2.17MWh Liquid Cooling Battery Container delivers 8,000+ cycles, 30% lower O&M costs, IP55/UL/CE/IEC certified. Trusted by 200+ industrial parks & microgrids. Request ROI Analysis Report.
The 2.17MWh Liquid Cooling Battery Container by SAKETE is an advanced, all-in-one energy storage solution designed for commercial and industrial applications. Housed in a standard 20-foot container, it integrates a high-capacity 2.17MWh lithium iron phosphate (LFP) battery system, a 1MW power conversion system (PCS), liquid cooling units, and intelligent management systems, ensuring optimized energy storage and reliable operation under varying environmental conditions.
The container features a sophisticated liquid cooling system that maintains optimal battery temperature, preventing thermal runaway while enhancing cycle life, which exceeds 8,000 cycles. Independent battery cluster management ensures stability and allows maintenance without impacting the entire system. The fire protection subsystem includes aerosol and water spray systems for comprehensive thermal and fire safety, while integrated access control and remote monitoring enhance security against unauthorized access and operational risks.
The container supports seamless “plug-and-play” deployment. Pre-installed EMS (Energy Management System), PCS, battery modules, and firefighting systems reduce on-site installation time. Compact and modular, it reduces installation footprint by 25%, while its design simplifies O&M processes, reducing lifecycle labor costs by up to 30%.
Certified with UN 38.3, CE, UL, IEC, and IP55 ingress protection standards, it provides reliable and safe energy storage suitable for industrial parks, renewable energy integration, microgrid applications, and backup power. Designed with real-time monitoring for voltage, current, temperature, and smoke detection, the system ensures proactive safety management. Its smart EMS and BMS coordination enables intelligent scheduling, remote diagnostics, and full-scenario optimization for uninterrupted energy supply.

Industrial Load Management
Ideal for factories and commercial facilities, the container stabilizes power supply, reduces peak demand charges, and ensures operational continuity during grid fluctuations. Its intelligent EMS optimizes energy distribution, reducing energy costs and enhancing equipment protection while supporting sustainability goals.
Renewable Energy Integration
Seamlessly integrates with solar and wind systems to store excess energy and deliver it when generation is low. The high cycle life and thermal management allow continuous renewable utilization, ensuring grid stability and maximizing return on investment for distributed energy projects.
Microgrid & Backup Power Solutions
Designed for microgrid deployment and emergency backup, it provides uninterrupted power during outages. The compact, pre-installed system ensures rapid deployment and reliable energy management for critical infrastructure, remote sites, and disaster recovery applications.
| Parameter Category | Details |
|---|---|
| Battery Capacity | 2.17 MWh |
| PCS Power | 1 MW |
| Battery Type | LFP, 314Ah per cell |
| Cycle Life | ≥8000 cycles |
| Cooling System | Liquid-cooled battery, air-cooled PCS |
| Container Type | Standard 20ft |
| Fire Protection | Aerosol + water spray |
| Safety & Security | Real-time monitoring, access control, CCTV |
| Ingress Protection | IP55 |
| Noise Level | ≤80 dB |
| Anti-Corrosion Rating | C4/C5 |
| Certifications | UN38.3, CE, UL, IEC |
| Dimensions | 6058 × 2438 × 2438 mm |
The 2.17MWh Liquid Cooling Battery Container features an advanced multi-layer safety architecture, integrating real-time monitoring of temperature, voltage, current, smoke, and gas levels. Its fire suppression system combines aerosol and water spray technologies to prevent thermal runaway. Access control, anti-tamper alarms, and CCTV enhance security, providing end-to-end protection for personnel, assets, and surrounding infrastructure, ensuring safe, stable operation under all industrial conditions.
Equipped with high-performance LFP battery cells and independent cluster management, the system ensures long-term stability and reliable operation. The liquid cooling system maintains optimal battery temperatures, significantly extending cycle life to over 8,000 cycles. This combination of thermal management, robust electronics, and intelligent battery control guarantees continuous, predictable performance in demanding environments, making it ideal for critical industrial and renewable energy applications.
Designed for rapid deployment, the container comes fully pre-installed with EMS, PCS, battery modules, cooling systems, and integrated fire protection. This minimizes on-site construction, reduces labor costs, and accelerates commissioning. Within a short time frame, the system can be connected and operational, providing immediate energy storage capacity for commercial, industrial, or microgrid applications, ensuring high efficiency from day one.
All essential components are integrated into a single 20-foot container, reducing the installation footprint by 25% without compromising performance. The streamlined design allows easy access for inspection and maintenance, while intelligent EMS/BMS remote monitoring reduces operational interventions. Lifecycle maintenance costs can be cut by up to 30%, making the system an economically sustainable solution for long-term energy storage deployment.
What is the typical installation time?
The container is pre-installed and plug-and-play, allowing deployment and commissioning in 1-2 days depending on site conditions.
How does the liquid cooling system work?
The liquid cooling system circulates coolant around battery cells, maintaining optimal temperature and preventing thermal runaway, ensuring battery longevity and safety.
Can the system operate off-grid?
Yes, the system supports both on-grid and off-grid operations with switch time ≤10 seconds for seamless transition.
What safety measures are included?
The system includes fire suppression, smoke/gas detection, temperature monitoring, anti-tamper security, and remote EMS/BMS control for comprehensive safety.
How scalable is the solution?
Multiple containers can be interconnected for higher energy storage capacity, making it suitable for large industrial applications or renewable integration projects.