Wire Size Calculator

This free wire size calculator answers the most-asked question in residential wiring — what gauge wire for how many amps — the way the code answers it, not the way a chart on a forum does. It starts from NEC Table 310.16, applies the ambient-temperature and bundling corrections, caps the result by the termination rules that catch most DIYers (NM-B is limited to the 60°C column no matter what its insulation says), enforces the small-conductor breaker limits of 240.4(D), and sizes continuous loads like EV chargers at 125%.

Appliance presets cover the circuits homeowners actually search for — dryer, range, water heater, hot tub, well pump, EV charger, detached-garage subpanel — with the typical circuit values and the gotchas each one carries. High-variance equipment (mini-splits, welders, saunas) deliberately requires your nameplate value instead of guessing, because on those circuits the nameplate is the code.

Enter your one-way run length and the calculator also checks voltage drop — the thing that actually governs wire size on long runs to wells, hot tubs, and outbuildings — flagged honestly as the NEC Informational Note recommendation it is. Sizing reference only: motor, HVAC, and welder circuits carry additional rules, and every result should be verified with a licensed electrician and your local AHJ. Free, no signup.

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Wire Size Calculator

What gauge wire do you need? Pick your appliance or enter the load, and get the minimum AWG for NM-B cable or THHN in conduit — with NEC derating, the 125% continuous rule, and an optional voltage-drop check for long runs. Free, no signup.

What are you wiring?

Conductor & installation

Long runs to wells, detached garages, and hot tubs are usually governed by voltage drop, not ampacity — enter the run length to check both at once.

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How to Use This Calculator

  1. Pick your appliance or project from the preset list — it fills the typical circuit amps and voltage, and flags the gotchas (GFCI, bonding, nameplate rules) for that circuit. Or choose Custom and enter your own load.
  2. Mark the load continuous if it runs 3+ hours at a time (EV charging is the big one) — the calculator applies the 125% rule.
  3. Choose the wiring method — NM-B (Romex) for typical interior circuits, or THHN/THWN-2 in conduit — and the conductor material.
  4. Set the ambient temperature band (hot attics derate wire) and how many current-carrying conductors are bundled together.
  5. Optionally enter the one-way run length to add a voltage-drop check — long runs usually govern the size.
  6. Click Calculate for the minimum AWG, the ampacity math behind it, the size for both wiring methods, and the typical breaker.

Why the Same Load Needs Different Wire in Different Places

Wire sizing is not one lookup — it is a chain of rules, and each link can change the answer. The same 30 A load needs 10 AWG copper NM-B in a basement, but run that cable through a 110°F attic bundled with eight other conductors and the corrections (0.87 ambient × 0.70 bundling) cut its usable capacity below the load, pushing you to 8 AWG. NM-B itself is a special case: its conductors carry 90°C insulation, but NEC 334.80 caps its usable ampacity at the 60°C column — which is why 12 AWG Romex is a 20 A wire even though the same conductor in conduit reads 25 A in the 75°C column. And 240.4(D) adds the final trap: small conductors are breaker-limited (14 AWG to 15 A, 12 to 20 A, 10 to 30 A) no matter what the table says. This calculator runs the whole chain in order, shows which rule governed your result, and tells you when a rule it does not apply — motor, HVAC, or welder provisions — means the nameplate and an electrician have the final say.

Frequently Asked Questions

What size wire do I need for 50 amps?

For a typical 50 A / 240 V circuit: 6 AWG copper NM-B cable (55 A at the 60°C column per NEC 334.80), or 8 AWG copper THHN in conduit with 75°C terminations (50 A at the 75°C column) — assuming normal ambient temperature and no bundling. Long runs change the answer: past roughly 75–100 feet, voltage drop usually pushes the wire a size larger. This calculator runs the full NEC chain — Table 310.16, derating, termination rules, and an optional voltage-drop check — for your exact conditions.

Why is 12 AWG Romex only good for 20 amps when the chart says 25?

Because two different rules cap it. NEC 334.80 requires NM-B cable ampacity to be taken from the 60°C column — 20 A for 12 AWG — even though its conductors carry 90°C insulation. And even for the same conductor in conduit, NEC 240.4(D) limits 12 AWG copper to a 20 A overcurrent device regardless of the 25 A shown in the 75°C column. The 25 A value is real, but it's only usable as headroom for derating — not for a bigger breaker. This is the single most common wire-sizing misunderstanding, and the calculator applies both rules automatically.

What's the difference between wire size and ampacity?

They're inverse questions. Ampacity asks: how many amps can THIS wire carry safely (gauge in, amps out)? Wire size asks: what gauge do I need for THIS load (amps in, gauge out)? This calculator answers the second question. It works by computing the ampacity of each size in order — Table 310.16 value, corrected for ambient temperature and bundling, capped by the termination rules — and returning the smallest wire whose final ampacity covers your required load.

When does a load count as continuous (the 125% rule)?

A continuous load is one expected to run at maximum current for 3 hours or more — and the circuit must be sized at 125% of it (NEC 210.19; 625.41 for EV charging). EV chargers are the classic residential case: a 48 A EVSE needs 48 × 1.25 = 60 A of circuit capacity, which is why it takes a 60 A breaker with 6 AWG copper in conduit (or 4 AWG NM-B). Most ordinary appliances — dryers, ranges, water heaters — are sized as non-continuous at their circuit rating.

Why does my hot attic change the wire size?

Table 310.16 ampacities assume a 30°C (86°F) ambient. NEC Table 310.15(B)(1) corrects for hotter locations: a 105–113°F attic multiplies the 90°C-column value by 0.87, and bundling more than three current-carrying conductors cuts it again (×0.80 for 4–6, ×0.70 for 7–9 per Table 310.15(C)(1)). Stack both on a marginal circuit and the wire that worked in the basement fails in the attic — the calculator's ambient and bundling inputs exist precisely for this.

Why won't this calculator size my mini-split or welder circuit?

Because on those circuits, the nameplate legally outranks the generic table. HVAC equipment is sized from its nameplate MCA (Minimum Circuit Ampacity) with a breaker up to the nameplate MOP — and under NEC Article 440 that breaker may legitimately exceed the wire's ampacity to handle compressor starting current. Welders get duty-cycle allowances under Article 630, and motors get starting allowances under Article 430. The presets for these loads require your nameplate value, and the result is still the conductor floor — verify the full circuit with a licensed electrician.