Reference tables · Copper ampacity

2023 NEC · Table 310.16

2/0 AWG copper wire ampacity

At a 75°C termination rating, 2/0 AWG copper carries 175 A under the published table's basis conditions — 30°C ambient, no more than three current-carrying conductors.

2/0 AWG133,100 cmil

Ampacity by temperature rating

Temperature ratingAmpacityTypical insulation
60°C145 A
75°C175 ATHW
90°C195 ATHHN / THWN-2, XHHW-2
2/0 AWG copper, at a 30°C ambient with no more than three current-carrying conductors in a raceway or cable. The 90°C column is normally used only as the starting point for derating.

What 2/0 AWG copper is used for

2/0 AWG copper carries 175 A at 75°C. Conductors this size are service entrance and main feeder conductors — the run between a meter and a panel, or between a main panel and a large subpanel. It pairs with a 175 A overcurrent device.

Terminations usually decide the practical answer. Breakers and equipment are typically listed for 60°C or 75°C, so even 90°C-rated insulation on this conductor is normally limited to the 175 A column at the terminals. Check the equipment's listing rather than assuming.

Derating

Ampacity in real conditions

Ambient3 conductors4 conductors7 conductors10 conductors21 conductors
20°C194.3 A155.4 A136 A97.1 A87.4 A
30°C175 A140 A122.5 A87.5 A78.8 A
40°C154 A123.2 A107.8 A77 A69.3 A
50°C131.3 A105 A91.9 A65.6 A59.1 A
2/0 AWG copper at a 75°C termination rating, corrected for ambient temperature and adjusted for the number of current-carrying conductors, then capped by any small-conductor limit. Adjustment factors: 4–6 → 80%, 7–9 → 70%, 10–20 → 50%.

Properties

Circular mils133,100
DC resistance0.0967 Ω per 1000 ft
Ampacity at 75°C175 A
Overcurrent ceilingSet by ampacity
Largest standard breaker175 A
Area, THHN / THWN-20.2223 in²
Area, XHHW-20.219 in²
Area, THW0.2624 in²

Voltage drop over distance

Single-phase 240 V, carrying 175 A on 2/0 AWG copper.

One-way distanceDropWithin 3%?
25 ft0.35%Yes
50 ft0.71%Yes
100 ft1.41%Yes
150 ft2.12%Yes
200 ft2.83%Yes
300 ft4.24%No
Circular-mil estimate at full load. Lighter loads drop proportionally less. Use the voltage drop calculator for your actual current.

Source: NFPA 70, National Electrical Code, Table 310.16; NFPA 70, National Electrical Code, Table 310.15(B)(1)(1); NFPA 70, National Electrical Code, Table 310.15(C)(1); NFPA 70, National Electrical Code, Chapter 9, Table 8. Published by NFPA.NEC 2023

Related

Nearby conductors