Hithium 261kWh Liquid Cooling Energy Storage System with LFP Battery for Industrial and Commercial ESS Applications

Basic Properties
Place of Origin: Guangdong, China
Brand Name: Hithium
Model Number: HCL 125kW/261kWh-400
Trading Properties
Minimum Order Quantity: 1
Price: $35,000-36,600
Specifications
Battery Type: Lithium Ion Dimension (L*W*H): 1000mmX1350mmX2380 Mm
Weight: ≤2.7t(≤2.98short Tons ) Communication Port: CAN, RS485, RS-232
Protection Class: IP55 Grid connection: Off Grid, Hybrid Grid, On Grid
Cooling: Liquid Cooling Product name: Commercial & Industrial Liquid-Cooling Energy Storage
Battery type: LFP Cell Capacity: 3.2V/314Ah
Configuration: 1P260S Number of PACK: 5
Nominal energy: 261.2kWh Voltage: 832V
Operating voltage: 715~923V Cycle life: 11000 Cycles
Charging and discharging rate: 0.5P
Product Description
Hithium Liquid Cooling 261kWh Energy Storage Battery System
System Overview

The Hithium Liquid Cooling 261kWh Energy Storage System represents advanced industrial-grade energy storage technology designed for commercial and industrial applications. This containerized solution utilizes cutting-edge LiFePO4 battery chemistry with liquid cooling technology for optimal performance and reliability.

Key Features
  • 261 kWh energy storage capacity for large-scale applications
  • Advanced liquid cooling system for optimal thermal management
  • LiFePO4 (Lithium Iron Phosphate) battery chemistry for enhanced safety and longevity
  • Containerized design for easy deployment and scalability
  • Industrial and commercial grade construction for demanding environments
  • Compatible with solar energy storage and grid applications
  • High efficiency and reliable performance in various operating conditions
Applications

This energy storage system is ideal for:

  • Commercial solar energy storage
  • Industrial power backup systems
  • Grid stabilization and peak shaving
  • Renewable energy integration
  • Commercial facility energy management
Technical Advantages

The liquid cooling technology ensures consistent temperature distribution across all battery cells, extending system lifespan and maintaining optimal performance even under high-demand conditions. The LiFePO4 chemistry provides superior thermal stability and safety compared to conventional lithium-ion batteries.