How to Size Your RV Battery Bank

Buying too small means dead batteries by noon. Buying too big means wasted money and weight. Sizing your RV battery bank is just arithmetic — here's the method we use on every build.

Step 1: List your daily loads

Write down everything you run in a typical day and roughly how many amp-hours (Ah) it draws. Common estimates:

DeviceTypical draw
Compressor fridge (24h)35–45 Ah
LED lights (evening)3–6 Ah
Water pump2–4 Ah
Laptop / devices8–12 Ah
Furnace fan (cold night)10–20 Ah

Step 2: Apply the usable-capacity rule

Lithium gives ~90–100% usable capacity; AGM only ~50%. So a 100Ah lithium = ~90–100Ah usable, while a 100Ah AGM = only ~50Ah usable.

Step 3: Worked example

Say your total is 60Ah/day and you want 2 days of buffer without charging:

  • Lithium: 60 × 2 = 120Ah needed → one 100Ah + one 50Ah, or a single 200Ah.
  • AGM: 120Ah ÷ 0.5 = 240Ah needed → roughly two 120Ah AGM batteries.

Notice the AGM option is double the weight and cost for the same runtime — another reason most full-timers choose lithium.

🔋

Start here — HumsiENK 100Ah LiFePO4 (Bluetooth)

Built-in BMS · per-cell app monitoring
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Need more? — 314Ah LiFePO4

Big capacity · BMS protection
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Common mistakes

  • Using rated Ah as usable Ah on AGM — you'll halve your real runtime.
  • Ignoring the charger — a lead-acid-only converter will undercharge lithium.
  • No monitor — without one you're guessing and will over-discharge.

Disclosure: RV Battery Hub is reader-supported and may earn from qualifying links at no extra cost to you. Size estimates are starting points; verify with your actual gear.