Electrovia's modular high-power wireless charging system offers dynamic and static charging at 500kW+ per receiver, optimizing efficiency for industries like construction, mining, and transportation. Its scalable design adapts to harsh environments and meets high power demands.
Electrovia Technologies Corp presents a groundbreaking modular high-power wireless charging system that enhances operational efficiency for heavy-duty electric vehicles across industries such as construction, mining, rail, and transportation. Capable of delivering over 500kW per receiver, this system provides both dynamic and static opportunity charging solutions. Designed with scalable building block configurations, it significantly reduces downtime by meeting the high power demands of industrial applications.
This technology is currently at TRL 4, indicating that it has been validated in a laboratory environment. The next steps involve creating a tailored solution for specific industries through a four-phase validation process, including needs assessment, magnetic analysis, design refinement, and prototype demonstration, expected to be completed within 4–6 months.
Electrovia Technologies Corp. specializes in high-power wireless charging infrastructure for electric vehicles, focusing on both in-motion and static applications. The company utilizes inductive resonant coupling to deliver up to 500 kW of power, enabling vehicles to charge while driving at highway speeds or during stop-and-go operations. Their end-to-end platform includes OSPREY hardware for power electronics, KITE receivers for onboard vehicle integration, and supporting cabinets to stabilize the DC bus, all designed to facilitate seamless, unlimited electric transport for heavy-duty commercial fleets.
This technology addresses critical barriers to the widespread adoption of electric trucking by reducing charging downtime and allowing for smaller battery packs. By distributing energy delivery across transportation corridors, Electrovia provides an alternative to concentrated hub charging. The company is actively collaborating with institutional partners, such as the University of Tennessee–Chattanooga, to demonstrate these capabilities through state-funded initiatives like the Transportation Network Growth Opportunity (TNGO). These projects also incorporate advanced Vehicle-to-Everything (V2X) communication systems to ensure the safe and reliable handshake protocols necessary for high-power wireless power transfer.