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Electrical

Cable Ampacity Reference

Base ampacity tables for copper and aluminium conductors (NEC 310.15(B)(16) / IEC 60364-5-52), temperature correction factors, conduit fill derating, AWG-to-mm² size comparison and worked derating examples. Use alongside the Cable Ampacity Calculator.

Last updated: June 2026

Terms

AWGAmerican Wire Gauge
The American sizing system for wire thickness. Confusingly, a smaller AWG number means a thicker wire — AWG 10 is thicker (and carries more current) than AWG 14.
IECInternational Electrotechnical Commission
The international body that writes electrical safety standards used across most of the world outside North America. When a chart cites an IEC number, it's pointing to the official rulebook behind a calculation.
NECNational Electrical Code
The set of electrical safety rules used in the United States — the American equivalent of IEC standards used elsewhere.

Base Ampacity — Copper Conductors in Conduit

NEC Table 310.15(B)(16). Assumes 30 °C ambient, not more than 3 current-carrying conductors in a raceway.

AWG / kcmilApprox. mm²60 °C insulation (TW, UF)75 °C insulation (THWN, XHHW)90 °C insulation (THHN, XHHW-2)
14 AWG2.115 A20 A25 A
12 AWG3.320 A25 A30 A
10 AWG5.330 A35 A40 A
8 AWG8.440 A50 A55 A
6 AWG13.355 A65 A75 A
4 AWG21.270 A85 A95 A
3 AWG26.785 A100 A110 A
2 AWG33.695 A115 A130 A
1 AWG42.4110 A130 A150 A
1/0 AWG53.5125 A150 A170 A
2/0 AWG67.4145 A175 A195 A
3/0 AWG85.0165 A200 A225 A
4/0 AWG107195 A230 A260 A
250 kcmil127215 A255 A290 A
300 kcmil152240 A285 A320 A
350 kcmil177260 A310 A350 A
400 kcmil203280 A335 A380 A
500 kcmil253320 A380 A430 A
600 kcmil304350 A420 A475 A
750 kcmil380400 A475 A535 A

Base Ampacity — Aluminium Conductors in Conduit

NEC Table 310.15(B)(16) — Aluminium / copper-clad aluminium. Same conditions as above.

AWG / kcmil60 °C75 °C90 °CNotes
12 AWG15 A20 A25 AMinimum NEC Al feeder size (generally)
10 AWG25 A30 A35 A
8 AWG30 A40 A45 A
6 AWG40 A50 A55 A
4 AWG55 A65 A75 A
2 AWG75 A90 A100 A
1/0 AWG100 A120 A135 A
3/0 AWG130 A155 A175 A
4/0 AWG150 A180 A205 A
350 kcmil210 A250 A280 A
500 kcmil260 A310 A350 ACommon service entrance size

Aluminium conductors are approximately 80 % of copper capacity at the same AWG size but are significantly cheaper and lighter at larger sizes. Use Al for feeders ≥ 1/0 AWG — avoid Al for branch circuits and connections to devices not rated for Al.

Temperature Correction Factors

NEC Table 310.15(B)(2)(a). Multiply base ampacity by the correction factor for the actual ambient temperature. Ambient temperature reference = 30 °C.

Ambient temp. (°C)60 °C insulation CF75 °C insulation CF90 °C insulation CF
≤ 10 °C1.221.201.29
11 – 15 °C1.171.141.22
16 – 20 °C1.121.091.15
21 – 25 °C1.061.051.08
26 – 30 °C1.001.001.00
31 – 35 °C0.940.940.91
36 – 40 °C0.870.880.82
41 – 45 °C0.790.820.71
46 – 50 °C0.710.750.58
51 – 55 °C0.610.670.41
56 – 60 °C0.500.580.00 — not allowed

Conduit Fill Derating Factors

NEC 310.15(C)(1). Applies when more than 3 current-carrying conductors are in a single raceway. Count only current-carrying conductors — not equipment grounding conductors or neutral conductors of balanced 3-phase systems.

Number of current-carrying conductorsDerating factorDesign impact
1 – 31.00No derating required
4 – 60.80Upsize conductor by 1–2 AWG or split conduits
7 – 90.70Consider 2 separate conduits
10 – 200.50Significant upsize needed; multiple conduits preferred
21 – 300.45Multiple conduits strongly recommended
31 – 400.40High conductor count — thermal analysis required
41+0.35Engineering review required; conductor bunching undesirable

Worked Example — Derating Calculation

Circuit: 10 AWG copper, THWN (75 °C), in conduit with 6 current-carrying conductors, ambient temperature 40 °C.

Step 1 — Base ampacity: 10 AWG Cu @ 75 °C = 35 A (NEC Table 310.15(B)(16))

Step 2 — Temperature correction: 40 °C ambient, 75 °C insulation → CF = 0.88

Step 3 — Conduit fill factor: 6 conductors → CF = 0.80

Step 4 — Derated ampacity: 35 × 0.88 × 0.80 = 24.6 A

Step 5 — Design load check: 125 % of continuous load must not exceed 24.6 A → maximum continuous load = 24.6 ÷ 1.25 = 19.7 A

Recommended breaker: 20 A (next standard size at or below derated ampacity)

Frequently Asked Questions

Why does the NEC limit terminal ratings to 75 °C even with 90 °C cable?

NEC 110.14(C) requires that connections be made at the lowest temperature rating of any connected component. Most lugs, terminals and breaker connections in panels and devices are rated only to 75 °C. So even if you install 90 °C THHN cable, you must use the 75 °C ampacity column when the terminations are not rated above 75 °C — which is the typical case for circuits ≤ 100 A. The 90 °C column can be used when both the cable and all terminations are rated 90 °C, or when applying derating factors to allow use of a larger base ampacity before derating.

Does the neutral conductor count for fill derating?

Only current-carrying conductors count. A neutral conductor of a 3-phase balanced circuit (where harmonic current is negligible) does not count. However, the neutral of a single-phase 2-wire or 2-phase system is current-carrying and must be counted. For circuits supplying non-linear loads (computer power supplies, VFDs), the neutral can carry significant harmonic current and should be treated as current-carrying per NEC 310.15(E).

When should I use aluminium conductors?

Aluminium is cost-effective for service entrances, feeders and branch feeder panels at 1/0 AWG or larger. It is lighter than copper by about two thirds, which matters for long vertical runs. Never use aluminium for branch circuits to standard devices — twist connectors and outlets are not rated for aluminium and will cause loose connections over time. Use anti-oxidant compound on all aluminium-to-copper terminations and ensure lugs are listed for aluminium.

What does IEC 60364-5-52 say compared to NEC?

IEC 60364-5-52 (Installation Methods B1/B2/C/E/F/G) provides similar tables in mm² for European and international projects. The derating philosophy is the same — ambient temperature correction and grouping (bundling) derating — but the installation method classifications differ. IEC method B2 (cables in conduit) is broadly equivalent to NEC in-conduit installations. IEC grouping factors are in Table B.52.17 and range from 0.80 for 2 circuits to 0.44 for 12 circuits.

Can I combine temperature and fill derating factors?

Yes — the two factors are multiplied together, as shown in the worked example above. This is explicitly required by NEC 310.15(C)(1) and IEC 60364-5-52 Clause 523. The combined derating can be severe: 6 conductors in a conduit at 40 °C ambient gives 0.80 × 0.88 = 0.70 combined factor — meaning you need a conductor with at least 43 % more base ampacity than the load to end up with a code-compliant derated value.