-40%

Greenergystar 110V 1200W MPPT Micro Grid Tie Inverter For Solar Panel

$ 104.54

Availability: 204 in stock
  • Custom Bundle: No
  • All returns accepted: Returns Accepted
  • Brand: Unbranded
  • Item must be returned within: 30 Days
  • Return shipping will be paid by: Buyer
  • MPN: Does Not Apply
  • Non-Domestic Product: No
  • Recommended Environment: Indoor/Outdoor
  • Condition: New
  • Color: Silver
  • System Configuration: Grid-Tie
  • Inverter Technology: Microinverter
  • Voltage Output: 120
  • Power Source: Solar
  • Protection Properties: Anti-island Protection
  • Restocking Fee: No
  • Current Output: AC
  • Refund will be given as: Money Back
  • Modified Item: No

    Description

    110V 1200W
    MPPT Micro Grid Tie Inverter
    For Solar Panel
    Features:
    Maximum Power Point Tracking (MPPT) to optimize output power
    FOUR indendent MPPT input circuit allows power optimization on 4 sets of solar panel
    Standard MC4 input ports for easy and safe installation
    Stackable to another micro inverter with the included power cable
    Pure sine wave output
    Anti-Island Protection: Inverter will stop output during black out
    Over-temperature, short circuit, and overload protection
    IP65 Waterproof Rating
    Input Specifications:
    Recommended PV Modules
    300W x 4 sets
    Maximum DC input Range
    50V
    MPPT Voltage Range
    14-20V / 25-40V
    Operation Voltage Range
    10.5-30V / 22-50V
    Individual Circuit Maximum Input Current
    20A
    Output Specifications:
    Output Voltage
    @120VAC
    Peak Power Output
    1200W
    Rated Output Power
    1150W
    Rated Output Current
    9.58A
    Rated Voltage Range
    90-160VAC
    Rated Frequency Range
    50/60Hz Auto
    Power Factor
    >98%
    Maximum units per Branch Circuit
    3 Units (single phase)
    Maximum Current per Branch Circuit
    30A
    Efficiency
    MPPT Efficiency
    99.5%
    Maximum Output Efficiency
    92%
    Night Power Consumption
    <50mW Max
    Anti Island Protection
    Yes, Inverter will disconnect from grid during black out
    Output Current Waveform
    Pure Sine Wave
    Mechanical Specifications:
    Ambient Temperature Range
    -40'C - 60'C
    Operating temperature range
    -40'C - 82'C
    Dimension (L x W x H)
    370 x 305 x 38 mm
    14.56 " x 12" x 1.50"
    Weight
    2.85kg
    6.28lb
    Waterproofrating
    IP65
    Cooling
    Natural Convection
    Casing
    High quality finned aluminum to act as heat sink for fast heat dissipation
    Display
    1 Red LED
    Other Specifications
    Power Transmission
    Reverse Transfer, Prirotiy Loads first
    Electromagnetic Compatibility
    EN50081.part1 / EN50085.part1
    Grid Distrubance
    EN61000-3-2 Safety EN62109
    Grid Detection
    DIN VDE 1026 UL1741
    What are included:
    1X 1200W Micro Grid-tie Inverter
    1X AC Cable
    Instruction manual
    Mounting Bracket
    Screws
    Maximum Power Point Tracking (MPPT):
    What is Maximum Power Point Tracking (MPPT)? MPPT is a techinque we implemented to get the maximum possible power from a solar panel. When trying to characterize the output of a solar panel mathematically, it can be represented by an IV-Curve (shown below). The equation for Power is
    P = IV
    . Where
    I
    is the
    Current
    ,
    V
    is the
    Voltage
    , and
    P
    is the possible output
    Power
    . Each point on the curve is a possible combination for output power and our goal is to find the best combination to obtain maximum power.
    In simple terms, we are trying to get the biggest rectangle to fit under this so called IV-Curve, the bigger rectangle we can fit, the more power we get. Below are graphs to help you understand the idea better. This is a comparison between inverters with and without MPPT on an 85W solar panel. Please note that different solar panels will have slightly different IV-Curves.
    No Tracking Vs Tracking
    Figure 1
    No MPPT, with voltage fixed 17.5V
    P = 17.5V x 4.6A =
    80.5W
    Figure 2
    With MPPT, amount of current and voltage to draw are calculated
    P = 17V x 4.95A =
    84.15W
    As we can see, Figure 2 is able to 84.15W with MPPT while in Figure 1, we can only get 80.5W. This is 4.5% increase in power output. Why do we care? Because solar panels are still quite expensive these days, and the increased power output will directly affect our return on investment (ROI). In addition, depending on weather, time of the day and amount of solar irradiation the panel receives, the IV curve will move along the Y-axis to reflect the possible increase / decrease in potential power output, and cause the maximum power point to shift along as well. Coming up are illustrations to visualize this idea.
    IV-Curves Under different weather conditions
    Figure 3.
    Sunny, Clear Sky days in Summer
    600 ~ 1000 W/m2
    No MPPT
    MPPT
    Power
    80.5W
    84.15W
    Color
    Red
    &
    Yellow
    Yellow
    &
    Green
    Percent
    N/A
    +4.5%
    Figure 4.
    Scattered Clouds or Partly Cloudy days in Summer
    300 ~ 600 W/m2
    No MPPT
    MPPT
    Power
    42.0W
    46.4W
    Color
    Red
    &
    Yellow
    Yellow
    &
    Green
    Percent
    N/A
    +10.5%
    Figure 5.
    Cloudy or fog days, dawn or dusk in Summer
    100 ~ 300 W/m2
    No MPPT
    MPPT
    Power
    5.25W
    14.25W
    Color
    Red
    &
    Yellow
    Yellow
    &
    Green
    Percent
    N/A
    +171%
    Figure 3 - 5 illustrate the power gain in different weather condition with MPPT compare to a non-tracking inverter that locks voltage at 17.5V. While 17.5V is randomly chosen, it does show what would happen in real life when there is not MPPT. Studies have shown, by making use of MPPT, there will be an average of 30% increase in power production. Since the maximum power point is a variable, we have implemented a tracking algorithm that utilizes the micro processing power of our inverter to calculate the optimum voltage and current to maximize our energy harvest.
    Increased Power Rating:
    In 2008, when we designed the first generation inverter, what we had in mind was an inexpensive device to allow the public to have a chance to test out renewable energy production and promote the green movement at an affordable price range. As people's environmental awareness increased over the years, the demand for bigger systems also increase. Therefore, once again, the power of this inverter has increased to accomodate market demand.
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