• Home Power 10.2 KW PV 12000 Voltronic Based

    • Pure sine wave solar inverter
    • Wide PV input voltage range(90-450Vdc)
    • Built-in 160A MPPT solar charge
    • Working with battery & without battery
    • Smart battery charge design to optimize battery life
    • Dual output
    • Touch button
    • Built-in anti-dusk kit for harsh environment
    • WiFi monitoring function(optional)
    • RS485 communication for BMS
  • Home Power 11 KW Voltronic Based

    Pure sine wave AC output

    Auto restart while AC is recovering

    Overload/Over temperature/short circuit protection

    Smart battery charger design for optimized battery Performance

    Cold start function

    Removable LCD control module

    Dual Output

    Wide PV input voltage range(90V-450Vdc)

    Built-in 120A MPPT solar charge

    Built-in WiFi for mobile monitoring (Requires App), OTG USB function.

    Multiple communication ports for BMS (RS485, CAN-BUS, RS232)

  • Home Power 3.5 KW Voltronic Based

    Pure sine wave AC output

    Output power factor 1.0

    Programmable supply priority for PV battery or Grid

    Wide PV input voltage range (60-500Vdc)

    Built-in 120A MPPT solar charger

    Working with battery & without battery

    User-adjustable charge current and voltage

    Anti-dusk kit for harsh environment

    Wi-Fi monitoring function (optional)

    Communication Port RS485/RS232 to communicate with BMS

  • Home Power 4 KW Voltronic Based

    Pure sine wave AC output

    Auto restart while AC is recovering

    Overload/Over temperature/short circuit protection

    Smart battery charger design for optimized battery Performance

    Cold start function

    Removable LCD control module

    Dual Output

    Wide PV input voltage range(90V-450Vdc)

    Built-in 120A MPPT solar charge

    Built-in WiFi for mobile monitoring (Requires App), OTG USB function.

    Multiple communication ports for BMS (RS485, CAN-BUS, RS232)

  • Home Power 6 KW Voltronic Based

    Pure sine wave AC output

    Auto restart while AC is recovering

    Overload/Over temperature/short circuit protection

    Smart battery charger design for optimized battery Performance

    Cold start function

    Removable LCD control module

    Dual Output

    Wide PV input voltage range(90V-450Vdc)

    Built-in 120A MPPT solar charge

    Built-in WiFi for mobile monitoring (Requires App), OTG USB function.

    Multiple communication ports for BMS (RS485, CAN-BUS, RS232)

  • S6-GC30K-LV-US / S5-GC60K-LV-US

    • Inputs up to 16A (60K) and 20A (30K)
    • Over 1.5 DC/AC ratio for greater power density
    • Integrated MC4 connections and spring clamp terminals ensure faster install times while also ensuring cables are properly secured
    • Increase performance yields with wide and low startup voltage ranges
    • Flexible communication protocols like RS485, Ethernet, WiFi, Cellular
    • Proactively reduce fire risk with built-in AFCI protection
    • Intelligent string-level monitoring with remote I-V curve scan
    • Integrated transmitter options help choose the right solution for your project
    • Multiple orientation design is supported with flexible MPPT and power class options
    • Fuse Free Design reduces failure points and ensures seamless, ongoing operation
    • Supported with the free SolisCloud, for remote updates, visualization and control
    • Nighttime PID recovery function increases overall system yield and mitigates module degradation
  • SOLAR HYBRID INVERTER MAX (3.2 KVA) PV4200

     97,000
  • SOLAR HYBRID INVERTER MAX (3.2 KVA) PV4200

     0
  • Solis S6-GU(250-350)K-EHV-US 250K-M12 / 300K-M12 / 350K-M12 / 350K-M16

    Three Phase Grid-Tied Inverter

    Leading Features

    • Anti PID option when negative PV grounding is required.
    • Reduces points of failure with fuse-free design.
    • Warranty extensions are available for up to 20 years.
    • Multiple options, voltages and compatibility across the portfolio.
    • Easily repower aging systems with wide input and output voltage ranges.
    • Optional Skid Solution and AC combiner systems for ease in implementation.
    • MC4 pigtails to further simplify installations and eliminate the need for combiner boxes.
    • Power Line Communication (PLC) supported which reduces the need for communications cables.
    • Advanced sting monitoring and remote firmware updates for easier operations and maintenance.
    • String topology and MPPTs support modularity and redundancy for long-term system performance.
    • Wide tracking range 570-1500VDC and low start-up voltage for more flexibility and better performance.
    • Supports “Y” connectors which improve conductor utilization within the array and eliminates combiner box inputs for more cost-effective systems.

     

  • Solis S6-GU(300K-M12)K-EHV-US

    Three Phase Grid-Tied Inverter

    Leading Features

    • Anti PID option when negative PV grounding is required.
    • Reduces points of failure with fuse-free design.
    • Warranty extensions are available for up to 20 years.
    • Multiple options, voltages and compatibility across the portfolio.
    • Easily repower aging systems with wide input and output voltage ranges.
    • Optional Skid Solution and AC combiner systems for ease in implementation.
    • MC4 pigtails to further simplify installations and eliminate the need for combiner boxes.
    • Power Line Communication (PLC) supported which reduces the need for communications cables.
    • Advanced sting monitoring and remote firmware updates for easier operations and maintenance.
    • String topology and MPPTs support modularity and redundancy for long-term system performance.
    • Wide tracking range 570-1500VDC and low start-up voltage for more flexibility and better performance.
    • Supports “Y” connectors which improve conductor utilization within the array and eliminates combiner box inputs for more cost-effective systems.

     

  • Solis S6-GU(350K-M12)K-EHV-US

    Three Phase Grid-Tied Inverter

    Leading Features

    • Anti PID option when negative PV grounding is required.
    • Reduces points of failure with fuse-free design.
    • Warranty extensions are available for up to 20 years.
    • Multiple options, voltages and compatibility across the portfolio.
    • Easily repower aging systems with wide input and output voltage ranges.
    • Optional Skid Solution and AC combiner systems for ease in implementation.
    • MC4 pigtails to further simplify installations and eliminate the need for combiner boxes.
    • Power Line Communication (PLC) supported which reduces the need for communications cables.
    • Advanced sting monitoring and remote firmware updates for easier operations and maintenance.
    • String topology and MPPTs support modularity and redundancy for long-term system performance.
    • Wide tracking range 570-1500VDC and low start-up voltage for more flexibility and better performance.
    • Supports “Y” connectors which improve conductor utilization within the array and eliminates combiner box inputs for more cost-effective systems.

     

  • Solis S6-GU(350K-M16)K-EHV-US

    Three Phase Grid-Tied Inverter

    Leading Features

    • Anti PID option when negative PV grounding is required.
    • Reduces points of failure with fuse-free design.
    • Warranty extensions are available for up to 20 years.
    • Multiple options, voltages and compatibility across the portfolio.
    • Easily repower aging systems with wide input and output voltage ranges.
    • Optional Skid Solution and AC combiner systems for ease in implementation.
    • MC4 pigtails to further simplify installations and eliminate the need for combiner boxes.
    • Power Line Communication (PLC) supported which reduces the need for communications cables.
    • Advanced sting monitoring and remote firmware updates for easier operations and maintenance.
    • String topology and MPPTs support modularity and redundancy for long-term system performance.
    • Wide tracking range 570-1500VDC and low start-up voltage for more flexibility and better performance.
    • Supports “Y” connectors which improve conductor utilization within the array and eliminates combiner box inputs for more cost-effective systems.

     

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