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Multi-Zone Mini Split Sizing

Enter the square feet of each room you want to cool, pick your state, and get the BTU/h for each indoor head and the size of the outdoor condenser that feeds them.

An outdoor multi-zone mini split condenser with several line sets.

Multi-zone mini split

C03

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) ·

sq ft

Separate the areas with commas, e.g. 300, 200, 150.

Outdoor unit (condenser) size

10,000BTU

3 heads totalling 13,000 BTU; zones rarely call for full cooling at once, so the condenser can be smaller.

BTU per zone
6,000, 4,000, 3,000
Total of all zones
13,000
Outdoor unit (÷ 1.3 diversity factor)
10,000 BTU
Next condenser size up
24,000 BTU
Indoor heads
3 (many lines start at 9,000 BTU)

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

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Formula

How it works

  • BTU/h per zone = square feet × 20 × zone factor (zone 1 = 1.3 … zone 4 = 1.0 … zones 7 and 8 = 0.8)
  • Total = sum of all zones
  • Condenser ≈ total ÷ 1.3

Rooms rarely all need full cooling at the same moment: the sunny living room peaks in the afternoon, the bedrooms at night. That's why manufacturers let the indoor heads add up to about 1.3 times the condenser's rating. The calculator divides by 1.3 to get the smallest condenser that can serve your heads; the model you buy is the next size up in that brand's line.

An outdoor multi-zone mini split condenser with several line sets.

Sources: 20 BTU/sq ft base: ENERGY STAR room AC sizing. Diversity factor 1.2–1.3: manufacturer multi-zone combination tables. Climate zone: IECC 2021 (DOE/PNNL).

Worked example

A worked example

Arizona is climate zone 2, so each square foot needs 24 BTU/h. The four rooms need 9,600, 6,000, 6,000, 4,800 BTU/h, a total of 26,400. Divided by the 1.3 diversity factor, the condenser needs about 20,308 BTU, so you'd look at the next condenser size up. The system has 4 indoor heads.

Open this example in the calculator

Reference

By state, at the default inputs

Outdoor unit (condenser) size, with this page's default inputs and each state's reference prices (EIA reference 2025–26, data as of 2026-09-26).

US average10,000 BTU18.4¢/kWh
Alabama11,000 BTU15.5¢/kWh
Alaska8,000 BTU25.0¢/kWh
Arizona12,000 BTU15.0¢/kWh
Arkansas11,000 BTU13.0¢/kWh
California11,000 BTU32.0¢/kWh
Colorado9,000 BTU16.0¢/kWh
Connecticut9,000 BTU30.0¢/kWh
Delaware10,000 BTU17.0¢/kWh
District of Columbia10,000 BTU19.0¢/kWh
Florida12,000 BTU15.0¢/kWh
Georgia11,000 BTU14.5¢/kWh
Hawaii13,000 BTU42.0¢/kWh
Idaho9,000 BTU12.0¢/kWh
Illinois9,000 BTU17.0¢/kWh
Indiana9,000 BTU15.5¢/kWh
Iowa9,000 BTU13.5¢/kWh
Kansas10,000 BTU14.5¢/kWh
Kentucky10,000 BTU13.0¢/kWh
Louisiana12,000 BTU12.5¢/kWh
Maine8,500 BTU26.0¢/kWh
Maryland10,000 BTU19.0¢/kWh
Massachusetts9,000 BTU29.0¢/kWh
Michigan9,000 BTU19.5¢/kWh
Minnesota8,500 BTU15.5¢/kWh
Mississippi11,000 BTU13.5¢/kWh
Missouri10,000 BTU13.0¢/kWh
Montana8,500 BTU13.0¢/kWh
Nebraska9,000 BTU12.0¢/kWh
Nevada11,000 BTU15.0¢/kWh
New Hampshire8,500 BTU27.0¢/kWh
New Jersey10,000 BTU22.0¢/kWh
New Mexico10,000 BTU15.0¢/kWh
New York9,000 BTU25.0¢/kWh
North Carolina11,000 BTU14.5¢/kWh
North Dakota8,000 BTU11.5¢/kWh
Ohio9,000 BTU16.5¢/kWh
Oklahoma11,000 BTU13.0¢/kWh
Oregon10,000 BTU14.5¢/kWh
Pennsylvania9,000 BTU18.5¢/kWh
Rhode Island9,000 BTU29.0¢/kWh
South Carolina11,000 BTU15.0¢/kWh
South Dakota8,500 BTU13.0¢/kWh
Tennessee10,000 BTU13.5¢/kWh
Texas12,000 BTU15.5¢/kWh
Utah9,000 BTU12.0¢/kWh
Vermont8,500 BTU22.0¢/kWh
Virginia10,000 BTU15.5¢/kWh
Washington10,000 BTU12.0¢/kWh
West Virginia9,000 BTU15.5¢/kWh
Wisconsin8,500 BTU17.5¢/kWh
Wyoming8,500 BTU12.5¢/kWh

Questions

FAQ

Can I run 4 heads on a 36,000 BTU condenser?

With a 1.3 diversity factor, a 36,000 BTU condenser can carry heads that add up to about 46,800 BTU. Four 9,000 BTU heads (36,000 total) or three 12,000 plus one 9,000 (45,000) fit; four 12,000 heads (48,000) don't. Check the combination table for your exact model.

Multi-zone or several single-zone mini splits?

One condenser means one unit outside, but if it fails, every room loses cooling. Separate single-zone systems each need their own outdoor unit and none of them shares capacity. The per-room sizing math is the same either way; get installed quotes for both layouts to compare the price.

Why is the condenser smaller than the sum of the heads?

Because the rooms don't peak together. In the US-average default (300, 200 and 150 sq ft) the heads need 13,000 BTU/h in total, but the condenser only needs about 10,000 BTU.

What's the smallest indoor head?

Many multi-zone lines start their wall heads at 9,000 BTU, so a small room often gets a head larger than it needs. In the default example, the 150 sq ft room needs 3,000 BTU/h. Check the smallest head your brand offers.

How big a system for a 4-bedroom layout?

Four rooms of 400, 300, 250 and 200 sq ft at the US average need 8,000, 6,000, 5,000 and 4,000 BTU/h: 23,000 BTU/h in total, and a condenser of about 17,692 BTU before you round up.

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