Oxhy provides continuous, 24/7 power generation for electronic devices using its proprietary Oxhycell technology. This system extracts electrical current from water via the Oxhydroelectric Effect, eliminating the need for batteries and enabling autonomous operation for IoT devices and industrial equipment.
Funding
Funding not disclosed
Founders
Product
Problem
Traditional renewable energy solutions are limited by intermittent availability of sources like sunlight or wind, and existing energy harvesting technologies often provide insufficient power for many applications. This creates a dependency on batteries or wired power, increasing maintenance costs and environmental impact for electronic devices.
Solution
Oxhy has developed the Oxhycell, a proprietary energy generation system that leverages the Oxhydroelectric Effect to extract electrical current from water using ambient infrared radiation. This technology enables continuous, 24/7 power generation independent of external environmental conditions, offering a sustainable and resilient energy alternative. The Oxhycell technology is designed for scalability, bridging the gap from microelectronics to large-scale power generation systems.
Target Audience
The primary target audience includes manufacturers of microelectronics, IoT devices, smart home systems, and industrial equipment seeking autonomous and sustainable power solutions.
Features
- Oxhycell technology based on the Oxhydroelectric Effect, converting ambient infrared radiation into electrical energy.
- Continuous, 24/7 power generation capability, unaffected by sunlight or wind availability.
- Scalable architecture suitable for applications ranging from microelectronics to large-scale power systems.
- Demonstrated use cases include powering Ambient Light Sensors (ALS) for IoT devices, enabling battery-free operation.
- Modular system design allows for integration into various electronic components, including lighting, audio, and digital displays.
- Utilizes quantum physics principles applied to liquid water for energy extraction.
- Potential for waste heat recovery in industrial applications.
- Low environmental impact due to the use of ubiquitous materials and a non-polluting process.