Containerized Battery Energy Storage System
Key Parameters
Cell: LFP
Max. Capacity: 2007kWh
Max. Power: 1000kW
Rated Grid Voltage:AC400V, 3P4W+PE
Communication Interface & Protocol: Ethernet, Modbus TCP/IP
Size: 6058mm*2438mm*2896mm
Applications
Peak-Load Shifting
Benefit from the Time-of -Use Tariff
Microgrid for Islands and Remote Areas
Power Expansion
Renewable Energy Integration
Backup Power
EnerCube Battery Energy Storage System is launched by 1stess team with 15 years of electrochemical energy storage R&D and application experience, which adopts All-in-One design and integrates battery module, PCS, PDU, FSS, TCS, MPPT into the 20ft container and is suitable for the most demanding of industrial and commercial applications.
Product technical parameters
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EnerCube Containerized Battery Energy Storage System
The EnerCube Battery Energy Storage System represents a milestone in high-safety integrated energy storage solutions, developed by the 1stess team with over 15 years of experience in battery energy storage R&D and applications. Tailored for user-side energy storage needs, it excels in various scenarios such as C&I emergency power, peak-load shifting, system capacity expansion, and enhancing the stability of renewable energy power output.
The innovative product structure design allows for a 50% reduction in the delivery cycle of EnerCube. Moreover, the unique modular design ensures separate module operation, so maintenance of one module does not interfere with the normal operation of others or cause downtime for the entire system, thereby increasing system availability.
Adhering to strict production management standards aligned with ISO quality, environmental, and occupational health and safety requirements, the EnerCube Battery Energy Storage System undergoes rigorous testing and commissioning processes before customer delivery. This approach not only saves on-site construction and operational costs but also ensures safe, efficient, and seamless energy utilization.
Revolutionizing Industrial Energy Storage with Adaptive Solutions
Application Scenarios
Peak Shaving & Cost Optimization
Designed for industrial and commercial users, the system reduces energy expenses by 30–40% through intelligent load shifting. It stores low-cost off-peak electricity and discharges during peak tariffs, aligning with time-of-use (TOU) pricing structures like those incentivized in California’s NEM 3.0 policy.Factories and data centers leverage its rapid (<100ms) grid response to avoid demand charges while maintaining operational continuity
Renewable Energy Integration
The DC-coupled architecture enables seamless integration with solar/wind farms, eliminating curtailment losses. A case study in Thailand demonstrated 98% renewable self-consumption by pairing the system with photovoltaic arrays. Its 2796kWh capacity ensures stable output during cloudy or low-wind periods, supporting microgrids in remote islands and off-grid industrial parks
Mission-Critical Backup Power
Hospitals, semiconductor fabs, and telecom base stations rely on its dual-mode operation (grid-tied/off-grid auto-switch) for 99.999% uptime. During Texas’ 2023 grid crisis, similar systems provided 72+ hours of emergency power to medical facilities
EV Charging Infrastructure Support
By balancing grid load and reducing demand charges, the system optimizes fast-charging stations in urban hubs. Its 500kW–1.29MW power range supports high-traffic EV fleets without grid upgrades
Core Functional Advantages
Military-Grade Safety & Reliability
Scalable & Flexible Architecture
Smart Grid Interactivity
Plug-and-Play Deployment
Pre-engineered containerization reduces on-site installation time by 50%, with standardized dimensions (6058×2438×2896mm) compatible with global logistics
Market Environment & Strategic Positioning
Policy-Driven Growth
Technological Convergence
Market Projections