CfmDuctCFM per room to duct diameter, with static pressure counted.

What size duct for 300 CFM on a rigid main trunk?

300 CFM — rigid main trunk
9″ round
679 fpm through a 9″ duct · about 8″ × 8″ if it has to be rectangular
300 CFM — rigid main trunk679 fpmActual velocity800 fpmTarget velocity
Round ducttheoretical 8.3″ rounded up to a size that exists9″
Actual velocitytarget for a rigid main trunk is 800 fpm679fpm
Target velocitysheet metal trunk out of the air handler800fpm
Rectangular equivalentsame area at 8″ deep — the dimension a joist bay usually limits8″ × 8″
Cross-section0.442ft²
Noise riskbelow the threshold where duct noise becomes noticeableNormal

Notes

  • **9″ is the smallest stock size that carries 300 CFM at 800 fpm.** The arithmetic gives 8.3″; ducts come in whole inches, so the real answer rounds up and the real velocity drops to 679 fpm. Rounding *down* to save a size is the most common way a system ends up noisy.
  • **Velocity is a trade, not a target to minimise.** Slower air means bigger duct, more sheet metal and more ceiling given up. Faster air means smaller duct and a system you can hear from the sofa. At 679 fpm this run sits in the quiet band.
  • **Flex is not rigid with a different label.** The corrugated inner wall raises friction loss substantially over smooth metal of the same diameter, and flex that is not pulled tight — the normal condition in a real attic — is worse again. If this run ends up in flex, size it as flex, not as metal.
  • **The duct is half the answer; total static pressure is the other half.** Every elbow, boot and takeoff adds equivalent length, and a system can have every duct correctly sized and still fail because the total run is too long for the blower. Size the ducts here, then measure static pressure at the air handler.
  • Rectangular equivalents are matched on area at 8″ deep. Flatter ducts of the same area carry less air than round: the more the shape departs from a circle, the more wall there is per unit of flow, and friction follows wall.

300 CFM on a rigid main trunk

9″, running at 679 fpm. About 8″ × 8″ if the run has to be rectangular.

Where the number comes from

Area equals airflow divided by velocity, and diameter follows from area. No manufacturer table involved — every step is arithmetic you can redo.

The target velocity for a rigid main trunk is 800 fpm. Ducts come in whole inches, so the real answer rounds up and the real velocity lands at 679.

Velocity is a trade, not a target

Slower air means bigger duct, more sheet metal, more ceiling given up. Faster air means smaller duct and a system you can hear from the sofa.

Above about 900 fpm people notice. Rounding down a size to save money is the most common way a system ends up noisy.

Flex is not rigid with a different label

The corrugated inner wall raises friction loss substantially over smooth metal of the same diameter — and flex that is not pulled tight, which is the normal condition in a real attic, is worse again.

Size flex as flex.

The duct is half the answer

Every elbow, boot and takeoff adds equivalent length. A system can have every duct sized correctly and still fail because the total run is too long for the blower.

Size the ducts here, then measure total external static pressure at the air handler. That measurement is the one that tells the truth.

Nearby sizes