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Powered by Energy · Moving Forward with the World
Cylindrical Sodium-Ion Cells
Next-Generation Energy Storage & Power Cell Solution
Featuring Low Cost, High Safety, and Excellent Low-Temperature Performance
Featuring Low Cost, High Safety, and Excellent Low-Temperature Performance

Advantages
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Significant Cost AdvantageAbundant and widely available sodium resources help reduce raw material costs, making sodium-ion batteries a cost-effective solution for large-scale applications. -
Secure Resource SupplyFree from reliance on critical materials such as lithium and cobalt, sodium-ion batteries offer a more stable supply chain and greater resilience against raw material price fluctuations. -
Excellent Low-Temperature PerformanceDelivers reliable discharge performance even at temperatures as low as -20°C, making it well suited for cold-climate applications. -
Enhanced SafetyExcellent thermal stability and a lower risk of thermal runaway make sodium-ion batteries ideal for energy storage and other large-scale applications. -
Stable Cycle LifeProvides reliable cycling performance and long service life, particularly in low- to medium-rate applications. -
High CompatibilityThe mature cylindrical cell design enables standardized manufacturing, easy system integration, and scalable production.
Applications
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Residential Energy Storage Systems -
Commercial & Industrial Energy Storage Systems -
Containerized Energy Storage Systems -
Solar & Wind Energy Storage Systems -
Telecom Base Station Backup Power -
Data Center Backup Power -
UPS Systems -
Low-Speed Electric Vehicles (LSEVs) -
Community Patrol Vehicles
Cylindrical LMFP Cells
The Safety of LFP + Lower Cost + Better Low-Temperature Performance

Advantages
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Cost-EffectiveAbundant raw materials and lower cost than conventional LFP cells, helping reduce overall system costs. -
High-Voltage Platform (3.8 V)Higher output voltage improves system efficiency and power performance. -
Higher Energy DensityGravimetric energy density of up to 158 Wh/kg, comparable to 4.6 Ah 26700 LFP cells, balancing performance and cost. -
Excellent Low-Temperature Performance (-20°C)Stable discharge performance in low-temperature environments, with >90% capacity retention. -
Highly SafetyInherits the structural stability of the phosphate-based chemistry, making it suitable for a wide range of demanding applications.
Applications
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Electric Scooters -
E-Bikes -
Light Electric Motorcycles -
Logistics Handling Robots -
Mobility Scooters
Cylindrical LFP Cells
Pioneering the 26700 Format and Driving Industry Standardization

Advantages
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High Energy Density (140–200Wh/kg)Delivers extended runtime and range for a wide range of applications. -
Versatile Power PerformanceSupports diverse power requirements, from energy-focused to power-intensive applications. -
Excellent Cell ConsistencyHigh cell consistency ensures stable pack performance and improves overall system reliability. -
High CompatibilityStandardized design supports a wide range of battery pack configurations and system solutions. -
Cost-EffectiveMature manufacturing processes and large-scale production help reduce overall application costs. -
High-Safety DesignThe stable LFP chemistry provides reliable safety performance for demanding operating environments.
Applications
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Electric Two-Wheelers
(E-Bikes & Electric Motorcycles) -
Electric Three-Wheelers
(Logistics & Delivery Vehicles) -
Robotic Vacuum Cleaners -
Robotic Lawn Mowers -
Residential Energy Storage -
UPS Backup Power

