Wire Size Calculator — Ampacity and Voltage Drop Together

Size a conductor against both requirements at once: what will not overheat, and what still delivers usable voltage at the far end.

Conductor sizing calculator

Code reference. Ampacities are from NEC 310.16 for not more than three current-carrying conductors in a raceway at 30°C ambient. Continuous loads are sized at 125% of the load current per NEC 210.19(A)(1). Small conductors have hard overcurrent ceilings under NEC 240.4(D): 15 A for 14 AWG, 20 A for 12 AWG and 30 A for 10 AWG, regardless of the ampacity table value.

Two questions, one answer

Sizing a conductor requires answering two separate questions, and the larger of the two answers wins.

This calculator does both and reports which one drove the final size. In short residential runs ampacity almost always governs. In long runs, and in low-voltage circuits, voltage drop almost always governs — often by a surprisingly large margin.

How continuous load changes the number

A continuous load is one expected to run for three hours or more. For those, NEC 210.19(A)(1) requires the conductor to be sized at 125% of the load current, and NEC 210.20(A) applies the same factor to the overcurrent device. A 16 A continuous load is therefore designed as 20 A.

Design current = load current × 1.25

This is why an EV charger drawing 32 A is installed on a 40 A circuit with 8 AWG copper, not on a 32 A circuit. It also explains why a water heater or a commercial coffee machine frequently needs larger cable than a first estimate suggests.

Ampacity versus overcurrent limits

ConductorAmpacity at 75°CMaximum breakerGoverning rule
14 AWG copper20 A15 ANEC 240.4(D)
12 AWG copper25 A20 ANEC 240.4(D)
10 AWG copper35 A30 ANEC 240.4(D)
8 AWG copper50 A50 AAmpacity table
6 AWG copper65 A60 AAmpacity table

Note the third column: for the three smallest sizes the breaker is limited below the ampacity. A 14 AWG conductor in 90°C insulation has an ampacity of 25 A, but it may still not be protected above 15 A. Inspectors check this constantly.

Three worked examples

1. A 50 A range 60 ft from the panel

A 240 V single-phase circuit carrying 40 A continuous, 60 ft one way. Design current is 40 × 1.25 = 50 A, so 8 AWG copper (50 A at 75°C) satisfies ampacity. The voltage drop on 8 AWG over 60 ft is about 1.9 V, or 0.8% — comfortably inside 3%. Answer: 8 AWG with a 50 A breaker.

2. A 30 A circuit feeding a subpanel 200 ft away

The load is 24 A and the distance is 200 ft. Ampacity alone asks for 10 AWG. But 10 AWG over 200 ft drops about 10.4 V on a 240 V circuit, or 4.3% — outside the 3% target. The calculator moves the answer to 6 AWG, which brings the drop to about 1.6%. The cable cost roughly doubles, and that is the correct outcome.

3. A 480 V three-phase motor feeder

60 A on 480 V three-phase, 300 ft. Three-phase uses the square root of 3 factor, so the drop is lower than a single-phase circuit of the same length and current. 4 AWG gives about 2.6% drop with an ampacity of 85 A at 75°C, so a 70 A breaker works. Here ampacity governs, because the higher voltage keeps the percentage drop small.

What this calculator does not include

Treat the result as the starting point for a design, not as a substitute for the code book.

How this calculator is verified

The ampacity values reproduce NEC 310.16 for copper and aluminium conductors in the 60°C, 75°C and 90°C columns. Voltage drop uses the same circular-mil and resistivity constants as the voltage drop calculator. Both sets of numbers are cross-checked against published conductor tables.

Ampacity tables and worked examples last verified: 19 September 2026.

FAQ

How do I size a wire?

Size it twice. First check the ampacity table for the conductor that carries the design current, which is 125% of the load for continuous loads. Then check voltage drop over the actual run length. The larger of the two conductor sizes is the answer.

What size wire do I need for a 50 amp circuit?

6 AWG copper is the usual choice at 65 A ampacity, though 8 AWG at 50 A is acceptable where the terminations are rated 75 degrees Celsius. For long runs, check voltage drop: beyond about 100 feet at 240 V, 6 AWG is the safer answer.

Is 12 AWG good for 20 amps?

Yes. 12 AWG copper has an ampacity of 25 A at 75 degrees Celsius and is limited to a 20 A breaker by NEC 240.4(D). It is the standard conductor for 20 A residential circuits. For runs over about 75 feet, voltage drop may still argue for 10 AWG.

Can I use a larger breaker with larger wire?

Only if the wire is protected at or below its ampacity, and only if the equipment and terminations are rated for the higher current. Breakers also change the fault current characteristics of the circuit, so the interrupting rating has to suit the available fault current.

What is the difference between 60, 75 and 90 degree ampacity columns?

They are the temperature ratings of the conductor insulation. Higher temperature insulation can carry more current for the same copper. In practice you are usually limited by the termination: most breakers and lugs are rated 75 degrees Celsius, so the 75 degree column applies even if the wire is rated 90 degrees.

How does conduit derating work?

More than three current-carrying conductors in a single raceway requires an adjustment factor from NEC Table 310.15(C)(1). Four to six conductors is 80% of the table ampacity, seven to nine is 70%, and so on down. Above nine conductors the reduction becomes severe and parallel runs are usually better.

Does aluminium wire need a bigger size than copper?

For the same ampacity, yes — typically about two trade sizes larger. Aluminium also needs terminations and connectors listed for aluminium, and its oxide layer must be handled correctly with an antioxidant compound on larger sizes.

Why does a long run need bigger wire than the ampacity table says?

Because ampacity only addresses overheating. Voltage drop grows with length, so a long run can be thermally safe yet still deliver too little voltage. An electric motor that starts at reduced voltage draws more current and runs hotter, which shortens its life.

What size wire for a 100 amp subpanel?

3 AWG copper or 1 AWG aluminium at 75 degrees Celsius for the ampacity. For runs beyond roughly 100 feet, voltage drop usually pushes the answer to 1 AWG copper or 2/0 aluminium. Enter the actual distance to check.

Do I need a neutral conductor?

It depends on the loads. A pure 240 V load such as a water heater needs no neutral. Any circuit with 120 V loads, or with electronics or controls, requires a grounded conductor. This calculator sizes the current-carrying conductors only.

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