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    12000W Pure Sine Wave Inverter Charger 48V

    SKU: PH-PI-GS12000
    $3,414.17
    ● 12000W pure sine wave solar inverter charger, capable of handling 3 times peak power, 5-level adjustable AC charging current. ● Includes a 40A/60A MPPT solar charger with AC/DC priority modes, supporting solar charging. ● Solar power inverter adopts low-frequency converter design with overload, over-temperature, low-power, and overcharge protection. ● Suitable for most home appliances, including fans, air conditioners, refrigerators, water pumps, motors, office equipment, etc., ideal for off-grid/hybrid solar energy storage systems.
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    ā±ļø Delivery: 6-12 days
    šŸ”™ 30-day Returns
    Overview

    12000W hybrid inverter with solar battery charging, pure sine wave output, 3 times peak power. Built-in MPPT solar charger, supports 5-level AC charging current adjustment for efficient solar energy conversion. The solar inverter can be set to AC/DC priority mode, provides 48V DC input, and remote control function is optional. Suitable for various applications including residential, commercial, and small industrial settings. This solar inverter charger can serve as a stable and reliable backup power source and is widely used in off-grid solar systems, providing continuous and stable power support for different power environments.

    Feature

    Feature

    • 12kW off-grid solar inverter, capable of handling 3 times peak power
    • Built-in 40A/60A MPPT solar charge controller, AC/DC priority mode adjustable
    • Supports 5-level adjustable AC charging current for flexible charging mode adjustment
    • LED/LCD display shows real-time solar capacity
    • Provides reliable 48V DC/AC power supply, suitable for AC and solar systems
    • Apply to off-grid or hybrid solar power systems, providing continuous power support for lighting, home appliances, monitoring, and communication equipment
     

    Details

    1. LCD Display
    2. High-current battery interface
    3. Remote control interface
    4. Heat dissipation vents
    5. Charging input protection
    6. Inverter output protection
    7. Built-in circuit breaker
    8. Independent power switch
    Details

    Inverter Split-Phase Output Terminal Description

    Inverter charger split-phase output terminal description

     

    Specs
    Power 12000 Watt
    Phase Single phase, Split phase
    AC Input
    Input Voltage Waveform Sinusoidal (utility or generator)
    Nominal input Voltage HOT-N: 120V AC, 230V AC, 240V AC
    Split phase (HOT-HOT): 240V AC
    Low Line Disconnect 180Vac±4% (Normal) or 140Vac±4% (Wide)
    Low Line Re-connect 190Vac±4% (Normal) or 150Vac±4% (Wide)
    High Line Disconnect 270Vac±4% (Normal) or 270Vac±4% (Wide)
    High Line Re-connect 260Vac±4% (Normal) or 260Vac±4% (Wide)
    Max AC input Voltage Max 280V
    Frequency 50Hz: 41-54Hz; 60Hz: 51-64Hz
    AC Output
    Output Voltage Waveform Sine wave
    Power Factor 1
    Nominal Output Voltage (V) HOT1-N: 120Vac ±10%rms; HOT2-N: 120Vac ±10%rms; HO1-HOT2: 240Vac ±10%rms
    Output Phase Difference HOT1-N and HOT2-N is 180°; HOT1-N and HOT1-HOT2 is 0°; HOT2-N and HOT1-HOT2 is 180°
    Nominal Output Frequency (Hz) 50Hz ± 1Hz, 60Hz ± 1Hz
    AC Charger
    Nominal Charger Current 20A/35A/50A/70A/90A (According to the inverter model) ; adjustable 5 stages charging current;
    Over charge Protection Bat.V≄15.5VDC for 12V battery, Bat.V≄31.0VDC for 24V battery, Bat.V≄62.0VDC for 48V battery; beeps 0.5s every 1s & fault after 60s
    Solar Charger
    Rated Charge Current Alternative 40A/60A
    PV Input Voltage range 15VDC-40VDC for 12VDC, 30VDC-75VDC for 24VDC, 60-145VDC for 48V
    Max.PV open circuit array Voltage 12V for 40VDC, 24V for 75VDC, 48V for 145VDC
    Charger mode MPPT
    PV Low Voltage Re-connect PV≄Bat.V+3V
    PV Low Voltage Disconnect PV≦Bat.V
    Effificiency ≄97%
    DC Input
    Battery Voltage 48VDC
    Low Battery Alarm 42VDC±1.2VDC
    Low DC input shut & down 40VDC±1.2VDC
    High DC input Alarm & Fault  64VDC±1.2VDC
    Efficiency
    Efficiency (Battery Mode) ≄87%
    Efficiency (Line Mode) ļ¼ž98%
    Transfer Time
    AC to DC 20ms (max)
    DC to AC 15ms (max)
    System Parameter
    Over-Load Protection 110%<load<150%, beeps 0.5s every 1s, and Fault after 60s off the output, loadļ¼ž150%, beeps 0.5s every 1s, and Fault after 20s
    Output Short Circuit Protection YES
    Surge Rating 1:3 (VA)
    Protections Low battery, over charging, over load, over temp
    Indicators LED+LCD Display
    General Specifications
    Operating Temperature Range 0ā„ƒļ½ž40ā„ƒ
    Stor age Temperature -15ā„ƒļ½ž60ā„ƒ
    Operation humidity 5% to 95% (non-condensing)
    Audible Noise 80dB max
    Cooling Forced air, variable speed fan
    Dimension (L*W*H) 627x416x204mm
    Net Weight (kg) 79kg
    Application
    New energy power generation

    New Energy Power

    Small electrical appliances

    Small Electrical Appliances

    Outdoor Travel

    Outdoor Travel

    Emergency power supply

    Emergency Power Supply

    FAQ

    Q1: How does a solar inverter charger work?

    A solar charge controller inverter, through its built-in inverter module and charging management system, converts the direct current (DC) output from solar panels or batteries into stable alternating current (AC) for use in home or commercial devices. Simultaneously, the device intelligently manages battery charging and discharging, automatically switching between solar power, AC power, and battery power to ensure efficient and continuous system operation.

    Q2: What is the function of a solar charge controller inverter?

    A solar inverter charger converts the DC power generated by a solar system into AC power, enabling it to power common household and commercial appliances. The solar inverter charger 48v also performs power dispatching and protection functions, ensuring the safety of electrical equipment and is an indispensable core component of a solar power generation system.

    Q3: How to maintain a solar inverter charger?

    Daily maintenance mainly includes keeping the equipment clean and well-ventilated to prevent dust and high temperatures from affecting heat dissipation; regularly checking the wiring for tightness to prevent loosening or aging; monitoring the display screen or monitoring system's operating status and promptly handling alarm information to ensure the long-term stable and safe operation of the solar power inverter.

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