Generator Wire Size Chart

Generator Wire Size Chart AWG & mm² — Complete Guide

What size wire connects your generator to the panel? Our free chart answers that in one look, for AWG and mm², for any genset from 10 kW to 1,000 kVA. Check ampacity, distance, and voltage drop — then get a factory-direct quote with your cable size pre-filled. Built by Shandong Huali, a diesel generator manufacturer since 1999, with models from 8–4,000 kVA.

AWG & mm² dual-standard
NEC & IEC ampacity
Distance & voltage drop check
Size My Generator Cable
Free tool – get 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 Cable Sizing

What Size Wire for a Generator?

Wire size depends on three things: generator amps, cable distance, and system voltage. Higher amps and longer runs need thicker wire; higher voltage lets you use thinner wire for the same power. A 40 kW 120/240 V set draws 175 A — 3/0 AWG copper. A 100 kVA 400 V three-phase set draws 144 A — 35 mm². The full chart below covers both AWG and mm².

Amps Generator Output

The generator's full-load current at your voltage. This is the primary number that determines your minimum conductor size.

Distance Cable Run Length

Voltage drop grows with distance. A wire that works at 30 m may be undersized at 60 m. Always check the drop for your run.

Voltage System Voltage

Higher voltage means lower current for the same power. A 480 V feeder can use smaller wire than a 240 V feeder for the same load.

Planning Values — Then Verify

A 40 kW single-phase generator at 120/240 V draws about 175 amps and needs 3/0 AWG copper. A 100 kVA three-phase set at 400 V draws about 144 amps and needs 35 mm². These are starting points — distance, temperature, and local code can push the size up. Always confirm the final conductor with a qualified electrician.

What You Need

Three Numbers Decide Your Wire Size

01
Generator Amps

The full-load output current of your genset. This is the starting point for every wire size calculation.

02
Cable Distance

The one-way run from generator to transfer switch or panel. Distance drives voltage drop and often forces a size up.

03
System Voltage

120 V, 240 V, 400 V, or 480 V. Higher voltage means lower current and smaller cable for the same power.

04
Distance Changes Everything

A conductor sized correctly for ampacity can still be undersized for voltage drop on a long run. Always check the distance.

Generator Wire Size Chart
NEC 310.16

Generator Wire Size Chart

This chart is the quick reference for sizing the conductor from a generator to a transfer switch or distribution board, based on the NEC 310.16 ampacity table at 75 °C with not more than three current-carrying conductors.

Wire Size (AWG/kcmil) Copper 75 °C Aluminum 75 °C Typical Breaker
14 AWG 20 A 15 A
12 AWG 25 A 20 A 20 A
10 AWG 35 A 30 A 30 A
8 AWG 50 A 40 A 40–50 A
6 AWG 65 A 50 A 60 A
4 AWG 85 A 65 A 70–80 A
3 AWG 100 A 75 A 100 A
2 AWG 115 A 90 A 100–110 A
1 AWG 130 A 100 A 110–125 A
1/0 AWG 150 A 120 A 125–150 A
2/0 AWG 175 A 135 A 150–175 A
3/0 AWG 200 A 155 A 175–200 A
4/0 AWG 230 A 180 A 200–225 A
250 kcmil 255 A 205 A 225–250 A
350 kcmil 310 A 250 A 300 A
500 kcmil 380 A 310 A 350–400 A
Values per NEC 310.16, 75 °C column, three conductors or fewer, 30 °C ambient. Smaller conductors, higher ambient temperatures, and more conductors in one raceway require derating. Read the chart across: a 100 amp generator feeder needs 3 AWG copper or 1 AWG aluminum at the panel. A 175 amp feeder needs 3/0 AWG copper or 250 kcmil aluminum. Distance can push you down a row.
Metric Three-Phase

Generator kVA to Cable Size Chart

For metric markets and three-phase diesel sets, the chart below gives the copper cable size in mm² for standard 415 V, 50 Hz generators at a 0.8 power factor. These are the values used across the Middle East, Africa, South Asia, and most of Asia for generator-to-switchboard feeders.

Generator kVA Full-Load Amps Copper Cable (mm²)
15 kVA 20 A 4
25 kVA 35 A 6
40 kVA 55 A 10
62.5 kVA 87 A 16
82.5 kVA 115 A 25
100 kVA 140 A 35
125 kVA 175 A 50
160 kVA 225 A 70
200 kVA 280 A 95
250 kVA 350 A 120
320 kVA 445 A 150
Approximate planning values for XLPE-insulated armored copper cable at 415 V, 3-phase, 0.8 PF. Short runs only; distance increases the size. The full-load current in the middle column comes from the standard three-phase formula: amps = kVA × 1000 ÷ (1.732 × voltage). A 100 kVA set at 400 V draws about 144 amps, and a 200 kVA set about 289 amps.
Distance Planning

Generator Cable Size by Distance

Ampacity picks a starting wire size. Distance decides whether you move up, and in practice the generator cable size on your drawing often ends up one row heavier than the ampacity table alone suggests. Voltage drop grows with cable length, and the NEC and most codes hold feeders to 3% maximum drop, with 5% as the total through the system. Cords and generator-to-panel runs are often held to 2%.

The practical effect is a distance rule you can use on site: for a 120 V circuit, plan to go up one conductor size for roughly every 100 feet beyond a short run. The penalty halves at 240 V and drops to about a third at 480 V, because higher voltage carries more power for the same current. Three-phase feeds drop less than single-phase at the same distance and current.

3-Phase 50 A Load Distance Copper Size
400 V up to 100 ft (30 m) 6 AWG
400 V 100–200 ft (30–60 m) 2 AWG
400 V 200–400 ft (60–120 m) 1/0 AWG
400 V 400–600 ft (120–180 m) 3/0 AWG
Planning values for a 50 A three-phase feeder at 400 V. Your exact size depends on code, conductor type, and ambient temperature. Every generator installer has a story about a feeder that measured fine on paper and sagged badly on site because nobody checked the drop.
Transfer Switch Wiring

Generator to Transfer Switch Wiring

The most common permanent generator wiring job, and the heart of most generator transfer switch wiring diagrams, is the run from the generator to the automatic transfer switch, and then to the distribution board. The conductor between the genset and the ATS is sized to the generator's output amps, in both the phases and the neutral, and the ground conductor follows the code for your system.

Generator Voltage / Phase Amps Copper Aluminum
30 kW 120/240 V 1-ph 125 A 1/0 AWG 3/0 AWG
40 kW 120/240 V 1-ph 175 A 3/0 AWG 250 MCM
40 kW 277/480 V 3-ph 60 A 4 AWG 3 AWG
100 kW 277/480 V 3-ph 150 A 2/0 AWG 3/0 AWG
Generator-to-transfer-switch conductor sizing per the NEC 310.16 75 °C column, 30 °C ambient. Confirm with your ATS documentation and a qualified installer. When you buy a genset from us, we can supply the matching transfer switch and the cable-connection package, so the wire chart and the equipment arrive together.

Download the Generator Wire Size Chart

The full generator wire size chart, in both AWG and mm², is available as a free download in three formats: Excel (.xlsx) for editing, CSV for import into your own tools, and PDF for printing and keeping in the site folder.

The spreadsheet version carries the complete NEC 310.16 ampacity table with the 75 °C copper and aluminum columns, the kVA-to-mm² chart for metric three-phase sets, and the distance/voltage-drop notes. You can filter by your generator's amps, compare copper against aluminum, and print a site-specific copy for the electrician.

To download: enter your details below, and we'll send the current chart to your email or WhatsApp. No spam, and our engineers are available if you want a second opinion on your specific install.

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Our engineers will review your generator size, run length, and voltage drop, then deliver a factory-direct price — no obligation, no hidden fees. Every quote includes the generator, matching transfer switch, and cable-connection package sized to your exact install.

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