MPPT Charge Controller Calculator

Enter your panels, how they're wired and your battery voltage to get the controller's amp and PV voltage rating.

Free, no sign-upInstant resultsUpdated September 2026
W
V
Open-circuit voltage on the panel label.
°F
Charge controller
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How we calculated this

    For estimating and educational purposes only. Results are approximate and are not a substitute for a licensed professional, the manufacturer's instructions or your local code. Disclaimer

    How to size an MPPT controller

    Two numbers matter. The amp rating is the charging current into the battery: array watts divided by battery voltage. The PV voltage rating must exceed the array's open-circuit voltage on the coldest morning, because panel voltage rises as temperature drops.

    Charge amps = Array watts ÷ Battery volts Cold Voc = Panel Voc × Panels in series × Temperature factor

    Example

    Four 400 W panels (2 in series × 2 strings) = 1,600 W. On a 24 V battery: 1600 ÷ 24 = 66.7 A, so a 70 A controller. Cold Voc at 14°F (−10°C): 37 × 2 × 1.14 = 84.4 V, so a 100 V model (a 100/70 class controller).

    NEC 690.7 temperature factors

    Lowest temperatureFactor
    32 to 39°F (0 to 4°C)1.10
    14 to 23°F (−10 to −5°C)1.12–1.14
    −4 to 5°F (−20 to −15°C)1.16–1.18
    −22 to −13°F (−30 to −25°C)1.20–1.21
    −40 to −31°F (−40 to −35°C)1.23–1.25

    Higher battery voltage means fewer amps for the same array: 1,600 W is 133 A at 12 V but only 33 A at 48 V.

    Frequently asked questions

    What size charge controller for 400 watts of solar?

    About 33 A on a 12 V battery (a 35–40 A controller) or 17 A on 24 V (20 A controller).

    Can I connect more solar than the controller rating?

    Most MPPT controllers allow some over-paneling and clip the extra power, but the cold-weather Voc must never exceed the PV voltage limit.

    MPPT or PWM?

    MPPT harvests 15–30% more energy, especially in cold weather and when the panel voltage is much higher than the battery's.