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Industrial 215kWh SelfCooling Energy Storage System China Factory Suppliers
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High-performance Outdoor Distributed Energy Storage Cabinet from leading China suppliers. Our factory provides a 215kWh self-cooling system with LFP technology for industrial efficiency.


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The Self-Cooling 215kWh Energy Storage System is a high-performance, industrial-grade power solution engineered for efficiency and reliability. Combining advanced Lithium Iron Phosphate (LFP) technology with a proprietary air-cooling architecture, this system delivers grid-level stability while significantly reducing energy consumption compared to traditional liquid-cooled alternatives.

Designed for rapid deployment and seamless scalability, this modular system integrates a 100KW PCS and an intelligent management platform. Whether for commercial power backup or industrial energy optimization, it ensures unattended operation through real-time diagnosis and a mature fire protection system, making it a sustainable choice for modern energy infrastructure.

Detailed Parameters

Battery Capacity215kWhPCS Power100KW
Cell TypeLithium Iron Phosphate (LFP)Cell Parameters3.2V/280Ah
Battery VoltageDC 768VFull Efficiency92%
Protection LevelIP55Operating Temp-30℃ to 50℃
Dimensions140623471313mmCooling ModePrecision Air Conditioner

Key Advantages

Grid-Level Protection

Multi-layer fuse protection and real-time diagnosis ensure maximum safety and prevent cell voltage circulation.

Rapid Deployment

Low-cost installation with no container debugging required; the entire cabinet is ready for transport and use.

Modular Design

Battery, high-voltage box, PCS, and AC are all modularized for effortless maintenance and easy capacity expansion.

Patented Air Duct

Unique air-cooled design provides cooling efficiency equal to liquid systems but with much lower energy consumption.

Intelligent O&M

In-house background monitoring handles fault alarms promptly for complete unattended operation.

Integrated Distribution

Grid-level terminal connection design eliminates the need for a separate low-voltage distribution cabinet.

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Management Platforms

Real-time Monitoring

Track battery status, voltage, and temperature in real-time via our cloud platform.

Fault Diagnosis

Automated system checks that identify and alert technicians to anomalies instantly.

Alarm Management

Multi-channel notification system for critical alerts to ensure zero downtime.

Remote Control

Adjust operational parameters and manage discharge cycles from a remote dashboard.

Data Analytics

Comprehensive energy reports to optimize usage patterns and ROI.

Lifecycle Tracking

Monitor SOH (State of Health) to plan maintenance and battery replacements.

Investment Return Comparison

Comparison ItemStandard Liquid-CoolingSelf-Cooling System
Installation CostHigh (Complex Piping)Low (Rapid Deployment)
Energy ConsumptionHigher (Pump Power)Significantly Reduced
Maintenance ComplexityHigh (Coolant Leak Risks)Low (Modular Air Filters)
Deployment SpeedSlow (On-site Debugging)Fast (Factory Integrated)
Operational ROIModerateHigh (Lower OPEX)

Frequently Asked Questions

Q: Is air-cooling as effective as liquid-cooling for large batteries?

Yes. Our proprietary air duct design ensures that each cell is fully cooled, achieving thermal performance comparable to liquid systems while greatly reducing auxiliary energy consumption.

Q: Can this system be expanded in the future?

Absolutely. The modular design of the battery packs, PCS, and high-voltage boxes allows for flexible capacity expansion to meet growing energy demands.

Q: What safety measures are in place to prevent fire?

The system features a mature fire protection system, multi-layer fuse protection, and real-time online diagnosis to mitigate risks before they escalate.

Q: In what environments can the Self-Cooling system operate?

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

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

No. The system utilizes a grid-level terminal connection design, integrating the distribution directly into the cabinet to save space and cost.

Q: How is the system monitored for unattended operation?

We use an in-house developed background monitoring system that tracks data and operations in real-time, handling fault alarms automatically for seamless operation.

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