TryBuildCalc

Wire Size Calculator (AWG Gauge from Load, Length & Voltage)

Calculate wire gauge instantly.

Inputs

Load Entered As
A
V

ℹ️Common values: 120V, 208V, 240V, 277V, 480V (US); 230V, 400V (many other countries).

ℹ️Distance from the panel/breaker to the load, one way — not round trip.

ℹ️The wire's own insulation rating (check the product's markings, e.g. THHN, THWN-2).

ℹ️Per NEC 110.14(C) — the breaker/panel/device's own temperature rating. Most equipment rated 100A or less is only terminal-rated for 60°C or 75°C, even with 90°C wire installed. The calculator automatically uses the lower of this and the insulation rating above.

Continuous Load (3+ hours)?

Advanced (NEC Derating)

Adjust for Conductor Count / Ambient Temperature?

Conduit Sizing

Also Size the Conduit?

Cost

Enable Cost Estimation?

Recommended Wire Size: 10 AWG (Copper)

Sized by voltage drop, not ampacity — recommended breaker/OCPD: 20A

Ampacity Check

Design current: 20.0 A

Minimum size by ampacity: 12 AWG

Derating factor applied: 1.00×

Final wire's derated ampacity: 35.0 A

Voltage Drop Check

Actual load current: 20.0 A

Minimum size by voltage drop: 10 AWG

Allowed drop: 3.0%

Final wire's actual drop: 2.07% (2.49 V)

Circuit Summary

System120 V, single-phase
One-way run length50.0 ft (15.2 m)
Insulation / terminal rating75°C (167°F) — most common (THWN-2, terminals) / 75°C (167°F) — most common (THWN-2, terminals)
Governing rating (NEC 110.14(C))75°C (167°F) — most common (THWN-2, terminals)
Small-conductor OCPD cap30 A (NEC 240.4(D))

Assumptions Used

NEC Table 310.16 ampacity, NEC 110.14(C) governing rating, NEC 240.4(D) small-conductor cap, NEC 310.15(C)(1)/(B)(1)(1) derating, NEC Chapter 9 conduit fill (THHN/THWN-2, uniform AWG). Voltage drop uses K = 12.9 (copper) / 21.2 (aluminum) ohm-cmil/ft. This is a reference estimate — confirm against the code edition adopted in your jurisdiction and a licensed electrician before final installation.

Wire Run VisualizationPanelLoad10 AWG20.0 ALength: 50 ftDiagram simplified for clarity (not to scale)

Looking for the verification checklist, reference tables, tips, or common mistakes?See the complete Wire Size Calculator.

General wire size estimate

This page gives the full combined wire-sizing result — ampacity check, voltage drop check, and the final recommended AWG size and breaker — from one set of load, voltage, and length inputs.

It's the same calculator behind every other wire size variant on this site, just without a specific scenario pre-selected — useful for a general estimate before finalizing the exact circuit with a licensed electrician.

  • Checks both NEC ampacity and voltage drop, recommending whichever needs the larger conductor.
  • Supports copper and aluminum, single-phase and three-phase.
  • Optional advanced derating for conductor count and ambient temperature.

Wire Size Formula: How Is AWG Gauge Calculated?

Two independent checks are run, and the wire recommended is whichever check requires the larger conductor.

Step 1 — Design Current

Design Current = Load Current × 1.25 (if continuous load, per NEC 210.19/210.20)

Design Current = Load Current (if not continuous)

A continuous load (running 3+ hours) needs a 25% safety margin applied to the wire and breaker sizing, per NEC's continuous-load rule. Voltage drop, further below, uses the actual (non-inflated) current instead.

Step 2 — Ampacity Check

Governing Rating = the LOWER of Insulation Rating and Terminal/Equipment Rating (NEC 110.14(C))

Derated Ampacity = Table Ampacity (at Governing Rating) × Conductor-Count Factor × Ambient-Temp Factor

Pick the smallest AWG where Derated Ampacity ≥ Design Current

Table ampacity comes from NEC Table 310.16, by material (copper/aluminum) and the governing 60/75/90°C column — not just the wire's own insulation rating, since most equipment rated 100A or less is only terminal-rated for 60°C or 75°C even when 90°C wire is installed. 14/12/10 AWG are additionally capped at 15A/20A/30A (copper) regardless of table ampacity, per NEC 240.4(D).

Step 3 — Voltage Drop Check

Voltage Drop (V) = (2 × K × I × D) / CM [single-phase]

Voltage Drop (V) = (1.732 × K × I × D) / CM [three-phase]

Pick the smallest AWG where (Voltage Drop ÷ System Voltage) × 100 ≤ Max Allowed %

K is a resistivity constant (12.9 for copper, 21.2 for aluminum, ohm-circular-mil/ft), I is the actual load current, D is the one-way run length in feet, and CM is the conductor's circular-mil area.

Step 4 — Final Recommendation

Recommended AWG = the larger of the ampacity-check size and the voltage-drop-check size

Both requirements must be satisfied at once, so the calculator always recommends whichever check needs the bigger conductor — never just the smaller of the two.

Worked Example

This example walks through your current inputs above, using the same steps as the Formula section.

Input Values Used

InputValueWhy it is used
Load current / voltage20.0 A, 120 V, single-phaseSets design current and the voltage-drop base
Material / rating / lengthCopper, governed by 75°C (167°F) — most common (THWN-2, terminals), 50.0 ftSets ampacity table column (lower of insulation/terminal rating) and voltage-drop distance
Derating / max drop1.00× derate, 3.0% max dropSets the derated ampacity and voltage-drop threshold

Step 1 — Ampacity Check

CalculationResult
Design current20.0 A
Minimum size by ampacity12 AWG

Step 2 — Voltage Drop Check

CalculationResult
Minimum size by voltage drop10 AWG
Final recommended size10 AWG (governed by voltage drop)

Therefore, for a 20.0A load over 50.0 ft at 120V, you need approximately 10 AWG copper wire on a 20A breaker.

Disclaimer: This calculator provides approximate results for planning and estimation purposes only. Actual requirements may vary based on site conditions, materials, workmanship, and local building regulations. Always consult a qualified engineer, architect, or construction professional before making final decisions.

FAQ

Yes — both are computed independently and the calculator recommends whichever requires the larger conductor, shown together in the result.
NEC (US) only — AWG gauge and NEC Table 310.16 ampacity. It does not apply to IEC/BS 7671 (mm² conductor) jurisdictions.