Infineon SiC Tech Powers ADVANTICS Megawatt Chargers

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The landscape of industrial transportation is undergoing a seismic shift. As global industries strive to decarbonize heavy-duty vehicles, mining equipment, and marine vessels, the bottleneck has consistently been charging infrastructure. Traditional charging solutions are simply too slow for the operational demands of these massive machines. Enter Infineon SiC technology, a game-changing innovation that is now powering the next generation of ultra-fast charging solutions through a strategic partnership with ADVANTICS.

In a landmark announcement from Munich on July 8, 2026, Infineon Technologies AG revealed it will supply its cutting-edge CoolSiC™ MOSFETs and matching EiceDRIVER™ gate drivers to ADVANTICS. This collaboration marks a significant leap forward in the development of Megawatt Charging Systems (MCS), promising to reduce charging times by nearly tenfold compared to current standards. For tech enthusiasts and industry professionals visiting aarokatech.com, this development represents a critical milestone in the convergence of semiconductor innovation and sustainable energy infrastructure.

The Critical Role of Silicon Carbide in Modern Power Conversion

To understand the magnitude of this partnership, one must first appreciate the limitations of traditional silicon-based power electronics. While silicon has served the industry well for decades, it struggles with efficiency losses at high voltages and frequencies. This is where Infineon SiC technology shines. Silicon Carbide (SiC) offers superior thermal conductivity, higher breakdown voltage, and significantly lower switching losses.

Infineon is supplying ADVANTICS with 1200 V CoolSiC™ MOSFETs paired with dual-channel EiceDRIVER™ 2EDB9259Y gate drivers. These components are not just incremental upgrades; they are foundational elements that enable power converters to operate at peak efficiency levels of up to 98.5%. By minimizing energy loss during conversion, these systems generate less heat, allowing for more compact designs and reduced cooling requirements. This efficiency is paramount for megawatt-level applications where every percentage point of energy saved translates to substantial cost reductions and grid stability improvements.

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ADVANTICS: Scaling Up with Modular Liquid-Cooled Platforms

ADVANTICS has established itself as a technology leader in SiC power electronics and advanced control systems. Their new line of liquid-cooled power converters is designed specifically to handle the rigorous demands of heavy-duty electrification. Unlike traditional air-cooled systems, which can struggle with thermal management at high power densities, ADVANTICS’ liquid-cooled platform ensures consistent performance even under extreme loads.

The architecture is built on modular 100 kW building blocks. This modularity is a key engineering advantage, allowing systems to be scaled seamlessly from smaller installations up to the megawatt range required for large electric trucks and ships. The solutions offer bidirectional operation, meaning they can both charge vehicles and feed energy back into the grid or storage systems when needed. With a wide voltage range supporting up to 1500 V, these converters are future-proofed for the evolving standards of high-power charging infrastructure.

Accelerating the Transition to Electric Mobility

The electrification of heavy transport is no longer a theoretical concept; it is an industrial imperative. However, the operational reality of trucks, buses, and marine vessels requires rapid turnaround times. A truck driver cannot afford to wait hours for a charge. Megawatt Charging Systems address this challenge head-on. By leveraging Infineon SiC technology, ADVANTICS is enabling charging speeds that make electric heavy-duty vehicles viable for long-haul logistics.

Rodrigo Marquina, Application Manager for Power Supply and EV Charging at Infineon, emphasized the collaborative impact: “Together with ADVANTICS, we are helping accelerate the deployment of megawatt charging infrastructure. Our technologies enable more efficient and compact power conversion systems, supporting the next generation of electric transport applications.”

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This sentiment is echoed by Anders Mikkelsen, Director of R&D and co-founder of ADVANTICS, who noted, “It is no longer controversial to say that SiC is the future of high-power conversion. With almost a decade of experience bringing SiC-based power converters to market, our belief in this technology is stronger than ever. Infineon is an important partner for us on this path.”

Beyond Transportation: Data Centers and Grid Stability

While the headlines focus on electric trucks, the implications of this technology extend far beyond transportation. The same high-efficiency power converters developed for MCS are critical for other energy-intensive sectors. Data centers, for instance, are consuming unprecedented amounts of electricity. The ability to integrate DC microgrids with high-efficiency conversion helps these facilities manage power loads more effectively, reducing their carbon footprint and operational costs.

Furthermore, energy storage systems benefit immensely from bidirectional, high-voltage capabilities. As renewable energy sources like wind and solar become more prevalent, the grid requires robust infrastructure to store and distribute this intermittent power. The reliability and efficiency provided by Infineon SiC technology ensure that these grid-connected systems can operate smoothly, balancing supply and demand with minimal energy loss.

Technical Specifications and Performance Metrics

For engineers and technical readers, the specifications of this collaboration are impressive. The integration of Infineon’s 1200 V MOSFETs allows for high-frequency switching, which reduces the size of passive components like inductors and capacitors. This leads to a higher power density, meaning more power can be delivered in a smaller physical footprint.

The EiceDRIVER™ 2EDB9259Y gate drivers play a crucial role in protecting the SiC modules. They provide precise control over switching events, minimizing electromagnetic interference (EMI) and preventing voltage spikes that could damage the system. This level of precision is essential for maintaining the longevity and reliability of power converters operating in harsh industrial environments.

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The Future of Sustainable Energy Infrastructure

As we move deeper into 2026, the synergy between semiconductor manufacturers and power electronics innovators will define the pace of the green energy transition. The partnership between Infineon and ADVANTICS is a prime example of how technological collaboration can solve complex infrastructure challenges. By focusing on efficiency, scalability, and reliability, they are creating a foundation for a sustainable future.

For businesses looking to invest in or adopt these technologies, the message is clear: SiC is no longer an emerging technology; it is the standard for high-power applications. Whether you are involved in fleet management, data center operations, or renewable energy integration, understanding the capabilities of Infineon SiC technology is essential for staying competitive in a rapidly evolving market.

At aarokatech.com, we continue to monitor these developments closely, providing insights into how semiconductor innovations are reshaping our world. The journey toward zero-emission heavy transport is challenging, but with tools like megawatt charging systems powered by advanced SiC modules, the destination is becoming increasingly reachable.

Sheetal
Sheetalhttps://aarokatech.com/
With over 7 years of experience in B2B editorial, I currently serve as an editor at aarokatech.com. I specialize in refining complex business content into clear, compelling narratives that resonate with professional audiences.

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