3 AWG wire is a conductor size, not a model number: about 0.2294 in (5.827 mm) across the metal, with ampacity set by temperature.
For the full breakdown, see our best 3 AWG Wire guide.
Strip the marketing off a spool of 3 AWG wire and one measurement is left: the third size in the American Wire Gauge scale, roughly 0.2294 inches in diameter and 26.7 mm² in cross-sectional area. It sits between 4 AWG and 2 AWG, so it carries more current than 4 and less than 2, and the number describes a size rather than a brand or a cable series.
What actually matters on a job is heat. Undersize the conductor and the insulation cooks; oversize it and you are paying for copper that cannot land on the terminals. The size, diameter, and specifications behind 3 AWG wire all feed one decision — how much current the run can carry without overheating — and three inputs settle it.
What Does 3 AWG Wire Actually Measure?
3 AWG wire measures about 0.2294 in (5.827 mm) in diameter and 26.7 mm² — 52,620 circular mils — in cross-sectional area. Those figures come from the AWG standard itself and shift only by rounding between published charts.
One quirk of the scale is that it runs backward from intuition. A higher gauge number means thinner wire, so 3 AWG is fatter than 4 AWG and thinner than 2 AWG. That middle position is what makes it useful: it carries noticeably more current than 4 AWG while still bending easily inside a panel.
Another quirk is that 3 AWG is not a cable type. The same conductor diameter arrives with THHN, rubber, or any number of jackets, and the jacket determines which temperature column an installer may use. The American Wire Gauge sizing standard fixes the metal; the insulation decides how hard you can push it.
3 AWG Wire Specs: What Changes The Ampacity Number
Ampacity for 3 AWG wire is never one figure. In tables built on NEC Table 310.16, 3 AWG copper is commonly listed at 85 A in the 60°C column, 100 A at 75°C, and 115 A at 90°C, while 3 AWG aluminum sits lower at 65 A, 75 A, and 85 A across the same three bands.
Three inputs move that number: the conductor material, the insulation temperature rating, and the terminals at both ends. A 90°C conductor landed on a 75°C breaker is treated as a 75°C conductor, because the lowest-rated piece in the circuit sets the ceiling.
| Conductor And Temperature Rating | Ampacity | What It Generally Means |
|---|---|---|
| Copper, 60°C | 85 A | Rarely the column that governs a modern install |
| Copper, 75°C | 100 A | The column most feeder terminations allow |
| Copper, 90°C | 115 A | Usually capped by the terminations on each end |
| Aluminum, 60°C | 65 A | Lower capacity at an identical gauge |
| Aluminum, 75°C | 75 A | Needs lugs and connectors listed for aluminum |
| Aluminum, 90°C | 85 A | Rarely usable as printed |
Resistance separates the two materials further. Copper 3 AWG runs about 0.245 Ω per 1,000 ft, aluminum about 0.403 Ω per 1,000 ft — roughly 65% more, which shows up as voltage drop on long feeders and as extra heat at every connection.
Where 3 AWG Wire Gets Used, And Where Estimates Go Wrong
3 AWG copper turns up in service conductors, feeders, and subpanel runs where a bigger conductor is needed. One reference notes that typical installations pair it with a 100-amp breaker, though that pairing depends on the installation and is not a universal rule. Subpanel feeds, range circuits, and long garage runs are common examples; the gauge tells you the conductor is heavier than a 6 or 8 AWG branch circuit, not that any particular breaker is correct.
The expensive mistakes cluster in four spots:
- Treating copper and aluminum as interchangeable. Aluminum carries less current at the same gauge and needs terminations listed for it.
- Applying one ampacity figure everywhere. The temperature column has to match the insulation and the system rating.
- Skipping derating. NEC-based references require a reduced ampacity when more than three current-carrying conductors share a raceway.
- Reading 3 AWG as a maximum-current label. Ampacity describes the whole installation, not the gauge alone.
Anyone shopping rather than engineering a run can compare our tested 3 AWG wire options, which cover both copper and aluminum spools side by side.
Match the conductor to its terminations, use the temperature column that matches the insulation, and derate for how the conductors are bundled. Get those three right and the gauge number stops being a guess.
FAQs
Is 3 AWG thicker than 4 AWG?
Yes. The American Wire Gauge scale runs in reverse, so a smaller number means a larger conductor. 3 AWG is thicker than 4 AWG and thinner than 2 AWG, which is why it carries more current than 4 AWG but less than 2 AWG in any given temperature column.
How many amps can 3 AWG copper wire carry?
Common NEC-based tables list 3 AWG copper at 85 A with 60°C insulation, 100 A at 75°C, and 115 A at 90°C. The usable figure is often lower than the 90°C column suggests, because breakers, lugs, and other terminations are frequently rated for 75°C or less.
Can aluminum 3 AWG replace copper 3 AWG?
Not at the same ampacity. Aluminum 3 AWG is commonly listed at 65 A, 75 A, and 85 A across the same temperature bands, so it carries less current than copper at the same size. Aluminum also needs terminations and connectors listed for aluminum, not standard copper-only lugs.
References & Sources
- Wikipedia. “American Wire Gauge.” Supports the diameter, cross-sectional area, and reverse-numbering description of the AWG scale.
- The Engineering ToolBox. “AWG Wire Gauge Chart.” Supports copper and aluminum ampacity figures across temperature ratings.
- Pelican Wire. “Wire Gauge Size Chart.” Supports nominal diameter, circular mils, and resistance values per material.

