Industrial Control Electronics
Our first objective is to remove the mystery from electrically controlled circuits and present them in simple, basic terms or concepts that require no higher level mathematics. A second goal is to develop complex circuits from uncomplicated examples that gradually build upon basic concepts and then to reapply these principles to more intricate circuits and still retain the basic ideas. The intent of the book is to allow ANYONE WITH A DESIRE TO LEARN to have the ability to function in a control environment with confidence and to have logical reasoning for applying the principles presented.
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allow alternating current amount amperes amplidyne armature current basic capacitor chapter closed coil complete a response components condition configuration connections control circuit control diagram control elements control voltage conveyor three current flow DC motor de-energized decrease describe developed discussed electrical enclosure energized environment equipment examine example factor fault current float switch function conveyor fuse gate illustrates important increase indicate installed interlock ladder diagram load magnetic field manual mechanical microprocessor module motor starter normal normally-closed normally-open OBJECTIVES Upon successful optoisolator Photocell pilot device position possible power source printed circuit board problem listed programmable controllers reactance reed relay relay contacts replace resistance resistor robot rotation short circuit shown in Figure signal solid-state speed control start-stop circuit stop button TDOE temperature thermocouple three-phase time-delay torque transformer triac truth table typical volts wiring