Wire Size Calculator – AWG, Ampacity & Voltage Drop
Wire Size Calculator

Wire Size Calculator: AWG, Ampacity & Voltage Drop

This wire size calculator finds the conductor gauge you need from three inputs: current, voltage, and one-way distance. Choose single‑phase, three‑phase, or DC, pick copper or aluminum, and the tool checks both ampacity and voltage drop, then reports which one governs the result.

Ampacity & voltage drop check
Single / three / DC systems
Copper & aluminum conductor
Calculate Wire Size
Free tool for engineers, electricians, and technical buyers.
Shandong Huali

Industrial Power & Electrical Equipment

We build industrial power systems and publish free electrical calculators for engineers and technical buyers — built for the way industrial systems are actually specified.

8–4,000 kVA generator range
25+ Years experience
20+ Countries supplied
Voltage Drop Formula and Limits – Conductor Sizing Guide
Conductor Sizing Guide

Voltage Drop Formula and Limits

Voltage drop grows with current, distance, and resistance — which is why a short run can use a thinner wire than a long one carrying the same current. The formulas are:

Single‑Phase Voltage Drop Formula

Vd = 2 × K × I × L ÷ CM

K = 12.9 (copper) / 21.2 (aluminum)
I = current (A)
L = one‑way length (ft)
CM = circular mils

Three‑Phase Voltage Drop Formula

Vd = √3 × K × I × L ÷ CM

Same variables as single‑phase, with √3 (1.732)
for balanced three‑phase systems.

NEC Limits Recommended Drop

Branch circuit: 3% or less

Feeder + branch: 5% or less

Exceed these limits and motors run hot,
lighting dims, equipment misbehaves.

Worked Example & Motor Feeder Sizing

A 7‑amp load at 120 V over a 200‑foot run on 14 AWG copper drops about 8.8 volts — more than double the 3.6‑volt limit. Step up to 10 AWG and the drop falls to roughly 3.5 volts, inside the limit. Distance is why a "correct" wire for a short run can be wrong for a long one.

Motor Feeder Sizing (Continuous Load ×1.25): Circuits that run for three hours or more count as continuous loads and must be sized at 125% of the load current under NEC 210.20(A). A motor drawing 40 amps requires a conductor sized for 50 amps of ampacity, not 40. The wire size calculator applies this factor in motor‑feeder mode so you do not undersize a feeder that will run all day.

Key Points

Why Voltage Drop Matters

01
Distance Is the Deciding Factor

A short run can use a thinner wire than a long one carrying the same current. Always check voltage drop for runs over 50 ft.

02
NEC 3% / 5% Rule

Branch circuits: ≤3% drop. Feeders plus branch: ≤5% total. Exceeding these limits leads to performance issues.

03
Motor Loads Need 125% Ampacity

Continuous loads (≥3 hours) must be sized at 125% of the load current under NEC 210.20(A) — a motor drawing 40 A needs a 50 A conductor.

04
K Factor: Copper vs. Aluminum

Copper: K = 12.9. Aluminum: K = 21.2. Aluminum conductors must be larger to achieve the same voltage drop performance.

Wire Size Calculator – Ampacity & Voltage Drop
Wire Sizing Tool

How to Calculate Wire Size

Correct wire sizing follows a simple rule: calculate for ampacity and for voltage drop, then use the larger result. Ampacity is the maximum current a conductor can carry safely, set by its insulation temperature rating. Voltage drop is the reduction in voltage between the source and the load, driven by conductor resistance over distance. Both matter, and they rarely agree on the same gauge.

Enter Circuit Parameters

The calculator checks both ampacity and voltage drop, then returns the larger gauge that satisfies both.

Motor Feeder Sizing

Continuous motor loads (≥3 hours) require 125% of the load current per NEC 210.20(A). The calculator applies this factor before checking ampacity and voltage drop.

Nameplate FLA
AWG Ampacity Chart – NEC 310.16
Conductor Reference

AWG Ampacity Chart (NEC 310.16)

American Wire Gauge (AWG) sizes conductors by cross‑sectional area, and — counterintuitively — a smaller AWG number means a thicker wire. The ampacity table below lists allowable current for insulated copper conductors at 30°C ambient with no more than three conductors in a raceway.

Wire Size 60°C 75°C 90°C
14 AWG15 A20 A25 A
12 AWG20 A25 A30 A
10 AWG30 A35 A40 A
8 AWG40 A50 A55 A
6 AWG55 A65 A75 A
4 AWG70 A85 A95 A
2 AWG95 A115 A130 A
1/0 AWG125 A150 A170 A
3/0 AWG165 A200 A225 A
250 kcmil215 A255 A290 A
Note: For metric systems, AWG maps to cross‑sectional area in square millimetres. A 14 AWG wire is roughly 2.08 mm², 10 AWG is about 5.26 mm², and 1/0 AWG is about 53.5 mm². The wire size calculator reports both units so you can specify in either convention.
Wire Size for Generators and Industrial Loads
Industrial Wire Sizing

Wire Size for Generators and Industrial Loads

Industrial systems add a layer the residential charts do not cover. A generator feeder carries continuous load and often a large motor-starting surge, so both the 125% continuous factor and the voltage-drop check matter more. The conductor between a generator and its switchgear is no place to guess a gauge.

01

Generator Feeder Load

Continuous loads and motor-starting surges define the minimum conductor size. The 125% continuous load factor (NEC 210.20(A)) is non-negotiable for feeders running three hours or more.

02

Voltage Drop Under Surge

A conductor sized for ampacity alone can still drop unacceptable voltage during motor starts. Voltage drop must be calculated at starting current to avoid nuisance tripping and undervoltage.

03

The Critical Link

The conductor between a generator and its switchgear is no place to guess. It must be sized for the total connected load, the starting surge, and the distance from the generator.

04

Source Sizing

Once the conductors are right, the next question is whether the generator itself is correctly sized. The feeder size and generator size must be coordinated to handle the full system demand.

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About Shandong Huali

Shandong Huali Electromechanical Co., Ltd. manufactures diesel generator sets, dust-suppression equipment, and industrial automation systems, with over 25 years of experience and exports to more than 20 countries. We publish free electrical calculators to help engineers and buyers specify power systems correctly.

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