Welding Wire Gauge Chart — MIG Wire, Filler Rod & Extension Cord Reference

MIG wire, TIG filler, welding leads, extension cords, and AWG to mm²

Bookmark this page — every wire, lead, and cord size table a welder needs in one place.

Table 1 — MIG Wire Diameter Selection

Starting voltage and wire feed speed (WFS) for C-25 or 75/25 on mild steel. Fine-tune from machine capability and joint fit-up.

Wire DiameterThickness RangeBest ForTypical VoltageTypical WFS
0.023" solid24 ga – 3/16"Auto body, sheet metal, thin HVAC14–18 V150–250 IPM
0.030" solid18 ga – 1/4"120V MIG, light fab, general repair17–20 V200–350 IPM
0.035" solid1/8" – 1/2"Most common shop diameter, 240V MIG19–23 V250–400 IPM
0.045" solid1/4" and upHeavy plate, high deposition, structural22–27 V300–500 IPM
0.030" flux core18 ga – 3/16"Field repair, outdoor, no gas bottle18–22 V150–280 IPM
0.035" flux core1/8" – 3/8"Most common flux diameter, farm/structural20–24 V200–350 IPM
0.045" flux core1/4" and upDual-shield or heavy self-shielded work22–26 V250–450 IPM

Shop staples — wire, rod & cable tools

Consumables and tools matched to the wire and cable sizes on this page.

120V Blue Demon ER70S-6 .030 MIG wire 10 lb

Blue Demon ER70S6 .030in 10LB MIG Wire

  • 0.030" for light to medium gauge work
  • Ideal on 120V and 140–180 amp machines
  • 18 ga through 1/4" mild steel range
  • 10 lb spool — good value for hobby shops
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TIG YESWELDER ER70S-6 TIG filler rod 1/16 in

YESWELDER ER70S-6 TIG Rod 1/16in 5LB

  • 1/16" diameter for sheet and thin wall
  • ER70S-6 — deoxidizers for light mill scale
  • Matches TIG schedules under 1/8" steel
  • 5 lb pack — standard shop filler size
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Klein Tools 11047 wire stripper cutter

Klein Tools 11047 Wire Stripper/Cutter

  • Strips 10–18 AWG solid and stranded
  • Essential for welder cord and lead terminations
  • Built-in cutter for clean ends
  • Klein grip — standard in electrical trade
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Southwire stranded copper 10 gauge wire 500 ft

Southwire Stranded Copper 10 Gauge 500ft

  • 10 AWG stranded copper — welder circuit standard
  • 500 ft roll for shop runs and extension builds
  • Matches 240V MIG feeder sizing in Table 4
  • THHN-class for conduit or open runs
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Table 2 — TIG Filler Rod Diameter by Base Metal Thickness

Match rod diameter to material thickness. Step down one size for root passes and tight joints.

Filler DiameterBase Metal ThicknessCommon Alloys
1/16" (1.6 mm)Sheet – 1/8"ER70S-2, ER70S-6, ER308L, ER4043, ER5356
3/32" (2.4 mm)1/8" – 3/16"ER70S-2, ER70S-6, ER308L, ER4043, ER5356
1/8" (3.2 mm)3/16" – 1/4"ER70S-2, ER70S-6, ER308L, ER4043, ER5356
3/16" (4.8 mm)1/4" and upER70S-2, ER70S-6, ER308L (fill passes)

Table 3 — Welding Lead Cable Sizing (AWG)

Minimum copper welding cable by output amperage and total lead length (electrode + work). Target under 4 V drop.

Welder AmperageUp to 25 ftUp to 50 ftUp to 100 ftUp to 150 ft
100 A6 AWG4 AWG2 AWG1/0 AWG
150 A4 AWG2 AWG1/0 AWG2/0 AWG
200 A2 AWG1/0 AWG2/0 AWG3/0 AWG
250 A1/0 AWG2/0 AWG3/0 AWG4/0 AWG
300 A2/0 AWG3/0 AWG4/0 AWG250 MCM
400 A3/0 AWG4/0 AWG250 MCM350 MCM
500 A4/0 AWG250 MCM350 MCM400 MCM

Table 4 — Extension Cord Sizing for Welders

Based on machine nameplate input amperage. Never use 14 AWG or 16 AWG for welding loads.

Welder DrawVoltageUp to 25 ftUp to 50 ftUp to 100 ft
15 A120 V12 AWG12 AWG10 AWG
20 A120 V12 AWG10 AWG8 AWG
30 A120 V10 AWG8 AWG6 AWG
30 A240 V10 AWG8 AWG6 AWG
40 A240 V8 AWG6 AWG4 AWG
50 A240 V8 AWG6 AWG4 AWG
60 A240 V6 AWG4 AWG3 AWG

Table 5 — AWG to mm² Conversion

Cross-reference American gauge to metric area when reading import specs or European machine manuals.

AWGmm²Common Use in Welding
4/0107.2500 A leads, 150 ft runs, heavy industrial
3/085.0300–400 A leads, long high-amperage runs
2/067.4200–300 A welding cable, 50 ft standard
1/053.5150–250 A leads, electrode cable
1 AWG42.4Heavy leads, short 200 A runs
2 AWG33.6200 A at 25 ft, welder branch feeders
3 AWG26.760 A extension cord at 100 ft
4 AWG21.250 A cord at 100 ft, 200 A at 50 ft
6 AWG13.330–40 A extension at 100 ft, 100 A leads
8 AWG8.36240V MIG cord 25–50 ft, 40 A circuits
10 AWG5.26Standard welder circuit wire, 30 A cord
12 AWG3.31Minimum welder extension, 15–20 A at 120V
14 AWG2.08Not for welders — household loads only

Why MIG wire diameter matters more than most welders think

Wire diameter sets your amperage window, deposition rate, and heat input before you touch the machine dial. Run 0.045" on 16-gauge sheet and you will blow holes regardless of technique. Run 0.023" on half-inch plate and you will sit in the corner all day feeding wire while penetration never catches up. Diameter also must match drive rolls and liner size — forcing 0.035" through a 0.030" liner causes bird-nesting and erratic arc starts. The spool label is not a suggestion; it is the first setting on every weld schedule. Match diameter to thickness, then tune voltage and wire feed speed from there.

Extension cord myths — what actually damages your welder

Myth one: "The breaker did not trip, so the cord is fine." Breakers protect wire from fire, not your machine from voltage drop. A 14 AWG cord on a 30-amp draw will sag voltage for minutes before the breaker notices. Myth two: "Shorter is always OK on any gauge." A 50-foot 12 AWG run on a 240V 50-amp input can drop enough voltage to make your 035 wire run cold at the same dial setting. Myth three: "Dual voltage means the same cord works everywhere." At 120V your machine pulls nearly double the current for the same weld — you need heavier gauge, not the orange cord from the garage. Replace cord before you blame the board inside the welder.

How to read a welding wire spool label

Start with the AWS classification — ER70S-6 tells you mild steel solid wire with higher silicon and manganese for dirty plate. The diameter is stamped separately: .035 or 0.9 mm, never AWG. Shielding gas requirement follows: solid wire needs C-25 or 75/25; flux core may say E71T-11 (self-shielded) or E71T-1 (gas-shielded). Weight matters for drive tension — 10 lb and 33 lb spools use different hub adapters. Check the heat number and lot for critical work traceability. If the label says "for single-pass only" or lists a maximum plate thickness, that is the manufacturer telling you where deposition limits start. Photograph the label when a weld passes qualification — it is your consumable record.

Lead length and voltage drop — the math behind poor arc performance

Voltage drop equals current times resistance (V = I × R). Welding cable resistance increases with length and decreases with cross-section. Double your lead run from 25 feet to 50 feet and you double the drop. At 200 amps through 50 feet of 4 AWG, you can lose 3–4 volts before the arc — enough to feel "cold" and undercut penetration. The machine compensates only within its open-circuit range; it cannot invent volts lost in copper. That is why Table 3 steps up AWG with length, not just amperage. When the arc gets lazy and you are already at the top of your machine's range, measure voltage at the stinger under load before you buy a bigger welder. Usually the fix is cable, not kilowatts.