What are the recommended maximum Start/Stops per hour of a standard electric motor?

Why Frequent Starts and Stops Matter
Frequent cycling (starting and stopping) of electric motors can lead to:

Increased thermal stress on windings and insulation

Accelerated wear on mechanical components (splines, bearings, etc.)

Overloading of control elements like pressure switches, relays, and capacitors

Motors require a cool-down period between starts to dissipate heat generated by inrush current. Without it, premature failure can occur.

Can I Increase Start Frequency?
Yes — but only under certain conditions. Using a motor with a properly configured Inverter or Variable Frequency Drive (VFD) or Soft Starter can mitigate thermal and mechanical stress, allowing for more frequent starts.

If your application requires high cycling, contact our engineering team for a custom recommendation.

Power (kW)2 Pole2 Pole4 Pole4 Pole6 Pole6 Pole
Starts/hrMin Off Time (s)Starts/hrMin Off Time (s)Starts/hrMin Off Time (s)
0.12257545754575
0.18257545754575
0.25257540754575
0.37207540754075
0.55207530754075
0.75157530753475
1.1127625762976
1.5117723772677
2.2108019802280
388016801880
488315831883
5.578814881588
7.569212921492
9.25921192
1151001010012100
154110911011110
18.54115811510115
22412081209120
30313071308130
37314561457145
45317061707170
55318051806180
75222052206220
90227542755275
110232043205320
132260046004600
160160046004600
200110003100031000
22021000
250110002100021000
3151100021000
35521000

Notes:
Values are based on internal testing and application experience.

Off time values are derived from empirical test data assuming variable torque loads.

Always ensure your system design (including control panels and switching components) is rated for your chosen duty cycle.

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