1. All in One integrated design simplifies installation and operation
Deye GE-F120 adopts a highly integrated integrated design, integrating high-voltage LiFePO ₄ batteries, PCS/hybrid inverters, BMS, and EMS into the same system, reducing external equipment and complex wiring requirements. Standardized cabinet design helps to shorten the installation cycle and achieve centralized monitoring of battery, current, voltage, and system operation status, making the deployment of industrial and commercial energy storage projects simpler and more efficient.
2. High security level, multiple protection guarantees stable operation
GE-F120 adopts high safety lithium iron phosphate batteries and is equipped with multiple safety measures such as smoke, temperature, and combustible gas detection, active exhaust, fire alarm, and aerosol fire extinguishing. The system adopts an IP55 protection level cabinet and is designed for thermal management in high-temperature environments. When operating at rated power, the battery temperature is controlled at a lower level, providing reliable safety protection for factories, commercial buildings, farms, and other outdoor energy storage applications.
3. High rate cycling performance, suitable for high-frequency energy storage applications
GE-F120 is designed specifically for high rate charging and discharging scenarios, suitable for peak valley arbitrage, photovoltaic self use, load shifting, and backup power applications. The battery system adopts LiFePO ₄ technology, and official data shows that the battery cycle life can reach ≥ 6000 times, with a 10-year warranty, which helps reduce long-term operating costs and improve the return on investment of energy storage systems.
4. Flexible expansion to meet the constantly growing energy demand
GE-F120 supports parallel connection of multiple systems and can flexibly increase energy storage capacity and output power according to the actual electricity demand of the project. The system supports black start and off grid operation, and can achieve larger scale energy storage configuration through parallel connection of multiple machines. Official data shows that the system's expansion capacity can reach up to 3600kWh, which is suitable for industrial and commercial energy storage projects of different scales such as factories, commercial complexes, farms, and microgrids.