Modular energy storage system with liquid cooling technology and advanced battery management.
Reliable. Scalable. Efficient.
Liquid-cooled high-voltage battery system
The SKE-BESS-372K is a 372.7 kWh liquid-cooled high-voltage energy storage system for industrial and commercial use. Featuring LiFePO₄ batteries, a modular design, and an advanced BMS, it supports peak shaving, backup power, and renewable integration to reduce costs and enhance reliability.
High-capacity energy storage with liquid cooling technology and multi-layer safety protections ensure secure and efficient operation for large-scale commercial applications.
Capacity
372.7 kWh
Cycles
10,000+
Reduce energy costs through peak shaving and intelligent energy management strategies.
Ensure continuous operations with reliable backup power during grid outages.
Seamlessly integrate with solar and wind systems for maximum sustainability benefits.
Over 10 years of continuous operation with comprehensive safety protection systems.
Modular design allows for easy expansion and minimal maintenance requirements.
Reduce carbon footprint and enhance your green credentials with clean energy storage.
Offers a substantial energy storage capacity of 372.7 kWh, suitable for large-scale energy needs and extended backup power duration during outages.
Incorporates an efficient liquid cooling system that maintains a temperature difference of less than 3°C among cells, enhancing performance and extending battery life.
Features a three-level BMS architecture (General Control, Master Control, and Slave Control) compatible with local Energy Management Systems (EMS) and mainstream communication protocols, ensuring optimal operation and safety.
Designed for a service life exceeding 10,000 cycles at 80% Depth of Discharge (DoD), translating to over 10 years of continuous operation with minimal degradation.
Equipped with multiple fire prevention and control measures, including module-level fire protection, gas and water-based fire suppression systems, combustible gas detection, venting, and explosion relief mechanisms.
Intelligently discharge stored energy during peak demand periods to minimize electricity bills.
Ensure critical operations continue seamlessly during grid outages with instant backup power.
Store excess renewable energy and deploy it when needed for maximum sustainability impact.
Large-scale energy storage for manufacturing plants and industrial operations requiring high capacity backup power.
Office complexes and commercial buildings seeking energy independence and cost optimization.
Mission-critical backup power for servers and IT infrastructure requiring uninterrupted operation.
Hospitals and medical centers requiring reliable backup power for life-critical equipment and patient care.
Large-scale solar and wind farms requiring energy storage for grid stabilization and peak shaving.
Universities and schools seeking energy independence and sustainability demonstration projects.