1500kW / 3000kWh Containerized Energy Storage System (Air Cooling)

1500kW / 3000kWh Containerized Energy Storage System (Air Cooling)

  • Robust Performance

    Delivers high power output and big storage capacity for multiple applications.​

  • Efficient Thermal Management

    Advanced air-cooling system ensures optimal temperature control, enhancing system efficiency.​

  • Enhanced Safety Features

    Possesses complete fire protection and monitoring systems for secure operation.​

  • Flexible Deployment

    Containerized design allows easy transportation and fast installation.​

  • Seamless Integration

    Intelligent EMS and standard communication protocols allow integration with existing energy infrastructures.

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Product Description

Our 1500kW / 3000kWh Containerized Energy Storage System (Air Cooling) is a highly efficient, high-performance energy storage solution suitable for use across a variety of applications. The system uses advanced Lithium Iron Phosphate (LFP) battery technology coupled with a smart air-cooling system for optimum performance and long life. The system is housed in a 40-foot container and is delivered in a compact, modular format for straightforward installation and easy expansion.​

Key Features

Applications

Product Specifications

Parameter Specification
Battery Type Lithium Iron Phosphate (LFP)
Rated Power Output 1500kW
Storage Capacity 3000kWh
System Configuration 14P240S
Rated Voltage DC 768V
Charge/Discharge Rate 0.5C
Cooling Method Air Cooling
Container Size 40-foot
Protection Level IP54
Fire Protection Systems Perfluorohexanone and water-based
Communication Protocols CAN/MODBUS/IEC104/IEC61850

 

Frequently Asked Questions

What is the expected battery system life?

The system has a design life of over 6,000 cycles at 25°C at a 0.5C charge/discharge rate.

Can the system operate in high/low-temperature extremes?

Yes, the system operates well within a -30°C to 55°C temperature range, derating above 45°C.

Is the system scalable for future expansion?

Yes, the modular nature of the design allows easy scalability to address expanding energy storage needs.

What are the safety measures taken?

The system boasts multi-level fire protection via perfluorohexanone and water-based suppression systems with extensive monitoring for increased safety.

How is the system integrated with existing infrastructure?

It possesses an intelligent EMS with the standard communication protocol (CAN/MODBUS/IEC104/IEC61850) for simple integration and real-time monitoring.

 

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