Magnetically coupled circuits

Slides:



Advertisements
Similar presentations
Magnetically coupled circuits
Advertisements

CHAPTER 5: TRANSFORMER AND MUTUAL INDUCTANCE
Lecture 111 EEE 302 Electrical Networks II Dr. Keith E. Holbert Summer 2001.
1 ELECTRICAL TECHNOLOGY EET 103/4  Define and explain sine wave, frequency, amplitude, phase angle, complex number  Define, analyze and calculate impedance,
ECE 201 Circuit Theory 11 Mutual Inductance in Terms of Self - Inductance L1L1 L2L2.
CHAPTER 11 Balanced Three - Phase Circuits. CHAPTER CONTENTS 11.1 Balanced Three-Phase Voltages 11.1 Balanced Three-Phase Voltages 11.2 Three-Phase Voltage.
Given Connections Solution
Magnetically Coupled Circuits
Transformers and Coupled Circuits
MAGNETICALLY COUPLED NETWORKS
Chapter 9 Ideal Transformer
MAGNETICALLY COUPLED NETWORKS LEARNING GOALS Mutual Inductance Behavior of inductors sharing a common magnetic field Energy Analysis Used to establish.
Coupling Element and Coupled circuits Coupled inductor Ideal transformer Controlled sources.
Fundamentals of Electric Circuit Analysis, by Clayton Paul Copyright 2000 © John Wiley & Sons. Inc. All rights reserved. Figure 5.1 A parallel-plate capacitor.
Chapter 10 Magnetically Coupled Circuits and Resonance
Chapter 13 Magnetically Coupled Circuits
Magnetically Coupled Networks
Lesson 2 How do electric circuits work?. Electric Circuits You know that electric circuits only work when the circuit is closed. OPEN.
Magnetically Coupled Circuits Instructor: Chia-Ming Tsai Electronics Engineering National Chiao Tung University Hsinchu, Taiwan, R.O.C.
Fundamentals of Electric Circuits Chapter 13 Copyright © The McGraw-Hill Companies, Inc. Permission required for reproduction or display.
10. Magnetically coupled networks
Alexander-Sadiku Fundamentals of Electric Circuits
1 ELECTRICAL TECHNOLOGY EET 103/4  Explain and analyze series and parallel circuits  Explain, derive and analyze Ohm’s Law, Kirchhoff Current Law, Kirchhoff.
Chapter 28 Inductance; Magnetic Energy Storage. Self inductance 2 Magnetic flux Φ B ∝ current I Electric currentmagnetic fieldEMF (changing) Phenomenon.
McGraw-Hill © 2013 The McGraw-Hill Companies Inc. All rights reserved. Electricity Principles & Applications Eighth Edition Chapter 12 Transformers (student.
Drill Exercise A linear transformer couples a load consisting of a 360 Ω resistor in series with a 0.25 H inductor to a sinusoidal voltage source, as shown.
Lecture 17: Analysis with Sinusoidal Sources, Transformers Nilsson ENG17 : Circuits I Spring May 26, 2015.
LITAR ELEKTRIK II EET 102/4. SILIBUS LITAR ELEKTRIK II  Mutual Inductance  Two port Network Pengenalan Jelmaan Laplace Pengenalan Jelmaan Laplace Kaedah.
Elec467 Power Machines & Transformers Electric Machines by Hubert, Chapter 12 Topic: Self-excited and compound generators, load distribution.
The Transformer (Primary has N P turns) (Secondary has N S turns) The source side is called Primary The load side is called Secondary.
MAGNETICALLY COUPLED NETWORKS
Circuits II EE221 Unit 10 Instructor: Kevin D. Donohue Magnetically Coupled Circuits, Linear Transformers, Transformer Circuits.
1 Grob Basic Electronics Chapter 4 SERIES CIRCUITS.
1 EKT 441 MICROWAVE COMMUNICATIONS CHAPTER 1: TRANSMISSION LINE THEORY (PART III)
(Transformer Coupling)
1 ELECTRICAL TECHNOLOGY EET 103/4 Define and analyze the principle of transformer, its parameters and structure. Describe and analyze Ideal transformer,
1 ELECTRICAL TECHNOLOGY EET 103/4 Define and analyze the principle of transformer, its parameters and structure. Describe and analyze Ideal transformer,
1 、 grasp mutual inductance and the disappear method of mutual inductance 2 、 grasp the calculation of including mutual inductance 10 Circuit That Contain.
E E 2415 Lecture 12 Mutual Inductance and Ideal Transformers.
ELECTRIC CIRCUITS EIGHTH EDITION JAMES W. NILSSON & SUSAN A. RIEDEL.
Chapter 13 Magnetically Coupled Circuits
Lecture 17: Mutual Inductance and Transformers Nilsson & Riedel 6.4, 6.5, 9.10, 9.11 ENG17 (Sec. 2): Circuits I Spring May 27, 2014.
1 Eeng 224 Chapter 13 Transformer Applications Huseyin Bilgekul Eeng224 Circuit Theory II Department of Electrical and Electronic Engineering Eastern Mediterranean.
Chapter 13 Ideal Transformers
1 ELECTRICAL TECHNOLOGY ERT 105/3 Define and analyze the principle of transformer, its parameters and structure. Describe and analyze Ideal transformer,
Chapter 13 Ideal Transformers
Chapter 10 Magnetically Coupled Circuits and Resonance
Lesson 9: Practical Transformer Model and Calculations
Ideal Transformers Chapter Objectives:
Circuits II EE221 Unit 10 Instructor: Kevin D. Donohue
Thevenin Theorem Any combination of batteries and resistances with two terminals can be replaced by a single voltage source e and a single series resistor.
ELEC-E8409 HIGH VOLTAGE ENGINEERING
PRINCIPLE OF TRANSFORMER  Mutual Induction principle  Two coils are inductively coupled  If current in one coil changes uniformly, the emf will induced.
Electric Circuits Fundamentals
Energy Conversion and Transport George G. Karady & Keith Holbert
11. Magnetically Coupled Circuits
Engineering Circuit Analysis
Electro-Magnetic Induction
Ch. 13 – Ideal Transformers
L = L1 + L2 + L3 + 2M12 – 2M23 –2M31 = x6 – 2x6 –2x4 Problem 13.2 Determine the inductance of the three series-connected inductors. Consider.
التعلم بالإكتشاف المراجع:
Lecture 10 - Transformers/Three-Phase Circuits
Electric Circuits (EELE 2312)
Announcement Next class: 10 min Quiz Material: Book Chapter 10
Midterm Solutions Source Transformations
Basic Circuit Analysis
Electric Currents from Magnetism
Determining the Function Obtained from a Series of Transformations.
Ch. 13 – Ideal Transformers
MAGNETICALLY COUPLED CIRCUIT
Presentation transcript:

Magnetically coupled circuits Chapter 13 Magnetically coupled circuits

Series connection 1 2 M 1 2 M (a)mutually coupled coils in series-aiding connection (b)mutually coupled coils in series–opposing connection Total inductance LT=L1+L2+2M LT=L1+L2-2M

Solution:

Practice Example 13.1

Solution:

Example 13.2

Solution:

Practice Example 13.2

Solution:

Ideal Transformer

Power in the Transformer

Analysis of Circuit containing Ideal Transformer

Reflected Impedance

Analysis of Circuit containing Ideal Transformer by Thevenin method