TryBuildCalc

Duplex Receptacle Box Fill Calculator (NEC 314.16)

Check a receptacle box's fill.

Inputs

ℹ️Standard NEC Table 314.16(A) metal box sizes. Nonmetallic boxes and any box not in the table must be marked by the manufacturer with their actual capacity — use Custom for those.

Conductors

Conductor 1

Clamps & Fittings

Internal Cable Clamp(s) Present?
Fixture Stud Present?
Hickey Present?

Device/Equipment Straps

A strap/yoke holding a switch, receptacle, or other device — a duplex receptacle or a 2-gang switch on one strap still counts as ONE strap, not two. Each allowance is based on the largest conductor actually connected to that specific strap, which can be smaller than the box's overall largest conductor.

Strap Group 1

ℹ️Not the box's overall largest conductor — only the largest conductor actually connected to the device(s) on this specific strap.

Equipment Grounding Conductors

ℹ️Total equipment grounding/bonding conductors entering the box. Up to 4 share one volume allowance; each one beyond 4 adds only a 1/4 allowance (NEC 314.16(B)(5), 2020+).

This box does NOT fit your fill:

13.5 of 12.5 cu in (108%)

Over capacity by 1 cu in — select a larger box or reduce the fill

Volume Allowance Breakdown

Box: 3" x 2" x 2-1/2" Device (12.5 cu in)

Conductor fill: 6.75 cu in (3× 12 AWG)

Device/equipment strap fill: 4.5 cu in (1× strap @ 12 AWG, each strap × double allowance based on the conductor connected to it)

Equipment grounding conductor fill: 2.25 cu in (2× 12 AWG, 1 allowance)

Total required volume: 13.5 cu in

Assumptions Used

NEC Table 314.16(A) (standard box volumes), NEC Table 314.16(B) and 314.16(B)(1)-(5) (box fill calculation rules, 2020+ EGC quarter-allowance rule). Clamp and support-fitting fill use the largest conductor present anywhere in the box (314.16(B)(2)/(3)); device/equipment strap fill instead uses the largest conductor actually connected to each specific strap (314.16(B)(4)), entered separately per strap group above. This is a reference estimate — confirm against the code edition adopted in your jurisdiction and a licensed electrician before final installation.

Box Fill108%Over CapacityRequired volume vs. box capacity, per NEC 314.16Diagram simplified for clarity (not to scale)

Looking for the verification checklist, reference tables, tips, or common mistakes?See the complete Electrical Box Fill Calculator.

Duplex receptacle box fill

A duplex receptacle on a standard device box is one of the most common residential box fill checks — typically a feed-through hot and neutral plus a pigtail to the receptacle, with an equipment grounding conductor.

This page is pre-set to a common 3x2x2-1/2 device box with 3x 12 AWG conductors and one duplex receptacle — edit the inputs above to match your actual box and wiring.

  • A duplex receptacle (two receptacles on one strap) still only counts as ONE device-strap allowance, not two.
  • Include the pigtail conductor from the feed-through wire to the receptacle itself if one is used — it originates and terminates within the box in a way that may or may not need separate counting depending on the exact wiring method.
  • Larger device boxes (3x2x3-1/2") give more headroom if a GFCI or other bulkier device is used instead of a standard receptacle.

Box Fill Formula: How Is It Determined?

Four separate volume allowances, summed and compared against the box's actual capacity.

Step 1 — Conductor Fill (NEC 314.16(B)(1))

For each conductor size present: Volume += Count × Table 314.16(B) allowance for that size

Each conductor that originates outside the box and terminates or is spliced within it counts once, at its own size's allowance — a conductor that both originates and terminates inside the box (never leaving it) is not counted.

Step 2 — Clamp & Support Fitting Fill (NEC 314.16(B)(2)-(3))

Internal clamp(s) present: Volume += 1 × allowance for the largest conductor anywhere in the box

Fixture stud present: Volume += 1 × allowance for the largest conductor anywhere in the box

Hickey present: Volume += 1 × allowance for the largest conductor anywhere in the box

These three allowances are based on the single largest conductor present anywhere in the box (including the equipment grounding conductor, if it happens to be the largest) — a fixture stud and a hickey each get their own allowance if both are present, but multiple studs alone still only count once.

Step 3 — Device/Equipment Strap Fill (NEC 314.16(B)(4))

For each strap group: Volume += Straps × 2 × allowance for the largest conductor CONNECTED TO THAT STRAP

This is a genuinely different basis than Step 2 — 314.16(B)(4) sizes each strap's allowance from the largest conductor actually connected to the device(s) on that specific yoke, not the box's overall largest conductor. A box with a large pass-through conductor that never connects to any device should size its device-strap fill from the smaller, actually-connected conductor instead.

Step 4 — Equipment Grounding Conductor Fill (NEC 314.16(B)(5), 2020+)

Up to 4 EGCs: Volume += 1 × allowance for the largest EGC

Each EGC beyond 4: Volume += 0.25 × allowance for the largest EGC

Total Required Volume = Step 1 + Step 2 + Step 3 + Step 4. The box fits if this total does not exceed its actual (or marked) cubic-inch capacity.

Worked Example

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

Input Values Used

InputValueWhy it is used
Box type3" x 2" x 2-1/2" DeviceSets the available cubic-inch capacity
Conductors3× 12 AWGEach sized at its own Table 314.16(B) allowance

Step 1 — Conductor Fill (NEC 314.16(B)(1))

CalculationResult
3 × 12 AWG conductor(s) × 2.25 cu in6.75 cu in
Conductor fill subtotal6.75 cu in

Step 2 — Clamp & Support Fitting Fill (NEC 314.16(B)(2)-(3))

CalculationResult
No internal clamps, fixture stud, or hickey present — no allowance needed
Clamp + fitting fill subtotal0 cu in

Step 3 — Device/Equipment Strap Fill (NEC 314.16(B)(4))

CalculationResult
1 strap × 2 × largest conductor CONNECTED TO THAT STRAP (12 AWG, 2.25 cu in)4.5 cu in
Device/equipment strap fill subtotal4.5 cu in

Step 4 — Equipment Grounding Conductor Fill (NEC 314.16(B)(5), 2020+)

CalculationResult
2 × 12 AWG EGC — up to 4 share 1 allowance = 1 allowance × 2.25 cu in2.25 cu in
Equipment grounding conductor fill subtotal2.25 cu in

Total Required Volume

StepVolume (cu in)
Step 1 — Conductor fill6.75
Step 2 — Clamp + fitting fill0
Step 3 — Device/equipment strap fill4.5
Step 4 — Equipment grounding conductor fill2.25
Total required volume vs. box capacity13.5 of 12.5 cu in (108%)

Therefore, this box requires 13.5 cu in against its 12.5 cu in capacity (108% fill) — it does NOT fit; select a larger box or reduce the fill.

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

The box fill math itself is the same — GFCI devices are still counted as one device-strap allowance. The practical difference is that a GFCI device is physically bulkier, so a box that's technically large enough by the fill calculation may still feel cramped; sizing up is common practice for GFCI receptacles.
The calculation doesn't change based on circuit type — count the actual conductors, clamps, fittings, device strap, and EGCs physically present in that specific box, regardless of which circuit(s) they belong to.