Wire Gauge (AWG) Calculator
Find the smallest AWG conductor that meets NEC ampacity and your voltage-drop limit. Copper or aluminum, single- or three-phase, 60/75/90 C insulation.
Wire Gauge Planning Reference
| Conductor | Common circuit use | Selection factors |
|---|---|---|
| 14 AWG copper | Lighting branch circuit | Ampacity and breaker |
| 12 AWG copper | General receptacle circuit | Ampacity and breaker |
| 10 AWG copper | Higher-load branch circuit | Ampacity, distance, and breaker |
| 8 AWG copper | Large appliance branch circuit | Ampacity, distance, and terminals |
| 6 AWG copper | Large appliance or short feeder | Ampacity, distance, and terminals |
Frequently Asked Questions about the Wire Gauge (AWG) Calculator
How does this calculator pick a wire size?
It evaluates its built-in AWG candidates and returns the smallest supported cross-section that meets both the selected ampacity and voltage-drop limits. The ampacity values are a limited NEC Table 310.16 planning model at standard conditions. The separate conductor operating temperature adjusts resistance for the voltage-drop estimate. It does not cover every conductor, terminal, installation method, load characteristic, or local code rule.
Why does the voltage-drop limit force me to a larger wire than the ampacity table suggests?
Ampacity and voltage drop are separate checks. A conductor may carry the current safely yet have too much resistance over a long run, so meeting your drop limit can require a thicker wire. NEC informational guidance commonly uses 3% for a branch circuit and 5% for feeder plus branch circuit, but the applicable code and equipment requirements control the final design.
What is the difference between single-phase and three-phase voltage drop?
This calculator uses VD = 2 x length x current x resistance / 1000 for a single-phase two-wire circuit and VD = sqrt(3) x length x current x resistance / 1000 for a balanced three-phase circuit. Those resistance-only formulas omit reactance, power factor, harmonics, and imbalance, which can matter in real installations.
Why does aluminum need a thicker wire than copper for the same load?
Aluminum's resistivity is roughly 1.6 times copper's (16.94 vs 10.371 Ohm cmil/ft at 20 C), so the same AWG aluminum conductor has about 60% more resistance per foot. To keep voltage drop under the same percentage limit you usually step up one or two gauges, and you must also use connectors and lugs rated for aluminum.
Does this replace a licensed electrician for sizing a real circuit?
No. The calculator uses a limited ampacity table and simplified voltage-drop formulas. Real work may require adjustments for ambient temperature, conductor count, continuous loads, terminals, insulation, installation method, fault current, power factor, and local amendments. Have a qualified electrician verify the conductor and protection before installation.
Related Calculators
More calculators in "Tech"
Download Time CalculatorPPI Calculator (Pixels Per Inch)RAID CalculatorCapacitor CalculatorRGB to CMYK ConverterColor Blender Calculator
See all 98 calculators in "Tech"