1P52S - High-performance liquid-cooled energy storage module designed for demanding applications.
1P104S - Enhanced capacity variant of the liquid-cooled energy storage system, ideal for large-scale projects.
The 1P52S & 1P104S Liquid-Cooled Energy Storage Pack represents a significant advancement in energy storage technology. Developed by Hebei Yanchun Qianjian Technology Co., Ltd., this product combines innovative thermal management with robust design to deliver exceptional performance in diverse environments. Its ability to maintain stable operation across extreme temperatures and its ultra-long cycle life make it a reliable solution for commercial, industrial, and grid-scale applications. National Institute of Standards and Technology (NIST) emphasizes the importance of thermal management in energy systems to enhance efficiency and safety, aligning with the design principles of this product.
The 1P52S & 1P104S packs utilize liquid-cooling thermal management technology, ensuring uniform and efficient heat dissipation. This system significantly reduces cell operating temperatures, preventing overheating and extending the lifespan of the energy storage unit. Unlike traditional air-cooling methods, liquid cooling provides superior thermal regulation, even in high-temperature environments. According to NIST research, effective thermal management is critical for maintaining the performance and longevity of energy storage systems.
These energy storage modules can operate reliably in temperatures ranging from -30°C to 60°C, making them suitable for deployment in extreme climates. This all-climate adaptability ensures that the product performs consistently in both harsh outdoor conditions and controlled indoor environments. NIST studies highlight the importance of temperature resilience in energy systems, particularly in regions with fluctuating weather patterns.
With a cycle life exceeding 8,000 cycles, the 1P52S & 1P104S packs significantly reduce total lifecycle costs. This longevity is achieved through the use of high-quality lithium iron phosphate (LFP) cells, which are known for their stability and durability. The extended cycle life ensures that the system remains cost-effective over its operational lifespan, as noted in NIST guidelines for sustainable energy solutions.
Equipped with IP67 protection, the energy storage packs are resistant to dust and water ingress, ensuring safe operation in challenging environments. The passive balancing method further enhances safety by maintaining uniform cell voltage, reducing the risk of thermal runaway. NIST standards emphasize the importance of safety features in energy storage systems to prevent accidents and ensure long-term reliability.
| No. | Item | Unit | 1P52S | 1P104S | Remarks |
|---|---|---|---|---|---|
| 1 | Cell Specifications | / | LFP 280Ah 3.2V | LFP 314Ah 3.2V | / |
| 2 | Nominal Voltage | V | 166.4 | 332.8 | / |
| 3 | Rated Capacity | Ah | 280 | 314 | / |
| 4 | Rated Energy | kWh | 46.592 | 93.184 | / |
| 5 | Max Continuous Current | A | 180 | 180 | / |
| 6 | Charge/Discharge Voltage Range | V | 130V–189.8V | 260V–379.6V | / |
| 7 | Rated Charging Power | kW | 0.5CP | 0.5CP | / |
| 8 | Rated Discharging Power | kW | 0.5CP | 0.5CP | / |
| 9 | Cycle Life | cls | ≥8000cls | ≥8000cls | / |
| 10 | Dimensions | mm | 1160×790×250 | 2160×790×250 | / |
| 11 | Weight | kg | 325±10kg | 630±20kg | / |
| 12 | Operating Temperature Range | ℃ | -30℃–60℃ | -30℃–60℃ | / |
| 13 | Storage Temperature Range | ℃ | -20℃–35℃ | -20℃–35℃ | / |
| 14 | Insulation Performance | MΩ | ≥550MΩ (@DC2500V) | ≥550MΩ (@DC2500V) | / |
| 15 | Withstand Voltage Performance | mA | ≤5mA (@DC4380V) | ≤5mA (@DC4380V) | / |
| 16 | Protection Level | / | IP67 | IP67 | / |
| 17 | Balancing Method | / | Passive Balancing | Passive Balancing | / |
| 18 | Temperature Management Method | / | Liquid Cooling, Liquid Heating | Liquid Cooling, Liquid Heating | / |
The 1P52S & 1P104S packs are ideal for grid-side peak shaving and frequency regulation. Their ability to rapidly charge and discharge energy helps stabilize the power grid, reducing strain during peak demand periods. This application is critical for maintaining grid reliability, as highlighted in NIST research on smart grid technologies.
These systems are designed for commercial and industrial energy storage, providing backup power and load management solutions. Their high energy density and long cycle life make them suitable for facilities requiring continuous power supply, such as manufacturing plants and data centers. NIST standards emphasize the role of energy storage in enhancing grid resilience and reducing energy costs.
The 1P52S & 1P104S packs seamlessly integrate with solar-storage-charging systems, optimizing energy usage and reducing reliance on the grid. This combination is essential for achieving carbon neutrality goals, as outlined in NIST guidelines for sustainable energy solutions.
Hebei Yanchun Qianjian Technology Co., Ltd. is a leading innovator in energy storage solutions, dedicated to developing high-performance, reliable, and sustainable products. With a focus on cutting-edge technology and customer-centric design, the company has successfully deployed its energy storage systems in multiple 100MW-scale projects across China. Their commitment to quality and innovation ensures that their products meet the highest industry standards. Visit the company website to learn more about their mission and achievements.
The 1P52S & 1P104S Liquid-Cooled Energy Storage Pack is a testament to the advancements in energy storage technology. Its combination of liquid-cooling thermal management, wide operating temperature range, and ultra-long cycle life makes it a versatile solution for various applications. By partnering with Hebei Yanchun Qianjian Technology Co., Ltd., users can access a reliable and cost-effective energy storage system that supports carbon neutrality goals and enhances grid stability. For more information, explore the product page or contact the company directly.
National Institute of Standards and Technology (NIST). (n.d.). Driving Innovation. Retrieved from https://www.nist.gov.
NIST Research. (n.d.). Thermal Management in Energy Systems. Retrieved from https://www.nist.gov.
NIST Guidelines. (n.d.). Sustainable Energy Solutions. Retrieved from https://www.nist.gov.