Off-grid solar size calculator
Add your daily loads. Get the panel count, battery bank Ah, inverter rating, and charge controller amps — worst-month sun hours and derating handled.
Once you know your system size, matched off-grid solar kits: 400 W class for weekend cabins, 1,000 W+ class for full-time off-grid.
The inverter turns battery DC into household AC. Size it by what runs at the same time — plus the startup surge of the biggest motor.
The charge controller sits between panels and battery. Size it by array watts ÷ battery voltage — and pick MPPT above ~200 W.
Have a battery already? Here's how much panel it takes to recharge it in a day — after sun hours and charge losses.
Sizing a whole bank from scratch instead? Use the battery bank sizer.
Frequently asked questions
What size solar system do I need for an off-grid cabin?
Add the watt-hours of everything you run per day, divide by your location's worst-month sun hours, then add 25% for panel derating (heat, dust, wiring losses). A typical minimalist cabin using 3 kWh/day needs about 1,200–1,500 W of panels in most of the US, paired with a 400–600 Ah 12 V LiFePO4 bank (or the 24 V/48 V equivalent) to ride through cloudy days.
How many solar panels does it take to charge a 200Ah battery?
A 200 Ah 12 V battery stores 2,400 Wh. To recharge it in one day of sun you need roughly 400–600 W of panels: 2,400 Wh ÷ 4.5 average sun hours ÷ 0.85 charge efficiency ≈ 630 W, so a 2×300 W array covers it in a day and a 400 W array in about a day and a half of good sun.
MPPT or PWM charge controller — which do I need?
MPPT harvests 20–30% more power than PWM in cold or partly cloudy conditions and lets you use a higher-voltage array with thinner wire, but costs 2–3× more. For arrays above 200 W, or in winter-heavy climates, MPPT pays for itself. Size it: array watts ÷ battery voltage ÷ 0.85 efficiency, rounded up to the next standard rating (20 A, 30 A, 40 A, 60 A, 80 A).
What size inverter do I need for off-grid solar?
Total the continuous watts of everything that could run at once, then add the surge of the biggest motor or compressor load (3–4× its running draw). Buy 25% above the continuous total, pure sine wave only. A fridge (150 W running, 600 W surge) plus lights and electronics usually lands at a 1,000–1,500 W inverter; add a microwave or well pump and you're at 2,000–3,000 W.
How off-grid solar sizing works
Everything flows from one number: daily watt-hours. Panels must replace that number every sun-hour day — array watts = daily Wh ÷ sun hours ÷ ~0.75 system efficiency (wiring, charge controller, battery round-trip, panel heat and dust). The battery bank must carry you through sunless days: bank Wh = daily Wh × days of autonomy ÷ max depth of discharge. LiFePO4's 80% usable depth is why it wins on-paper capacity math even before cycle life.
Typical daily-load reference
| Load | Watts | Hrs/day | Wh/day |
|---|---|---|---|
| Energy Star refrigerator | 150 | 8 (cycled) | 1,200 |
| LED lights, cabin (10 bulbs) | 80 | 5 | 400 |
| Laptop + phone charging | 100 | 6 | 600 |
| 12 V water pump | 60 | 0.5 | 30 |
| CPAP machine | 40 | 8 | 320 |
| Starlink / internet | 60 | 12 | 720 |
| TV | 100 | 4 | 400 |
| Microwave | 1,000 | 0.25 | 250 |
| Induction cooktop (per burner) | 1,500 | 0.75 | 1,125 |
Draw figures are published manufacturer/DOE typical values. Anything with heat in it (cooking, water heating, space heat) is what blows up solar budgets — propane or wood wins there in 2026 economics.
Sun hours cheat sheet (worst month)
| Climate | Peak sun hrs/day |
|---|---|
| US Southwest (AZ, NV, NM) | 5–6 |
| US Sun Belt average | 4–5 |
| Pacific Northwest winter | 1.5–2.5 |
| Northeast / Midwest winter | 2–3 |
| Northern Europe winter | 0.5–1.5 |
Guides
What size solar system for an off-grid cabin?
Worked examples from a weekend cabin to a full-time homestead — panel counts, bank sizes, and where the budget actually goes.
How many solar panels to charge a battery?
The 100 Ah to 400 Ah recharge math for 12/24/48 V banks — and why winter changes the answer by 3×.
Battery bank sizer ↗
Sizing the storage side in depth — LiFePO4 vs AGM bank builder with parallel-string planning. Generator backup? GeneratorSizer has the fuel-side math.