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Infrgy

Infrgy is a technology research and development firm focused on wireless power transmission and energy harvesting. The company is advancing radio‑frequency harvesting technology in partnership with the University of Kashmir’s Institute of Technology, while also exploring laser‑based line‑of‑sight power transfer through its Prime Movr subsidiary. These efforts aim to enable efficient, contact‑less energy delivery for a range of applications.

Founded 202345+ followers
Updated 1 month ago

Funding

Funding not disclosed

Funding rounds are not available yet.

Founders

Founder details are not available yet.

Product

Problem

Many remote sensors, IoT devices, and small-scale infrastructure lack reliable power sources because wiring or battery replacement is impractical, especially in hard-to-reach or mobile environments. Existing wireless power methods often require line‑of‑sight or are limited to short ranges, restricting deployment flexibility.

Solution

Infrgy develops technologies that capture ambient radio‑frequency (RF) energy and convert it into usable electrical power, enabling devices to harvest energy from existing wireless signals. In parallel, the company’s Prime Movr initiative creates laser‑based line‑of‑sight power transmission systems that can deliver focused energy over longer distances without physical connectors. Both approaches aim to provide continuous, cable‑free power for distributed electronics, reducing maintenance costs and expanding placement options for sensors, wearables, and low‑power equipment.

Target Audience

Primary customers include manufacturers of IoT sensors, wearable electronics, and remote monitoring equipment that require maintenance‑free power solutions, as well as industrial operators seeking wireless power for hard‑to‑reach installations.

Features

  • RF energy harvesting modules designed to convert ambient Wi‑Fi, cellular, and broadcast signals into DC power
  • Adaptive impedance matching circuitry to maximize capture efficiency across varying frequency bands
  • Laser power transmission prototype that directs a collimated beam to a photovoltaic receiver for higher power delivery over line‑of‑sight paths
  • Integrated power management ICs that regulate harvested energy for stable device operation
  • Collaborative research framework with the University of Kashmir’s Institute of Technology to validate performance in real‑world environments
This profile is AI-generated and may contain inaccuracies.