HomePress ReleasesEnhanced Power Modules With High-Performance Ceramic

Enhanced Power Modules With High-Performance Ceramic

It is equipped with the latest CoolSiC MOSFET technology that features superior gate-oxide reliability and thermal conductivity

Infineon Technologies AG has upgraded the EasyDUAL CoolSiC MOSFET modules with a new aluminium nitride (AIN) ceramic. The devices come in a half-bridge configuration with an on-state resistance (R DS(on)) of 11 mΩ in an EasyDUAL 1B package and 6 mΩ in an EasyDUAL 2B package. With high-performance ceramic, the 1200 V devices are suitable for high-power density applications including solar systems, uninterruptible power supplies, auxiliary inverters, energy storage systems and electric vehicle chargers.

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CoolSiC MOSFET Easy1B

 

CoolSiC MOSFET Easy2B

The EasyDUAL modules FF11MR12W1M1_B70 and FF6MR12W2M1_B70 are equipped with the latest CoolSiC MOSFET technology that features superior gate-oxide reliability. With the improved thermal conductivity of the DCB material, the thermal resistance to the heat sink (R thJH) can be lowered by up to 40 per cent. Combined with the CoolSiC Easy modules, the new AIN ceramic enables an increase of the output power or reduces the junction temperatures. This can lead to an improved lifespan of the system.

The EasyDUAL CoolSiC MOSFET modules FF11MR12W1M1_B70 and FF6MR12W2M1_B70 are now available.


Vinay Prabhakar Minj
Vinay Prabhakar Minj
Vinay Prabhakar Minj is a technology writer and science communication specialist with a Master’s degree in Communication of Science and Innovation (Science Communication). He is a prolific contributor to Electronics For You, where he has authored over 1,000 articles covering electronics, semiconductors, embedded systems, IoT, and emerging technologies. With a strong foundation in science communication, Vinay focuses on translating complex engineering concepts into clear, accessible, and application-oriented content. His work spans topics such as sensor technologies, chip design, wireless systems, and next-generation electronics, making advanced innovations easier to understand for engineers, students, and industry professionals. Through his extensive contributions, he has built a reputation for delivering reliable, well-researched, and practical insights that help readers stay updated with the rapidly evolving electronics ecosystem. His writing bridges the gap between technical depth and real-world usability, supporting both learning and decision-making in the field.

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