3.44MWh Liquid Cooling ESS Battery Container

Employing a standardized design, the lithium battery system, battery management system, fire protection system, thermal management system, and power distribution system are integrated on the DC side within a 20-foot container. Liquid cooling technology further enhances product performance, energy density, and cycle life, delivering a highly safe, reliable, and long-lasting energy storage solution that can be flexibly configured to satisfy diverse application requirements.

  • System Capacity: 3440.64 kWh
  • Rated Voltage: 1228.8 V
  • Single Module Capacity: 344.064 V
  • Number of Battery Modules: 10
  • Cooling Method: Liquid cooling
  • Fire Protection System: Pack-level perfluorohexanone with reserved water fire protection interface
  • Dimensions (W×D×H): 6058×2438×2896 mm
  • Weight: <35 t
  • Operating Temperature: -30 to 55 ℃
  • Communication Interface: Wireless 4G / Ethernet
  • Product List

    System parameters
    Battery Pack Parameter
    Project Unit Product Parameters
    Cell type LFP 280Ah
    Combination method 1P48S
    Rated voltage Vdc 153.6
    Rated energy kWh 43.008
    Magnification Cp ≤0.5
    Battery cluster parameters
    Project Unit Product Parameters
    PackString number 8S
    Operating voltage range Vdc 1075.2~1382.4
    Rated voltage Vdc 1228.8
    Rated energy kWh 344.064
    Magnification Cp ≤0.5
    Battery system parameters
    Project Unit  Product Parameters
    Number of battery clusters 10
    Rated voltage  Vdc 1228.8
    Rated energy  kWh 3440.64
    Magnification  Cp ≤0.5
    Qualifying Method  DC bus
    Standard parameters
    Project Unit Product Parameters
    Dimensions (W*D*H) mm 6058×2438×2896
    Weight t <35
    Operating temperature range -30~55
    Relative humidity %RH 0~95%RH
    Working altitude m ≤3000
    Cooling method Liquid cooling
    Protection level IP54
    Communication Interface 4G Wireless/Ethernet
    Qualifying Method Down in, down out
    Firefighting Methods Pack-grade perfluorohexanone, with reserved water fire-fighting interface.

    Benefit

    Benefit

    • High-quality battery cells from leading manufacturers

      High-quality battery cells from leading manufacturers

    • Advanced liquid cooling technology

      Advanced liquid cooling technology

    • Standardized design, flexible configuration

      Standardized design, flexible configuration

    • High safety performance

      High safety performance

    • Pack-level fire protection

      Pack-level fire protection

    • Intelligent platform, supporting mobile APP and web access

      Intelligent platform, supporting mobile APP and web access

    Full-stack energy storage solutions, driving a green future with electricity.

      • Covering a full range of products including air-cooled/liquid-cooled outdoor cabinets, containers, and residential storage.
      • Meeting the application needs of various scenarios such as industrial, commercial, and residential applications.
      • Providing comprehensive solutions from investment analysis and operation and maintenance to full lifecycle services. 
    • Liquid Cooling System Solution

      Liquid Cooling System Solution

        - Liquid cooling system: Includes liquid cooling unit, piping, liquid cooling plates, and mounting pump, coolant, etc.

        - Compared to air cooling solutions, it improves thermal management efficiency, space utilization, reduces temperature differences, and enhances battery performance.

        - Intra-cluster temperature difference can be controlled within 3°C, energy density is increased by 160%, and thermal management power consumption is reduced by 40%.

    • 1500V DC High-Voltage System

      1500V DC High-Voltage System

         -Increases power and energy density of energy storage systems.

        -Reduces energy storage system costs and installation/maintenance costs.

        -Reduces parallel losses in energy storage systems, improving system efficiency.

        -Compared to 1000V systems, power/energy density is increased by approximately 30%, system cost is reduced by approximately 10%, and system efficiency is improved by approximately 1%.

    • Non-walk-in design

      Non-walk-in design

        - Non-walk-in structure: Doors open on both sides of the container, with no aisle in the middle.

        - Improves the convenience and efficiency of installation and maintenance, and enhances the safety of construction personnel.

        - Increases the energy density of the energy storage system; a single 20-foot container can accommodate 3.44 MWh.

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