EXLIPORC 261kWh Liquid-Cooled C&I Battery Energy Storage System with 85000+ Cycles and 50 KW To 1 MW Power Output for Thermal Control

Basic Properties
Place of Origin: Guangdong, China
Brand Name: EXLIPORC
Certification: CE/IEC62619/MSDS/UN38.3
Model Number: ESS-125/261-3P-N-B
Trading Properties
Price: $29,300-33,220
Payment Terms: L/C,D/A,D/P,T/T,Western Union
Supply Ability: 100PCS/Moth
Specifications
Applications: Peak Shaving, Load Shifting, Backup Power, Demand Charge Management Cyclelife: 85000+ Cycles
Voltage: 400 V To 800 V Application: Energy Storage For Commercial And Industrial Use
Poweroutput: Up To 1 MW Capacityrange: 50 KWh To 5 MWh
Poweroutputrange: 50 KW To 1 MW Roundtripefficiency: 85% - 95%
High Light:

85000+ Cycles Battery Energy Storage System

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50 KW To 1 MW Power Output C&I BESS

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Thermal Control Commercial & Industrial Battery Cabinet

Product Description
EXLIPORC 261kWh Liquid-Cooled C&I Battery Cabinet ±3°C Thermal Control BESS for Factories & EV Hubs
EXLIPORC C&I Battery Energy Storage System cabinet overview Close-up view of EXLIPORC battery cabinet components
The Commercial & Industrial (C&I) Battery Energy Storage Solution is a cutting-edge energy storage system specifically designed for commercial and industrial sectors. Engineered with advanced lithium-ion battery technology, this system provides reliable, efficient, and scalable energy storage capabilities that enable businesses to optimize energy usage, reduce costs, and enhance operational resilience.
With a power output range from 50 KW to 1 MW and operating voltage between 400 V to 800 V, this solution is ideally suited to meet diverse energy demands in commercial and industrial environments.
This Commercial and Industrial Power Storage system features robust design and superior performance, making it invaluable for industries integrating renewable energy sources, managing peak demand, and ensuring uninterrupted power supply. The lithium-ion batteries provide high energy density, long cycle life, and excellent efficiency for dependable performance in load shifting, demand charge management, backup power, and grid services.
Key Features
  • Product Name: Commercial & Industrial (C&I) BESS
  • Scalability: Modular Design For Capacity Expansion
  • Certifications: UL, IEC, CE
  • Operating Temperature Range: -20°C To 50°C
  • Capacity Range: 50 KWh To 5 MWh
  • Safety Features: Thermal Management, Fire Suppression System
  • Designed as a C&I Energy Storage System for enhanced reliability
  • Efficient Battery Energy Storage for Commercial Use
Technical Specifications
Voltage 400 V To 800 V
Operating Temperature Range -20°C To 50°C
Application Energy Storage For Commercial And Industrial Use
Battery Type Lithium-ion
Certifications UL, IEC, CE
Round Trip Efficiency 85% - 95%
Scalability Modular Design For Capacity Expansion
Power Output Range 50 KW To 1 MW
Safety Features Thermal Management, Fire Suppression System
Cycle Life 85000+ Cycles
Applications
The EXLIPORC ESS-125/261-3P-N-B is a versatile Commercial and Industrial Battery Energy Storage system designed to meet diverse energy needs. With a capacity range from 50 KWh to 5 MWh, it's suitable for applications ranging from small commercial setups to large-scale industrial operations.
This Commercial Industrial Battery System supports both indoor and outdoor installation, providing flexibility for different site requirements. It effectively enhances energy resilience, reduces electricity costs, and optimizes power usage through peak shaving and load leveling. Businesses can store excess energy generated during off-peak hours or from renewable sources like solar or wind, utilizing it during high demand periods or grid outages.
EXLIPORC battery system installation in industrial setting EXLIPORC battery cabinet technical details and connections
Typical application scenarios include manufacturing plants, data centers, hospitals, retail complexes, office buildings, microgrid configurations, and renewable energy integration projects. By deploying this Commercial Industrial Battery System, businesses achieve greater energy independence, sustainability, and cost savings, making it an essential component of modern energy infrastructure.