Fifty Metres of Extension Lead Burned Out the Motor - This Convention Centre Lost a Fogger Mid-Event

Last updated: 4 Sep 2026  |  15 Views  | 

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Real case - Convention and exhibition centre

Fifty Metres of Extension Lead Burned Out the Motor - This Convention Centre Lost a Fogger Mid-Event

Voltage drop through extension leads: why a nearly new motor burns out.

An extension lead that is too long and too thin does not just make the machine weak. It makes the motor draw more current, run hotter, and eventually burn out, and it happened mid-event with a hall full of people.

This convention centre has several large event halls, exhibition space and food preparation areas. Disinfection and insect control has to be done in short windows between event changeovers.

The machine in use is a high-powered electric ULV unit, well suited to large enclosed spaces, but it must stay plugged in throughout use, which is a constraint in halls where sockets exist only around the walls.

The team solved the distance problem by joining several extension leads to reach about fifty metres, a common approach that looks harmless, until a burning smell rose mid-event.

What happens inside a lead that is too long

Every cable has resistance, and resistance increases with length. When current flows through resistance, voltage drops along the run, so the voltage at the far end is lower than at the socket.

On a small-gauge lead fifty metres long, the voltage at the far end can drop far more than most people expect, and the higher the current drawn, the greater the drop.

An electric motor does not simply do less work at lower voltage. It tries to maintain output by drawing more current, and that is where it becomes serious, because higher current means more heat in the windings.

On the day of the incident, the team noticed the airflow from the nozzle was weaker than normal from the very start, a clear warning sign that was interpreted as thick solution or a blocked nozzle.

Forty minutes before the burning smell

For the first forty minutes the machine worked, if weakly, so the team carried on and ran it at maximum speed to compensate for the poor airflow, adding still more current and heat.

The extension leads were heating too, particularly at the joints between them, where resistance is higher than in the cable itself. The team later reported that one joint was too hot to touch.

At the forty-minute mark, a burning insulation smell came from the machine. The team unplugged immediately, which was the correct decision and the reason this ended with a damaged motor rather than a fire.

The event organiser had to stop fogging in the remaining halls and delay their opening by two hours, directly affecting the schedule of the clients renting the space.

What we found when we opened the motor

With the motor removed, the smell of burnt insulation was obvious before the casing was even opened, and inside we found windings discoloured over a wide area, the signature of enamel insulation that has exceeded its temperature limit.

Measuring winding resistance across phases showed an imbalance, and insulation resistance to the frame was clearly below the safe threshold, which means this motor cannot be returned to service.

The brushes were unevenly worn with more arcing marks than normal on the commutator, a consequence of running at low voltage for an extended period.

On the control board we found heat marks at the incoming terminals and two discoloured components, which had to be replaced at the same time because parts that have overheated degrade internally even while still working.

What we repaired and what we set up instead

We fitted a new correct-model motor, because rewinding a motor of this size is rarely economic and never as consistent as new, and replaced the brushes and checked the bearings.

We replaced the heat-affected board components and the scorched incoming terminals, then cleaned and applied moisture-protective coating to standard.

We measured the machine's actual current draw at full load, calculated the correct cable size and maximum acceptable length, and produced a table the centre can use to select leads correctly.

Finally we recommended using one single lead of appropriate size rather than joining several, and fully uncoiling it before use, two habits that prevent nearly all incidents of this kind.

The damage, part by part

Voltage drop makes the motor draw more current

A motor tries to maintain output at low voltage by drawing more current, which raises winding temperature until the enamel insulation fails.

Lead joints are hot spots and a fire risk

Every joint has higher resistance than the cable itself, so joining several leads creates multiple hot spots, a genuine fire risk in an occupied space.

Coiled leads trap heat

A lead still wound on its reel cannot dissipate heat, so insulation degrades quickly and resistance rises, increasing the voltage drop further.

Heat spreading to the control board

Abnormally high current overheats terminals and board components. Overheated parts degrade internally even when they still appear to function.

Why the usual fixes do not work

Run at maximum speed to compensate for weak airflow

The worst possible response, because higher speed means higher current and more heat, accelerating the failure of the winding insulation.

Add another extension lead to reach further

Every added lead adds resistance and another joint. The voltage at the far end drops further and there are more hot spots.

Use a small domestic extension lead with a high-powered machine

Ordinary extension leads are designed for light loads. Using one with a high-powered motor over distance is the direct cause of voltage drop and heat accumulation.

Rewind the motor to save money

On a motor of this size rewinding is rarely economic and never as consistent as new, and an overheated motor usually has unseen damage elsewhere as well.

Replace the motor without fixing the power supply

A new motor on the same undersized supply burns out again before long. The cable and distance must be corrected as well.

Repairing the machine is not enough without fixing the site power

The burned-out motor here was not a quality problem with the machine. It was the electrical conditions on site. Replacing the motor without addressing the extension leads simply schedules a repeat.

So we measured the machine's actual current draw at full load, then calculated the correct cable size and maximum acceptable length using standard voltage-drop calculation.

Then we turned it into a simple table the team can read on the spot without calculating anything, which is the only way a guideline actually gets followed.

10 reasons customers choose World Health Disinfection

1. Actual current measured, not read off the plate

We measure current at genuine full load, because the measured figure is what determines the correct cable size.

2. Cable size and maximum length calculated for you

We calculate to standard voltage-drop practice and provide a table the team can use to choose a lead on the spot.

3. Correct-model motor rather than rewinding

An overheated motor usually has unseen damage, so a new correct-model unit gives a more certain and safer result.

4. Heat-affected board components replaced

Components that have exceeded their temperature limit degrade internally even while working, so we replace them together to prevent a repeat.

5. Insulation resistance measured for safety

We measure insulation resistance to the frame every time, because in occupied spaces current leakage is unacceptable.

6. Full-load testing before return

We run the machine continuously at full load and measure body temperature and current draw, to confirm everything is within limits.

7. Nozzle and solution system checked alongside

Weak airflow can have contributing causes in the nozzle or delivery system, so we check all of it to leave no hidden fault.

8. Handover with documentation for the facilities team

The team receives the current measurement, the extension-lead selection table and the list of parts replaced, for the building's maintenance system.

9. Service that fits a convention centre schedule

We time collection and return to changeover windows so tenants are not affected.

10. Nationwide pickup and return

We collect from and return to convention centres, hotels, factories, hospitals, schools and local authorities across Thailand.

Before and after

Before

  • Airflow from the nozzle weaker than normal from the start
  • Extension lead joints too hot to touch
  • Burning insulation smell from the machine at forty minutes
  • Motor windings discoloured over a wide area
  • Insulation resistance below the safe threshold
  • Heat marks on the control board terminals and components

After

  • New correct-model motor fitted with new brushes and checked bearings
  • Heat-affected board components and terminals replaced
  • Insulation resistance back within the safe range
  • Continuous full-load test with temperature and current within limits
  • Extension-lead selection table supplied by distance and cable size
  • Airflow and droplet size back within the model's specification

Our three-step process

1. Inspect the machine and the site power arrangement

We collect the machine, inspect the motor and control board, and ask about and examine the extension leads actually used, then quote with the findings before starting.

2. Correct-model parts and a fix for the root cause

Motor and damaged components replaced, with actual current measured and correct cable sizing calculated for the building's use.

3. Full-load testing and handover with a selection table

Run continuously at full load with temperature and current measured, then returned with the lead selection table and documentation for the facilities team.

We had been joining leads like that for years without thinking it mattered. When the motor burned out mid-event we realised it did. The team measured the current in front of me and produced a selection table. We now have one correctly sized lead assigned to each hall.

Khun Weerachai - Facilities Manager, convention and exhibition centre

Choosing the right extension lead for an electric fogging machine

The simplest principle is that further means thicker, not just longer, because voltage drop depends on both the length of the run and the cross-sectional area of the conductor.

Always use one single lead long enough for the job rather than joining several, because every joint is a high-resistance point and a hot spot, which is a direct fire risk.

Fully uncoil the lead from its reel before use every time. A lead still wound on its reel cannot dissipate heat and gets hot very quickly under a heavy load.

Check the plug and socket of the lead before use. Replace it immediately if you see scorching, melting or loose pins, because a poor contact is the most dangerous heat source of all.

Warning signs that the machine is not getting enough voltage

The first sign is weak airflow from the very start rather than airflow that gradually declines. If the machine is weak from the beginning with a clean nozzle, suspect the power supply first.

The second is a deeper, heavier motor note, the sound of a motor working harder than it should to maintain output.

The third is a warm or hot lead or joint. If it is noticeably warm to the touch, stop immediately and move to a thicker or shorter lead.

The fourth is lights in the area dimming slightly when the machine starts, which indicates that circuit is near its load limit. Move to a socket on another circuit.

Frequently asked questions

Can an over-long extension lead really burn out a motor?

Yes. The voltage drop makes the motor draw more current to maintain output, so winding temperature exceeds the limit and the enamel insulation fails.

Can I join several extension leads?

Not advisable. Every joint has higher resistance than the cable and becomes a hot spot. Use one single lead of adequate length and correct size.

Why must the lead be uncoiled?

A coiled lead cannot dissipate heat. Under a heavy load it heats quickly, degrading insulation and raising resistance further.

Can a burned-out motor be rewound?

Sometimes, but it is rarely economic and never as consistent as new, and an overheated motor usually has damage elsewhere too. We recommend a correct-model replacement.

How long does the repair take?

Motor replacement with board repair typically takes three to seven working days, depending on motor availability for the model.

How do I know my lead is adequate?

Send us the machine model and the distance you need and we will measure actual current draw and calculate the cable size and maximum length as a table, at no charge.

Do you serve convention centres and hotels?

Yes. We serve convention centres, hotels, factories, hospitals, schools and local authorities nationwide, scheduling around your events.

Do you repair thermal fogging machines too?

Yes. We repair and maintain both thermal fogging machines and all types of ULV equipment, engine and electrical alike.

Any machine can burn out if the site power is inadequate

Many burned-out motors in electric fogging machines have nothing to do with the machine. They come from extension leads that are too long and too thin, which is entirely fixable by choosing the right cable.

World Health Disinfection repairs electric ULV machines and thermal fogging equipment, inspects site power arrangements and provides lead selection tables, for convention centres, hotels, factories and organisations across Thailand.

Send us your model and the symptom and we will assess it at no charge.

Free assessment by an experienced technician

Electric ULV repair, thermal fogger repair and electrical system work. Nationwide pickup and return.

View our fogging machine repair service

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