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Industrial SelfCooling 215kWh Energy Storage System China Suppliers Factory
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Leading China factory and suppliers of Outdoor Distributed Energy Storage Cabinets. Our self-cooling 215kWh LFP system offers grid-level protection and modular efficiency for industrial use.


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The Self-Cooling 215kWh Energy Storage System is a high-performance, industrial-grade power solution designed for stability and efficiency. Utilizing advanced Lithium Iron Phosphate (LFP) technology and a proprietary air-cooling architecture, this system delivers grid-level protection and seamless integration for commercial and industrial applications, ensuring reliable power availability and optimized energy costs.

Engineered for versatility and rapid deployment, the system features a fully modular design encompassing the battery packs, PCS, and temperature control units. This allows for effortless capacity expansion and low-maintenance operation. By combining intelligent real-time monitoring with a high-efficiency power conversion system, it provides a sustainable and scalable energy infrastructure for modern enterprises.

Detailed Parameters

Battery Capacity215kWhModular PCS Power100kW
Cell TypeLithium Iron Phosphate (LFP)Cell Specification3.2V / 280Ah
System VoltageDC 768VFull Efficiency92%
Protection LevelIP55Operating Temp-30℃ to 50℃
Cooling ModePrecision Air ConditionerDimensions (WxHxD)140623471313mm

Key Advantages

Grid-Level Protection

Multi-layer fuse protection and mature fire suppression systems ensure maximum safety and system reliability.

Rapid Deployment

Low-cost installation and flexible deployment allow for quick scaling and dynamic capacity adjustments.

Modular Design

Battery, high-voltage boxes, and PCS are modularized for simplified maintenance and easy expansion.

Proprietary Cooling

Unique air-duct design provides cooling efficiency comparable to liquid systems with significantly lower energy consumption.

Real-time Diagnosis

Online monitoring identifies faults immediately, preventing circulation issues caused by cell voltage differences.

Unattended Operation

In-house developed background monitoring handles alarms promptly, enabling fully automated O&M.

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Management Platforms

Status Monitoring

Real-time tracking of battery voltage, temperature, and State of Charge (SOC).

Fault Management

Prompt alarm handling and automated diagnostic reports for rapid troubleshooting.

Thermal Control

Precision control of the IP-protected air conditioning system to maintain optimal cell temperature.

Remote Command

Secure remote operation capabilities for system start, stop, and parameter adjustment.

Data Analytics

Historical data analysis to optimize energy usage and predict maintenance cycles.

Protocol Integration

Full support for CAN and RS485 communication protocols for seamless BMS integration.

Investment Return Comparison

Comparison ItemTraditional Liquid CoolingOur Air-Cooled System
Installation CostHigh (Complex Piping)Low (Rapid Modular)
Energy ConsumptionModerate (Pump Power)Very Low (Optimized Duct)
Maintenance EaseDifficult (Leak Risk)Easy (Modular Swap)
Deployment SpeedSlow (On-site Piping)Fast (Plug-and-Play)
Operational ROIStandardEnhanced (Lower OpEx)

Frequently Asked Questions

Q: What are the primary advantages of this air-cooled system over liquid cooling?

Our system uses an intellectual property air-duct design that achieves cooling efficiency comparable to liquid systems while significantly reducing energy consumption and eliminating the risk of coolant leaks.

Q: Can the system be expanded if our energy needs increase?

Yes, the system is fully modular. All components, including batteries and the PCS, are designed for easy capacity expansion and flexible deployment to meet growing demand.

Q: How does the system handle safety and fire prevention?

The system features grid-level protection, including multi-layer fuse protection and a mature fire suppression system, coupled with real-time online diagnosis to prevent failures.

Q: In what environments can this battery system be installed?

It is designed for indoor installation with an IP55 protection level, operating effectively in temperatures from -30℃ to 50℃ and altitudes up to 3000m.

Q: What communication protocols are supported for EMS integration?

The system supports industry-standard CAN and RS485 communication protocols, ensuring seamless integration with various Energy Management Systems (EMS).

Q: Does this system require a separate low-voltage distribution cabinet?

No, it features a grid-level terminal connection design, removing the need for a separate low-voltage distribution cabinet and simplifying the overall installation.

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