HomePress ReleasesBoosted Switching Performance For On-Board Charger Applications

Boosted Switching Performance For On-Board Charger Applications

Simplifies driver design, accelerates product development, lowers cost and increases system robustness, optimising EMC characteristics

Infineon Technologies has launched the 650 V CoolSiC Hybrid Discrete for Automotive. The device contains a 50 A TRENCHSTOP 5 fast-switching IGBT and a CoolSiC Schottky diode to enable a cost-efficient performance boost as well as high reliability. This combination builds a perfect cost-performance trade-off for hard-switching topologies and supports high system integrity in addition to bi-directional charging. This makes the device ideal for fast switching automotive applications such as On-Board Chargers (OBC), Power Factor Correction (PFC), DC-DC and DC-AC converters.

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The integrated fast-switching 50 A IGBT enables MOSFET-like turn-off behaviour outperforming pure silicon solutions. In contrast to regular silicon carbide MOSFETs, the plug-and-play solution for a fast time-to-market achieves 95 to 97 per cent system efficiency at a lower cost level. Furthermore, the CoolSiC Schottky diode supports reduced turn-on and recovery losses. In comparison to pure silicon designs, the device is ideal for hard commutation with 30 per cent lower losses. With its low cooling requirements, the diode also provides an excellent cost-performance trade-off on the system level.

Shenzhen VMAXPower Co. Ltd. (VMAX) is an OBC supplier in China, focusing on the development of automotive power electronics and providing customers with highly reliable OBCs and DC-DC converters. VMAX uses Infineon’s latest CoolSiC Hybrid Discrete in their next-generation OBC/DC-DC system.

“The partnership we have with Infineon is an essential cornerstone of our philosophy of consistently creating maximum value for our customers,” said Xu Jinzhu, R&D Director of VMAX. “The CoolSiC Hybrid Discrete allows us to simplify driver design, accelerate product development, lower costs and increase system robustness. The integrated silicon carbide diodes without reverse recovery charge further optimise the EMC characteristics of the system. This results in greater performance benefits and a better price/performance ratio in topologies such as totem-pole PFC and DAB.”

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“We are very happy about this close partnership and the great collaboration with VMAX. This project further highlights our strong position in the on-board charger application”, said Jürgen Spänkuch, Vice President for Automotive High Power Discretes and Chips at Infineon.

The CoolSiC Hybrid Discrete for Automotive is 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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