The 1P52S & 1P104S Liquid-Cooled Energy Storage Pack is a cutting-edge energy storage solution designed to meet the demands of modern grid, commercial, and industrial applications. Developed by Hebei Yanchun Qianjian Technology Co., Ltd., this product combines advanced thermal management, long cycle life, and robust performance to deliver reliable and cost-effective energy storage. With its innovative liquid-cooling system, it ensures stability across extreme temperatures, making it ideal for a wide range of environments.
The 1P52S & 1P104S energy storage pack is engineered with liquid-cooling thermal management technology, which ensures uniform heat dissipation and significantly reduces cell operating temperatures. This advanced system allows the product to maintain stable performance in an extensive temperature range of -30°C to 60°C, making it suitable for deployment in both harsh and temperate climates. The ultra-long lifespan of over 8,000 cycles further enhances its economic efficiency, reducing total lifecycle costs for users.
One of the standout features of this energy storage system is its all-climate adaptability. Whether in arid deserts, coastal regions, or cold northern areas, the liquid-cooled design ensures consistent performance without compromising safety or reliability. This adaptability is critical for applications such as grid-side peak shaving and frequency regulation, where stable energy output is essential to maintain grid stability.
| No. | Item | Unit | 1P52S | 1P104S | Remarks | ||
|---|---|---|---|---|---|---|---|
| 1 | Cell Specifications | / | LFP 280Ah 3.2V | LFP 314Ah 3.2V | LFP 280Ah 3.2V | LFP 314Ah 3.2V | |
| 2 | Nominal Voltage | V | 166.4 | 166.4 | 332.8 | 332.8 | |
| 3 | Rated Capacity | Ah | 280 | 314 | 280 | 314 | |
| 4 | Rated Energy | kWh | 46.592 | 52.2496 | 93.184 | 104.4992 | |
| 5 | Max Continuous Current | A | 180 | 201 | 180 | 201 | |
| 6 | Charge/Discharge Voltage Range | V | 130V~189.8V | 130V~189.8V | 260V~379.6V | 260V~379.6V | |
| 7 | Rated Charging Power | kW | 0.5CP | 0.5CP | 0.5CP | 0.5CP | |
| 8 | Rated Discharging Power | kW | 0.5CP | 0.5CP | 0.5CP | 0.5CP | |
| 9 | Cycle Life | cls | ≥8000cls | ||||
| 10 | Dimensions | mm | 1160790250 | 2160790250 | |||
| 11 | Weight | kg | 325±10kg | 345±10kg | 630±20kg | 670±20kg | |
| 12 | Operating Temperature Range | ℃ | -30℃~60℃ | ||||
| 13 | Storage Temperature Range | ℃ | -20℃~35℃ | ||||
| 14 | Insulation Performance | MΩ | ≥550MΩ(@DC2500V) | ||||
| 15 | Withstand Voltage Performance | mA | ≤5mA(@DC4380V) | ||||
| 16 | Protection Level | / | IP67 | ||||
| 17 | Balancing Method | / | Passive Balancing | ||||
| 18 | Temperature Management Method | / | Liquid Cooling, Liquid Heating | ||||
The 1P52S & 1P104S energy storage pack is designed for a wide range of applications, including grid-side peak shaving, frequency regulation, commercial and industrial energy storage, and solar-storage-charging integration. Its ability to operate efficiently in extreme temperatures and its high cycle life make it an ideal choice for large-scale energy projects.
For grid-side peak shaving, the energy storage pack helps balance supply and demand, reducing strain on the grid during peak hours. In frequency regulation, it ensures stable power output, which is critical for maintaining the reliability of the electrical grid. The product's all-climate adaptability also makes it suitable for commercial and industrial energy storage, where consistent performance is required regardless of environmental conditions.
In solar-storage-charging integration, the liquid-cooled design ensures that energy from solar panels is stored efficiently and discharged when needed. This integration is particularly beneficial for renewable energy systems, where energy storage is essential to address intermittency issues.
Hebei Yanchun Qianjian Technology Co., Ltd. is a leading manufacturer of advanced energy storage solutions. With a focus on innovation and quality, the company has successfully deployed its 1P52S & 1P104S energy storage packs in multiple 100MW-scale energy storage projects across China. The company's commitment to excellence has been validated by the market, with its products demonstrating exceptional operational stability and economic efficiency.
Hebei Yanchun Qianjian Technology Co., Ltd. is dedicated to supporting carbon neutrality goals through the development of safe, reliable, and cost-effective energy storage systems. Their products are designed to meet the growing demand for sustainable energy solutions, ensuring that users can achieve long-term cost savings and environmental benefits.
The 1P52S & 1P104S energy storage pack adheres to strict industry standards and regulatory requirements. The product's insulation performance and withstand voltage performance meet the highest safety benchmarks, ensuring reliable operation in various environments. Additionally, the IP67 protection level guarantees that the product is resistant to dust and water, making it suitable for outdoor applications.
According to NIST (National Institute of Standards and Technology), energy storage systems must meet rigorous performance and safety standards to ensure their reliability and longevity. The 1P52S & 1P104S energy storage pack aligns with these standards, as highlighted in NIST's research on energy storage system design and testing (NIST, 2023).
The 1P52S & 1P104S Liquid-Cooled Energy Storage Pack is a versatile and high-performance solution for modern energy storage needs. With its liquid-cooling thermal management, ultra-long cycle life, and all-climate adaptability, this product offers a reliable and cost-effective way to store and manage energy. Whether for grid-side applications, commercial use, or renewable energy integration, the 1P52S & 1P104S energy storage pack is a testament to the advancements in energy storage technology.
For more information, visit the product page or explore the company website to learn more about Hebei Yanchun Qianjian Technology Co., Ltd.
NIST (National Institute of Standards and Technology). (2023). Energy Storage System Design and Testing. Retrieved from https://www.nist.gov