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SEER2 Savings Calculator: 14 vs 16 vs 18

Enter the system's tons, the SEER2 you have (or the base model) and the SEER2 you're considering, and see the kWh and dollars each uses per year in your state, and an estimated payback on the price difference.

A high-efficiency central air condenser on a concrete pad.

SEER2 savings

C04

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 · climate zone 4 (data as of 2026-09-26) ·

tons
$

Estimated savings per year

$91.85/ year

Payback on the upgrade in US average: 16.3 years (1100 full-load cooling hours).

kWh per year at SEER2 14
2,829
kWh per year at SEER2 17
2,329
Savings per year
$91.85
Payback on the upgrade
16.3 years
Full-load cooling hours (climate zone)
1100

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

  • kWh per year = tons × 12,000 ÷ SEER2 × full-load cooling hours ÷ 1,000
  • Savings per year = (kWh at the lower SEER2 − kWh at the higher SEER2) × your rate
  • Payback = extra cost ÷ savings per year

Full-load cooling hours are the hours a system would run at 100% to deliver a year's cooling in your climate zone: zone 1 = 2,400, zone 2 = 2,000, zone 3 = 1,500, zone 4 = 1,100, zone 5 = 800, zone 6 = 600, zone 7 = 400, zone 8 = 300. They're what decide whether higher SEER2 pays: the same upgrade saves far more in Florida than in Michigan.

SEER2 replaced SEER in 2023. The test (M1) uses higher fan pressure, so a unit's SEER2 is about 0.95 × its old SEER rating. Compare SEER2 to SEER2.

This is an estimate: it holds your rate flat and doesn't count repairs, the unit's life or rebates. Edit the rate, the extra cost and the SEER2 values to test your own assumptions.

A high-efficiency central air condenser on a concrete pad.

Sources: full-load cooling hours by climate zone: ENERGY STAR central AC savings calculator / ACCA. SEER2 definition: AHRI 210/240-2023 (M1 test procedure). Electricity rate: EIA Electric Power Monthly table 5.6.A. Climate zone: IECC 2021 (DOE/PNNL).

Worked example

A worked example

Florida is climate zone 2, with 2000 full-load cooling hours. A 4-ton system at SEER2 13 uses 48,000 ÷ 13 × 2,000 ÷ 1,000 = 7,385 kWh a year; at SEER2 18 it uses 5,333 kWh. At Florida's 15.0¢/kWh that difference is worth an estimated $307.69 a year, so a $2,500 price gap takes about 8.1 years to pay back.

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Reference

By state, at the default inputs

Estimated savings per year, with this page's default inputs and each state's reference prices (EIA reference 2025–26, data as of 2026-09-26).

US average$91.8518.4¢/kWh
Alabama$105.5015.5¢/kWh
Alaska$45.3825.0¢/kWh
Arizona$136.1315.0¢/kWh
Arkansas$88.4913.0¢/kWh
California$217.8232.0¢/kWh
Colorado$58.0816.0¢/kWh
Connecticut$108.9130.0¢/kWh
Delaware$84.8617.0¢/kWh
District of Columbia$94.8419.0¢/kWh
Florida$136.1315.0¢/kWh
Georgia$98.7014.5¢/kWh
Hawaii$457.4142.0¢/kWh
Idaho$43.5612.0¢/kWh
Illinois$61.7117.0¢/kWh
Indiana$56.2715.5¢/kWh
Iowa$49.0113.5¢/kWh
Kansas$72.3814.5¢/kWh
Kentucky$64.8913.0¢/kWh
Louisiana$113.4512.5¢/kWh
Maine$70.7926.0¢/kWh
Maryland$94.8419.0¢/kWh
Massachusetts$105.2829.0¢/kWh
Michigan$70.7919.5¢/kWh
Minnesota$42.2015.5¢/kWh
Mississippi$91.8913.5¢/kWh
Missouri$64.8913.0¢/kWh
Montana$35.3913.0¢/kWh
Nebraska$43.5612.0¢/kWh
Nevada$102.1015.0¢/kWh
New Hampshire$73.5127.0¢/kWh
New Jersey$109.8222.0¢/kWh
New Mexico$74.8715.0¢/kWh
New York$90.7625.0¢/kWh
North Carolina$98.7014.5¢/kWh
North Dakota$20.8711.5¢/kWh
Ohio$59.9016.5¢/kWh
Oklahoma$88.4913.0¢/kWh
Oregon$72.3814.5¢/kWh
Pennsylvania$67.1618.5¢/kWh
Rhode Island$105.2829.0¢/kWh
South Carolina$102.1015.0¢/kWh
South Dakota$35.3913.0¢/kWh
Tennessee$67.3913.5¢/kWh
Texas$140.6715.5¢/kWh
Utah$43.5612.0¢/kWh
Vermont$59.9022.0¢/kWh
Virginia$77.3715.5¢/kWh
Washington$59.9012.0¢/kWh
West Virginia$56.2715.5¢/kWh
Wisconsin$47.6517.5¢/kWh
Wyoming$34.0312.5¢/kWh

Questions

FAQ

Is SEER2 16 worth it over 14?

It depends on your cooling hours and rate. For a 3-ton system and a $1,500 price gap, SEER2 16 saves an estimated $65.06 a year at the US average (payback about 23.1 years) and $96.43 a year in Arizona or Florida (about 15.6 years). Go from 14 to 17 in Texas and it's $140.67 a year, about 10.7 years.

Where does a high-SEER2 unit pay back fastest?

Where cooling hours and the rate are both high. Zones 1 and 2 (Hawaii, the Gulf Coast, Florida, Arizona) run 2,000–2,400 full-load hours. In Michigan (zone 5, 800 hours) a 2.5-ton upgrade from 14 to 16 saves about $41.79 a year, and $1,200 extra takes about 28.7 years to recover.

What's the difference between SEER and SEER2?

SEER2 is measured with the M1 test procedure that took effect in 2023, with more realistic duct pressure. The same unit rates about 5% lower in SEER2 than it did in SEER, so a SEER 16 is roughly a SEER2 15.2.

What's the minimum SEER2 in 2026?

For split central air conditioners, the federal minimum is 14.3 SEER2 in the South and Southwest regions and 13.4 SEER2 in the North. A new system at the minimum is the "current" side of most comparisons.

Does a higher SEER2 lower my bill if I keep my old unit?

No. Savings only happen when the new unit replaces the old one. Enter your old unit's rating (SEER × 0.95 if it only lists SEER) as the current SEER2 to see what replacing it would change.

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