Designed for extended performance, high-voltage cells offer superior power output, optimizing efficiency for drones requiring higher voltage thresholds.
Built for maximum power output, these cells support high-performance operations, ideal for FPV racing, with exceptional discharge capabilities and stability.
Featuring high energy density and lighter weight, these cells are ideal for industrial drones, providing longer flight times with enhanced safety and durability.
Delivering rapid recharge capabilities, these cells reduce downtime, ensuring quick turnaround for demanding applications like logistics and emergency services.
Engineered to perform in extreme cold, these cells maintain reliable power output, ensuring consistent performance in low-temperature environments.
Our R&D team focuses on innovation, advancing battery chemistry and design to deliver higher energy efficiency and cutting-edge power solutions.
Semi-Solid-Energy Density | Semi-Solid-Discharge at different rates |
Semi-Solid-Cycling performance (1C charge/1C discharge) | Semi-Solid-Cycling performance (1C charge/3C discharge) |
Designed for extended performance, high-voltage cells offer superior power output, optimizing efficiency for drones and electric vehicles requiring higher voltage thresholds.
LiHV-Discharge at 3C rate | LiHV-Discharge at 5C rate |
LiHV-Discharge at 0℃ | LiHV-Cycling performance |
NO | Model No | Fully Charged Voltage(V) | Nominal Voltage (v) | Discharge Rate | Capacity (mAh) | Weight (g) | Thickness (mm) | Width(mm) | Length (mm) | Max Continuo us discharge current(A) |
---|---|---|---|---|---|---|---|---|---|---|
High Voltage | TARB1130K1205X | 26.1 | 22.8 | 5C | 40000 | 4130 | 64 | 122 | 263 | 3C |
Semi-solid State | TARB1130K1205X | 25.2 | 22.2 | 5C | 17000 | 1490 | 50.5 | 72 | 193 | 3C |
Semi-solid State | TARB1117K0605X | 25.2 | 22.2 | 5C | 22000 | 1850 | 59 | 77 | 193 | 3C |