Wire size scenario

What size wire for 30 amps?

For a 30 amps copper circuit at 240 V single-phase, NEC 310.16 ampacity needs 10 AWG at 75 °C. Over 100 feet, voltage drop bumps the recommendation to 8 AWG (about 1.91% drop). Adjust the run below.

Phase
Termination temperature rating

Recommended wire size

Enter a load, length, and voltage to size the conductor.

How the size was chosen
Ampacity needs
Voltage drop needs
Recommended (larger of the two)
Ampacity of recommended
Voltage drop of recommended
Governing constraint
Estimate only — not a substitute for a licensed electrician. Ampacity from NEC 310.16 (30 °C ambient, ≤3 current-carrying conductors); voltage drop from NEC Ch.9 Table 8. Does not model temperature/conductor-count derating, continuous loads (125%), conduit fill, or full terminal ratings. Verify against the current NEC and your local code / AHJ.

30 amps: the short answer

At 240 V single-phase over 100 feet, a 30 amps copper load needs 8 AWG (about 1.91% drop). Ampacity alone would allow copper 10 AWG, but over 100 feet voltage drop pushes the recommendation up to 8 AWG to stay within the 3% target (about 1.91%).

Before you pull wire

This recommendation covers ampacity and voltage drop only, for copper at 75 °C. It does not apply ambient-temperature or conductor-count derating, the 125% factor for continuous loads, conduit fill, or terminal ratings — any of which can push the size up. Aluminum of the same load typically goes up one or two sizes. Always confirm with a licensed electrician and your local code (AHJ).

Ampacity per NEC 310.16; voltage drop per NEC Ch.9 Table 8 (75 °C copper).

How to use a 30 amps wire-size result

Thirty-amp circuits appear with dryers, water heaters, RV connections, and other dedicated 240 V equipment. Those examples can require different conductor counts, neutral arrangements, disconnects, and equipment instructions even when the current number is the same.

For a 100-foot run, compare the ampacity minimum with the voltage-drop recommendation and then price the complete cable or raceway assembly. A neutral, equipment grounding conductor, wet-location rating, or burial method can matter more to the final material list than the phase conductors alone.

Code focus: NEC 240.4(D) ordinarily caps 10 AWG copper at 30 A overcurrent protection. Voltage-drop upsizing does not change the required overcurrent protection for the connected equipment.

Why run length can change the answer

Copper sizing comparison for 30 amps at 240 V single-phase and 75 °C terminations
One-way length Ampacity minimum Recommended size Governing check
25 ft 10 AWG 10 AWG ampacity
50 ft 10 AWG 10 AWG ampacity
100 ft 10 AWG 8 AWG voltage drop
150 ft 10 AWG 8 AWG voltage drop

Checks before selecting material

  • Confirm whether the equipment requires both 120 V and 240 V loads and therefore a neutral.
  • Use the equipment nameplate or instructions instead of choosing wire from the appliance category alone.
  • Check burial, wet-location, cable, and conduit requirements for outdoor or RV installations.

FAQ

What size wire do I need for 30 amps?

For 30 amps of copper at 240 V, NEC 310.16 ampacity at 75 °C needs 10 AWG. Over a 100 feet run, voltage drop calls for 8 AWG, so the recommended size is 8 AWG — the larger of the two. Aluminum, derating, continuous load, and local code may change this; confirm with a licensed electrician.

What size wire for 30 amps on a short run?

On a short run where voltage drop isn't a factor, 30 amps of copper needs 10 AWG at 75 °C by ampacity alone (NEC 310.16, with the NEC 240.4(D) small-conductor breaker cap applied). Longer runs need a larger size for voltage drop — this page assumes 100 feet.

Does this size for ampacity or voltage drop?

Both. The conductor must carry the current (ampacity, NEC Table 310.16) and keep voltage drop within target (NEC Chapter 9 Table 8). The recommended size is the larger of the two. It still doesn't replace ambient or conductor-count derating, the 125% continuous-load factor, conduit fill, or terminal-rating checks — verify with your local code (AHJ).

Sources & verification

Source links and page assumptions reviewed .

Estimate only, based on NEC 310.16 ampacity and NEC Chapter 9 Table 8 voltage drop. Not a substitute for a licensed electrician or your local code (AHJ). It does not fully model ambient or conductor-count derating, the 125% continuous-load factor, conduit fill, or terminal ratings. Verify against the current NEC and local code before wiring. Based on NEC 310.16 and NEC Ch.9 Table 8.