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Basic Electric Circuits – © 2020 Mouli Sankaran Email: mouli.sankaran@yahoo.com
Basic Electric Circuits – © 2020 Mouli Sankaran Email: mouli.sankaran@yahoo.com 2
Session 16C: Focus
 Inductors
◦ L in terms of Construction parameters
◦ Windings
◦ Limitations of Inductor
◦ Energy Stored in an Inductor
 Problems
Basic Electric Circuits – © 2020 Mouli Sankaran Email: mouli.sankaran@yahoo.com
Construction of Inductors
Basic Electric Circuits – © 2020 Mouli Sankaran Email: mouli.sankaran@yahoo.com 4
Construction of an Inductor
 Physical inductor is constructed by winding a length
of wire into a coil.
 This serves effectively to increase the current that is
causing the magnetic field
◦ And also to increase the “number” of neighbouring
circuits into which Faraday’s voltage may be induced
 The result of this twofold effect is that the
inductance of a coil is approximately proportional
to the square of the number (N2 term) of complete
turns made by the conductor out of which it is
formed
Basic Electric Circuits – © 2020 Mouli Sankaran Email: mouli.sankaran@yahoo.com 5
L in terms of Construction Parameters
What is the direction of flux here?
 L is in henries
 μ = μο μr is the effective permeability of the core
 μr is the relative permeability of the core
 μο is the Permeability of Free Space (4.π.10-7)
 N is the Number of turns
 A is the Inner Core Area (π.r2) in m2
 l is the length of the Coil in metres
Basic Electric Circuits – © 2020 Mouli Sankaran Email: mouli.sankaran@yahoo.com 6
Windings
 The wire or conductor which constitutes the coil is
called the winding.[
 Windings in which the turns touch, the wire must be
insulated with a coating of enamel (thin layer of
coating, which is an insulator) to prevent the current
from passing between the wire turns
Basic Electric Circuits – © 2020 Mouli Sankaran Email: mouli.sankaran@yahoo.com 7
Inductance of an Inductor
Factors affecting Inductance:
a) The number of turns of wire in the inductor.
b) The material of the core.
c) The shape and size of the core.
d) The shape, size and arrangement of the wire making up the
coils.
 Because inductance depends on so many variable quantities
◦ It is quite difficult to calculate it accurately
 External effects caused by other components can also affect
its value of inductance once it is assembled in a circuit
Basic Electric Circuits – © 2020 Mouli Sankaran Email: mouli.sankaran@yahoo.com 8
Limitations of Inductors
 Practical inductors typically range from a few micro-
henrys to tens of henrys.
 From a circuit design standpoint it is important to note
that inductors cannot be easily fabricated on an
Integrated Circuit (IC) chip
 And therefore chip designs typically employ only the
following elements that can be easily fabricated in
microcircuit form
◦ Electronic devices (Diodes, transistors)
◦ Resistors, and
◦ Capacitors
◦ Though, at times, rarely inductors are made inside ICs
Basic Electric Circuits – © 2020 Mouli Sankaran Email: mouli.sankaran@yahoo.com 9
Problem 1
 Given the waveform of the current in a 3 H inductor, determine the
inductor voltage and sketch it.
Basic Electric Circuits – © 2020 Mouli Sankaran Email: mouli.sankaran@yahoo.com 10
Problem 2
 The current in a 10-mH inductor has the waveform shown below,
determine the voltage waveform.
Basic Electric Circuits – © 2020 Mouli Sankaran Email: mouli.sankaran@yahoo.com 11
Energy Stored in L
Power delivered to the inductor can be used
to find the energy stored in it:
Energy stored in the magnetic field is:
Assuming the
Initial current
stored in L to be zero,
similar to capacitor:
Basic Electric Circuits – © 2020 Mouli Sankaran Email: mouli.sankaran@yahoo.com 12
Problem 3
 Find the total energy stored in the circuit:
This circuit has only DC sources. Based on our earlier discussions about
capacitors and inductors and constant sources, we can replace
the capacitors with open circuits and the inductors with short circuits
Basic Electric Circuits – © 2020 Mouli Sankaran Email: mouli.sankaran@yahoo.com 13
Problem 3 … contd.
Apply KCL at node A:
Apply KVL outside loop:
Total Energy stored:
Basic Electric Circuits – © 2020 Mouli Sankaran Email: mouli.sankaran@yahoo.com 14
Session 16C: Summary
 Inductors
◦ L in terms of Construction parameters
◦ Windings
◦ Limitations of Inductor
◦ Energy Stored in an Inductor
 Problems
Basic Electric Circuits – © 2020 Mouli Sankaran Email: mouli.sankaran@yahoo.com 15
References
Ref 1 Ref 2

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Basic Electric Circuits Session 16C

  • 1. Basic Electric Circuits – © 2020 Mouli Sankaran Email: mouli.sankaran@yahoo.com
  • 2. Basic Electric Circuits – © 2020 Mouli Sankaran Email: mouli.sankaran@yahoo.com 2 Session 16C: Focus  Inductors ◦ L in terms of Construction parameters ◦ Windings ◦ Limitations of Inductor ◦ Energy Stored in an Inductor  Problems
  • 3. Basic Electric Circuits – © 2020 Mouli Sankaran Email: mouli.sankaran@yahoo.com Construction of Inductors
  • 4. Basic Electric Circuits – © 2020 Mouli Sankaran Email: mouli.sankaran@yahoo.com 4 Construction of an Inductor  Physical inductor is constructed by winding a length of wire into a coil.  This serves effectively to increase the current that is causing the magnetic field ◦ And also to increase the “number” of neighbouring circuits into which Faraday’s voltage may be induced  The result of this twofold effect is that the inductance of a coil is approximately proportional to the square of the number (N2 term) of complete turns made by the conductor out of which it is formed
  • 5. Basic Electric Circuits – © 2020 Mouli Sankaran Email: mouli.sankaran@yahoo.com 5 L in terms of Construction Parameters What is the direction of flux here?  L is in henries  μ = μο μr is the effective permeability of the core  μr is the relative permeability of the core  μο is the Permeability of Free Space (4.π.10-7)  N is the Number of turns  A is the Inner Core Area (π.r2) in m2  l is the length of the Coil in metres
  • 6. Basic Electric Circuits – © 2020 Mouli Sankaran Email: mouli.sankaran@yahoo.com 6 Windings  The wire or conductor which constitutes the coil is called the winding.[  Windings in which the turns touch, the wire must be insulated with a coating of enamel (thin layer of coating, which is an insulator) to prevent the current from passing between the wire turns
  • 7. Basic Electric Circuits – © 2020 Mouli Sankaran Email: mouli.sankaran@yahoo.com 7 Inductance of an Inductor Factors affecting Inductance: a) The number of turns of wire in the inductor. b) The material of the core. c) The shape and size of the core. d) The shape, size and arrangement of the wire making up the coils.  Because inductance depends on so many variable quantities ◦ It is quite difficult to calculate it accurately  External effects caused by other components can also affect its value of inductance once it is assembled in a circuit
  • 8. Basic Electric Circuits – © 2020 Mouli Sankaran Email: mouli.sankaran@yahoo.com 8 Limitations of Inductors  Practical inductors typically range from a few micro- henrys to tens of henrys.  From a circuit design standpoint it is important to note that inductors cannot be easily fabricated on an Integrated Circuit (IC) chip  And therefore chip designs typically employ only the following elements that can be easily fabricated in microcircuit form ◦ Electronic devices (Diodes, transistors) ◦ Resistors, and ◦ Capacitors ◦ Though, at times, rarely inductors are made inside ICs
  • 9. Basic Electric Circuits – © 2020 Mouli Sankaran Email: mouli.sankaran@yahoo.com 9 Problem 1  Given the waveform of the current in a 3 H inductor, determine the inductor voltage and sketch it.
  • 10. Basic Electric Circuits – © 2020 Mouli Sankaran Email: mouli.sankaran@yahoo.com 10 Problem 2  The current in a 10-mH inductor has the waveform shown below, determine the voltage waveform.
  • 11. Basic Electric Circuits – © 2020 Mouli Sankaran Email: mouli.sankaran@yahoo.com 11 Energy Stored in L Power delivered to the inductor can be used to find the energy stored in it: Energy stored in the magnetic field is: Assuming the Initial current stored in L to be zero, similar to capacitor:
  • 12. Basic Electric Circuits – © 2020 Mouli Sankaran Email: mouli.sankaran@yahoo.com 12 Problem 3  Find the total energy stored in the circuit: This circuit has only DC sources. Based on our earlier discussions about capacitors and inductors and constant sources, we can replace the capacitors with open circuits and the inductors with short circuits
  • 13. Basic Electric Circuits – © 2020 Mouli Sankaran Email: mouli.sankaran@yahoo.com 13 Problem 3 … contd. Apply KCL at node A: Apply KVL outside loop: Total Energy stored:
  • 14. Basic Electric Circuits – © 2020 Mouli Sankaran Email: mouli.sankaran@yahoo.com 14 Session 16C: Summary  Inductors ◦ L in terms of Construction parameters ◦ Windings ◦ Limitations of Inductor ◦ Energy Stored in an Inductor  Problems
  • 15. Basic Electric Circuits – © 2020 Mouli Sankaran Email: mouli.sankaran@yahoo.com 15 References Ref 1 Ref 2