What gauge wire do you need for a 50 amp circuit? The short answer, the full NEC 310.16 table at all three termination ratings, and how far you can run it before voltage drop forces a bigger conductor.
A 50 amp circuit needs 6 AWG copper, or 4 AWG aluminium, sized from the 60°C column of NEC 310.16.
At 240 V that copper conductor stays inside a 3% voltage drop for roughly 146 ft one-way. Past that, go up a size.
A 50 A breaker may serve a continuous load of no more than 40 A (NEC 210.19/215.2, the 125% rule).
Terminations on breakers, lugs and equipment carry a temperature rating. You size the conductor from the lowest-rated component in the circuit, so the same 50 A load can call for different sizes.
| Termination rating | Copper | Aluminium |
|---|---|---|
| 60°C (applies here) | 6 AWG (55 A) | 4 AWG (55 A) |
| 75°C | 8 AWG (50 A) | 6 AWG (50 A) |
| 90°C | 8 AWG (55 A) | 6 AWG (55 A) |
NEC 110.14(C)(1) requires the 60°C column for circuits rated 100 A or less unless every termination is listed for a higher temperature, and the 75°C column above 100 A. Most modern breakers and panels are listed 75°C, which is why the 75°C size is often what actually gets installed. The 90°C column is normally used only as a starting point for derating, not for the final size.
Ampacity sets the minimum size; voltage drop sets the maximum distance. These are one-way run lengths at 50 A on a 240 V single-phase circuit, holding drop to 3%.
| Copper size | Max one-way run at 3% | Max one-way run at 5% |
|---|---|---|
| 6 AWG | 146 ft | 244 ft |
| 4 AWG | 231 ft | 385 ft |
| 3 AWG | 288 ft | 480 ft |
| 2 AWG | 381 ft | 635 ft |
3% is the NEC's recommended limit for a branch circuit and 5% for feeder plus branch combined. Both are recommendations in informational notes, not enforceable rules, but most inspectors and specifiers treat 3% as the working target.
Typical loads at this rating: electric ranges, 50 A RV pedestals, hot tubs and spas, welders, Level 2 EV chargers.
This is the size most often argued about. 8 AWG copper is exactly 50 A at the 75 C column, which leaves no margin; 6 AWG copper is the size most electricians actually pull for a 50 A circuit, and it is required where terminations are rated 60 C.
These figures assume a standard installation with no derating. For your actual length, voltage, conductor material and temperature, run the numbers:
Ampacities are NEC 310.16 reference values for not more than three current-carrying conductors at 30°C ambient. They do not include ambient-temperature or conductor-bundling derating, and local wiring rules take precedence. Verify against the applicable code before installing.
6 AWG copper, or 4 AWG aluminium, sized from the 60°C column of NEC 310.16. Where every termination in the circuit is listed for 75°C, 8 AWG copper is permitted.
Yes, provided the terminations are rated for aluminium (marked AL or CU-AL) and an antioxidant compound is used. Aluminium has lower ampacity for a given size, so you need 4 AWG aluminium in place of 6 AWG copper. It is cheaper and lighter on long feeder runs, which is why services are often aluminium.
About 146 ft one-way on a 240 V single-phase circuit before voltage drop reaches 3%. Beyond that, step up one conductor size for every further increment of length.
40 A. A continuous load is one expected to run for three hours or more, and NEC 210.19 and 215.2 require the circuit to be rated at 125% of it. That is why, for example, EV chargers are always on a breaker well above their charging current.
No. These are base ampacities for not more than three current-carrying conductors at 30°C ambient. If you have more conductors in a raceway, a hot attic, or conduit in direct sun, apply the NEC 310.15 adjustment and correction factors, which will push the required size up.
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