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Provided by AGPBy AI, Created 7:10 PM UTC, May 19, 2026, /AGP/ – Efficient Power Conversion will highlight its latest gallium nitride power devices and reference designs at PCIM Europe 2026 in Nuremberg from June 9-11. The demos target humanoid robotics, drones, electrified motion systems and AI infrastructure, where EPC says smaller, faster and more efficient power delivery can improve performance and enable production-ready designs.
Why it matters: - EPC is positioning GaN as a power technology for three fast-growing markets at once: robotics, drones and AI infrastructure. - The company is also using PCIM Europe 2026 to show how higher switching frequency and tighter layouts can reduce size and weight while improving efficiency in motion systems and power delivery. - The demos are aimed at production-ready architectures, not just lab concepts.
What happened: - Efficient Power Conversion will exhibit its newest Gen 7 GaN technology at PCIM Europe 2026 in Nuremberg, Germany, June 9-11, 2026, at Hall 9, Stand 304. - EPC will show GaN-based power solutions for humanoid robotics, drone propulsion, compact electrified motion systems and AI power delivery. - CEO and co-founder Alex Lidow said the show is a platform to demonstrate how GaN is driving a new generation of intelligent motion and AI platforms. - EPC will also host Mike Engelhardt, inventor of QSPICE, at the booth to demonstrate simulation of EPC GaN discrete devices, half-bridges and integrated circuits in QSPICE.
The details: - The motion platforms use EPC33110 integrated three-phase ePower Stage ICs for compact humanoid joints and drone propulsion control. - The EPC23108/09 and EPC23110/11 integrated ePower Stage IC families support up to 100 V operation, with 35 A current capability for EPC23108 and EPC23109 and 20 A for EPC23110 and EPC23111. - EPC will highlight the EPC2366 40 V eGaN FET with 0.84 mΩ RDS(on) for synchronous rectifier use on the secondary side of a 48 V-to-12 V LLC converter. - EPC will also feature the EPC2361 100 V device with typical 0.75 mΩ RDS(on), plus the EPC2304 200 V device at 3.5 mΩ and the EPC2305 150 V device at 2.2 mΩ for high-power isolated DC-DC conversion. - The EPC2057 50 V device at 6 mΩ is aimed at compact intermediate-bus regulation. - Gen 7 parts on display include EPC2370 at 15 V and 0.28 mΩ, EPC2378 at 25 V and 0.35 mΩ, EPC2377 at 40 V and 0.5 mΩ, and EPC2375 at 100 V and 0.9 mΩ. - EPC said the Gen 7 devices come in compact dual-cool QFN packages and offer low gate charge for high-efficiency, high-power-density modules and DC-DC supplies used in AI data centers, robotics and advanced motor drives. - EPC91122 and EPC91132 are motor-drive reference designs based on the EPC33110. - EPC91122 will be shown in both a large drone propulsion system and a robotic arm platform to illustrate high-torque, high-power-density motion architectures. - EPC will also show a small drone propulsion system for lightweight, space-constrained applications with rapid dynamic response. - Other motor-drive reference designs include EPC91121 using the EPC2366, EPC91135 with the EPC2376 for 150 V inverter operation, EPC9186HCx with the EPC2361 for scalable high-current three-phase motor-drive architectures, and EPC91128/29/30/31 using the EPC231x family. - Those EPC231x reference designs include gate drivers, regulated auxiliary power rails, voltage and temperature sensing, current sensing and protection functions. - High-density DC-DC platforms include EPC91123, a 6 kW isolated converter board for 800 V to 12.5 V conversion; EPC91134, an 11 kW isolated converter for 400/800 Vdc to 50 Vdc; EPC91107 with the EPC2304, a 4-level totem-pole PFC delivering 12.5 A at 400 VDC; EPC90167, a half-bridge evaluation board for EPC2366; and EPC91109 with the EPC2057, a two-phase synchronous buck converter supporting 20-36 V to 12/16/20 V conversion. - EPC said the same GaN platform also applies to power tools, e-bikes and emerging AI infrastructure, where higher switching frequency and smaller system size can improve performance, weight and runtime. - EPC said the technology supports a move toward distributed power architectures and higher-density computing environments.
Between the lines: - EPC is broadening the pitch for GaN beyond traditional power conversion and into systems-level design for robotics and AI. - The mix of motor-drive boards, isolated converters and AI-focused power demos suggests EPC wants to show GaN as an end-to-end platform, not a single component. - The booth programming and technical talks also signal a go-to-market effort aimed at engineers evaluating designs for production.
What’s next: - EPC will give live technical presentations at its booth throughout the June 9-11 show. - CEO Alex Lidow will speak on June 9 and June 10, including sessions on GaN’s direction and humanoid robots and drones. - Marco Palma will present on scalable motor control architectures and a three-phase GaN-based power micro-module for robotic hands. - Steve Colino will present on low-voltage GaN FETs as synchronous rectifiers, and Michael De Rooij will discuss low-voltage GaN FETs in multi-kW isolated converters. - EPC will also appear on conference stages at PCIM Europe on June 10 and June 11. - Engineers can schedule meetings with EPC technical experts, including Lidow, by contacting info@epc-co.com.
The bottom line: - EPC is using PCIM Europe 2026 to make a simple case: GaN is moving from niche power design into robotics, drones and AI infrastructure, where density and efficiency are becoming core requirements.
Disclaimer: This article was produced by AGP Wire with the assistance of artificial intelligence based on original source content and has been refined to improve clarity, structure, and readability. This content is provided on an “as is” basis. While care has been taken in its preparation, it may contain inaccuracies or omissions, and readers should consult the original source and independently verify key information where appropriate. This content is for informational purposes only and does not constitute legal, financial, investment, or other professional advice.
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