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Servo motor and servo drive

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Servo motor and servo drive

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this presentation gives a clear idea of how the servo motor and servo drive working explained in detail and attached video have a clear idea of how servo motor works......enjoy, i hope you will like this.... :)

this presentation gives a clear idea of how the servo motor and servo drive working explained in detail and attached video have a clear idea of how servo motor works......enjoy, i hope you will like this.... :)

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Servo motor and servo drive

  1. 1. Sai kumar
  2. 2.  A servomotor is a rotary actuator or linear actuator that allows for precise control of angular or linear position, velocity and acceleration.  Essentially, it consists of an 1. electric motor, 2. feedback device, 3. electronic controller.
  3. 3.  Motors can be either AC or DC  Can be of 1 phase or 3 phase.  DC motors can be brushed or brushless.  Brushless DC motors are more expensive, drives are more complex, but are more reliable and maintenance free.  Feedback device for servomotors is typically an encoder or resolver built into the motor frame.  Control circuitry is a motion controller (generates motion) and a drive to supply power to the motor
  4. 4.  AC servo motor  Dc servo motor  Continuous rotation servo motor  Linear servo motor
  5. 5.  Servo drive PLC (transistor type) Servo motor Power source contactor Load
  6. 6.  Position control using Pulse Width Modulation Technique.  The width of the pulse applied to the motor is varied and send for a fixed amount of time.  The pulse width determines the angular position of the servo motor.  For example a pulse width of 1 ms -a angular position of 0 degrees, a pulse width of 2 ms - a angular width of 180 degrees.
  7. 7.  Electronic amplifier used to power electric servomechanisms.  A servo drive monitors the feedback signal from the servomechanism and continually adjusts for deviation from expected behaviour.
  8. 8.  linear relationship b/n speed and electric control signal  Steady state stability  Wide range of speed control  Low mechanical and electrical inertia  Fast response
  9. 9.  Robotics  Conveyor belts  Camera auto focus  Robotic vehicles  Solar tracking system  CNC machines  Antenna positioning  Metal cutting & metal forming m/c – millimg m/c, lathe, grinding, pressing, punching, bending in metal fabrication.  Textiles  Printers  Automatic door openers
  10. 10. Thank you….

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