ULi 3.7V 16Ah 4C 500Wh/KG NMC Pouch Cell Semi-Solid State Battery Cell High Discharge Fixed-Wing UAV Hexacopter Multi-Rotor
A high-performance 3.7V 16Ah 500Wh/kg Semi-Solid NMC Pouch Battery Cell engineered specifically for long-endurance fixed-wing UAVs, industrial hexacopters, and heavy-lift multi-rotor platforms. Combining an advanced semi-solid NMC electrolyte matrix with a lightweight soft-pack enclosure, this high-energy-density cell delivers exceptional gravimetric efficiency, strong discharge capability, and enhanced thermal stability under demanding operational loads.
Custom Services
1. Custom Energy-Dense Battery Cell Solutions
We specialize in high-energy-density Semi-Solid State & Anode-Free NMC pouch cells (350Wh/kg to 500Wh/kg) engineered for next-generation aviation platforms. By eliminating traditional anode dead weight and leveraging a solid-liquid hybrid electrolyte matrix, our tailored battery cell chemistries deliver enhanced safety margins, improved thermal stability, and extended flight endurance.
2. Full-Service OEM/ODM Customization Support
From designing bespoke UAV smart battery architectures (6S to 24S series-parallel configurations) to fitting tight carbon-fiber airframes, our electrochemistry and engineering teams ensure optimized current balancing, thermal management, and structural reliability during dynamic high-altitude maneuvers.
3. Scalable Capacity & Tailored Volumetric Dimensions
We offer flexible volumetric dimensions and scalable capacity options tailored to your specific payload and energy requirements. Featuring ultra-thin current collectors, high-voltage LiHV compatibility, and low internal resistance, our cells maximize the power-to-weight ratio for heavy-lift platforms needing precise power matching.
4. Optimized for Heavy-Lift Aviation & Mission-Critical Flight
Engineered specifically for commercial eVTOL aircraft, heavy-lift industrial UAVs, long-range fixed-wing drones, and advanced mobile robotics. Our battery solutions support strong continuous and peak burst discharge rates, providing reliable propulsion under pressure shifts, low-temperature thermal drops, and high-g airborne conditions.












