48v 80ah 100ah 120ah 200ah LifePO4 battery 5KWh 6KWh

RSPB series

Super-large-capacity lithium iron phosphate battery, with a wall-mounted bracket added to the appearance design, built-in BMS system, and longer cycle life. It can communicate with ISGC-T series high-frequency inverters, support multi-machine parallel connection, and can automatically adjust the battery voltage synchronously through bms, which is widely used in household and commercial energy storage fields.

  1. A-level battery cells
  2. More than 6000 times deep cycle,high energy density and environmentally friendly
  3. Built-in BMS
  4. Certificate CE,UN38.3,MSDS
  5. Support RS485/RS232/CAN communication interface
  6. Widely used in household and commercial energy storage fields
  7. 5 years warranty

LifePo4 battery Features

LifePo4 battery

Solid and robust,
high load-bearing

LifePo4 battery

Supports 16 parallel
connection

LifePo4 battery

Multiple communication
protocols

Appearance

LifePo4 battery
LifePo4 battery
LifePo4 battery

LifePo4 battery Detail

ModelRSPB-5RSPB-10
Rated capacity100Ah200Ah
Battery voltage51.2V
Battery capacity100Ah200Ah
Discharge cut-off voltage40V
Charging cut-off voltage58.4V
Battery string method16S1P
Shell materialMetal
Standard chargingCharge at a constant current (CC) of 0.2C to 58.5V, then at a constant voltage (CV) of 58.4V until the charging current drops to ≤ 0.02C
Standard dischargeConstant current 0.5C cut-off voltage 40.0V
Maximum charging current80A160A
Maximum continuous discharge current80A160A
peak current100Ah200Ah
Working temperature rangeCharging: 0~55 ℃ | Discharge: -20~60 ℃ (battery surface temperature ≤ 80 ℃)
Storage temperature rangeWithin 1 year: 0~25 ℃ | Within 3 months: -10~35 ℃
weight46.6Kg73.6Kg
Maximum size635mm*150mm*400mm800mmx150mmx500mm
communicationCAN/RS485/RS232
Parallel operationsupport

What can the RSPB series products do for you

Energy storage system

Providing Emergency Backup Power: The peak-shaving and valley-filling mechanism can discharge stored energy during off-peak hours, offering emergency backup power to address unexpected events and safeguard the secure and stable operation of the power grid.

Enhancing the Utilization of Fluctuating Renewable Energies: Energy storage systems can harness renewable energies such as wind and solar to charge batteries during periods of low grid demand. Conversely, during peak demand, the stored chemical energy in the batteries is converted back into electrical energy for discharge. This process significantly improves the utilization rate of intermittent renewable energy sources, ensuring a more efficient integration with the power grid.

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