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ISGC-T series Split Hybrid Power Inverter

10kw ISGC-T series Split Hybrid Power Inverter

ISGC-T series

High power high-frequency inverter, output power up to 10KW, AC input 120V, can output 120V and 240V AC power, built-in dual MPPT, maximum charging current up to 200A. Built in UPS function, inverter mode switching time is 10MS.

  1. Pure sine wave waveform. Communication output 120V/240V
  2. Dual MPPT, efficiency up to 99.9%
  3. Compatible with gel. AGM。 flooding. Sealed lead-acid and lithium batteries
  4. Comprehensive protection
  5. Exclusive lithium-ion battery BMS dual activation
  6. Comfortable installation and debugging

Detail

ModelRSGC-T-4880RSGC-T-48100CAN BE SET
INVERTER OUTPUT
Rated Output Power8,000W10,000W
Max.Peak Power16,000W20,000W
Rated Output Voltage120/240Vac(L1/L2/N/PE split phase)Y
Load Capacity of Motors5HP6HP
Rated AC Frequency50/60HzY
WaveformPure Sine Wave
Switch Time10ms(typical)
Parallel capacity/
BATTERY
Battery TypeLi-ion / Lead-Acid / User DefinedY
Rated Battery Voltage48Vdc
Voltage Range40-60VdcY
Max.MPPT Charging Current200AY
Max.Mains/Generator Charging Current100A120AY
Max.Hybrid Charging Current180A200AY
PV INPUT
Num. of MPP Trackers2
Max.PV array power11,000W
Max.input current22/22A
Max.Voltage of Open Circuit500Vdc
MPPT Voltage Range125-425Vdc
MAINS / GENERATOR INPUT
Input Voltage Range90-140Vac
Frequency Range50/60Hz
Bypass Overload Current63A
EFFICIENCY
MPPT Tracking Efficiency99.90%
Max. Battery Inverter Efficiency92%
GENERAL
Dimensions620*435*130mm(2*1.4*0.4ft)
Weight20kg(44lb)21kg(46.3lb)
Protection DegreeIP20,Indoor Only
Operating Temperature Range‘-15~55℃,>45℃ derated
(5~131℉,>113℉ derated)
Noise<60dB
Cooling MethodInternal Fan
Warranty2 Years
COMMUNICATION
Embedded InterfacesRS485 / CAN / USB / Dry contactY
External Modules   (Optional)Wi-Fi / GPRSY
CERTIFICATION
SafetyIEC62109-1, IEC62109-2,UL1741
EMCEN61000-6-1, EN61000-6-3, FCC 15 class B
RoHSYes

What can the ISGC-T 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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