Cable Size Calculator (mm²)

For metric installations: get the cable cross-section in mm² that carries your current and keeps voltage drop within limits.

Free, no sign-upInstant resultsUpdated September 2026
A
m
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Cable size
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How we calculated this

    For estimating and educational purposes only. Results are approximate and are not a substitute for a licensed professional, the manufacturer's instructions or your local code. Disclaimer

    How to calculate cable size

    The cable must carry the current without overheating (current-carrying capacity) and keep voltage drop low enough. We calculate the minimum area for each check and pick the next standard size that satisfies both.

    Min. area (1φ) = 2 × L × I × ρ ÷ ΔV Min. area (3φ) = 1.732 × L × I × ρ ÷ ΔV ρ copper ≈ 0.0225 Ω·mm²/m · ρ aluminum ≈ 0.036 Ω·mm²/m

    Example: 32 A, 30 m, 230 V single-phase, copper

    Allowed drop = 3% × 230 = 6.9 V. Area = 2 × 30 × 32 × 0.0225 ÷ 6.9 = 6.26 mm². Current capacity alone would allow 6 mm² (46 A), but voltage drop needs more, so the answer is 10 mm².

    Current capacity, copper PVC (IEC 60364-5-52, method C)

    Size2 loaded conductors3 loaded conductors
    1.5 mm²19.5 A17.5 A
    2.5 mm²27 A24 A
    4 mm²36 A32 A
    6 mm²46 A41 A
    10 mm²63 A57 A
    16 mm²85 A76 A
    25 mm²112 A96 A
    35 mm²138 A119 A
    50 mm²168 A144 A
    70 mm²213 A184 A

    Frequently asked questions

    What size cable for 32 amps?

    6 mm² copper carries 32 A in most installations, but runs over about 20 m at 230 V usually need 10 mm² for voltage drop.

    How do I convert mm² to AWG?

    Approximate matches: 1.5 mm² ≈ 16 AWG, 2.5 mm² ≈ 14 AWG, 4 mm² ≈ 12 AWG, 6 mm² ≈ 10 AWG, 10 mm² ≈ 8 AWG, 16 mm² ≈ 6 AWG, 25 mm² ≈ 4 AWG.

    Why does the calculator suggest a bigger cable than the current table?

    On long runs voltage drop, not heating, decides the size.