480Wh/kg Semi-Solid State Drone Battery
150%+ Endurance Extension | >60%
Mass Reduction
480Wh/kg Semi-Solid Drone Battery Specifications
Explore our range of high energy density (LiHv) configurations, including 6S, 8S, 12S, 14S, and 18S custom UAV battery packs based on our industry-leading semi-solid state technology.
* Note: The data above reflects realistic Pack-Level Energy Density (including wires and connectors), ensuring accurate MTOW calculations for your engineering team.
* Connector Customization: Supplied with XT90S standard. We offer full OEM integration for AS150U, QS5, QS8, QS10, AS250, and other high-current anti-spark plugs upon request.
The 480Wh/kg Breakthrough:
Pure Cobalt LCO vs. Standard NCM
Engineering reliability for high-value UAV missions. Discover why our proprietary Si-C anode and 100% LCO chemistry outperform conventional drone battery packs.
KKLIPO 480Wh/kg Semi-Solid LCO Series
100% Pure Cobalt (LCO) + Si-C Anode
Mission Endurance:
Break the limit with a 150%+ endurance extension. No airframe modifications needed.
MTOW Weight Reduction:
Over >60% weight reduction compared to conventional packs, maximizing payload and lowering UAV MTOW.
Voltage Plateau:
Pure LCO chemistry provides linear power for predictable control, eliminating sudden voltage sags during critical RTH (Return to Home) maneuvers.
Volumetric Efficiency:
Achieve a 53% volume reduction, fitting significantly more energy into a compact footprint.
Standard NCM Drone Battery (260-350Wh/kg)
NCM Blended Chemistry
Standard Flight Limitations:
The 260-350Wh/kg density bottleneck leads to frequent landings and limited operational range.
Excessive Weight & Bulk:
Heavy and oversized footprints reduce available payload capacity and limit airframe design flexibility.
Power Sag Risks:
Non-linear power output introduces risks of sudden voltage sags during high-current operations.
Rapid Decay:
Blending NCM (Ternary) materials to reduce costs often results in faster capacity degradation under heavy industrial loads.
Empowering Mission-Critical UAV Applications
From high-altitude mapping to critical search and rescue, our 480Wh/kg semi-solid technology redefines operational limits where every gram matters.
Mapping & LiDAR
Maximize area coverage per flight. The ultra-lightweight LCO chemistry supports heavy LiDAR payloads while extending scanning duration by up to 150%.
eVTOL & Fixed-Wing
Achieve exceptional cruise endurance. Our compact high-voltage packs perfectly fit constrained VTOL fuselages, ensuring reliable transition phases.
High-Altitude Expeditions
Defy extreme environments. In high-altitude or low-density air where every gram counts, our ultra-lightweight LCO chemistry provides the critical power-to-weight ratio needed for scientific exploration and extreme terrain mapping.
Search & Rescue
When every minute counts. Maximize search grid coverage and critical airtime. Our 480Wh/kg extreme-density packs provide the ultimate endurance needed for time-sensitive emergency response and disaster relief missions.
Semi-Solid State Drone Battery: Technical FAQ
Answers from the KKLIPO Engineering Team.
It's a strategic choice between daily utility vs. extreme performance. Our 350Wh/kg series is the daily workhorse with 800+ cycles. However, the 480Wh/kg Peak series is engineered for missions where MTOW (Maximum Take-Off Weight) is the ultimate bottleneck. It offers a >60% mass reduction compared to standard LiPo, allowing you to carry heavier LiDARs or fly 150%+ longer without upsizing your airframe.
To break the 480Wh/kg density barrier, we use 100% pure Cobalt LCO and a high-content Si-C anode. This chemistry maximizes single-flight ROI. For high-value tasks like emergency SAR or remote mapping, the extra 30-60 minutes of airtime far outweighs the cost of battery replacement.
Yes. Since high-power industrial drones require maximum reliability, we do not use restrictive BMS for discharge. Instead, we offer full customization of high-current, anti-spark connectors like AS150U, QS8, or QS10, paired with heavy-duty silicone wires (up to 8AWG) to handle extreme peak draws without overheating.
These are LiHv (High-Voltage) packs. To reach the full 480Wh/kg capacity, your charger must support a LiHv profile with a precise cut-off of 4.35V per cell. Charging at standard 4.2V will result in significant under-capacity.
Absolutely. Our semi-solid state electrolyte has lower flammability and higher structural integrity. It is much more resistant to swelling and internal shorts caused by vibration or minor punctures—critical for protecting your expensive airborne equipment.
Ready to Extend Your Mission Limits?
Consult with our battery engineers. Whether you need a 6S, 12S, or 18S custom pack, we provide the highest energy density solutions available on the market.