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Lecture
Asynchronous Motor: Construction
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Related lectures (34)
Rotating Field and Winding, Demonstration
MOOC: Electromechanical conversion II
Demonstrates the measurement of the rotating field in an asynchronous motor.
Asynchronous Motor: Operating Principle
MOOC: Electromechanical conversion II
Explains the conditions for obtaining a couple out of phase with the stator field in an asynchronous motor.
Rotating Field, Torque Generation
MOOC: Electromechanical conversion II
Explains the interaction of rotating fields in motors and the conditions on supply frequencies.
Asynchronous Motor: Electronic Control
MOOC: Electromechanical conversion II
Covers voltage/frequency variation in big engines and vector control for synchronous and asynchronous motors.
Asynchronous Motor: Examples of Implementations
MOOC: Electromechanical conversion II
Explores practical examples of asynchronous motors in aviation, ski lifts, and household heating systems.
Asynchronous Motor Demonstration
MOOC: Electromechanical conversion II
Demonstrates an asynchronous motor performance analysis using an oscilloscope.
Equivalent Electrical Diagram: Voltage Equations
MOOC: Electromechanical conversion II
Covers the voltage equations and reported quantities of an asynchronous motor.
Asynchronous Motor: Voltage Equations
MOOC: Electromechanical conversion II
Explains slip, rotating field, equivalent windings, and voltage equations in asynchronous motors.
Rotating Field and Winding: Introduction
MOOC: Electromechanical conversion II
Covers the basics of winding arrangements in motors and their impact on magnetic fields.
Variable Voltage and Frequency Power Supply: Part 1
Discusses the principles of asynchronous motors powered by variable voltage and frequency.
DC Motor, Characteristic Equations
MOOC: Electromechanical conversion II
Explores the characteristic equations of a DC motor and their impact on motor performance.
Torque Analysis: Motors with PMEC
MOOC: Electromechanical conversion II
Covers the analysis of torque in asynchronous motors and the start-up and stall processes.
Fundamentals of Electric Machines: Electromagnetic Principles
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Explains the fundamental principles of electric machines and the generation of electromagnetic torque.
Basic Elements of Electric Machines
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Covers the basic elements of electric machines, including magnetic circuits and different types of motors.
Induction Motors: Starting Methods and Characteristics
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Discusses asynchronous induction motors, focusing on their starting methods and characteristics, including star-delta and auto-transformer techniques.
Direct Current Machines: Principles and Applications
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Provides an overview of direct current machines, covering their principles, construction, and applications in various fields.
Magnetostatics: Magnetic Field and Force
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Covers magnetic fields, Ampère's law, and magnetic dipoles with examples and illustrations.
Synchronous Motors: Permanent Magnet Applications and Characteristics
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Discusses the principles and applications of synchronous motors with permanent magnets, focusing on their operation and performance characteristics.
Induction Motors: Operating Principles
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Explores the operating principles of induction motors, focusing on torque characteristics, starting methods, and power balance.
Magnetostatics: Applications and Laplace's Force
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Explores the applications of Lorentz force and Laplace's force in devices like galvanometers and electric motors.
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