TOOLS

Combined Wire Gauge Calculator

Combine multiple wires of the same or different AWG sizes into their single equivalent gauge, or work backwards from a target size with an interactive heat map of workable combinations. Totals in mm² and circular mils.

Soldering a wire to a connector pin

Wires to Combine

Combine wires of the same or different gauges. Cross-sectional areas add together. Click any result value to copy it. Tip: paste values like "16 AWG", "2.5 mm²" or "1.6 mm" onto a gauge dropdown and it snaps to the nearest standard size.

Results

Equivalent AWG

17 AWG

Exact equivalent of the combined cross section


Nearest Standard AWG
17
Total Cross Section
1.0352 mm²
Total Circular Mils
2,043 cmil
Nearest IEC 60228 Size
1 mm²
Total Wires
2

Calculation Reference

  • Cross-sectional areas of the wires add together.
  • Equivalent AWG = 36 - 39 x log92(diameter / 0.127 mm)
  • For at least the same copper, pick the next larger standard size (lower AWG number).

Combining wires matches conductor cross section (current capacity), not the overall bundle diameter. Paralleled wires share current evenly only when their gauge, length, and terminations match, and bundled conductors also derate thermally.

This calculator provides engineering guidance only. AWG values describe bare solid conductors, so verify stranded constructions and critical dimensions against the manufacturer datasheet.

quick guide

How to use the Combined Wire Gauge Calculator

Works in both directions: wires → equivalent gauge, or target gauge → wires needed.

1. Add a row for each wire in the bundle: quantity × AWG gauge. Mixed gauges are fine.

2. Read the equivalent gauge: the exact decimal AWG, the nearest standard AWG, total cross-section in mm² and circular mils, and the nearest IEC 60228 metric size.

3. Or switch the direction control to “Gauge → Wires”: pick a target size (AWG or IEC mm²) and a fill gauge — the calculator returns the number of wires needed. Optionally add wires already in the bundle and it fills only the remainder.

4. Explore combinations on the heat map: nearby gauges and counts are colored by the copper they deliver versus the target — click any cell to preview its full breakdown. Green starts at 100% because delivering less copper than the target means higher resistance: when an exact match isn’t possible, round up, never down.

Combined wire gauge example

Cross-sectional areas add together. Two 20 AWG wires (0.518 mm² each) give a combined 1.035 mm², and converting that area back to a gauge lands almost exactly on 17 AWG:

2 × 20 AWG ≈ 17 AWG (1.035 mm²)

A handy rule of thumb falls out of the AWG progression: doubling the number of identical wires makes the bundle three gauge numbers larger (lower number), and ten identical wires make it ten gauge numbers larger. When you need at least the same copper as a target size, pick the next larger standard gauge — the lower AWG number.

When do you combine wire gauges?

Typical cases in cable and harness design: paralleling several smaller wires to carry the current of one large conductor where a thick wire would be too stiff to route; checking what single gauge a multi-wire splice or crimp joint corresponds to (crimp barrels are sized by total circular mil area); and matching an AWG build to a metric mm² specification. In every case the equivalence is based on total conductor cross-section, which is what determines DC resistance and current capacity.

Combining matches cross-section, not bundle diameter — several stranded wires pack larger than one solid conductor of equal area. Paralleled wires also share current evenly only when their gauge, length, and terminations match, and bundled conductors derate thermally. Verify critical designs against the governing standard.

Need a single-wire conversion instead? Use the AWG to mm Calculator. Converting metric drawings to tape-measure fractions? Try the mm to Inches Fraction Calculator, or browse all our engineering tools.