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AmpSize

Cable size calculator

Free cable size calculator for New Zealand and Australia. It reads AS/NZS 3008.1.2:2017, or AS/NZS 3008.1.1:2025 with 2017 selectable, and checks AS/NZS 3000.

Reads AS/NZS 3008.1.2:2017 (NZ), AS/NZS 3008.1.1:2017 and 2025 (AU) and AS/NZS 3000:2018. Tables checked 27 Sept 2026.

Try a job 24

Each job fills in example values. Replace them with your values.

Inputs

Worked example with the default inputs. The live calculator replaces it when the page loads.

Phases
Three phase
Voltage
400 V
Design current
50 A
Power factor
0.9
Standard
NZ · AS/NZS 3008.1.2
Run length
60 m
Installation method
Enclosed in air
Ambient temperature
30 °C
Grouped circuits
1
Third harmonic content
0 %
Material
Copper
Insulation
PVC 75 °C
Cores
Multicore
Cables in parallel
1
Voltage drop limit
5 %
Check protective device
No
Prospective fault current
0 kA

Conductor size

10mm²

Derated capacity
50A
Voltage drop
2.66%
Earth conductor
4mm²
Total derating factor
1x

This result is a design aid. Verify it against the current standard.

Calculation steps

  1. Ambient derating factor1x

    AS/NZS 3008.1.2:2017 Tables 27(1), 27(2) p.88

  2. Grouping derating factor1x

    One circuit, no grouping factor

  3. Soil derating factor1x

    AS/NZS 3008.1.2:2017 Table 29 p.90

  4. Burial depth derating factor1x

    AS/NZS 3008.1.2:2017 Tables 28(1), 28(2) p.89

  5. Total derating factor1x
  6. Required tabulated current50A

    AS/NZS 3000:2018 Cl 3.4

  7. Selected conductor sizeResult10mm²

    AS/NZS 3008.1.2:2017 Table 13 p.62–64

  8. Derated current capacity50A

    AS/NZS 3000:2018 Cl 3.4

  9. Voltage drop2.66%

About this calculator

How this is calculated

The tool tests every standard conductor size in turn. It reports the smallest size that passes each check you ask for.

  1. Tabulated current. It reads the current each size can carry for your material, insulation, core count and installation method. The Standard select decides which part it reads. It reads AS/NZS 3008.1.2:2017 for New Zealand or AS/NZS 3008.1.1 for Australia. For Australia, the Edition select picks 2025 or the superseded 2017 edition.
  2. Correction factors. It multiplies the ambient, grouping, soil, burial depth and harmonic factors into one correction factor (derating factor in 2017). It divides the design current by that factor. Above 33 % third harmonic, it uses the neutral current instead. The result is the current the cable must carry in the table.
  3. Voltage drop. It works out the drop for the run length, the power factor and the conductor. It compares the drop with the limit you set. The default limit is 5 %.
  4. Protective device. If you name a device, its rating must sit at or below the derated capacity. The circuit's earth fault loop impedance must stay under the maximum for that device.
  5. Fault withstand. If you enter a prospective fault current, the conductor must withstand it for the clearing time. The k factor sets that limit. It depends on the material, the insulation and the conductor size.
  6. Result. The tool lists each size that fails and the check it failed. Each step names its table or clause where one applies.
StepTable or clauseWhat it decides
Current ratingTable 13 or 14 for multicore, Tables 4, 5, 7 and 8 for single coreThe current each size carries in your installation method
AmbientTables 27(1) and 27(2)The correction factor for the air or soil temperature
GroupingTables 22, 25(1) and 25(2)The correction factor for circuits run together
Buried cableTable 29, Tables 28(1) and 28(2)The correction factors for soil resistivity and depth
HarmonicsTable 2 and Cl 3.5.9The reduction for third harmonic current in the neutral
Required currentAS/NZS 3000 Cl 3.4The current the cable must carry after correction
Voltage dropTables 30, 34 and 35, Cl 4.5, AS/NZS 3000 Cl 3.6.2The drop over the run and the limit it must meet
DeviceAS/NZS 3000 Cl 2.5.3.1That the rating sits between the design current and the capacity
Earth and ZsAS/NZS 3000 Table 5.1 and Table 8.1The earth conductor size and the maximum loop impedance
Fault withstandTable 52 and Cl 5.3The k factor and the smallest size that survives the fault

Tables without a standard named are in the part of AS/NZS 3008.1 you pick. AS/NZS 3008.1.1:2025 numbers them by section, such as Table 3.18 for Table 13.

Common circuits, worked with the tool

Each line states its route. Change one input and the size can change, so run your own circuit before you buy cable. Every line uses multicore copper with PVC insulation and one circuit on the route. The power factor is 0.9, except where a line names a different value. Ze is 0.35 Ω and every size uses the New Zealand tables.

New Zealand and Australia

The Standard select picks the part of AS/NZS 3008.1 the tool reads. Part 1.2 holds the New Zealand tables. They assume 30 °C air and 15 °C soil. Part 1.1 holds the Australian tables. They assume 40 °C air and 25 °C soil. The checks from AS/NZS 3000 are the same in both countries.

For Australia, the Edition select picks AS/NZS 3008.1.1:2025 or the superseded 2017 edition. A new calculation starts on 2025. A link with no edition reads 2017, so an old link keeps its numbers.

A single-phase circuit at 32 A runs 25 m on the 2025 Australian edition. It sits enclosed in air at 40 °C, grouped with one other circuit. It needs 10 mm² with a derated capacity of 35.2 A. Open the Australian example.

A three-phase circuit at 30 A and 400 V runs 30 m, buried direct in soil at 25 °C. On the 2025 edition it needs 2.5 mm² with a derated capacity of 34 A. The 2017 edition gives 4 mm² with a derated capacity of 33 A. Open it on 2025 or on 2017.

Keep the result

Every input sits in the page address, so the link in your browser reproduces the calculation. The PDF button prints the result with its steps and table references. Saving a calculation to a project needs a free account.

See also: Cable size for a 32 A single-phase 25 m run, EV charger cable size for a 7 kW 32 A circuit and Current-carrying capacity and derating.

Questions

Each answer describes what this tool calculates. The result is a design aid. Verify against the current standard.

What size cable do I need for a 32 A circuit in NZ?

10 mm² copper on a typical route. The circuit is single-phase, 32 A, over 25 m. It runs enclosed in air at 35 °C, grouped with one other circuit. Its derated capacity is 37.6 A and the voltage drop is 1.42 %. A different route gives a different answer, so enter your own inputs.

Can a 6 mm² cable take 40 A?

Not on a typical route. The route runs 20 m at 40 A single-phase, enclosed in air at 30 °C. On that route, 6 mm² copper fails the current capacity check. The tool selects 10 mm², with 50 A of derated capacity. A shorter run does not change that, because capacity depends on the route, not the length.

What size cable for a 63 A three-phase submain?

25 mm² copper on this route, with 95 A derated capacity. It runs 35 m at 63 A, 400 V, XLPE, enclosed in air at 35 °C. The device is a 63 A C curve, and Ze is 0.3 Ω. 16 mm² meets the current and drop checks but its loop impedance of 0.49 Ω fails Table 8.1.

Does the cable size calculator work for Australia?

Yes. Set Standard to AU · AS/NZS 3008.1.1. The Edition select then picks AS/NZS 3008.1.1:2025, the default, or the superseded 2017 edition. Pick 2017 to reproduce an older design. Both editions use 40 °C air and 25 °C soil. NZ · AS/NZS 3008.1.2 is the default Standard. The AS/NZS 3000 checks, often written AS3000, are the same in both countries.

Which AS/NZS 3008 tables does the cable size calculator use?

On AS/NZS 3008.1.2:2017 or 3008.1.1:2017, single-core ratings come from Tables 4, 5, 7 and 8, multicore from 13 and 14. Derating comes from Tables 22 and 25 to 29, impedance from Tables 30 to 35, k from Table 52. AS/NZS 3008.1.1:2025 renumbers each, so Table 13 is 3.18. AS/NZS 3000:2018 Tables 5.1 and 8.1 give earth size and maximum Zs.

Worked examples

All 13 guides for this calculator

Background

Clauses and tables this tool reads

Every clause and table, with how each was verified

Tables last checked on 27 Sept 2026.

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