Battery Technology: Utilizes mature, high-efficiency, long-life large-capacity lithium iron phosphate batteries.
Battery Management: Equipped with advanced intelligent battery management products to ensure product safety.
Thermal Management: Achieves high-precision intelligent operation environment control through industrial-grade air conditioning systems, ensuring a temperature difference of 3℃ inside the PACK and 5℃ in the cabinet.
Safety Protection: Optional fire protection system using aerosol.
Automatic Alarm and Fire Extinguishing System: Configured with a three-level automatic alarm fire extinguishing system for PACK, cluster, and compartment.
Monitoring System: Installed with temperature and humidity, smoke, video monitoring, and access state monitoring equipment inside the container.
Modular Design: Highly modular product design, simple structure, easy for transportation, installation, and maintenance
The container uses simplified integration technology, housing the battery PACKs, distribution busbars, liquid cooling units, temperature control, and fire protection systems in separate compartments, maintaining safety control while remaining suitable for standard transportation.
A liquid cooling system maintains uniform cell temperature across all packs, supporting stable performance, extended battery life, and high-density energy storage in a compact footprint.
The container integrates a dedicated fire protection system, environmental control, and multi-level BMS monitoring covering cell, pack, cluster, and system levels, with automatic protection and disconnection functions.
The 5.015MWh container is built for utility-scale and large industrial projects — grid-side energy storage, peak shaving for heavy industry, renewable integration with solar and wind farms, and microgrid infrastructure. It is the same platform used in Jingye's 50MW/100.32MWh Jiangsu Jingye Iron and Steel power station.
Yes. Capacity, voltage platform, communication protocols, and grid-connection requirements can be tailored through Jingye's OEM/ODM engineering service, backed by a 3-year warranty and full commissioning support.
5MWh Liquid Cooling Battery Container
| No. | Item | Specification |
| 1 | Configuration | 12×(1P104S×4) |
| 2 | Rated Energy | 5015 kWh (5.015 MWh) |
| 3 | Cell | 314Ah lithium iron phosphate (LFP) |
| 4 | Rated Voltage | 1331.2 V DC |
| 5 | Voltage Range | 1164.8 – 1497.6 V DC |
| 6 | Rated Charge / Discharge Power | ≤ 2.5 MW |
| 7 | Auxiliary Power Supply | 400 V AC ±5% 50 Hz / 220 V AC |
| 8 | Storage Temperature | 5°C < T ≤ 35°C |
| 9 | Working Temperature | 0°C–60°C (charging); -30°C–60°C (discharging) |
| 10 | Altitude | ≤ 4000 m (derating above 3000 m) |
| 11 | Dimensions | 6058 × 2438 × 2896 mm (20-ft container) |
| 12 | Weight | approx. 43 t |
| 13 | IP Rating | IP54 / IP55, salt-fog protection |
| 14 | Cooling Method | Liquid cooling (50% ethylene glycol) |
| 15 | Fire Protection | Aerosol + water (pack / cluster / compartment) |
| 16 | Communication | Ethernet / CAN / Modbus RTU |
| 17 | Standards | GB/T 36276, IEC/EN 62619, IEC/EN 62477, UN 38.3, IEC/EN 63056 |
Technical Parameters
|
Cell Parameters |
314Ah |
|
Combination Method |
L173F314-1P104S |
|
Rated Voltage |
332.8V |
|
Rated Capacity |
314Ah |
|
Rated Energy |
104.499kWh |
|
Cooling Method |
Liquid cooling |
|
Rated Rate |
0.5P |
|
Dimensions |
2160*790*245mm |
|
Example |
|
Peak Shaving & Load Leveling — Store energy when demand is low and dispatch during peak periods to reduce electricity costs and smooth load profiles.
Renewable Integration — Work with on‑site solar or wind installations to buffer intermittent generation and increase self‑consumption.
Microgrid & Hybrid Power Systems — Provide stable energy storage for microgrid projects, enhancing energy autonomy and reliability.
Grid Support Services — Support frequency regulation, voltage stabilization, and other ancillary grid services.
5 MWh battery energy storage system is a large-scale solution designed to store 5 megawatt-hours of electrical energy.
Capacity meaning: It can deliver 5MW for 1 hour, or lower power output for a longer duration.
Technology: Use LiFePO4 lithium batteries with advanced BMS for safety and efficiency.
To build a 5 MWh battery energy storage system using liquid cooling technology:
Select high-voltage battery racks – Each rack (e.g., 215–280kWh) is installed inside a liquid-cooled container.
Configure parallel connections – Multiple containers are paralleled to reach a total 5MWh capacity.
Integrate PCS & EMS – Power conversion systems regulate charging/discharging; energy management optimizes performance.
Thermal management – Liquid cooling maintains battery temperature at 20–30°C, increasing lifespan and performance.
Related Case
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