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VSD motor lead check

Check a drive’s motor lead: peak voltage, length and cable.

AS/NZS 3000

Reads 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.

Motor power
22 kW
Supply voltage
400 V
Motor power factor
0.85
Motor's rated peak voltage
1,000 V
Motor lead length
60 m
Cable
Screened, symmetrical
Output filter
None
Maker's lead limit, no filter
100 m
Pulse rise time
0.1 µs
Pulse speed in the cable
150 m/µs

Motor lead

Fails

Peak at the motor, up to
1,131V
Maker's lead limit
100m
Critical lead length
7.5m
Current for the cable size
41.51A
Drive d.c. bus
565.7V

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

Calculation steps

  1. Current for the cable size41.51A
  2. Drive d.c. bus565.7V
  3. Critical lead length at a 0.1 µs rise time7.5m
  4. Peak at the motor, up to1,131V
  5. Motor insulation, rated peak1,000V
  6. Maker's lead limit, no filter100m
  7. Motor leadResultFails

About this calculator

How this is calculated

A variable speed drive does not send a smooth sine wave down the motor lead. It sends fast pulses at the voltage of its d.c. bus, and each pulse can reflect at the motor. On a long enough lead the reflection nearly doubles the voltage at the motor terminals, which can break down the insulation of a motor not rated for it. This tool works that peak, checks the lead against the drive maker's limit, and gives the current to size the cable for.

The bus voltage is the supply voltage times √2. The critical length is how far a pulse travels in half its rise time; on a lead longer than that the reflection is full and the peak at the motor reaches about twice the bus. On a shorter lead the tool scales it down. A dv/dt filter or an output reactor slows the edge but does not end the reflection, so the tool makes no estimate of its own: you enter the peak at the motor from the filter maker's data for your lead, and the result says it is the maker's figure. Only a sine filter brings the peak down to the bus voltage. The peak is compared with the motor maker's rating. The lead is compared with the drive maker's limit, with or without the filter.

The current is the motor tool's full load current. The rise time, the pulse speed, the limits and the motor's rating are makers' data, entered by you, so the result calls them assumptions. AS/NZS 3000 warns of high frequency current on the protective earth, and notes the cable tables are for 50 Hz.

StepTable or clauseWhat it decides
Cable currentThe motor toolThe current for the cable size
Bus voltageSupply voltage times √2The height of each pulse
Critical lengthPulse speed times half the rise timeWhere the reflection becomes full
Peak at the motorUp to twice the bus; the filter maker's figure with a dv/dt filter or reactor; the bus with a sine filterThe voltage the motor sees
Lead lengthThe drive maker's limitWhether the lead needs a filter
Earthing and ratingsAS/NZS 3000 Cl 5.4.8 and Cl 4.12.8 Note 1The earth current and the 50 Hz basis

Worked examples

Limits

The peak is a first estimate from the lead length alone. The real peak depends on the cable's and motor's surge impedance, the switching pattern and the drive's own output stage, which the makers test. The tool does not size the cable for harmonics on the drive's supply side, the cable's capacitive charging current, or bearing currents.

See also: Motor, Motor starting and Cable size.

Questions

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

Why does a long motor lead matter on a VSD?

A drive sends fast voltage pulses. On a long lead each pulse reflects at the motor and the voltage there can nearly double. That can break down the insulation of a motor not rated for it.

What is the critical lead length?

The length a pulse travels in half its rise time. Past it the reflection is full. With a rise time of 0.1 µs and a pulse speed of 150 m/µs it is 7.5 m, so most motor leads are past it.

Do I need a dv/dt or sine filter?

Where the lead is past the drive maker's limit, or the peak is past the motor's rating. A dv/dt filter or reactor slows the edge but leaves some overshoot, so the tool takes that peak from the filter maker's data. A sine filter smooths the output nearly to a sine wave.

What cable should a VSD use?

A screened, symmetrical cable with the screen bonded all round at both ends, as the drive maker says. Size it for the motor current, and remember the AS/NZS 3008.1 ratings are for 50 Hz.

Why can a VSD give a shock from earthed metal?

AS/NZS 3000 Cl 5.4.8 warns that a drive can put high frequency current on the protective earth, with touch voltages up to 100 V. A 50 Hz tester may not show it. Earth the drive as its maker says.

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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