Why a Motor Can Be Hot Without Being Overloaded
A hot motor is not automatically an overloaded motor.
Why a Motor Can Be Hot Without Being Overloaded Read Post »
A hot motor is not automatically an overloaded motor.
Why a Motor Can Be Hot Without Being Overloaded Read Post »
A variable-speed drive can save substantial energy when the process needs less flow from a suitable fan or pump.
Variable-Speed Drives Save Energy in Some Loads, Not Every Load Read Post »
A motor starting capacitor helps create the phase relationship needed for starting torque in a suitable single-phase motor.
A Capacitor-Start Motor Is Not Storing a Burst of Battery-Like Energy Read Post »
A deteriorating motor bearing can add friction and heat before it seizes completely.
Why Motor Bearings Can Waste Energy Before They Seize Read Post »
A motor nameplate speed describes a rated operating condition, not necessarily the exact speed at every load.
Motor Nameplate RPM Is Not Always the Speed You Measure Read Post »
A small fan can sound loud while consuming little electrical power because noise depends on speed, blade interaction, airflow conditions, and vibration.
Why a Small Fan Can Be Loud Even When It Uses Little Power Read Post »
Brushless motors still require their magnetic fields to be switched in the right sequence.
Brushless Motors Still Need Switching—The Brushes Moved into Electronics Read Post »
A lighting dimmer is not automatically suitable for controlling a fan motor.
A Fan Speed Controller Is Not Always a Light Dimmer Read Post »
A stalled motor can remain electrically energized while producing no useful shaft motion.
Why a Stalled Motor Can Overheat So Quickly Read Post »
A motor can draw much more current during startup than after it reaches operating speed.
Motor Startup Current Can Dwarf Running Current—Without a Fault Read Post »