All in one Integrated inverter energy storage

ISPA series

A super large capacity multi in one energy storage machine, equipped with a large capacity lithium iron phosphate battery and a high-power inverter, which can be directly connected to solar panels. Integrated design, no need to verify the communication function between the battery and inverter, ready to use out of the box, supports parallel expansion of 15 devices, built-in BMS system, longer cycle life.

 

  1. Built in BMS
  2. A-grade battery
  3. Over 6000 deep cycles, high energy density, environmentally friendly
  4. Built in MPPT
  5. Easy to use
  6. Supports parallel operation of 15 devices

All in one system Detail

  All in one system 5.12KWh+5KW All in one system 10.24KWh+5KW
Model ISPA-5-5 ISPA5-10
Battery
Battery Type LiFePO4 Battery
Battery Energy 5.12KWh 10.24KWh
Nominal Voltage 51.2V
Rated Capacity 100Ah 200Ah
Voltage Range 42.0~57.0V
PV
Max. Power 3.2KW(1600W*2)
Max. PV Voltage 150Vdc
MPPT Voltage Range 30~145Vdc
Max. PV Charge Current 30A+30A
AC Output
Rated Power 5000W
AC Voltage 120Vac/240Vac
AC Frequency 50Hz/60Hz±0.1%
Efficiency ≤91%
Transfer time 10ms (for PC) 20ms (for Appliance)
Waveform Pure sine wave
AC Input
Rated AC Voltage 120Vac
AC Voltage Range 90-140Vac
Frequency Range 46Hz-64Hz(Auto sensing)
General Parameters
Altidude ≤2000m
Humidity 5%~95%
Work Temperature -10℃~50℃
Size (mm) 480*270*660 515*270*810
Weight (kg) 54 90
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What can the ISPA 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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