Duct Size & CFM Calculator

🌬️ What Size Duct Do You Need for Your Airflow?

Convert CFM into the right round duct diameter and rectangular equivalent, with the correct air velocity for supply trunks, branches, returns and exhaust. Enter CFM directly, or derive it from your AC tonnage or house size — and it adjusts for flexible vs rigid duct.

🔢1. How Do You Want to Enter Airflow?

Enter CFM directly if you know it, or let the calculator derive it from AC tonnage (400 CFM per ton) or from house floor area.

💨2. Airflow

CFM

Range: 50 – 4,000 CFM. A single room register is typically 100–200 CFM.

🧭3. Which Part of the Duct System?

Main trunks run faster (700–900 FPM) because they carry the whole system's air. Branches run slower (400–600 FPM) so air doesn't whistle at the registers.

🔩4. Duct Material

Flexible duct has a ribbed inner liner that creates far more friction than smooth sheet metal, so it must be sized one size larger for the same airflow. Keep flex runs short, pulled taut and free of sharp bends.

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Duct Size
0" round

Duct Size Chart by CFM (Round & Rectangular)

Quick-reference duct sizes for a supply trunk in rigid sheet metal. Branch runs are sized slower (and so slightly larger per CFM); flexible duct needs one size up.

AirflowRound ductRectangularAC size
100 CFM6 inch6×8single register
200 CFM8 inch8×8bedroom branch
400 CFM10 inch12×81 Ton
600 CFM12 inch16×81.5 Ton
800 CFM14 inch22×82 Ton
1,000 CFM15 inch24×82.5 Ton
1,200 CFM16 inch30×8 or 24×103 Ton
1,600 CFM18 inch30×104 Ton
2,000 CFM22 inch30×145 Ton

Based on the velocity method at roughly 800 FPM for trunks. Standard airflow is 400 CFM per ton of cooling. Rectangular equivalents use the ASHRAE equivalent-diameter formula, so they carry slightly more cross-sectional area than the round size they replace.

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How Duct Sizing Works

Duct size comes from two numbers: how much air must pass through it, and how fast you are willing to let that air travel.

1. Work Out the Airflow (CFM)

Residential systems move about 400 CFM per ton of cooling, so a 3-ton system moves roughly 1,200 CFM. Individual rooms typically need 100–200 CFM each. If you don't know your tonnage, size the equipment first with our AC Tonnage Calculator.

2. Choose the Target Velocity (FPM)

This is the part most DIY guides skip. Air moving too fast is noisy; too slow and the duct is needlessly large and expensive. Standard residential targets:

  • Supply trunk: 700–900 FPM
  • Supply branch: 400–600 FPM (keeps registers quiet)
  • Return trunk: 600–800 FPM
  • Return branch: 400–600 FPM
  • Range hood / exhaust: 1,000–1,500 FPM (noise matters less, and higher speed carries grease)

3. Convert to a Duct Size

Duct area = CFM ÷ velocity. Convert that area to a round diameter, then round up to the nearest size that keeps velocity inside the limit. For rectangular duct, the equivalent diameter formula De = 1.30 × (a×b)0.625 ÷ (a+b)0.25 gives the round size a rectangular duct behaves like — a rectangular duct always needs more area than the round duct it replaces, because it has more wall surface creating friction.

4. Add the Flex Duct Penalty

Flexible duct has a ribbed inner liner with far more friction than smooth metal. As a rule, go one size larger (about +1 inch) when using flex, keep runs short, pull them taut, and avoid tight bends — a compressed or sagging flex run can lose more airflow than a whole extra size gains.

Frequently Asked Questions

What size duct do I need for 400 CFM?
For a supply trunk carrying 400 CFM, use a 10 inch round duct (about 733 FPM), or a rectangular equivalent of 12×8. In flexible duct, go up one size to 11–12 inch. 400 CFM is also the standard airflow for a 1-ton system.
What size duct do I need for a 3 ton AC?
A 3-ton system moves about 1,200 CFM (400 CFM per ton), which needs a 16 inch round main trunk, or a rectangular equivalent such as 30×8 or 24×10. Return ducting for the same system runs slower, so it needs to be slightly larger — around 18 inch round.
How many CFM per ton of air conditioning?
The standard design figure is 400 CFM per ton. Some high-efficiency and variable-speed systems run 350–450 CFM per ton, and dry climates sometimes use higher airflow while humid climates use lower to improve dehumidification. Check your equipment's specification sheet.
Can I use flexible duct instead of rigid sheet metal?
Yes, and it is very common for branch runs — but it must be one size larger because its ribbed liner creates far more friction. Keep flex runs short and pulled taut. Main trunks and range-hood exhausts should use smooth rigid metal: trunks carry the most air, and grease-laden hood exhaust must never run through ribbed flex.
What velocity should supply and return ducts be?
In homes, aim for 700–900 FPM in supply trunks, 400–600 FPM in branches, and 600–800 FPM in return trunks. Commercial systems tolerate higher velocities (up to about 1,500 FPM in main ducts). Exceeding these figures is the most common cause of whistling vents and duct noise.
Why are my vents noisy or airflow weak?
Almost always undersized or restricted ductwork. Common culprits: branch ducts too small for their CFM, crushed or sagging flexible duct, too few or undersized return paths, and dirty filters or coils. Return air is the most frequently undersized part of a residential system — check it before blaming the equipment.
Do I need a Manual D calculation?
For a new installation or a full duct replacement, yes. This calculator uses the velocity method for a single run, which is ideal for checking or sizing an individual duct. A full ACCA Manual D design accounts for total equivalent length, every fitting, available static pressure and the blower curve — that is what a permit and a properly balanced system require.

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Last updated: 2026. Reviewed by the Refcon HVAC engineering team using ACCA Manual D and ASHRAE duct-sizing guidance. Planning estimate — confirm with a licensed HVAC contractor. Tell us about an error.

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