ArrayBudgetPanels, batteries and inverters sized to the load you actually have.

30 kWh a day, 6 peak sun hours, 400 W panels

Array size
6.8kW DC
17 × 400 W panels for 30 kWh a day
Panels (400 W each)17panels
Array size6.49 kW needed, rounded up to whole panels6.8kW DC
Roof area32.4 m² of panel, before spacing and setbacks349ft²
Inverter1.2:1 DC-to-AC ratio5.67kW AC
Battery (1 day backup)781 Ah at 48 V, 80% depth of discharge37.5kWh
Expected yearly output11,467kWh/yr
Derate factor appliedPVWatts default — soiling, heat, wiring, inverter0.77
Daily use
30 kWh
Peak sun hours
6 h
Panel rating
400 W

Where the panel count comes from

30 kWh a day divided by 6 peak sun hours would suggest a smaller array than the one here. The gap is the derate factor of 0.77 — the PVWatts default that accounts for heat, soiling, wiring losses, imperfect orientation and inverter efficiency.

Skip it and you build an array that falls a quarter short of its nameplate, every day, forever.

That works out to 17 panels and about 349 ft² of roof.

Peak sun hours is not daylight hours

6 peak sun hours does not mean 6 hours of sunshine. It is the equivalent number of hours at full rated irradiance — a long hazy day and a short bright one can give the same figure. It is also an annual average: December in most of the US delivers 40–60% of it.

Battery and inverter

The 37.5 kWh battery covers one day with nothing coming in, at 80% depth of discharge. Off-grid with no generator, plan on three to five days instead.

The inverter at 5.67 kW is deliberately smaller than the array. A 1.2:1 DC-to-AC ratio clips a handful of peak hours a year and costs far less than the inverter that would catch them.

Notes

  • 6 peak sun hours is a daily average across the year. Winter output in most of the US runs 40–60% of the annual average, so a system sized to the average will fall short in December unless you oversize or stay grid-tied.
  • Roof area here is panel area only. Add 15–25% for row spacing, fire setbacks and obstructions — and check that the roof plane actually faces within about 45° of south.
  • One day of battery backup covers an evening and a night. Off-grid systems with no generator normally carry three to five days.

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