Boat & RV Battery Bank Calculator

Work out how many amp-hours your house bank needs to get you between charges.

Free, no sign-upInstant resultsUpdated September 2026
Add up each device: amps × hours used per day.
Entered in
System voltage
days
Battery bank
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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 a house battery bank

    List every DC device, multiply its current by the hours it runs per day, and add them up to get daily amp-hours. Multiply by the number of days you want to go without charging, then divide by the usable fraction of the battery type.

    Daily Ah = Σ (Device amps × Hours per day) Bank Ah = Daily Ah × Days ÷ Usable fraction

    Example: weekend at anchor

    80 Ah per day for 2 days on LiFePO4: 80 × 2 ÷ 0.9 = 178 Ah, so two 100 Ah batteries. On lead-acid the same boat needs 320 Ah (four 100 Ah batteries) because only half is usable.

    Typical 12 V loads

    DeviceAmpsHours/dayAh/day
    12 V fridge (compressor)4–58–12 (cycling)30–50
    Chartplotter / MFD1–388–24
    VHF radio (receive)0.584
    LED anchor light0.2102
    LED cabin lights1–244–8
    Autopilot2–6612–36
    Phone / tablet charging1–233–6

    Frequently asked questions

    How many amp-hours do I need on a sailboat?

    Most coastal cruisers use 80–150 Ah per day. Two days of autonomy on lithium needs roughly 200–350 Ah.

    Should the starting battery be part of the house bank?

    No. Keep a separate starting battery, isolated with a battery switch, combiner or DC-DC charger, so you can always start the engine.

    Is LiFePO4 worth it on a boat?

    Usually yes: nearly twice the usable capacity per rated Ah, about half the weight, and many more cycles. It needs a compatible charger and alternator protection.