Where Performance Margins Matter Most
University Racing Teams & Battery Research
In academic competition and research, every watt-hour and every gram can make the difference between first place and second. Enpower partners with elite universities and research institutes worldwide, providing cutting-edge battery technology that gives teams and researchers access to the same advanced cell chemistries used in commercial and defense applications.
Our batteries have powered teams in MotoStudent, Formula SAE, and solar car competitions, while our research partnerships with institutions like the Tokyo Institute of Technology advance the frontiers of next-generation battery science.
Polimi MotoStudent — From CAD to Track
Follow the Politecnico di Milano MotoStudent team as they design, build and race their electric motorcycle — powered by Enpower battery technology.
Programs
MotoStudent & E-Motorcycle Racing
University e-motorcycle racing teams gain a competitive advantage through Enpower's industry-leading energy density. Our Si-C anode technology delivers more power per kilogram, translating directly into faster lap times and longer race distances.
Formula SAE & Solar Cars
Lightweight construction and high power output are essential for competitive racing. Enpower's pouch cells provide the optimal balance of weight, power, and safety that Formula SAE and solar car teams need to win.
University Research
Enpower collaborates with leading research groups including the Tokyo Institute of Technology. Our research partnerships provide universities with access to patented lithium metal and all-solid-state battery technologies for cutting-edge research programs.
Next-Gen Battery R&D
Academic and industry researchers gain access to Enpower's state-of-the-art cell chemistries for prototyping and research purposes. Flexible cell configurations enable researchers to explore new applications and push the boundaries of battery performance.
Why Enpower
Founded by battery scientists Dr. Sam Dai and Dr. Che Yong
Mentored by Prof. John B. Goodenough (Nobel Laureate)
Access to patented lithium metal and ASSB technologies
Flexible cell configurations for research and prototyping
Partnership Benefits
Direct access to Enpower's engineering team
Custom cell specifications for academic projects
Technical support and battery integration guidance
Competitive pricing for academic institutions
Available Battery Platforms
SWIFT Semi-Solid State Batteries
The SWIFT platform is Enpower's flagship aerospace-grade semi-solid state battery, engineered for aviation applications — industrial drones, eVTOL, and heavy-load drones — with breakthroughs in lightweight design, flight range, temperature adaptability, and instant power response. With energy density up to 403 Wh/kg and over 3 million cells delivered, SWIFT is proven at industrial scale.
FLEET Quasi-Solid State Batteries
FLEET pairs a lithium-metal anode with a quasi-solid electrolyte to hold stable power output in the extreme cold and high radiation of the stratosphere, down to -60°C. With cell energy density up to 525 Wh/kg, FLEET powers pseudo-satellites and high-altitude drones for weeks or even months — a key energy carrier for 'never-landing' airborne base stations.
KOSMOS All-Solid-State Batteries
KOSMOS is Enpower's all-solid-state battery platform with sulfide electrolyte and lithium-metal anode, engineered for maximum safety and performance. KOSMOS broke the ASSB 400 Wh/kg energy density barrier.
Explore More Applications
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