converters for automotive, renewable energy, data‑center, and industrial equipment.
Features
- GaN HEMTs with low on‑resistance and fast switching for high‑efficiency, high‑frequency converters
- Low‑voltage SGT MOSFETs that provide superior thermal stability and reduced gate charge for precise control
- High‑voltage IGBTs optimized for rugged applications requiring high current handling and reliability
- GaN IPMs that integrate driver circuitry and protection features into a single compact package
- Broad product range covering multiple voltage and current classes to match diverse power‑conversion needs
- Compatibility with standard PCB footprints and design tools to simplify integration