≈ 10 kWh/day assumed for a medium home - a typical off-grid figure from survey data, not a measurement. Enter your exact usage if you know it.
To find your coordinates: in Google Maps, right-click (or long-press) your spot and copy the numbers that appear, e.g. 48.14, 11.58. In Apple Maps, press and hold to drop a pin.
Currently using: Boulder, CO
Tip: about 12 panels would cover all 12 months here.
Tip: that needs about 42.4 kWh of batteries (38.2 kWh usable) at your usage and climate.
How we calculated this - every assumption
- Sizing basis: we check your system against all 12 months, never a yearly average. Your tightest month is Dec - generation comes closest to your load there (2% headroom).
- Usage: estimated from a medium home (3-5 people) ≈ 10 kWh/day - a typical off-grid figure from survey data, not a measurement = 10 kWh/day (months counted as 30.44 days, years as 365).
- Seasonal shape: off - a gentle seasonal curve: about 1.15× your average in January, 0.85× in July.
- Solar: you choose the array with the slider. Monthly production = array × that month's sun hours × 0.8 (20% is lost to inverter, wiring, dust, and charging losses). Standard 400 W panels. The tip under the slider shows the smallest array that would cover all 12 months.
- Battery: you choose the days of reserve with the slider (3 days). The bank then needs ≈ 42.4 kWh: your daily usage × days ÷ (90% usable for LiFePO4 (lithium) × 0.79 cold factor for a -9 °C design minimum at Boulder). Usable portion: 38.2 kWh, shown as 9 × 48 V / 100 Ah (4.8 kWh) modules. Industry rule of thumb is 3+ days.
- Not included: costs, charge controller / inverter sizing, and appliance-by-appliance audits. Those come in the full tool.