Utah Firm Unveils BreakthroughAircraft Battery, Extending Flight Time

EP Systems launches the EPiC 2.0 aircraft battery, offering 30 minutes of additional usable flight time. The battery's increased energy density enables electric aircraft to complete comprehensive flight training requirements for private pilot certification.

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Utah Firm Unveils BreakthroughAircraft Battery, Extending Flight Time

Utah Firm Unveils BreakthroughAircraft Battery, Extending Flight Time

EP Systems, a pioneering Utah-based company specializing in innovative energy solutions, has launched its latest groundbreaking product: the EPiC 2.0 aircraft battery. This innovative technology offers an impressive 30 minutes of additional usable flight time, significantly expanding the capabilities of electric aircraft and paving the way for local and cross-country flight training for private pilot certification.

Why this matters: The development of more efficient and reliable electric aircraft batteries has significant implications for the aviation industry's transition to sustainable energy sources, reducing its carbon footprint and environmental impact. As electric aircraft become more viable, they could also lead to reduced operating costs and increased accessibility for pilots and passengers alike.

The EPiC 2.0 battery boasts an energy density of 2.65 watt-hours per kilogram, a substantial improvement from its predecessor, the EPiC 1.0, which provided approximately 60 minutes of flight time with an energy density of 205 wh/kg. This increased capacity enables aircraft to remain airborne for extended periods, making it possible to complete comprehensive flight training requirements for a private pilot certificate.

Dan Sutliff, Assistant Professor at Utah Valley University, highlights the significance of this advancement, stating, "The additional range of these new batteries will allow us to do local flight training and cross-country flight training as well. Everything that needs to be completed for a private pilot certificate."

The development of the EPiC 2.0 battery was a decade-long endeavor for EP Systems, with a focus on creating a safe and reliable energy storage system. The company developed new technologies to prevent thermal runaway and ensure the safety of the batteries. Specifically, the EPiC 2.0 battery is designed as a drop-in replacement for its earlier model, facilitating seamless integration into existing aircraft.

EP Systems CEO Nathan Millecam believes the EPiC 2.0 battery "unlocks electrification for so many different customers in so many different segments." The company's innovation has the potential to transform the electric training fleet and accelerate the widespread adoption of electric aircraft. As more companies invest in the development of electric aircraft and advanced battery technologies, the future of aviation looks increasingly electric.

To put the EPiC 2.0 battery's energy density into perspective, a gallon of gasoline has an energy density of 13,100 watt-hours per kilogram, making it 49.4 times more energy-dense than the EPiC 2.0 battery. However, the EPiC 2.0 battery is specifically designed for use in electric aircraft, such as that of the Velis, currently the only certified e-plane in the United States.

The introduction of the EPiC 2.0 battery marks a significant milestone in the electric aviation industry. EP Systems' breakthrough battery technology not only extends flight times but also opens up new possibilities for flight training and the widespread adoption of electric aircraft. With the EPiC 2.0 battery, aspiring pilots can now complete their private pilot certification using electric aircraft, reducing their carbon footprint and embracing a more sustainable future for aviation.

Key Takeaways

  • EP Systems launches EPiC 2.0 aircraft battery, offering 30 minutes of additional flight time.
  • EPiC 2.0 boasts 2.65 wh/kg energy density, a significant improvement from its predecessor.
  • New battery enables local and cross-country flight training for private pilot certification.
  • EPiC 2.0 designed for safety and reliability, with features to prevent thermal runaway.
  • Innovation paves way for widespread adoption of electric aircraft, reducing aviation's carbon footprint.