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Inductor
What is Inductor
• Aninductor, alsocalleda coil or reactor,is a
passive two-terminalelectricalcomponent which
resists changes in electric current passing through it.
It consists of a conductor such as a wire,usually
woundinto a coil. Energy is stored in a magnetic
fieldin the coil as long as currentflows.
• An Inductor, also known asa reactoris simply a coil
ofwire,which has many electricalpropertieswhen
subjected toa magnetic field.When an electric
current is passed through it,a magnetic fieldis
created. This magnetic field helps to store the
electriccurrentfor a short time,even if the supply is
removed.
Home made Inductor
Inductor Genre tar
Where Inductors are used?
Types of Inductor
Fixed Inductor
There are many types of inductors ; all differ in size, core material, type
of windings, etc. so they are used in wide range of applications. The
maximum capacity of the inductor gets specified by the type of core
material and the number of turns on coil.
Depending on the value, inductors typically exist in two forms, fixed and
variable. .The number of turns of the fixed coil remains the same. This
type is like resistors in shape and they can be distinguished by the fact
that the first color band in fixed inductor is always silver. They are usually
used in electronic equipment as in radios, communication apparatus,
electronic testing instruments, etc.
Ferromagnetic Core Inductor or
Iron-core Inductors
• This type uses ferromagnetic materials such as ferrite or iron
in manufacturing the inductor for increasing the inductance.
Due to the high magnetic permeability of these materials,
inductance can be increased in response of increasing the
magnetic field.
• At high frequencies it suffers from core loses, energy loses,
that happens in ferromagnetic cores
• FERRITE CORE – For tuned circuits at Higher Frequencies.
Air Core Inductor
• Air cored inductor is the type where no solid core exists inside the
coils. In addition, the coils that wound on nonmagnetic materials
such as ceramic and plastic, are also considered as air cored. This
type does not use magnetic materials in its construction.
• The main advantage of this form of inductors is that, at high
magnetic field strength, they have a minimal signal loss. On the
other hand, they need a bigger number of turns to get the same
inductance that the solid cored inductors would produce. They are
free of core losses because they are not depending on a solid core.
• AIR CORE – used for Radio Frequencies.
Toroidal Core Inductor
• Toroidal Inductor constructs of a circular ring-formed magnetic core
that characterized by it is magnetic with high permeability material
like iron powder, for which the wire wounded to get inductor. It
works pretty well in AC electronic circuits' application.
• The advantage of this type is that, due to its symmetry, it has a
minimum loss in magnetic flux; therefore it radiates less
electromagnetic interference near circuits or devices.
Electromagnetic interference is very important in electronics that
require high frequency and low power.
Laminated Core Inductor
• This form gets typified by its stacks made with thin steel sheets, on
top of each other designed to be parallel to the magnetic field
covered with insulating paint on the surface; commonly on oxide
finish. It aims to block the eddy currents between steel sheets of
stacks so the current keeps flowing through its sheet and
minimizing loop area for which it leads to great decrease in the loss
of energy. Laminated core inductor is also a low frequency inductor.
It is more suitable and used in transformer applications.
• LAMINATED RON CORE – used for Low Frequencies.
Powdered Iron Core
• Its core gets constructed by using magnetic materials that get
characterized by its distributed air gaps. This gives the advantage to
the core to store a high level of energy comparing to other types. In
addition, very good inductance stability is gained with low losses in
eddy current and hysteresis. Moreover, it has the lowest cost
alternative.
• POWDERED RON CORE – used for Low Frequencies
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Inductor

  • 3. What is Inductor • Aninductor, alsocalleda coil or reactor,is a passive two-terminalelectricalcomponent which resists changes in electric current passing through it. It consists of a conductor such as a wire,usually woundinto a coil. Energy is stored in a magnetic fieldin the coil as long as currentflows. • An Inductor, also known asa reactoris simply a coil ofwire,which has many electricalpropertieswhen subjected toa magnetic field.When an electric current is passed through it,a magnetic fieldis created. This magnetic field helps to store the electriccurrentfor a short time,even if the supply is removed.
  • 4.
  • 5.
  • 7.
  • 10.
  • 11.
  • 12. Types of Inductor Fixed Inductor There are many types of inductors ; all differ in size, core material, type of windings, etc. so they are used in wide range of applications. The maximum capacity of the inductor gets specified by the type of core material and the number of turns on coil. Depending on the value, inductors typically exist in two forms, fixed and variable. .The number of turns of the fixed coil remains the same. This type is like resistors in shape and they can be distinguished by the fact that the first color band in fixed inductor is always silver. They are usually used in electronic equipment as in radios, communication apparatus, electronic testing instruments, etc.
  • 13. Ferromagnetic Core Inductor or Iron-core Inductors • This type uses ferromagnetic materials such as ferrite or iron in manufacturing the inductor for increasing the inductance. Due to the high magnetic permeability of these materials, inductance can be increased in response of increasing the magnetic field. • At high frequencies it suffers from core loses, energy loses, that happens in ferromagnetic cores • FERRITE CORE – For tuned circuits at Higher Frequencies.
  • 14. Air Core Inductor • Air cored inductor is the type where no solid core exists inside the coils. In addition, the coils that wound on nonmagnetic materials such as ceramic and plastic, are also considered as air cored. This type does not use magnetic materials in its construction. • The main advantage of this form of inductors is that, at high magnetic field strength, they have a minimal signal loss. On the other hand, they need a bigger number of turns to get the same inductance that the solid cored inductors would produce. They are free of core losses because they are not depending on a solid core. • AIR CORE – used for Radio Frequencies.
  • 15. Toroidal Core Inductor • Toroidal Inductor constructs of a circular ring-formed magnetic core that characterized by it is magnetic with high permeability material like iron powder, for which the wire wounded to get inductor. It works pretty well in AC electronic circuits' application. • The advantage of this type is that, due to its symmetry, it has a minimum loss in magnetic flux; therefore it radiates less electromagnetic interference near circuits or devices. Electromagnetic interference is very important in electronics that require high frequency and low power.
  • 16. Laminated Core Inductor • This form gets typified by its stacks made with thin steel sheets, on top of each other designed to be parallel to the magnetic field covered with insulating paint on the surface; commonly on oxide finish. It aims to block the eddy currents between steel sheets of stacks so the current keeps flowing through its sheet and minimizing loop area for which it leads to great decrease in the loss of energy. Laminated core inductor is also a low frequency inductor. It is more suitable and used in transformer applications. • LAMINATED RON CORE – used for Low Frequencies.
  • 17. Powdered Iron Core • Its core gets constructed by using magnetic materials that get characterized by its distributed air gaps. This gives the advantage to the core to store a high level of energy comparing to other types. In addition, very good inductance stability is gained with low losses in eddy current and hysteresis. Moreover, it has the lowest cost alternative. • POWDERED RON CORE – used for Low Frequencies