ApprenticeMedium risk

Light bulbs keep blowing in the same fitting

One fitting eats lamps — sometimes weekly — while the rest of the house is fine. The lamp isn't the problem; something about that fitting or its supply is.

Safety first

Isolate and prove dead before touching the lampholder or its terminations — a fitting that's been arcing may have damaged insulation and heat-affected conductors.

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

    Loose or arcing connection at the lampholder or its termination

    Most likely

    A pitted centre contact or loose terminal arcs on every switch-on. The voltage spikes and heat kill lamps early — and it's a fire risk in its own right.

  2. 2

    Heat build-up in an enclosed or covered fitting

    #2

    A lamp over its rated wattage, a sealed/enclosed fitting, or ceiling insulation packed over a downlight cooks the lamp (and the fitting).

  3. 3

    Vibration at the fitting

    #3

    Fittings under a floor with foot traffic, near a slamming door, or on a fan/garage door track shake filament and cheap LED driver lamps to death.

  4. 4

    Sustained high supply voltage

    #4

    Premises close to the transformer or at the top of a stiff network can sit high. Sustained voltage near the top of (or above) the allowed range shortens lamp life dramatically — every fitting suffers, but the most-used one fails first.

  5. 5

    Cheap or wrong lamps

    Least likely

    Bargain-bin lamps, or the wrong type for an enclosed/dimmed fitting (many LEDs aren't rated for either), fail early and get blamed on the wiring.

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 4
1

Isolate, prove dead, and inspect the lampholder: look for a pitted/burnt centre contact, heat discolouration, and tug-test the terminations.

Expected reading

Clean, bright contacts and terminations that don't move.

If it passes

Holder looks healthy — check the environment (heat/vibration) next.

If it fails

Burnt or loose contacts are your fault — replace the lampholder/fitting and re-terminate properly.

Mark this test
View all expected readings at once
1. Isolate, prove dead, and inspect the lampholder: look for a pitted/burnt centre contact, heat discolouration, and tug-test the terminations.
Clean, bright contacts and terminations that don't move.
2. Check the fitting's environment: lamp wattage vs the fitting's rating, enclosed fitting with a non-enclosed-rated lamp, insulation dumped over the fitting, or an obvious vibration source.
Lamp within the fitting's rating, IC/enclosure rules respected, no vibration source.
3. Measure the supply voltage at the fitting — ideally including when the network is lightly loaded (late evening). A meter with min/max helps.
Voltage within the normal supply range; in Australia that's nominally 230 V with a tolerance band — sustained readings around the mid-250s or higher are suspect.
4. Fit a known-quality lamp of the correct type and rating, and reinspect after a few weeks of normal use.
Normal lamp life once the underlying cause is corrected.

Fault-finding flowchart

The same logic as a decision tree.

  1. 1
    start

    Same fitting keeps blowing lamps

    → step 2
  2. 2
    decision

    Isolated and dead: is the lampholder burnt, pitted or loose?

    Yes→ step 3No→ step 4
  3. 3
    result

    Replace the holder/fitting and re-terminate — that's the lamp killer.

  4. 4
    decision

    Heat or vibration problem at the fitting (enclosure, insulation, wattage, shake)?

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

    Fix the environment: right lamp, restored clearances, vibration-tolerant lamp.

  6. 6
    decision

    Is the measured supply voltage sustained near/above the top of the range?

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

    Log readings and report the overvoltage to the distributor.

  8. 8
    result

    Fit a known-quality, correctly rated lamp and monitor — and recheck upstream joints if it recurs.

Common mistakes apprentices make

  • Replacing lamp after lamp without ever pulling the fitting down to look at the holder.
  • Ignoring the enclosed-fitting and IC ratings on LED lamp packaging — heat is the top LED killer.
  • Blaming 'cheap bulbs' when the centre contact is visibly burnt.
  • Not measuring voltage at a time the network is lightly loaded, then declaring supply voltage fine.

When to stop & escalate

Evidence of sustained supply overvoltage belongs with the distributor — hand over your logged measurements. Any heat-damaged wiring found at the fitting needs proper repair, not just a new lamp.

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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