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What Size Solar Array for 3,000Wh a Day at 5 Peak Sun Hours?

Researched from published standards and manufacturer specifications. Updated .

Quick answer

Replacing 3,000 watt-hours a day at 5 peak sun hours needs about 800 watts of solar once a 0.75 system derate is applied, which is roughly 8 panels of 100W. That array produces about 66.7A at 12 volts, so it needs a 100A charge controller.

Array size comes from three numbers: how much energy you use in a day, how many peak sun hours your location gets, and how much of the panel's nameplate output you actually realize. This page fixes the first two at 3,000Wh and 5 hours.

Peak sun hours is not hours of daylight. It is the equivalent number of hours at full rated sun, and a nine hour winter day in a cloudy region may contain under two of them. Check your own figure on the peak sun hours by region chart, then run your numbers through the solar array calculator.

How many watts of solar for 3,000Wh a day?

The derate factor covers panel temperature, soiling, wiring loss, controller efficiency and imperfect aim. An RV roof is flat and cannot be tilted toward the sun, which is why the conservative end of the range is the honest planning figure.

Array size for 3,000 watt-hours a day at 5 peak sun hours
System derateConditionsArray size needed100W panels
0.8Cool, clean, well aimed750 W8
0.75Typical flat RV roof800 W8
0.65Hot or partly shaded923 W10

Convention Source: Common derate for real-world array output against nameplate rating.

How does this change with the seasons?

The same array produces very different amounts across the year, because peak sun hours move. This is the same 3,000Wh daily load against a range of sun hours.

Array needed for 3,000Wh a day across peak sun hour figures
Peak sun hoursArray needed100W panelsTypical case
1.5 h2,667 W27Northern winter
2 h2,000 W20Northern winter
3 h1,333 W14Winter, mid latitudes
4 h1,000 W10Spring and fall
5 h800 W8Summer, most regions
6 h667 W7Summer, most regions
7 h571 W6Desert summer

Published standard Source: Peak sun hours derived from published NREL insolation data. Array sizes use a 0.75 derate throughout. The seasonal labels are indicative and vary considerably by location.

What charge controller does this array need?

A 800W array on a 12 volt bank produces about 66.7A at nameplate output. Controllers get sized above that because panels produce more than their rating in cold, bright conditions, which puts the buy figure at 100A.

At this array size MPPT is clearly worth the money, because the harvest gain applies to every watt of a large array. See MPPT vs PWM and size it with the charge controller calculator.

What battery bank does this array support?

An array only matters alongside somewhere to put the energy. 3,000Wh a day is about 250Ah a day at 12 volts, which needs roughly 625Ah of LiFePO4 for two days of autonomy. That pairing is what keeps a cloudy day from ending the trip.

Solar kits around 800W

Frequently asked questions

How many solar panels do I need for 3,000 watt-hours a day?
About 8 panels of 100 watts, or 800 watts total, assuming 5 peak sun hours and a 0.75 system derate. Fewer, larger panels install faster but are harder to fit around roof vents and air conditioners, so the panel count usually comes down to available roof area rather than watts.
What is the difference between peak sun hours and daylight hours?
Peak sun hours is the equivalent number of hours of full rated sunlight, not the number of hours the sun is up. A location can have nine hours of winter daylight and under two peak sun hours, because low sun angle, short days and cloud all reduce the energy reaching the panel. Sizing an array on daylight hours overestimates output badly.
Why is the array bigger than the daily load divided by sun hours?
Because panels do not deliver their nameplate rating in service. Heat reduces output, dust and pollen reduce it, wiring and the charge controller lose a little, and a flat RV roof is rarely aimed at the sun. The derate factor accounts for all of that. At 0.75, a 800 watt array behaves like about 600 watts.
Can I add panels to this array later?
Usually yes, but the charge controller sets the ceiling. A 100A controller on a 12 volt bank carries roughly 1,200 watts of panel, so check that headroom before adding. Mixing panels of different wattage or age on one controller also reduces output, so keep an added string on its own controller where that applies.

Wiring safety. Never exceed a conductor's rated ampacity, and always fuse a circuit at or below what the wire can carry, because the fuse protects the wire rather than the appliance. Fuse every positive conductor as close to the battery as practical. Use proper crimped lugs and heat shrink rather than twisted joints, support cable so it cannot chafe through on a frame edge, and keep the battery compartment ventilated. Permanent AC wiring is work for a qualified RV technician or a licensed electrician.