QualifiedMedium risk

Lighting circuit trips its breaker

The breaker (or RCBO) feeding a lighting circuit trips — either the moment it's switched on, or after the lights have been on a while. Resetting holds for a bit or trips straight back.

Safety first

A circuit that trips on a short or earth fault is telling you something is wrong — don't strap it across or fit a bigger breaker. Isolate before opening fittings, and treat the circuit as live until proven dead.

Isolate, lock out / tag out, and prove dead before working unless a live test is specifically required, authorised, and carried out under proper supervision. Always follow local regulations, your site procedures, and the equipment manufacturer's documentation.

Apprentice mode

Full walk-through — the why, what readings mean, mistakes & safety.

Likely causes

Ranked from most to least likely.

  1. 1

    Short or earth fault in a fitting or accessory

    Most likely

    A pinched active in a batten holder, a failed LED driver shorting internally, or water in an outdoor fitting can drop a dead short that trips instantly on switch-on.

  2. 2

    Driver/transformer inrush exceeding a sensitive breaker

    #2

    Banks of LED drivers draw a brief high inrush. On a circuit with many drivers and a low-rated or fast curve breaker, the surge alone can trip it as the lights are switched on.

  3. 3

    Earth leakage building up (on an RCBO)

    #3

    Multiple drivers each leak a small EMC/filter current to earth. Together they can creep past the RCBO's leakage threshold, especially in damp conditions.

  4. 4

    Damaged cable from a fixing screw or rodents

    #4

    A screw through a cable above a ceiling, or chewed insulation, can short active-to-earth or active-to-neutral and trip the moment the circuit is energised.

  5. 5

    Overloaded circuit (too many fittings added)

    Least likely

    Extra runs added over time can push a lighting circuit past the breaker rating so it trips thermally after running a while, not instantly.

Reports are saved on this device to reflect what you actually find.

Testing sequence

Work through one test at a time. Expected reading and what each result means.

On the tools? Job Mode shows one test at a time with thumb-sized buttons — your place and readings carry straight over.

Enter Job Mode
Test 1 of 3
1

Note whether it trips instantly on switch-on, or only after running — and whether it's a plain MCB or an RCBO (overload vs leakage).

Expected reading

A clear pattern: instant trip suggests a short/earth fault or inrush; delayed trip suggests overload or heat.

If it passes

Pattern points you at the likely group of causes before you open anything.

If it fails

No pattern yet — gather more by switching individual light groups where the layout allows.

Mark this test
View all expected readings at once
1. Note whether it trips instantly on switch-on, or only after running — and whether it's a plain MCB or an RCBO (overload vs leakage).
A clear pattern: instant trip suggests a short/earth fault or inrush; delayed trip suggests overload or heat.
2. Safely isolate and lock off, then split the circuit into sections (e.g. disconnect groups of fittings) and insulation-resistance / continuity test each section dead.
Healthy high insulation resistance between active, neutral and earth on a good section.
3. If everything tests sound but it still trips on switch-on, count the drivers and check the breaker rating/curve against the inrush.
Driver count and inrush within what the breaker curve can carry.

Fault-finding flowchart

The same logic as a decision tree.

  1. 1
    start

    Lighting circuit trips its breaker

    → step 2
  2. 2
    decision

    Does it trip instantly on switch-on?

    Yes→ step 3No→ step 4
  3. 3
    decision

    Does an isolated section show low insulation resistance?

    Yes→ step 5No→ step 6
  4. 4
    result

    Delayed trip — suspect overload or heat. Check load vs rating and look for a warm/loose connection.

  5. 5
    result

    Short/earth fault located in that section — inspect the fitting/run for damage or water.

  6. 6
    decision

    Many LED drivers on a sensitive breaker?

    Yes→ step 7No→ step 8
  7. 7
    result

    Likely driver inrush/leakage. Escalate the design — don't oversize protection.

  8. 8
    result

    Recheck for an intermittent fault that only shows under load or movement.

Common mistakes apprentices make

  • Fitting a higher-rated breaker to 'stop the tripping' instead of finding the fault.
  • Assuming it's the breaker when a single water-affected outdoor fitting is dropping the short.
  • Testing the whole circuit as one and never splitting it to corner the fault.
  • Ignoring that it's an RCBO — chasing an overload when it's actually accumulated earth leakage.

When to stop & escalate

If the inrush of a large LED bank is genuinely beyond the protection and the design needs reviewing, escalate rather than oversizing the breaker. Stop if you find damaged cabling in an inaccessible location or signs the circuit was overloaded by additions beyond its rating.

If you're past your competence, authorisation, or the safe limits of the job — stop and hand it on. There's no fault worth getting hurt over.

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