Integrated liquid-cooled battery infrastructure designed for flexible commercial ESS deployment and scalable renewable energy integration.
Commercial customers today are not simply looking for battery capacity.
They are evaluating:
The Recreen ESS is engineered specifically around these operational priorities.
Commercial energy systems should adapt to business operations — not the other way around.
The system is designed for real-world deployment scenarios including:
The ESS continuously coordinates energy storage and power distribution to improve operational stability while reducing unnecessary energy costs.
Stable temperature management directly impacts battery consistency, operational safety, and system longevity.
The liquid cooling architecture continuously optimizes thermal distribution across the battery system, helping maintain stable operating conditions during high-load commercial cycling.
This improves:
The thermal platform is engineered for demanding commercial operating conditions.
Commercial projects increasingly demand shorter deployment cycles and lower engineering complexity.
The Recreen ESS adopts a highly integrated platform architecture that simplifies transportation, installation, commissioning, and future maintenance.
This helps EPCs and project developers:
The integrated architecture also enables more predictable long-term operation.
Energy infrastructure should become easier to manage as systems become more advanced.
The intelligent management platform continuously automates:
For many businesses, power reliability directly affects operational continuity.
The ESS provides intelligent backup power support for critical commercial loads during utility instability or grid outages.
The system helps facilities maintain stable operation for:
Energy storage is no longer just about storing electricity.
For commercial and industrial users, it has become a critical part of operational stability, energy flexibility, and long-term cost management.
The Recreen 125KW / 261KWh Liquid-Cooled ESS is designed to help businesses build smarter, more resilient, and more controllable energy infrastructures.
By integrating power conversion, battery storage, thermal management, and intelligent energy control into one platform, the system enables commercial facilities to better manage energy uncertainty in an increasingly complex power environment.
| Product Model | L261 |
|---|---|
| Energía nominal | 261.25kWh |
| Charge/Discharge Rate | 0.5CP |
| Cell | LFP-3.2V-314Ah-1004.8Wh |
| PACK | LFP-166.4V-52.2kWh |
| Rated DC Voltage | 832Vdc |
| Operating Voltage Range | 715~923Vdc |
| Maximum DC Current | 200A |
| System Lifespan | 8000 cycle @25℃,0.5CP,95%DOD, ≥70%EOL |
| BMS Topology | Bidirectional active equilibrium |
| Interfaz de comunicación | RS485/CAN/Ethernet/MQTT |
| HVAC | Intelligent liquid cooling |
| Fire Suppression System | Fire detector+gas/smoke/temperature detection+perfluorohexane |
| Grid Voltage | 400Vac(Three-phase four-wire) |
| Rated Grid Frequency | 50/60 Hz |
| Isolation Method | Non-Isolated |
| Cable Entry | Bottom outgoing line |
| Altitude | ≤3500m(>2000m Derating) |
| Temperatura de funcionamiento | -20℃ ~ 50℃ |
| Protection Rating | IP55 |
| Max Configuration Weight | 2.2T |
| Dimensions W*D*H | 865x1200x2200mm |
| Safety/EMC | UN38.3, IEC62619, IEC63056, IEC62477-1, IEC61000-6-2/4 |
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