Electrical Wire Size Calculator

Electrical Wire Size AWG & mm² — NEC + IEC

Get the right conductor for any amps, voltage, and distance. Our free calculator returns the correct AWG and mm² size, checks voltage drop, and flags when a long run forces you to upsize. Built by Shandong Huali, a diesel generator manufacturer since 1999, with models from 8–4,000 kVA. Get a factory-direct quote with your specs pre-filled.

AWG & mm² conversion
NEC & IEC ampacity
Voltage drop check & generator cable
Find My Wire Size
Free tool – get your AWG, mm², and a diesel quote.
Shandong Huali

Diesel Generator Manufacturer

Factory-direct power since 1999.

25+ Years experience
8–4,000 kVA generator range
20+ Countries supplied
Generator Sizing Basics

What a Generator Sizing Calculator Does

A generator sizing calculator converts your electrical loads into a practical generator capacity recommendation using three connected values: kW, kVA and amps.

kW Usable Power

The real electrical power your connected equipment consumes while operating.

kVA Generator Capacity

The total apparent power the generator must provide after power factor is considered.

Amps System Current

The current at your selected voltage, useful for cable, breaker and distribution planning.

From Connected Load to Recommended Generator Size

The calculator combines your running loads, the starting surge of the largest motor, a sizing margin and relevant site conditions such as altitude and temperature. The result is intended to give you a usable generator recommendation rather than a simple total-load estimate.

Built for Real Projects

More Than a Basic Consumer Sizing Tool

01
Global Electrical Systems

Supports single-phase and three-phase systems at both 50 Hz and 60 Hz.

02
Industrial Inputs

Includes power factor, motor starting method, altitude derating and future expansion.

03
Practical Generator Matching

Recommendations can be matched against ShanHua generator sets from 8 kVA to 4,000 kVA.

04
From Size to Quote

Use the calculated requirement as the basis for a factory-direct quotation.

Electrical Wire Size Calculator: AWG & mm²
Wire Sizing Tool

Electrical Wire Size Calculator: AWG & mm² (NEC + IEC)

Enter your current, load, or generator size. The calculator returns the correct AWG and mm² conductor, checks voltage drop over your run length, and flags when you need to upsize.

Size by Current

Enter the circuit current in amps. The calculator returns the smallest AWG and mm² conductor with sufficient ampacity, plus a voltage-drop check.

Size by Load

Enter your load in kW or kVA. The calculator converts to current, then sizes the conductor and checks voltage drop.

Size by Generator

Select a generator size. The calculator returns the full-load output current and the recommended output cable for your run length.

Wire Size Chart

Electrical Wire Size Chart: NEC Ampacity

This chart shows the allowable ampacity of copper conductors from NEC Table 310.16 at the three insulation temperature ratings, assuming up to three current-carrying conductors at 30 °C ambient. Use it to sanity-check a calculation; the wire size calculator above applies the same values with derating and voltage-drop checks.

AWG 60 °C 75 °C 90 °C
14 20 A 25 A 30 A
12 25 A 30 A 35 A
10 35 A 40 A 45 A
8 50 A 55 A 65 A
6 55 A 65 A 75 A
4 70 A 85 A 95 A
3 85 A 100 A 110 A
2 95 A 115 A 130 A
1 110 A 130 A 145 A
1/0 125 A 150 A 170 A
2/0 145 A 175 A 195 A
3/0 165 A 200 A 225 A
4/0 195 A 230 A 260 A
Values are for copper conductors per NEC 310.16. Aluminum conductors are approximately two sizes larger for the same ampacity. Use the lowest temperature column that matches your terminations — typically 60 °C for circuits up to 100 A and 75 °C above that.
Wire Sizing Method

How to Calculate Electrical Wire Size (Ampacity + Voltage Drop)

Wire sizing is a two-step process. First size for ampacity: the conductor must carry the circuit current without overheating. Then check voltage drop: the conductor must keep the voltage loss within limits over the actual run length. The final size is the larger of the two, and on runs longer than about 30–50 metres, voltage drop is usually the size that wins.

STEP 1

Ampacity First

Select the conductor from the ampacity table whose rating equals or exceeds the circuit current after any derating for ambient temperature and conductor count. For a continuous load (3+ hours), size for 125% of the full-load current.

STEP 2

Voltage Drop Check

Voltage drop (V) = (mV/A/m × current × length) ÷ 1,000
Recommended limits (NEC, BS 7671): 3% on a branch circuit, 5% total from source to load. If the drop exceeds the limit, move up one conductor size and re-check.

THE BIGGER SIZE

Final Size — The Larger Wins

The final conductor size is the larger of the ampacity size and the voltage-drop size. On runs longer than about 30–50 metres, voltage drop is usually the deciding factor and forces a size up.

STANDARDS

NEC & BS 7671

The National Electrical Code (NFPA 70) sets out the ampacity tables and derating rules. BS 7671 (IET) sets out the equivalent for metric cable. Both agree: ampacity first, voltage drop second, and the bigger conductor wins.

RULE

125% Continuous-Load Rule

A conductor protecting a load that runs for three hours or more must be sized for 125% of the full-load current. A 90 A continuous load needs a conductor rated at least 112.5 A.

Key Takeaway

The Two-Step Method

Ampacity sets the floor — the conductor must carry the current without overheating. Voltage drop sets the ceiling — the same conductor must deliver the load at the far end of the run. Miss either one and you get a cable that trips, a conductor that overheats, or equipment that never runs at full power.

Long Runs

Voltage Drop: Why Long Runs Need Bigger Wire

This is the mistake we see most often in the field, and it is the one the simple charts always miss. A conductor that is correctly sized for ampacity can still be undersized for voltage drop on a long run. The result is a circuit that works on paper but delivers too little voltage at the load — motors run hot, starters struggle, and lights dim.

01

Rule of Thumb: 30–50 Metres

For any run longer than about 30–50 metres, check voltage drop before you order. The voltage lost along the cable is proportional to both current and length — doubling the distance doubles the drop.

02

3% Branch / 5% Total

Limits: no more than 3% voltage drop on a branch circuit and 5% total from source to load — the same limits in NEC and BS 7671.

03

Fix: Move Up One Size

Move up one conductor size and re-check. Each AWG size up cuts the resistance per metre by about a fifth, and roughly three sizes halve it. The calculator applies the 3%/5% limits automatically for your exact run length.

04

Generator Feeders

The cable from a genset to the building is often the longest single run on site. A 100 kW generator at 400 V pushes about 180 A; over a 100-metre run you'll almost always need a bigger cable than the ampacity table alone suggests.

The Short Version

Size for Distance, Not Just Current

If your run is long, size the wire for distance, not just current. Voltage drop grows with every metre, and on long feeds it is routine for the voltage-drop size to be two or three sizes larger than the ampacity size. Always include the distance in your calculation.

Material Choice

Copper vs Aluminum Wire: Which Should You Use?

Copper and aluminum both carry current; they differ in price, weight, and the size needed for the same job. The choice matters most on long generator feeders and large services, where the material decides the cost of the run.

01

Copper

Carries more current per cross-section, is more ductile, and is the default for circuits under 100 A and everything indoors. It costs more, but it is the standard for branch circuits and generator control wiring.

02

Aluminum

Needs roughly two AWG sizes larger (or about 1.6× the mm²) for the same ampacity. It is lighter and significantly cheaper per amp-metre. Common on large services and long feeder runs where the savings are real.

03

Connections Matter

Aluminum requires rated lugs and anti-oxidant compound at terminations. Copper-to-aluminum connections must use proper bi-metallic fittings or corrosion forms at the joint. Never skip the termination hardware.

04

Our Guidance

Use copper for branch circuits and generator control wiring. Consider aluminum for long feeder runs above 100 A where the price difference is meaningful. Let an engineer confirm the lugs and termination method.

05

Compare Before You Decide

The wire size calculator above has a copper/aluminum toggle so you can compare the two sizes for your exact run before you decide. See the price difference and the size difference side by side.

Not sure which material to choose? Our engineers will review your run length, current, and site conditions and recommend the best material and size for your installation. Talk to our engineers.

Let's talk

Get a Factory-Direct Quote

Our engineers will review your wire sizing, confirm the voltage drop, and deliver a factory-direct price — no obligation, no hidden fees. Every quote includes the generator, output cable, and automatic transfer switch for a complete power solution.

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