How Many Solar Panels to Run a Refrigerator?

Sizing an array for a single appliance is the clearest way to understand solar, because it strips the question down to one load, one number of hours, and one amount of sunlight. Here is that calculation for a refrigerator, with the assumptions stated so you can change them.

A refrigerator drawing 150 W for 8 hours a day uses 1.20 kWh of electricity. At 4.5 peak sun hours and a 20 percent system derate, that needs about less than one standard 400 W panels, an array of roughly 0.40 kW. Fewer in Arizona, more in Seattle.

Calculate it for your own refrigerator

Change any box. The result updates as you type.

W
hours
USD/kWh
Cost per month
Per hour
Per day
Per year
kWh per day
400 W panels

Planning estimate. The rate box is prefilled with a regional average; the figure on your own bill is the one that matters. Power is draw while running, not while switched on.

The arithmetic, with this appliance in it

Four steps, and none of them are difficult:

  1. Daily energy. 150 W multiplied by 8 hours, divided by 1,000, gives 1.20 kWh per day.
  2. Panel output. A 400 W panel at 4.5 peak sun hours produces 1.8 kWh on paper.
  3. Apply the derate. Inverter conversion, wiring, heat, dust and imperfect orientation take roughly 20 percent, leaving about 1.44 kWh per panel per day.
  4. Divide. 1.20 kWh divided by 1.44 kWh gives less than one panels, rounded up.

Peak sun hours is not the same as daylight hours. It is the number of hours of full-strength sun the day is equivalent to, which is why a 14-hour summer day might only count as five.

Panels needed by panel size

Larger panels mean fewer of them, not less roof area. Output per square metre has barely changed; the modules simply got bigger.

Panels needed for Refrigerator at 4.5 peak sun hours
Panel ratingOutput per panel per dayPanels neededArray size
300 W1.08 kWh20.60 kW
400 W1.44 kWh10.40 kW
450 W1.62 kWh10.45 kW
500 W1.80 kWh10.50 kW
600 W2.16 kWh10.60 kW

How many panels where you live

Location changes this more than any other input. The same refrigerator needs roughly twice the array in the Pacific Northwest that it needs in southern Arizona.

Panels needed by location, using 400 W panels
Peak sun hoursRoughly wherePanels neededArray size
3 hSeattle, Anchorage20.80 kW
3.5 hChicago, Boston20.80 kW
4 hNew York, Portland10.40 kW
4.5 hAtlanta, Kansas City10.40 kW
5 hDallas, Los Angeles10.40 kW
5.5 hPhoenix, Albuquerque10.40 kW
6 hSouthern Arizona, Hawaii10.40 kW

For a figure based on your actual coordinates rather than a regional band, use the location-based solar production calculator.

Panels alone will not run it

A fridge is the classic off-grid load because it runs day and night. Panels cover the daytime cycles and the battery has to carry every night without exception.

Solar produces during the day. If the load runs when the sun is down, that energy has to come out of a battery, and the battery has to be larger than the energy it delivers because you never discharge it fully.

Battery needed to carry refrigerator without sun
AutonomyEnergy requiredUsable battery at 80% depth of dischargeAt 48 V
Overnight only0.67 kWh0.83 kWh17 Ah
One full day1.33 kWh1.67 kWh35 Ah
2 days2.67 kWh3.33 kWh69 Ah
3 days4.00 kWh5.00 kWh104 Ah

Inverter sizing for a refrigerator

Startup surge is brief but real. Most 150 W fridges want a 600 W inverter minimum.
Inverter sizing for refrigerator
Running power150 W
Start-up surge450 W (3x running)
Minimum continuous inverter200 W
Minimum surge capability500 W
Current at 48 V DC3.5 A

Inverters are rated for continuous output and, separately, for a brief surge. An inverter that can run the load but not start it is a common and frustrating way to undersize a system.

Short bursts, small totals

Kitchen appliances tend to draw a lot for a short time, which makes them look alarming on a spec sheet and modest on an energy budget. The panel count is usually small; the inverter requirement is what catches people out.

The practical approach is to run the heavy items in daylight where you can. Cooking at midday on a sunny day costs nothing extra. Cooking at eight in the evening comes out of the battery.

What it costs to run on the grid

For comparison, running the same refrigerator from the grid costs $0.22 a day and $80.77 a year at current average rates. The full breakdown is on our refrigerator running cost page.

Questions people actually ask

How many solar panels does it take to run a refrigerator?
About less than one standard 400 W panels, based on 150 W running for 8 hours a day and 4.5 peak sun hours. In a sunnier location it is fewer; in a cloudier one, more.
How much electricity does a refrigerator use per day?
Roughly 1.20 kWh per day at 150 W for 8 hours. Change either number and the panel count changes with it.
What size inverter do I need for a refrigerator?
Startup surge is brief but real. Most 150 W fridges want a 600 W inverter minimum. The sizing table above gives the continuous and surge figures.
Can I run a refrigerator on solar without a battery?
Only while the sun is producing. A grid-tied system with no battery runs the load during daylight and draws from the grid otherwise. Off-grid, or during an outage, the battery table above is what determines whether it keeps running.

Size the whole system, not one appliance

Costs on this page use a national average residential rate of 18.44¢ per kWh (August 2026, EIA-derived state residential averages). Your own rate is printed on your electricity bill and is the number that actually matters. Every figure here is recalculated from one central rate setting, so these tables move when the national average moves.