Product Details
The real ROI of this Peak Shaving Energy Storage unit comes from its industrial-grade LiFePO4 cells, which are built to withstand heavy daily cycling without the rapid degradation seen in cheaper alternatives. We guarantee a 8000+ cycle life, ensuring your peak shaving energy storage system asset pays for itself multiple times over its 15-year lifespan. Fully CE and UN38.3 certified, this system allows factory managers to stop worrying about fluctuating grid prices and start treating energy as a strategic, manageable expense.



Technical Parameters
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Technical Specification |
261kWh C&I Storage Cabinet |
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Battery Chemistry |
Premium LiFePO4 cells (LFP) |
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Cell Capacity & Type |
314Ah High-Density Matrix |
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Nominal Energy Capacity |
261.248 kWh |
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Rated AC Output Power |
125 kW |
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Cycle Life |
8000+ cycles (@80% DOD, 0.5C) |
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Thermal Management |
Smart Forced Air Cooling |
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Fire Suppression System |
Perfluoroketone&Aerosol Fire Protection System |
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Enclosure Protection |
IP55 (All-Weather Outdoor Rated) |
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Certifications |
CE, IEC 62619, UN38.3, MSDS |
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FAQ
Q: How does a Peak Shaving Energy Storage system calculate and deliver a real ROI for industrial factories?
A: Commercial electricity bills don't just charge you for the total power you use; they charge you a massive premium for your "peak demand" (the highest amount of power you draw at any single moment). Our peak shaving battery system cabinet continuously monitors your facility's main breaker. The millisecond your heavy machinery creates a massive consumption spike, the C&I Energy Storage System instantly discharges power from its internal LiFePO4 cells to handle the load locally. To the utility company, your grid draw looks perfectly flat, effectively eliminating thousands of dollars in monthly demand penalties and delivering a clear hardware ROI within 3 to 5 years.
Q: Why is a liquid cooled battery energy storage system preferred over air cooling for capacities above 200kWh?
A: When you run high-current commercial cycles through a 261kWh/522kWh system, standard air cooling creates dangerous internal "micro-climates"-cells in the center of the rack run much hotter than cells on the outside. This temperature imbalance causes uneven cell aging and kills your warranty. Our liquid cooled battery energy storage system circulates a dedicated cooling loop directly across every single module. By keeping the maximum temperature difference between cells under 3°C, the system prevents thermal breakdown, ensures absolute fire safety, and secures that vital 8000+ cycle life for your commercial asset.
Q: Is the battery performance affected by extreme cold or hot temperatures?
A: We use industrial-grade thermal management. For colder climates, an integrated pre-heating module can be added to ensure the battery charges efficiently even at sub-zero temperatures. For hot environments, our optimized airflow design prevents heat buildup, keeping the LiFePO4 chemistry within its optimal operating window of $15°C$ to $35°C$.
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