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AmpSize

MCB trip curve and cable limit

Plot an MCB trip band against the cable it protects.

Reads AS/NZS 3008.1.2:2017 (NZ), AS/NZS 3008.1.1:2017 and 2025 (AU) and AS/NZS 3000:2018. Tables checked 2 Oct 2026.

Try a job 4

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.

Breaker type
Curve C
Rating
20 A
Fault current at the far end
300 A
Fault current at the board
0 A
Standard
NZ · AS/NZS 3008.1.2
Cable size
2.5 mm²
Material
Copper
Insulation
PVC 75 °C

Latest trip at the fault current

0.1s

Cable withstand at the fault current
0.86s
Instant trip, Table 8.1 basis
150A
Instant trip, typical band
100 to 200A
Conventional operating current
29A
Largest Zs for 0.4 s
1.53Ω

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

Calculation steps

  1. Conventional operating current29A

    AS/NZS 3000:2018 Cl 2.5.3.1

  2. Mean tripping current, Type C150A

    AS/NZS 3000:2018 Table 8.1

  3. Instantaneous trip at the mean, at most0.1s

    AS/NZS 3000:2018 Table 8.1

  4. Largest Zs for 0.4 s1.53Ω

    AS/NZS 3000:2018 Table 8.1

  5. Typical instantaneous band, low edge100A
  6. Typical instantaneous band, high edge200A
  7. k factor111x

    AS/NZS 3008.1.2:2017 Table 52 p.121

  8. Cable withstand at the fault current0.86s

    AS/NZS 3008.1.2:2017 Cl 5.3

  9. Latest trip at the fault currentResult0.1s

About this calculator

How this is calculated

A miniature circuit-breaker does not trip at one exact time for a current. Two breakers of the same type and rating trip at different times, so a maker draws a band: the earliest and the latest each can trip. This tool draws that band for a Type B, C or D breaker, draws the cable's limit beside it, and reads the latest trip time at the fault current you enter.

Three figures come from AS/NZS 3000. A breaker operates within its conventional time at 1.45 times its rating. Table 8.1 takes it as tripping instantly, within 0.1 s, at its mean tripping current: 4 times the rating for Type B, 7.5 for Type C and 12.5 for Type D. The largest loop impedance for a 0.4 s disconnection follows from that current. The rest of the band, the edges of the instant region and the thermal part, is a typical band. AmpSize does not hold AS/NZS 60898, and the result says so.

The cable's line is its adiabatic limit: the time it can carry a fault current before its insulation is damaged, from the k factor of AS/NZS 3008.1, through the fault rating tool. The circuit passes when the breaker's latest time is no longer than the cable's time at that current. Check it at the far end, where the fault current is least and the trip slowest, and give the fault current at the board too: there the current is highest, the cable's time shortest, and the worse of the two ends decides.

StepTable or clauseWhat it decides
Conventional operating currentAS/NZS 3000 Cl 2.5.3.1Where the band starts
Instant trip at the mean currentAS/NZS 3000 Table 8.1 and Para B4.5The current that trips it instantly, and the largest Zs
Instant region and thermal edgesA typical band, not a standardThe earliest and latest trip at each current
The cable's limitAS/NZS 3008.1 Table 52 and Cl 5.3The time the cable withstands the fault
The checkThe latest trip against the cable's timeWhether the breaker clears the fault first

Worked examples

Limits

The band is typical, not a maker's curve. A real breaker clears a large fault in much less than 0.1 s, and limits the energy it lets through; the maker publishes that energy as I²t. Where the band fails a cable at a high current, compare the maker's I²t with k²S² before you change the cable.

gG fuses are not drawn yet. Their curves are in IEC 60269, which AmpSize does not hold.

See also: Loop impedance, Fault rating and IDMT protection.

Questions

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

What is the difference between a B, C and D curve MCB?

How much current trips it instantly. AS/NZS 3000 Table 8.1 takes the mean as 4 times the rating for Type B, 7.5 for Type C and 12.5 for Type D. A higher type rides through motor and transformer starts.

Why is a trip curve drawn as a band?

Two breakers of the same type and rating trip at different times. The maker draws the earliest and the latest each can trip. The tool reads the latest time, so the check holds for the slowest breaker.

How do I know the breaker protects the cable in a fault?

The cable can carry a fault current for a time set by its k factor and size, (k × S ÷ I)². The breaker must trip within that time. The tool compares the two at the fault current you enter.

Is the band the maker's curve?

No. The operating points come from AS/NZS 3000, and the edges of the band are typical of the type. AmpSize does not hold AS/NZS 60898. Check a close result on the maker's curve.

What if the cable lasts less than 0.1 s?

Near the board the fault current is high and a small cable lasts only a few milliseconds. A breaker clears a large fault faster than 0.1 s. Compare the maker's let-through energy, I²t, with k²S².

Clauses and tables this tool reads

Every clause and table, with how each was verified

Tables last checked on 2 Oct 2026.

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