TryBuildCalc

Filter Grille Sizing Calculator (300 FPM, Per ACCA Guidance)

Size your filter grille instantly.

Inputs

Outlet Type
CFM

ℹ️From a room-by-room load/airflow calculation — see the HVAC Airflow / Room CFM Calculator if you don't have this yet.

ℹ️A filter grille needs a lower velocity target to offset the filter media's own pressure drop, per ACCA guidance.

ℹ️Sets the free area percentage — check a specific product's spec sheet once you've picked a model.

in

ℹ️Enter this only if your duct boot or framing bay width is fixed, to compute the required length.

in

ℹ️For context only — shows the feeding duct's cross-section next to the register/grille's required area.

Required Gross Face Area

320 sq in

At 300 FPM (Filter Grille (Has a Filter Media Insert)), perforated / egg-crate core (60% free area)

Opening & Velocity

Outlet type: Return Grille

Required airflow: 400 CFM

Grille type: Filter Grille (Has a Filter Media Insert)

Target face velocity: 300 FPM

Free Area & Sizing

Core type: Perforated / Egg-Crate (60%)

Required free area: 192 sq in (1.333 sq ft)

Required gross face area: 320 sq in (2.222 sq ft)

Return Grille SizingCFM ÷ face velocity → free area → gross face areaIllustrative face — bars/louvers reduce free area below the full openingRequired Free Area192 sq inat 300 FPMRequired Gross Face Area320 sq inafter core-type free area %Illustrative — not to scale. Planning estimate only.

Looking for the verification checklist, reference tables, tips, or common mistakes?See the complete Register & Grille Sizing Calculator.

Filter grille sizing at 300 FPM

ACCA recommends sizing return filter grilles to a 300 FPM maximum face velocity — noticeably lower than the 500 FPM target for a non-filter/open return grille — specifically to offset the filter media's own pressure drop.

This page defaults to a 400 CFM filter grille with a perforated/egg-crate core (a common filter grille design) — edit the inputs above to match your actual grille.

Register & Grille Formula: How Is It Determined?

Two calculations run in sequence — required free area from CFM and velocity, then required gross face area accounting for the core type's own free area percentage.

Required Free Area

Required Free Area (sq in) = Required CFM ÷ Target Face Velocity (FPM) × 144

This is the minimum open area actually needed to pass your required airflow at your chosen target velocity. For a supply register, the target comes from your selected Quiet/Standard/Compact preset. For a return grille, it comes from ACCA's published 300 FPM (filter grille) or 500 FPM (non-filter grille) targets — the lower filter-grille target accounts for the filter media's own pressure drop.

Required Gross Face Area

Required Gross Face Area (sq in) = Required Free Area ÷ Core Type Free Area %

Free area is only the portion of a grille or register's visible face that's actually open — the rest is frame, louvers, or bars. This divides the required free area by your selected core type's typical free area percentage (75% standard louvered/bar-type, 60% perforated/egg-crate, 40% small/compact under ~8x8 in) to find the actual face size you need to shop for. Check a specific product's own spec sheet for its exact published free area once you've picked a model.

Required Length at a Fixed Width (Optional)

Required Length (in) = Required Gross Face Area ÷ Fixed Opening Width, rounded up to the next even inch

Only computed when you enter a known, fixed opening width (an existing duct boot or framing bay). Rounding up to the next even inch matches the common increment residential register/grille lengths are actually sold in.

Worked Example

This example walks through your current inputs above, using the same steps as the Formula section.

Input Values Used

InputValue
Outlet typeReturn Grille
Required airflow400 CFM
Grille typeFilter Grille (Has a Filter Media Insert)
Core typePerforated / Egg-Crate

Step-by-Step Calculation

StepCalculationResult
Required free area400 ÷ 300 × 144192 sq in
Required gross face area192 ÷ 60%320 sq in

Therefore, this return grille passing 400 CFM at 300 FPM needs at least 320 sq in of gross face area with a perforated / egg-crate core.

Disclaimer: This calculator provides approximate results for planning and estimation purposes only. Actual requirements may vary based on site conditions, materials, workmanship, and local building regulations. Always consult a qualified engineer, architect, or construction professional before making final decisions.

FAQ

Per ACCA guidance, 300 FPM through a filter grille is meant to produce comparable real-world airflow performance to a 500 FPM non-filter grille, once the filter media's own pressure drop is accounted for.
Perforated or egg-crate designs are common for filter grilles since they provide a flat surface to hold the filter media — these typically run a lower 55-60% free area than a standard louvered grille's 70-75%.