241kWh lithium-ion battery for reliable, long-lasting power storage and backup.
IP54-rated cabinet with durable weather-resistant materials, designed to withstand extreme temperatures and harsh outdoor conditions.
Modular design allows easy expansion with parallel connection, adaptable to growing energy needs.
Integrated Battery Management System (BMS), Energy Management System (EMS), fire suppression, and climate control for optimal performance.
Quick installation with plug-and-play design, reducing setup time and minimizing site preparation.
Real-time remote monitoring, fault alerts, and system status updates via a smart EMS platform for operational efficiency.
Advanced safety features including thermal runaway protection, emergency shutdown, and built-in fire suppression system.
Ideal for telecom base stations, off-grid locations, microgrids, and emergency backup power in various industries.
Model | HJ-G100-241F |
Cell Type | LFP-314Ah |
Nominal Capacity | 241.15kWh/1P224S |
Charge/discharge ratio | <0.5C |
Nominal Voltage | 768V |
Voltage range | 672~864V |
Maximum Charge/Discharge Current | 157A |
Rated Power | 120KW |
Grid-connected voltage | 400V |
Power factor | -1~1 |
Rated Grid Frequency | 50Hz |
System efficiency | ≥89% |
Charge/discharge depth | 100%DOD |
Working Temperature | -25~60°(Derated above 45°) |
Humidity | ≤ 9 5 % None Condensing |
Cooling method | Air-cooled |
IP Rating | IP54 |
Communication mode | Ethernet/RS485 |
Altitude | 3 0 0 0 m (Derated above 3 0 0 0 m) |
Dimension(W*D*H) | 1400*1300*2387mm |
Fire Fighting System | Perfluorohexanone + Aerosol + Active Pre-Alarm |
Weight | 3000kg |
Note: Specifications are subject to change without prior notice for product improvement. Data Sheet / Get your free product catalog and the latest pricing!
The 241kWh system is composed of multiple battery modules using 3.2V 314Ah LFP cells, configured into racks and installed within an air-cooled cabinet. It includes an integrated BMS, EMS interface, fire detection, and safety protection mechanisms to ensure reliable performance.
Air cooling simplifies system structure, reduces maintenance costs, and shortens installation time. For a mid-scale 241kWh system, optimized airflow design ensures effective heat dissipation without the complexity of liquid loops, making it suitable for a wide range of environments.
This capacity is ideal for peak shaving, PV self-consumption optimization, demand charge management, and backup power for small factories, commercial buildings, and public infrastructure. It also supports integration into distributed energy and microgrid platforms.
The system features real-time monitoring via a local EMS and remote cloud interface. The BMS provides data on cell voltage, temperature, SOC, and system alarms. Maintenance includes fan checks, dust filter cleaning, and firmware updates, all designed for easy field operation.
It includes overcharge/overdischarge protection, over-temperature shutdown, short-circuit detection, and insulation monitoring. Fire suppression systems (e.g., aerosol) and temperature sensors provide multi-layer safety control, especially important in enclosed or indoor installations.
Covering scenarios such as commercial buildings (integrating solar or wind energy to reduce energy costs and ensure reliable power), industrial plants (providing continuous backup power for critical operations during grid outages), renewable energy integration (storing excess energy to reduce grid dependency), off-grid installations (supplying reliable power in remote or unstable grid areas), and telecom base stations (ensuring continuous network operation in remote or off-grid regions).
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