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automotiveJuly 27, 2026

Navitas and Magnachip Partner to Advance Power Conversion in ASEAN

A strategic partnership between Navitas and Magnachip aims to accelerate the adoption of advanced silicon carbide technologies in high-voltage power markets.

A New Era for High-Voltage Power Conversion in ASEAN \\[10pt] The semiconductor industry is witnessing a significant shift with the recent announcement of a strategic partnership between Navitas Semiconductor and Magnachip Semiconductor Corporation. This collaboration is set to accelerate the adoption of silicon carbide (SiC) technologies in high-voltage (HV) and ultra-high-voltage (UHV) power markets, which could have profound implications for factories across Southeast Asia. \\[10pt] Under the agreement, Magnachip will license Navitas' GeneSiC Trench-Assisted Planar (TAP) technology, covering voltage ranges from 1200 V to 3300 V and beyond. This move will enable Magnachip to leverage Navitas' proven SiC device platforms, facilitating faster entry into the HV and UHV SiC markets. Additionally, Navitas will provide access to its SiC supply chain and materials, further supporting Magnachip's market entry. \\[10pt] The companies plan to port, qualify, and internalize the technology at Magnachip’s fabrication facility in South Korea. This approach is expected to expedite Magnachip’s entry into the SiC market while maintaining continuity with Navitas’ established technology and materials base. The licensed technologies are anticipated to support next-generation applications in energy and grid infrastructure, energy storage, industrial electrification, automotive, and other high-power systems. \\[10pt] ## Implications for ASEAN Factories \\[10pt] For factories in Thailand, Vietnam, Indonesia, and Malaysia, this partnership could mean significant advancements in power conversion efficiency and reliability. In Thailand, where the automotive and electronics industries are booming, the adoption of advanced SiC technologies can lead to more efficient and reliable power systems, reducing operational costs and enhancing performance. \\[10pt] In Vietnam, the growing demand for renewable energy and smart grid solutions can be met with these new SiC technologies, enabling better integration of renewable energy sources and improving grid stability. For Indonesia, the partnership could support the country's efforts to modernize its industrial sector, particularly in areas like energy storage and industrial electrification. \\[10pt] In Malaysia, the semiconductor and electronics manufacturing sectors stand to benefit significantly from the enhanced power conversion capabilities. The improved efficiency and reliability of SiC-based power systems can help these industries maintain their competitive edge in the global market. \\[10pt] ## A Path to Future Innovation \\[10pt] Both Navitas and Magnachip are leaders in their respective fields, with Navitas specializing in next-generation gallium nitride (GaN) and high-voltage silicon carbide (SiC) technologies, and Magnachip focusing on analog and mixed-signal power semiconductor solutions. Their combined expertise is expected to drive innovation in various high-power applications, including AI data centers, performance computing, and industrial electrification. \\[10pt] The partnership also extends beyond just SiC technology, with both companies planning to detail and announce the full extent of their collaboration in the future. According to Chris Allexandre, President and CEO of Navitas, this strategic partnership reflects their long-term vision to broaden GeneSiC adoption across high-voltage and ultra-high-voltage power markets. Chae Lee, CEO of Magnachip, added that the addition of GeneSiC technology complements their existing MOSFET and power semiconductor portfolio, positioning them to serve customers requiring higher efficiency, higher voltage capability, and more reliable power conversion solutions. \\[10pt] ## Conclusion \\[10pt] For factory buyers in ASEAN, the partnership between Navitas and Magnachip offers a promising path to more efficient and reliable power conversion. As these advanced SiC technologies become more accessible, they can help reduce operational costs, enhance performance, and support the transition to more sustainable and resilient energy systems. By embracing these innovations, factories in the region can stay ahead of the curve and meet the demands of a rapidly evolving industrial landscape.

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Editorial rewrite by ASEAN Machine team, based on public reporting from Interesting Engineering, with added ASEAN manufacturing context.

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