The Self-Cooling-PW-164 is a high-performance industrial energy storage solution designed for grid-level reliability and operational efficiency. Integrating cutting-edge Lithium Iron Phosphate (LFP) technology with a modular architecture, this system provides a seamless transition between power generation and consumption, ensuring stable energy supply for demanding industrial environments.
Engineered with a proprietary air-cooled design, the PW-164 delivers cooling efficiency comparable to liquid-cooled systems while significantly reducing parasitic energy consumption. Its plug-and-play deployment and intelligent monitoring capabilities make it an ideal choice for enterprises seeking scalable, low-maintenance, and secure energy management systems.
Detailed Parameters
| Cell Type | Lithium Iron Phosphate (LFP) | Battery Voltage | DC819.2V |
|---|---|---|---|
| Cell Parameter | 3.2V/100Ah | Full Efficiency | 92% |
| Modular PCS | 50/100KW or 100/200KW | Discharge Ratio | 1.0C (2.0C for 30s) |
| Protection Level | IP55 | Operating Temp | -30℃ to 50℃ |
| Communication | CAN, RS485 | Cooling Mode | Precision Air Conditioner |
Key Advantages
Grid-Level Protection
Features multi-layer fuse protection and mature fire suppression systems to ensure maximum safety and stability.
Rapid Deployment
Low-cost installation with high flexibility, allowing for dynamic capacity expansion and rapid onsite setup.
Modular Design
PCS, battery, and cooling units are modularized for simplified maintenance and effortless scaling.
IP Air Duct Design
Unique air-cooling technology that matches liquid-cooled performance with significantly lower energy usage.
Intelligent O&M
In-house developed monitoring system for real-time data tracking and automated fault alarm handling.
Integrated Distribution
Grid-level terminal connection eliminates the need for separate low-voltage distribution cabinets.
Product Gallery
Management Platforms
Real-time Monitoring
Continuous tracking of battery state, voltage, and current for maximum transparency.
Automated Diagnostics
Online diagnosis tools that identify potential issues before they lead to system downtime.
Fault Alarm System
Instant notification system to handle fault alarms promptly and maintain uptime.
Unattended Operation
Intelligent logic allowing the system to operate autonomously with minimal human intervention.
Capacity Management
Dynamic tracking of energy levels to optimize discharge cycles and battery life.
Thermal Control
Precision control of the air-conditioning system to maintain optimal cell temperatures.
Investment Return Comparison
| Performance Metric | Standard Systems | PW-164 System |
|---|---|---|
| Installation Cost | High (Custom Build) | Low (Modular/Rapid) |
| Cooling Energy Use | High (Liquid/Fans) | Ultra-Low (IP Air Duct) |
| Maintenance Effort | Complex Component Access | Simple Modular Swap |
| Deployment Time | Weeks of Debugging | Days (Ready-to-Ship) |
| Space Efficiency | Requires Extra Cabinets | Integrated Distribution |
Frequently Asked Questions
Lithium Iron Phosphate (LFP) batteries offer superior thermal stability, longer cycle life, and enhanced safety compared to other lithium chemistries, making them ideal for high-capacity industrial use.
Our patented air-duct design achieves cooling efficiency equivalent to liquid systems but significantly reduces the energy consumed by the cooling apparatus and lowers maintenance complexity.
Yes, the system features a fully modular design, allowing you to dynamically add battery packs and increase capacity with minimal disruption to existing operations.
The system employs grid-level protection, including multi-layer fuses and an advanced fire protection system, coupled with measures to prevent circulation currents caused by cell voltage differences.
Absolutely. With an IP55 protection rating and an operating temperature range from -30℃ to 50℃, it is specifically designed for outdoor industrial deployment.
The PW-164 uses a proprietary ACDC background monitoring system that provides real-time data and automated fault alerts, enabling virtually unattended operation.







