Solar Panel Calculator

Quick answer

A typical US home using 900 kWh a month needs about 21 solar panels, an 8.4 kW system, to offset its electricity. At 3 dollars per watt with the 30 percent federal tax credit that is around 17,600 dollars net and pays back in roughly 10 years. This calculator sizes your system, cost and payback.

Updated 2026-09-09By Shakeel MuzaffarReviewed by Prof. Dr. Khalil Mudassar, PhD
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Home and Energy
From your utility bill. The average US home uses about 900 kWh a month.
Average daily peak sun hours for your area, usually 3 to 6.
The rating of one panel. Modern panels are about 350 to 450 watts.
$
What you pay per kWh. The US average is about 0.17 dollars.
$
Typical installed price is 2.50 to 3.50 dollars per watt before incentives.
Panels needed
--
System size--
Net cost (after 30% credit)--
Payback period--

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How to Use the Solar Panel Calculator

  1. Enter your monthly electricity use in kWh from your utility bill.
  2. Enter the average peak sun hours per day for your area.
  3. Adjust panel wattage, electricity rate and installed cost if you have quotes.
  4. Read the number of panels, system size, net cost and payback period.
ResultWhat it means
Panels neededHow many panels offset your electricity use.
System sizeThe total array size in kilowatts.
Net costInstalled cost after the 30 percent federal tax credit.
Payback periodYears for energy savings to cover the net cost.

What Is a Solar Panel Calculator?

A solar panel calculator estimates how big a home solar system you need and whether it is worth it. It works backwards from your electricity use and local sun hours to a system size, then a panel count, cost and payback period. It turns a rough idea into concrete numbers before you gather installer quotes.

The result is a planning estimate. Your real system depends on roof space and shading, your exact tariff, net metering rules and the quotes you receive, so treat it as a starting point.

How Does the Solar Panel Calculation Work?

Formula: System kW = (Monthly kWh / 30.44) / (Sun hours x 0.80)
  1. Convert monthly use to a daily figure by dividing by 30.44.
  2. Divide by peak sun hours and an 80 percent efficiency factor to size the system.
  3. Divide the system watts by your panel wattage and round up for the panel count.
  4. Multiply size by cost per watt, take 70 percent for the tax credit, then divide by yearly savings for payback.

The 80 percent factor covers real-world losses from wiring, heat, dust and inverter efficiency, so the array is sized a little larger than the raw numbers suggest.

Solar Panel Example

A home using 900 kWh a month with 4.5 peak sun hours needs about a 8.4 kW system, or 21 panels at 400 watts. At 3 dollars per watt that is 25,200 dollars, or about 17,600 dollars after the 30 percent federal credit. Producing roughly 11,000 kWh a year at 0.17 dollars saves about 1,836 dollars annually, so it pays back in around 10 years and keeps saving for the panels 25-year life.

What Affects How Many Panels You Need

Your Electricity Use

More kWh means more panels. Cutting waste first, with efficient appliances and habits, can shrink the system you need and its cost.

Peak Sun Hours

Sunnier regions need fewer panels for the same output. Peak sun hours range from about 3 in the north to 6 in the southwest.

Panel Wattage and Shading

Higher-wattage panels cut the count, while shade, roof angle and direction reduce output and can raise the number you need.

Buying vs Financing vs Leasing

How you pay changes the payback and who gets the tax credit.

OptionUpfrontBest for
Cash purchaseFull cost, keeps the creditFastest payback and most savings
Solar loanLittle or noneOwning with spread-out payments
Lease or PPANone, installer keeps the creditNo upfront cost, smaller savings

Owning, by cash or loan, almost always beats leasing over the systems life because you keep the credit and full savings.

When to Use a Solar Panel Calculator

Before Getting Quotes

Size the system yourself so you can judge whether an installers proposal is reasonable.

Comparing Homes or Regions

See how sun hours and rates change the payback in different places.

Deciding If Solar Is Worth It

A payback well inside the 25-year panel life usually means solar saves money over time.

Common Solar Sizing Mistakes

1. Ignoring Efficiency Losses

Sizing on raw sun hours without a derate factor undersizes the system, so it never fully offsets your bill.

2. Forgetting the Tax Credit

The 30 percent federal credit dramatically shortens payback, so always use the net cost.

3. Overlooking Roof Space and Shade

The panels must physically fit an unshaded roof, which can cap the system regardless of your use.

4. Using the Wrong Electricity Rate

Savings depend on your real tariff and net metering, not a national average.

Accuracy and Limitations

The calculator uses standard sizing and payback maths with an 80 percent efficiency factor. It is a planning estimate, not an installer design.

What it estimates well

  • A sensible system size and panel count
  • Net cost after the federal credit
  • A realistic payback period

What it does not model

  • Roof space, shading and orientation
  • Net metering rules and time-of-use rates
  • State and utility incentives, and battery storage

How We Calculate the Result

Method
Size the system from daily use, sun hours and an 80% efficiency factor, then cost and payback.
Inputs used
Monthly kWh, peak sun hours, panel wattage, electricity rate and installed cost per watt.
Assumptions
80% system efficiency, 30% federal tax credit, savings capped at your annual use.
Rounding
Panels rounded up to a whole number; size and payback to one decimal.
Edge cases
Zero usage or sun hours returns no result; blank optional fields use sensible defaults.
Update note
Check the current federal and local incentive rates, which change over time.
Sources
See Sources below.
Last reviewed
2026-09-21.

Frequently Asked Questions

How many solar panels do I need?

It depends on your electricity use and sun hours. A typical US home using 900 kWh a month needs about 20 to 22 panels, roughly an 8 kW system.

How do I calculate the number of solar panels?

Divide your daily kWh use by your peak sun hours and an 80 percent efficiency factor to get the system size, then divide by your panel wattage and round up.

What is the payback period for solar panels?

For most US homes the payback is about 8 to 12 years after the 30 percent federal tax credit, then the panels keep saving for their 25-year life.

Does the 30 percent tax credit still apply?

The federal residential solar tax credit has been 30 percent, which sharply cuts payback. Rates change, so confirm the current credit before you buy.

How many peak sun hours does my area get?

Most of the US gets 3 to 6 peak sun hours a day, higher in the southwest and lower in the north. Local solar maps give an exact figure.

Is solar worth it?

If the payback is well within the panels 25-year life, solar usually saves money overall, on top of energy independence and lower bills.

How much roof space do I need?

Each panel is about 18 square feet, so a 21-panel system needs roughly 380 square feet of unshaded, well-angled roof.

Do solar panels work on cloudy days?

Yes, but at reduced output. Peak sun hours already average this out across the year, which is why they are used for sizing.

Is my data saved?

No. The calculator runs entirely in your browser and nothing you enter is stored or sent anywhere.

Sources

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General planning estimate only, not an engineering design or financial advice. Real systems depend on roof, shading, tariffs, net metering and quotes. Confirm incentives and figures with a certified installer. Spotted an error? Let us know.

Author

shakeel-Muzaffar
Founder & Editor-in-Chief at  ~ Web ~  More Posts

Shakeel Muzaffar is the Founder and Editor-in-Chief of MultiCalculators.com, bringing over 15 years of experience in digital publishing, product strategy, and online tool development. He leads the platform's editorial vision, ensuring every calculator meets strict standards for accuracy, usability, and real-world value. Shakeel personally oversees content quality, formula verification workflows, and the platform's commitment to publishing tools that are genuinely useful for students, professionals, and everyday users worldwide.