The Self-Cooling-PW-164 is a high-performance industrial energy storage system engineered for demanding commercial and industrial (C&I) applications. Integrating cutting-edge Lithium Iron Phosphate (LFP) technology with a proprietary air-cooling architecture, this system provides a robust, scalable, and highly efficient energy management solution designed to optimize power stability and reduce operational costs.
Designed for rapid deployment, the PW-164 features a fully modular construction—from the battery packs to the Power Conversion System (PCS)—ensuring seamless capacity expansion and simplified maintenance. By combining grid-level protection with an intelligent O&M monitoring system, it delivers an unattended operational experience that maximizes energy reliability in diverse outdoor environments.
Detailed Parameters
| Rated Power | 100KW / 200KW | Modular PCS | 50/100KW / 100/200KW |
|---|---|---|---|
| Cell Type | Lithium Iron Phosphate (LFP) | Cell Parameters | 3.2V / 100Ah |
| System Energy | 81.92 KWh / 163.84 KWh | Battery Voltage | DC 819.2V |
| Full Efficiency | 92% | Discharge Ratio | 1.0C (2.0C for 30s) |
| Protection Level | IP55 | Operating Temp | -30℃ to 50℃ |
Key Advantages
Grid-Level Protection
Equipped with multi-layer fuse protection and a mature fire suppression system for maximum safety.
Rapid Deployment
Low-cost installation and high flexibility allow for dynamic capacity expansion and quick site setup.
Modular Architecture
Modularized battery, high-voltage boxes, PCS, and air conditioners simplify maintenance and upgrades.
IP Air Duct Design
Unique air-cooled design matches liquid-cooling efficiency while significantly lowering energy consumption.
Intelligent O&M
In-house developed background monitoring for real-time data analysis and prompt fault alarming.
Easy Integration
Grid-level terminal connection eliminates the need for separate low-voltage distribution cabinets.
Product Gallery
Management Platforms
Real-time Monitoring
Continuous tracking of cell voltage, temperature, and SOC for optimal health management.
Fault Diagnostics
Automated online diagnosis to pinpoint issues and reduce system downtime.
Smart Alarm System
Instant notifications for critical alerts to ensure rapid response and safety.
Remote Operation
Manage multiple sites from a centralized dashboard to achieve unattended operation.
Energy Optimization
Intelligent algorithms to manage peak shaving and valley filling for cost savings.
Protocol Support
Seamless communication via standard CAN and RS485 protocols for easy system integration.
Investment Return Comparison
| Performance Metric | Traditional Liquid Cooled | Self-Cooling PW-164 |
|---|---|---|
| Energy Consumption | Higher (Pump + Chiller) | Significantly Lower |
| Installation Speed | Complex Pipeline Setup | Rapid Modular Deployment |
| Maintenance Effort | High (Leakage Risks) | Low (Modular Swap) |
| Initial CAPEX | Moderate to High | Competitive / Cost-Effective |
| Operational ROI | Standard Return | Accelerated Return |
Frequently Asked Questions
The PW-164 utilizes a proprietary air duct design that provides cooling efficiency comparable to liquid-cooled systems but with significantly lower energy consumption and no risk of coolant leaks.
Yes, the system is IP55 rated and designed to operate in temperatures ranging from -30℃ to 50℃, ensuring stability in various global climates.
Since the battery, PCS, and cooling units are modular, users can simply add more modules to increase capacity without needing to redesign the entire system infrastructure.
The PW-164 features grid-level protection, including multi-layer fuses, real-time online diagnosis, and a comprehensive fire protection system to mitigate risks.
No, the PW-164 utilizes a grid-level terminal connection design, which eliminates the need for an external low-voltage distribution cabinet, reducing footprint and cost.
Through an in-house developed background monitoring system that tracks status and data in real-time and handles fault alarms automatically.







