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WPES
In wind power scenarios, our products can be used in energy storage systems to effectively store unstable electrical energy. Excess electricity is stored and released when wind power is insufficient, ensuring a stable and continuous power supply. Additionally, our products feature long cycle life, high safety, and reduced maintenance costs, thereby boosting industrial development. -
Low - speed vehicle
In low-speed vehicle applications, sodium-ion battery positive electrode materials and cells demonstrate excellent performance. Their high energy density ensures sufficient driving range, they operate stably at low temperatures, and their high safety standards enable them to withstand bumping and vibration, helping the industry move towards environmental protection and efficiency. -
Power tool
In the field of power tools, our sodium-ion battery products feature high discharge rates, enabling instant high-power output to meet the demands for high torque and high rotational speed, thereby improving work efficiency. Additionally, they offer long cycle life and high safety, reducing replacement frequency, usage costs, and safety risks. -
CBS
In the scenario of communication base stations, our products achieve voltage compatibility with lead-acid equipment through material modification and electrolyte optimization. The capacity retention rate at -20°C is increased by 45%, the cycle life exceeds 6,000 times, and the full-life cycle cost is reduced, extending the battery life and reducing operation and maintenance, thus helping to achieve green and efficient operation. -
Model Aircraft
In the field of model aviation, our products have significant advantages. High-rate discharge provides strong and stable power, and they have good adaptability to high and low temperatures, enabling them to adapt to different environments, ensure stable flight of model aircraft, and extend flight duration and frequency. -
SSPS
In automotive start-stop systems, our sodium-ion battery positive electrode materials and cells deliver outstanding performance. Their high discharge rate ensures reliable engine starting, with an 88% capacity retention rate at -20°C—superior to lead-acid batteries. They exhibit high safety in extreme conditions and feature a lightweight design that aids in energy conservation and emission reduction. -
OES
In the optoelectronics field, sodium-ion battery positive electrode materials and cells are adapted to energy storage needs. They store electrical energy with high energy density to ensure equipment operation, cope with power fluctuations with excellent charge-discharge performance to improve energy efficiency, reduce reliance on traditional energy sources, and promote the sustainable development of the industry. -
2/3WEV
In the field of two-wheeled and three-wheeled electric vehicles, our sodium-ion battery positive electrode materials and cells are well-suited to the application scenarios. The polyanionic system features stable structure and long cycle life, while high thermal stability ensures safety. The capacity retention rate exceeds 90% at -20°C, and charging is possible at -10°C, meeting the needs of daily travel and charge-discharge operations.