What size wire for 60 amps at 100 feet?
Short answer: For a 60 amp load 100 feet away (one way) at 240 V, use 6 AWG copper or 4 AWG aluminum in conduit with 75 °C terminations, which keeps voltage drop at 2.5% and 2.5%. In NM-B (Romex) cable it is 4 AWG copper. The breaker stays 60 A; distance does not force a larger size.
60 amps at 100 feet: wire size by type
| Wire type | Size by ampacity | Size for 100 ft (≤3% drop) | Voltage drop |
|---|---|---|---|
| Copper THHN/THWN-2 in conduit, 75 °C | 6 AWG | 6 AWG | 2.46% |
| Aluminum XHHW-2 in conduit, 75 °C | 4 AWG | 4 AWG | 2.54% |
| Copper NM-B (Romex) cable, 60 °C | 4 AWG | 4 AWG | 1.54% |
| Aluminum SER / NM-B cable, 60 °C | 3 AWG | 3 AWG | 2.02% |
At 100 ft, voltage drop stays under 3% with the ampacity size, so distance does not force a bigger wire. NEC 250.122(B) then requires the equipment ground to be increased in proportion: start from 10 AWG copper for a 60 A breaker.
Voltage drop of each gauge over 100 ft
| Wire | Volts lost at 60 A | Drop at 60 A | Drop at 48 A (80%) |
|---|---|---|---|
| 6 AWG copper | 5.89 V | 2.46% | 1.96% |
| 4 AWG copper | 3.70 V | 1.54% | 1.23% |
| 3 AWG copper | 2.94 V | 1.23% | 0.98% |
| 2 AWG copper | 2.33 V | 0.97% | 0.78% |
| 1 AWG copper | 1.85 V | 0.77% | 0.62% |
voltage drop = 2 × length × resistance per 1,000 ft × amps ÷ 1,000
= 2 × 100 × R(6 AWG) × 60 ÷ 1,000 = 5.89 V
percent = 5.89 ÷ 240 × 100 = 2.46%
If the real load is the 80% continuous maximum (48 A, as with an EV charger on a 60 A breaker), copper in conduit can be 6 AWG. 3% is the NEC's recommendation for a branch circuit (Informational Note to 210.19), not a hard rule, but motors, compressors and chargers run better with it.
Same 60 A, other distances
50 ft · 75 ft · 150 ft · 200 ft. Minimum sizes with no distance correction: what size wire for a 60 amp breaker.
Other loads at 100 feet
30 A · 40 A · 50 A · 100 A · 125 A · 150 A · 200 A
Change the numbers in the calculator
Safety. A 60 A circuit or feeder over 100 ft needs a permit almost everywhere in the US. Buried runs have their own depth and conduit rules (NEC 300.5), and equipment nameplates override any general table.