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Furnace Size Calculator (BTU by Climate Zone)

Enter your square footage, insulation and the furnace's AFUE, pick your state, and get the output your house needs and the input rating to look for on the furnace.

A high-efficiency gas furnace with vent pipes in a basement.

Furnace size

B07

Scenario A

Sets the electricity rate. Pick US average if you're not sure.

$/kWh

From EIA for US average. Use the rate on your bill if you know it.

Rate used: 18.4¢/kWh · US average · EIA reference 2025–26 · design temp 10 °F · climate zone 4 (data as of 2026-09-26) ·

sq ft
°F

Furnace size to shop for

60,000BTU/h input

4.0 tons of heating at 10 °F outside (US average 99% design temperature). Confirm with a Manual J load calculation before you buy.

Design temperature difference
60 °F (indoor 70 °F − US average design 10 °F)
Heat loss at design temperature
42,000 BTU/h
Heating capacity with 15% margin
48,300 BTU/h
Size in tons
4.0 tons
Furnace input rating (÷ AFUE)
50,842 BTU/h
Furnace size to shop for (rounded up)
60,000 BTU/h

Estimate. Formula and sources are under “How it works”. Change any input; the result updates as you type.

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2026 note: The federal 25C and 25D tax credits ended for installations after Dec 31, 2025. Our numbers use 2026 rules. State rebates, HEAR/HOMES programs and utility programs may still apply.

Formula

How it works

  • Design temperature difference = indoor temperature − your state's 99% winter design temperature
  • Heat loss (BTU/h) = square feet × insulation factor × temperature difference (good 0.25, average 0.35, poor 0.50 BTU/h·°F per sq ft)
  • Output needed = heat loss × 1.15 (15% margin; ACCA Manual S limits heating oversizing to 140%)
  • Furnace input = output needed ÷ AFUE

Furnaces are sold by input rating, the gas they burn per hour. The heat they deliver is input × AFUE. So an 80% furnace needs a bigger input number than a 96% furnace for the same house. Residential furnaces come in steps of about 20,000 BTU (40,000, 60,000, 80,000, 100,000, 120,000); pick the first size at or above the input rating shown.

A high-efficiency gas furnace with vent pipes in a basement.

Sources: ASHRAE Handbook of Fundamentals and ACCA Manual J table 1A (99% design temperatures, each state's most populous city); ACCA Manual J (simplified envelope factors); ACCA Manual S (oversizing limit).

Worked example

A worked example

With Texas's 25 °F design temperature, the difference is 45 °F (indoor 70 − design 25). A well-insulated 2,500 sq ft house loses 28,125 BTU/h. With the 15% margin it needs 32,344 BTU/h of output (2.7 ton). A 95% furnace needs an input rating of at least 34,046 BTU/h, so the smallest common size, 40,000 BTU, covers it.

Open this example in the calculator

Reference

By state, at the default inputs

Furnace size to shop for, with this page's default inputs and each state's reference prices (EIA reference 2025–26, data as of 2026-09-26).

US average60,000 BTU/h input18.4¢/kWh
Alabama60,000 BTU/h input15.5¢/kWh
Alaska80,000 BTU/h input25.0¢/kWh
Arizona40,000 BTU/h input15.0¢/kWh
Arkansas60,000 BTU/h input13.0¢/kWh
California40,000 BTU/h input32.0¢/kWh
Colorado60,000 BTU/h input16.0¢/kWh
Connecticut60,000 BTU/h input30.0¢/kWh
Delaware60,000 BTU/h input17.0¢/kWh
District of Columbia60,000 BTU/h input19.0¢/kWh
Florida40,000 BTU/h input15.0¢/kWh
Georgia60,000 BTU/h input14.5¢/kWh
Hawaii40,000 BTU/h input42.0¢/kWh
Idaho60,000 BTU/h input12.0¢/kWh
Illinois80,000 BTU/h input17.0¢/kWh
Indiana60,000 BTU/h input15.5¢/kWh
Iowa80,000 BTU/h input13.5¢/kWh
Kansas60,000 BTU/h input14.5¢/kWh
Kentucky60,000 BTU/h input13.0¢/kWh
Louisiana40,000 BTU/h input12.5¢/kWh
Maine80,000 BTU/h input26.0¢/kWh
Maryland60,000 BTU/h input19.0¢/kWh
Massachusetts60,000 BTU/h input29.0¢/kWh
Michigan60,000 BTU/h input19.5¢/kWh
Minnesota80,000 BTU/h input15.5¢/kWh
Mississippi60,000 BTU/h input13.5¢/kWh
Missouri60,000 BTU/h input13.0¢/kWh
Montana80,000 BTU/h input13.0¢/kWh
Nebraska80,000 BTU/h input12.0¢/kWh
Nevada60,000 BTU/h input15.0¢/kWh
New Hampshire80,000 BTU/h input27.0¢/kWh
New Jersey60,000 BTU/h input22.0¢/kWh
New Mexico60,000 BTU/h input15.0¢/kWh
New York60,000 BTU/h input25.0¢/kWh
North Carolina60,000 BTU/h input14.5¢/kWh
North Dakota80,000 BTU/h input11.5¢/kWh
Ohio60,000 BTU/h input16.5¢/kWh
Oklahoma60,000 BTU/h input13.0¢/kWh
Oregon60,000 BTU/h input14.5¢/kWh
Pennsylvania60,000 BTU/h input18.5¢/kWh
Rhode Island60,000 BTU/h input29.0¢/kWh
South Carolina60,000 BTU/h input15.0¢/kWh
South Dakota80,000 BTU/h input13.0¢/kWh
Tennessee60,000 BTU/h input13.5¢/kWh
Texas40,000 BTU/h input15.5¢/kWh
Utah60,000 BTU/h input12.0¢/kWh
Vermont80,000 BTU/h input22.0¢/kWh
Virginia60,000 BTU/h input15.5¢/kWh
Washington60,000 BTU/h input12.0¢/kWh
West Virginia60,000 BTU/h input15.5¢/kWh
Wisconsin80,000 BTU/h input17.5¢/kWh
Wyoming80,000 BTU/h input12.5¢/kWh

Questions

FAQ

What size furnace do I need for 1,500 sq ft?

At the US-average design temperature (10 °F) with average insulation: heat loss 31,500 BTU/h, output with margin 36,225 BTU/h. A 95% furnace needs an input of 38,132 BTU/h, so a 40,000 BTU furnace. An 80% furnace needs 45,281 BTU/h, so a 60,000 BTU furnace.

80% vs 96% AFUE: does the size change?

The heat your house needs doesn't change; the input rating does. Input = output ÷ AFUE, so an 80% furnace needs about 20% more input than a 96% one for the same output.

Is a bigger furnace better?

No. An oversized furnace heats in short bursts, cycles on and off more, and can make rooms uneven. The calculator adds a 15% margin to the design heat loss, not more.

Why does my old furnace have a much bigger rating?

Many older furnaces were sized with rules of thumb per square foot, before the house got new windows or attic insulation. If yours is far above the number here, ask the installer to run Manual J before you replace it like-for-like.

What design temperature does the calculator use for my state?

The 99% heating design temperature of the state's most populous city: for example −5 °F in Illinois, 25 °F in Texas, −15 °F in Minnesota. If you live far from that city, your installer's Manual J will use your county's value.

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