Marsriva MR-LBP48-314-FSD 16.07kWh LiFePO4 Battery
The Marsriva MR-LBP48-314-FSD 16.07kWh LiFePO4 Battery is a high-capacity energy storage solution designed for solar power systems, hybrid inverters, backup power systems, and other residential or commercial energy applications. It uses a Grade A LiFePO4 battery with 51.2V nominal voltage, 314Ah capacity, and 16.07kWh storage energy. With a long cycle life, high charging and discharging capability, and support for parallel connections, this Marsriva battery is suitable for customers who need dependable and expandable energy storage. The Marsriva MR-LBP48-314-FSD provides 16.07kWh of nominal storage energy. Its 51.2V and 314Ah configuration provides substantial energy capacity for backup power and solar energy storage applications. It can store energy generated by a compatible solar system and make that stored energy available when solar production is low or grid electricity is unavailable. This battery uses Grade A LiFePO4 cells and offers a specified cycle life of ≥8000 cycles at 25°C to 70% EOL. It also has a design life of ≥10 years, making it suitable for long-term energy storage applications when operated according to the manufacturer's specifications. LiFePO4 technology is widely used in energy storage because of its long cycle life and suitability for repeated charging and discharging. The Marsriva 16.07kWh LiFePO4 Battery supports a maximum charging current of 200A and a maximum discharging current of 200A. It can also handle peak charging and discharging currents of 210A for 2 seconds. This high-current capability makes the battery suitable for compatible high-power inverter and backup systems. The integrated communication options include BMS 485/CAN, RS232, and parallel communication, allowing the battery to communicate with compatible energy management and inverter systems. For larger energy storage requirements, you can connect up to 16 units in parallel, subject to compatible system configuration. This provides significant flexibility for residential, commercial, and larger backup power installations. The battery supports charging temperatures from 0°C to 55°C and discharging temperatures from -20°C to 55°C. Its storage temperature range is -5°C to 30°C, while supported humidity is 5%–95%.
Why Buy Marsriva MR-LBP48-314-FSD From BM Dubai Tech?
BM Dubai Tech is a trusted solar and power solution shop in Bangladesh, offering Marsriva LiFePO4 batterie, solar & hybrid inverter, UPS systems, portable power station, and networking products. You can buy the Marsriva MR-LBP48-314-FSD 16.07kWh LiFePO4 Battery from BM Dubai Tech with competitive pricing and reliable after-sales support. Our team can help you choose the right battery capacity according to your inverter, solar panel system, daily energy consumption, backup requirements, and future expansion plans.
FAQs About Marsriva 16.07kWh LiFePO4 Battery in Bangladesh
What is the Marsriva MR-LBP48-314-FSD?
It is a 51.2V 314Ah LiFePO4 energy storage battery with 16.07kWh capacity, designed for solar, hybrid inverter, and backup power systems.
How much energy can the Marsriva MR-LBP48-314-FSD store?
It has a nominal storage energy capacity of 16.07kWh.
What type of battery does Marsriva MR-LBP48-314-FSD use?
It uses Grade A LiFePO4 battery cells.
How long does the Marsriva 16.07kWh battery last?
The specified cycle life is ≥8000 cycles at 25°C to 70% EOL, with a stated design life of ≥10 years.
Can multiple Marsriva MR-LBP48-314-FSD batteries be connected together?
Yes. The specifications support up to 16 units in parallel, provided the overall system is designed with compatible equipment and configuration.
What is the voltage of the Marsriva MR-LBP48-314-FSD?
Its nominal voltage is 51.2V.
What is the capacity of the Marsriva MR-LBP48-314-FSD?
It has a nominal capacity of 314Ah and storage energy of 16.07kWh.
Is this battery suitable for solar systems?
Yes. Its high capacity, LiFePO4 chemistry, BMS communication, and parallel expansion capability make it suitable for compatible solar energy storage and hybrid inverter systems.