Features
Solid Electrolyte: Replaces flammable liquid electrolytes with solid materials, enhancing safety.
High Energy Density: Enables more energy storage in a compact volume, ideal for space-constrained applications.
Excellent Thermal Stability: Performs safely at higher temperatures with reduced risk of thermal runaway.
Long Cycle Life: Capable of thousands of charge-discharge cycles with minimal capacity degradation.
Compact Prismatic Design: Optimized shape for efficient stacking and modular integration in battery packs.
High Voltage Compatibility: Supports high-voltage operation for increased energy output.
Improved Safety: No risk of electrolyte leakage or combustion, even under mechanical stress or short circuits.
Fast-Charging Capability: Potential for quicker charge rates due to improved ion conductivity in some designs.
Low Self-Discharge Rate: Maintains stored energy over long periods with minimal loss.
Enhanced Durability: Withstands mechanical shock and vibration, suitable for automotive and aerospace use.
Scalability: Easily adaptable to both small and large battery systems for various industrial and consumer applications.
Application
Electric Vehicles (EVs)
Energy Storage Systems (ESS)
Aerospace and Aviation Power Systems
Medical Devices
Consumer Electronics
Military and Defense Equipment
Electric Aircraft and Drones (eVTOL, UAVs)
Wearable Technology
Portable Power Stations
High-Performance Robotics
Grid-Scale Storage
Luxury and High-End Electric Sports Cars
Specification
Model | Capacity | Voltage | Resistance | Max CHG Rate | Max DHG Rate | Cycle Life | Energy Density | Downloads |
Ah | V | mΩ | C | C | Cycles | Wh/Kg |