AWL-Electricity
Quebec
Technology
Meeting Objectives
AWL-Electricity is seeking targeted meetings with senior decision-makers, engineers, and R&D leaders at manufacturers and energy companies actively integrating wireless power into their products, systems, and operations.
Our objective is to identify and qualify integration opportunities for our capacitive wireless power platform within advanced mobility, industrial automation, applied AI infrastructure, and energy applications. Specific use cases include sealed automotive and EV enclosures, industrial and collaborative robotics requiring dynamic charging, autonomous sensor networks, and power infrastructure deployments where wired solutions are impractical.
We develop fully custom applications and are looking to engage with technical and commercial stakeholders who can evaluate fit within their existing or next-generation product roadmaps. Our goal is to leave the conference with qualified relationships that can advance into feasibility discussions or pilot program agreements.
Organization Profile
AWL-Electricity offers a proprietary capacitive wireless power transfer platform that outperforms every competing technology across the dimensions that matter most: range, power density, thermal safety, material penetration, and regulatory readiness. Competing wireless power solutions operate in one of two extremes. Long-range RF systems lack the power density required for real applications. Short-range inductive systems require precise alignment and cannot penetrate metal, severely limiting deployment environments. AWL operates in the optimal middle ground, delivering sufficient power at distances up to 1.5 meters, through metal, with zero intrinsic heat generation. This combination unlocks markets that no other WPT technology can address: sealed automotive enclosures, industrial robot arms requiring dynamic charging during operation, consumer peripherals demanding true spatial freedom, and sensors deployed in environments where wires cannot reach and batteries do not last.