| Price: | Negotiable |
| Payment Terms: | L/C T/T |
The 241kWh Energy Storage System is a high-capacity lithium battery energy storage solution designed for commercial, industrial, renewable energy, and distributed energy applications. Built around high-performance lithium iron phosphate (LFP) battery technology, the system integrates battery management, thermal management, power conversion, energy management, and multi-level safety protection into a flexible energy storage platform.
With 241kWh of rated energy capacity, the system can store electricity during periods of lower energy demand or renewable generation and discharge it when needed. This makes it suitable for peak shaving, load shifting, solar self-consumption, backup power, and other commercial energy management applications. Similar 241kWh C&I systems on the market commonly use integrated cabinet architectures with LFP batteries, BMS, PCS, thermal management, and fire protection.
The 241kWh Energy Storage System is suitable for a wide range of energy management applications, including:
The system can be integrated with an Energy Management System (EMS) to monitor operating conditions and coordinate battery charging and discharging.
Depending on the project configuration, the EMS can support functions such as:
Battery safety is supported through multiple layers of monitoring and protection. The BMS continuously monitors key battery operating parameters, while the thermal management system helps control battery temperature during operation.
For commercial and industrial installations, additional fire detection, suppression, ventilation, and other safety functions can be configured according to the battery chemistry, enclosure design, applicable codes, and project requirements.
The 241kWh Energy Storage System can be customized to meet different project requirements, including:
A 241kWh system provides a practical capacity range for many commercial and industrial projects that require more energy storage than small cabinet systems but do not necessarily need a megawatt-scale containerized BESS.
The system can help businesses improve energy utilization, shift electricity consumption to more favorable periods, increase solar self-consumption, and provide backup energy when properly configured with the required power conversion and grid-control equipment.
The applicable certifications and standards depend on the final system configuration, target market, battery cells, PCS, enclosure, and installation requirements.
For North American projects, applicable requirements may include standards and codes such as UL 9540, UL 1973, UL 9540A, NFPA 855, and NFPA 70, depending on the system design and installation.
Specific certification claims should be supported by documentation for the exact model and configuration, including applicable test reports, listings, and declarations.