Integrated liquid-cooled battery infrastructure designed for flexible commercial ESS deployment and scalable renewable energy integration.
Every commercial ESS project has different requirements.
Some projects prioritize:
The Recreen battery platform is designed specifically for this type of flexible ESS deployment.
Instead of locking customers into a fixed inverter ecosystem, the platform allows integrators to build customized energy storage solutions according to local project needs.
The system acts as the DC-side energy storage core within larger commercial ESS infrastructures.
This enables flexible integration with:
The open integration structure provides greater engineering flexibility for commercial energy developers.
Commercial ESS deployment often becomes complicated because of communication setup, inverter matching, thermal management, and on-site debugging.
The Recreen platform is optimized to simplify these challenges through a pre-engineered cabinet architecture.
The integrated system includes:
This reduces integration difficulty while improving project consistency.
The battery platform is designed to reduce commissioning workload and simplify system startup.
Compared with conventional custom ESS assembly, the integrated cabinet helps reduce:
The platform enables EPC teams to accelerate deployment and shorten project delivery cycles.
As energy demand grows, commercial ESS projects often require future expansion.
The modular battery platform architecture supports scalable deployment for:
This allows businesses to expand energy infrastructure more flexibly over time.
The battery platform supports a wide range of commercial and industrial applications including:
The Recreen 261KWh Outdoor Battery System is developed for commercial and industrial energy projects that require flexible integration, stable battery performance, and simplified ESS deployment.
Rather than functioning as a fixed all-in-one ESS solution, the platform is designed as an independent high-voltage DC energy unit, giving EPCs, integrators, and developers greater freedom when selecting PCS, hybrid inverter, and EMS configurations.
This architecture makes the system highly adaptable for different project standards, grid conditions, and local energy strategies.
| 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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