Box Fill Calculator

Count box fill the way NEC 314.16 does — conductors, devices, clamps, fittings and grounds — and get the minimum volume in cubic inches. Built for Phoenix work, where the wire-type grounding conductor counts in every box.

Cables entering the box

CableQty

Each cable becomes its insulated conductors plus one equipment grounding conductor of the size that cable carries. THHN / THWN-2 / XHHW-2 rows are single conductors in a raceway — the quantity is the conductor count, and no ground is added for them.

Or count conductors directly by size — adds to the cables above (any insulation: THHN, THWN-2, XHHW-2… 314.16 sizes by AWG only)

4 AWG and larger are not sized by 314.16 — the table stops at 6 AWG. Use the 314.28 pull-box rules for those.

Count each conductor that comes in from outside and lands or is spliced here once; one that passes through unspliced once (twice if it is looped with 12 in. or more of slack); a pigtail that never leaves the box zero. Do not count the cables’ grounds here — they are handled below.

Devices, clamps & fittings

Equipment grounding conductors — 314.16(B)(5)

The insulated green run to an isolated-ground receptacle is an additional set under 314.16(B)(5) — it takes its own full allowance. Enter it here, not in the count above.

The box

Worked calculation — copy into your notes

How it’s calculated. Every allowance comes from NEC 314.16(B), using the volumes in Table 314.16(B)(1): 18 AWG = 1.50, 16 = 1.75, 14 = 2.00, 12 = 2.25, 10 = 2.50, 8 = 3.00, 6 = 5.00 in³. The table ends at 6 AWG; 4 AWG and larger are sized by 314.28, not by this tool — the pull-box guide covers those.

Cables. A 12/2 w/g is two insulated 12 AWG conductors plus a bare 12 AWG ground; a 14/3 is three 14s plus a 14 ground. Each cable row expands that way, so two 12/2 cables become four counted conductors and two grounds. The ground size follows the cable as built — 14/x, 12/x and 10/x NM-B carry a ground of the same size, while 8/x and 6/x NM-B carry a 10 AWG ground; Type MC follows the same pattern except 6/x MC, which usually carries an 8. Check the print legend and override the ground size if yours differs. Conductors counted directly in the second block simply add to what the cables became.

Counting conductors — 314.16(B)(1). A conductor that comes in from outside and terminates or is spliced inside counts one. A conductor that passes through unspliced counts one — but if it is looped or coiled with at least 12 in. of unbroken conductor (twice the 300.14 free length) it counts two. A conductor no part of which leaves the box (a pigtail) counts zero. The cables’ grounds are never counted as conductors; they get their own allowance below.

Devices, clamps and fittings. Each device yoke counts the largest conductor connected to that yoke (314.16(B)(4)) — not the largest in the box — and a device on a yoke or strap wider than 2 in. takes that double allowance for each gang it occupies, so enter the extra gangs those wide devices take (a 2-gang timer is one device plus one extra gang, 4×). Internal cable clamps add the largest conductor in the box, once, however many clamps there are (314.16(B)(2)); MC and EMT connectors that clamp outside the box add nothing. A luminaire stud and a hickey each add the largest conductor (314.16(B)(3)), one allowance per type.

Grounds — 314.16(B)(5). All equipment grounding conductors and equipment bonding jumpers together count one allowance at the size of the largest, for up to four; every one beyond four adds another ¼ allowance. The count defaults to one per cable and the size to the largest the cables carry; both can be overridden. If you count conductors by hand with no cable rows, Auto has nothing to read — pick the ground size yourself (the tool flags it), or choose None when the raceway is the ground. An isolated ground — the insulated green run to an isolated-ground receptacle under 250.146(D) — is an additional set, and 314.16(B)(5) gives that set its own full allowance at the largest conductor in it. Enter it in the isolated-ground field, not in the count above: folding it into the first group as a ¼ under-counts. Beyond four in that set the tool adds the same ¼ per conductor, the safe reading of the text.

The box — 314.16(A). The list is the complete 2023 Table 314.16(A), grouped the way the table groups it, each with its minimum volume. A box that is not in the table — every nonmetallic box, and any metal box of 100 in³ or less that the table does not list — must carry a marked volume (314.16(A)(2)), and that marking governs: type it in the volume field. “Other box — by inside dimensions” multiplies L × W × D for a box with no marking in front of you; use inside dimensions, because outside dimensions overstate the interior, and treat the result as a check, not a listing. Plaster rings, extension rings and domed covers add their volume when they are marked with it (or are made from a listed box size) — enter that marking in the ring field; an unmarked mud ring adds nothing.

What the result tells you. Required volume against the box (plus ring). When it does not fit, the flag names the shortfall in cubic inches and the two legal outs: more volume (a deeper box in the same family, or a marked ring or extension) or fewer conductors entering the box. “Smallest box that fits” is the smallest Table 314.16(A) row that holds the required volume; when you picked a box, the smallest in that family is shown too. This is an estimate — confirm against the box listing and the full design.

Worked example. The page loads with a duplex receptacle fed by one 12/2 NM-B and feeding another downstream: two cables become four 12 AWG conductors (4 × 2.25 = 9.00), the yoke counts twice the 12 landed on it (4.50), the box’s internal NM clamps count once (2.25), and the two 12 AWG grounds together count once (2.25) — 18.00 in³. A 4×1½ square (21.0 in³) passes with 3.00 to spare; a 3×2×3½ device box (18.0) is exactly full and passes; a 3×2×2¾ (14.0) is over. Add a third cable — a 12/3 NM-B bringing a second circuit through — and the count becomes seven conductors (15.75) plus the yoke (4.50), the clamps (2.25) and three grounds still at one allowance (2.25) = 24.75 in³: the 4×1½ square is now 3.75 short, and the tool names the smallest square that fits (a 4-11/16×1¼ at 25.5) — or a 4×2⅛ square (30.3), the usual answer off the truck. A deeper box is cheap; a failed rough-in inspection is not.

Section numbers follow the 2023 NEC; the edition adopted by your jurisdiction governs.

Need it engineered and stamped?

Wiring a commercial fit-out or tenant improvement? Our Phoenix commercial electrical team handles design-build from rough-in to energization.

Request a Bid

See our commercial electrical services →

Keep Going

Read the field guide

Box fill is the last check before the cover goes on. The pull-box guide covers the larger enclosures that 314.28 governs; the outlet and MC-cable guides walk through the counts on a real device box.

The grounding conductor changes the count in Phoenix

NEC 314.16(B)(5) gives all the equipment grounding conductors in a box a single volume allowance based on the largest one. In Phoenix, Glendale and unincorporated Maricopa County that allowance is never zero on commercial work, because those jurisdictions amend 250.118(4) so that EMT alone does not serve as the EGC — a wire-type grounding conductor is pulled into every raceway and lands in every box. A set drawn to the national book with metal raceway as the ground will undercount every box on the job.

Run the fill with the ground included. On a device box that is already tight, the grounding allowance plus the device yoke is what tips a standard box into a deeper one or an extension ring — cheap to fix at the desk, expensive to fix after rough-in inspection.

Which code edition applies

Phoenix, Mesa, Chandler, Glendale and Buckeye are on the 2023 NEC; Scottsdale is on the 2020; unincorporated Maricopa County is still on the 2017. For Gilbert, Peoria and Tempe we confirm the adopted edition with the jurisdiction before design starts. The 314.16 volume allowances are stable across those editions; it is the local amendment that changes the count.

Phoenix and Glendale also keep NM cable out of commercial buildings under an amendment to 334.10, so commercial boxes there are on raceway. Pricing device-heavy commercial work — a tenant improvement, for example? The form at the bottom of that page gets it priced.

Frequently asked questions

Do grounding conductors count toward box fill in Phoenix?

Yes. NEC 314.16(B)(5) gives all equipment grounding conductors in a box a single volume allowance based on the largest one. Phoenix, Glendale and unincorporated Maricopa County require a wire-type grounding conductor in the raceway rather than relying on EMT alone, so that allowance applies to every commercial box in those jurisdictions.

Why does my box fail fill on a Phoenix job when it passed elsewhere?

Most often the wire-type grounding conductor. A design that counted metal raceway as the ground has no grounding allowance in the box; the Phoenix amendment adds one. Add the ground, and a box that was at the limit goes over it.

Which NEC edition does the box fill calculator follow?

The 314.16 volume allowances have not changed across the editions in use around the Valley, so the arithmetic is the same whether the job is under the 2017, 2020 or 2023 NEC. The local amendments are what change the conductor count.

Ready to price your Phoenix project?

Send us the plans, the scope, or just the problem. We will tell you what it takes. Call (602) 396-5216 or request a bid online.

Request a Bid (602) 396-5216