500KW 1MWH Energy Storage Container
1. High-Capacity, Scalable Energy Storage
Flexible Capacity: Configurable from 1MWh to 10MWh+ using industrial-grade LiFePO4 batteries (280Ah large-format cells), with 80% depth of discharge (DoD) for usable energy (e.g., 800kWh from 1MWh). Supports 1C continuous discharge (full capacity in 1 hour) and 2C surge capacity for sudden load spikes (grid fluctuations, industrial machinery).
Long Lifespan: 6,000+ charge-discharge cycles (15+ year lifespan) with 80% capacity retention after 10 years, ensuring durable performance for long-term energy projects.
2. Integrated Power Conversion System (PCS)
High Efficiency: 98.5% efficient bi-directional PCS (250kW–1MW per container) supporting 400V–1000V AC/DC grids, enabling seamless conversion between battery-stored DC and grid-ready AC power.
Grid & Renewable Compatibility: Works with utility grids, solar farms, and wind turbines, supporting grid-tied, off-grid, and backup modes. Features <5ms switching to prevent downtime during outages-critical for data centers, hospitals, or manufacturing plants.
Extreme Weather Performance: Liquid-cooled design operates in -40°F to 158°F (-40°C to 70°C), with dust/water resistance (IP66 rating) to thrive in deserts, coastal areas, or industrial zones.
3. Advanced Safety & Battery Management (BMS)
Multi-Layer Protection: Industrial-grade BMS monitors cell voltage (±2mV balancing), temperature, and current to prevent overcharging, thermal runaway, or short circuits. Automatically isolates faulty modules to protect the entire system.
Fire & Hazard Mitigation: Equipped with FM-200 fire suppression, smoke detectors, and arc flash protection (NFPA 70E compliant), ensuring safety in high-voltage environments.
Predictive Maintenance: AI-driven analytics detect cell degradation early, sending alerts via cloud platforms to schedule repairs during planned downtime-reducing unplanned outages by 70%.
Container Energy Storage System
Advantageous Functions
- Smooth New Energy Output
- Peak Valley Arbitrage
- Demand Management
- Construction of Microgrid

20FT 40HQ Container Energy Storage System



PCS capacity:300kW
Dimension:3000*2438*2591(W*D*H)mm
Battery capacity:1075kWh
PCS capacity:500kW
Dimension:6058*2438*2591(W*D*H)mm


| Specification | |||
|
Model No.: |
MECC-645-300 |
MECC-1075-500 |
MECC-2150-1000 |
|
Container Size |
20ft |
20ft |
40HQ |
| Battery Parameter | |||
|
Battery Type |
LifePo4 |
||
|
Battery capacity |
645.12kWh |
1075.2kWh |
2150.4kWh |
|
Battery cabinet capacity |
768V/280Ah,215.04kWh |
||
|
Battery cabinet Qty |
3pieces in parallel |
5pieces in parallel |
10pieces in parallel |
|
Cycle life time |
10000times |
||
| PCS Parameter | |||
|
PCS power |
300kW |
500kW |
1MW |
|
Isolated Transformer |
Included |
||
|
Output Voltage |
380V/400V 3L+N+PE |
||
| Others | |||
|
Air conditioner |
Yes |
||
|
Fire fighting system |
Yes |
||
|
Certification |
CE,UN38.3,EN50549,G99,VDE4105 |
||








FAQ
Q: What is the warranty period for a containerized energy storage system?
A: Warranty periods can vary by manufacturer, but typically, a containerized energy storage system comes with a warranty of 5 - 10 years. This usually covers defects in materials and workmanship, and some warranties may also include performance - based guarantees for the battery and other components.
Q: How much maintenance does a containerized energy storage system require?
A: Maintenance requirements are relatively moderate. Regular visual inspections are needed to check for any signs of physical damage or leaks. Periodic testing of the battery cells, power conversion system, and energy management system is also necessary. Software updates for the control systems may be required to ensure optimal performance. Overall, a few days of maintenance per year may be sufficient for a well - designed system.
Q: Can a containerized energy storage system operate in a salt - laden environment, like near the coast?
A: Yes, but special considerations are needed. The container can be equipped with corrosion - resistant materials and coatings to protect the internal components from salt - induced corrosion. Additionally, proper ventilation and air - filtering systems can help keep the internal environment clean and dry, ensuring the system can operate reliably in such environments.
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