ULi 3.6V 35Ah Semi Solid Pouch Cell 309Wh/kg 10C Peak for Agricultural Spraying & Crop Protection Equipment
High Gravimetric Energy Density
Delivering a high gravimetric energy density of 309Wh/kg at just 408g, this 3.6V 35Ah semi-solid pouch cell minimizes battery dead weight.
Operational Efficiency
By improving energy efficiency per unit mass, agricultural drone operators can maximize liquid tank capacities and prolong operational mission runtimes.
Custom Services
1. Custom Semi-Solid State Power Solutions
We specialize in custom high-energy-density Semi-Solid State NMC pouch cells for professional aerial platforms, delivering tailored power solutions to match your specific aircraft's flight envelope, payload capacity, and mission endurance needs. Leveraging next-generation solid-liquid hybrid electrolyte technology, our battery cells seamlessly blend superior safety profiles with unprecedented weight reduction.
2.Full-Service Customization Support
From designing bespoke UAV smart battery architectures to fit tight, aerodynamic carbon-fiber fuselages, to scaling up for multi-pack commercial mass production, our engineering team ensures optimal current balancing, thermal regulation, and structural safety during severe high-altitude maneuvers.
3. Tailored Capacity & Volumetric Dimensions
We offer scalable capacities with next-gen energy density thresholds ranging from 350Wh/kg to 500Wh/kg (with customized pack dimensions and cell configurations like 6S/12S/14S). Featuring advanced Si-C Anode technology and high-voltage LiHV compliance, our cells achieve an incredible power-to-weight ratio perfect for heavy-lift platforms needing precise power matching.
4. Optimized for Professional Heavy Lift UAV Scenarios
Ideal for critical commercial aviation, large-scale industrial cargo transport, or tactical flight ops—our cells deliver an exceptional high discharge rate to support sustained electric aircraft propulsion. It guarantees all-day fleet deployment, efficient heavy-payload transport, and reliable outdoor stability to withstand extreme pressure changes, low-temperature high-altitude thermal drops, and demanding airborne g-forces.











