At VibraPower, we are revolutionizing the traditional vibration energy harvesters, with the aid of nonlinear oscillator and dynamic Hebbian learning, a resonance tracking vibration energy harvester is built, which can harness the maximum natural and wasted vibration energy to generate electricity.
Vibrapower brings intelligent, maintenance-free energy solutions to the mining industry. Our advanced vibration energy harvesters convert the natural vibrations from heavy-duty equipment—like crushers, conveyors, and drills—into clean, renewable energy that powers wireless sensor networks. No more downtime for battery changes or tangled wires. Just seamless, self-sustaining power right where you need it.
With Vibrapower, mining operations can unlock the full potential of real-time monitoring, predictive maintenance, and condition-based alerts—even in the most remote and rugged environments. Our technology is designed to thrive in extreme conditions, delivering reliable power that keeps your sensors online and your teams informed.
Whether you're looking to optimize asset performance, reduce unplanned maintenance, or enhance worker safety, Vibrapower gives you the tools to transform your operation into a smarter, more efficient mine.
Smart sensors need smart power. Vibrapower delivers.
Power wireless sensor networks by utilizing the localized vibration energy generated from the EVs, Hybrid and gasoline cars, this could remove the need to connect the sensor devices to the main power source, replace unnecessary batteries and extend battery life.
Autonomous driving requires huge feedback information supported from sensors, vibration energy harvester harness the car vibration to power its sensors.
Macro vibration energy harvesters based on our technology could be used to generate power for EVs, Hybrid and Gasoline cars. Therefore reduce the fossil fuel consumption, large vehicles driving under normal road conditions and normal EV vehicles driving under off the road conditions contain lots of unutilized vibration energy, harnessing those energy can help generate power for them
When an airplane Is under normal operation, aerospace structers will be excited by non-stationary vibration source, the vibration input profile (such as amplitude and frequency) could vary a lot, and depends heavily on the fly speed, loading conditions, etc.
Many local batteries have been widely used across the entire airplane structure, If local vibration energy harvesters could be utilized properly, the lifetime of the main battery could be highly extended, and most of the secondary or backup batteries could be eliminated. Therefore, a huge amount of maintenance and operational cost could be saved.
An adaptive state is augmented onto a nonlinear oscillator, where a resonance criteria could be met via using its own dynamical response. This resonance-tracking technology could be used to create a high Q-factor oscillator that can harvest non-stationary vibratory energy sources.
The VibraPower team recently attended CES 2025. The international trade show features the latest cutting-edge technologies and products each year and provides opportunities for companies both large and small to showcase groundbreaking technological advances to potential customers, partners, and investors from across the globe.
We attended in partnership with North Carolina State University's Office of Research Commercialization, and had an incredible time sharing our technology and our mission with the CES attendees.
This year, CES included over 141,000 attendees and 4,500 exhibitors. VibraPower was thrilled to be among these innovators sharing our knowledge, and our vision for the future of electricity.
Are you interested in learning more about VibraPower? Please contact us via email at info@vibrapower.technology and our team will reply as soon as we are able.