- Panel or array wattage
- 400W
- Peak sun hours per day
- 5h
- Performance ratio
- 0.75
1.500kWh
Open with these values1.500kWh/day
Result: 1.500 kWh/dayA 400 W panel at a site with 5 peak sun hours and a performance ratio of 0.75 makes 1.5 kWh on an average day. Peak sun hours are not daylight hours — they count only sunshine at full strength. Both inputs are local estimates, so treat the result as a planning figure, not a meter reading.
Held fixed: Panel or array wattage 400 W, Peak sun hours per day 5.00 h.
| Performance ratio | Result (kWh) |
|---|---|
| 0.60 | 1.200 |
| 0.70 | 1.400 |
| 0.75Your value | 1.500 |
| 0.80 | 1.600 |
| 0.90 | 1.800 |
1.500kWh
Open with these values0.960kWh
Open with these values21.060kWh
Open with these valueskWh per day = W × peak sun hours × ratio ÷ 1000
| Wattage, sun hours, ratio | Situation | Daily energy |
|---|---|---|
| 1, 1, 1 | Unit check: one watt for one hour | 0.001 |
| 400, 0, 0.75 | No sun at all | 0 |
| 300, 4, 0.8 | Older panel, northern Europe | 0.96 |
| 400, 5, 0.75 | Typical rooftop panel | 1.5 |
| 400, 5, 1 | The same panel with no losses at all | 2 |
| 6000, 4.5, 0.78 | A 6 kWp home array | 21.06 |
Multiply the panel wattage by the peak sun hours and a performance ratio, then divide by 1000. A 400 W panel with 5 peak sun hours and a ratio of 0.75 produces 1.5 kWh per day.
Peak sun hours are the equivalent number of hours per day at which sunlight reaches full strength, 1000 W/m². They are not daylight hours — a long hazy day may still deliver only a few. Typical values run from about 2.5 to 3 in northern climates up to 5 to 6 in sunny regions, and they are a local estimate rather than a constant.
It is a factor between 0 and 1 that absorbs real-world losses: inverter and wiring losses, heat, dust and shading. It is an empirical rule of thumb, not a measured constant — 0.75 is the usual figure for a well-installed rooftop system, while modern solar parks are expected to exceed 0.8. Use a lower value where heat or shading is severe.
Enter the combined wattage of all the panels. Ten 400 W panels make a 4000 W array, so at 5 peak sun hours and a ratio of 0.75 the daily output is 15 kWh. The formula scales directly with total wattage.
Multiply by 365 for a rough annual estimate — 1.5 kWh a day is about 548 kWh a year. Because peak sun hours swing with the season, feed in a year-round average rather than a summer day.
Rated wattage is measured in the lab under full sun at 25 °C. Panels rarely see those conditions all day, and the performance ratio trims the result for heat, dust, shading and losses in the wiring and inverter. That is why a 400 W panel yields far less than 400 Wh in any single hour of normal operation.
Information, not professional advice.
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