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Introduction
Transformer is the main reason to transmit and
distribute power in AC. Transformer is a device
which works on the principle of mutual induction.
It is based on principle of
MUTUAL INDUCTION.
According to which an e.m.f.
is induced in a coil when
current in the neighboring
coil changes.
Principle of transformer is it convert high voltage (low current) into
low voltage (high current). In ideal transformer, input power is
equal to out power. In transformer the relation between EMF and
current is inversely proportional and EMF and number of turns is
directly proportional to each other. The ratio of Es/Ep= Ns/Np is
called turns ratio or transformer ratio. Then there are two types of
transformer, step-up and step-down transformer.
Transformer is the main reason to transmit
and distribute power in AC.
The ratio is called as turn ratio or transformer ratio.
In idea transformer
I/P power = O/P Power
Put this values in equation III, we get
Applications
There are wide applications of transformers such as,
 step up (increases) or Step down (Decreases) the level of voltage in other
words increases or decreases the level of current, while power almost be
same,
 Welding Machine
 X-ray tube
 mobile charging
 To transform electric current through metallic cables
Applications
 It can increases or decreases the value of L, C or R in an AC circuit. This
can act as impedance transferring device
 It can isolate two circuit electrically
 To prevent DC from passing from one circuit to the other
 Step-down level of voltage at single phase 11KV to 220 V, Three phase
11KV to 440 V
Applications
The current transformer Np/Ns and Potential transformer Ns/Np are used
in industry and power system
 It used for impedance matching
 Impedance transformer ratio=(Ns/Np)2
Power Losses In Transformer
Iron losses
Copper losses
Eddy current losses
Hysteresis losses
Heat losses I2R
Transformer Efficiency
Transformer efficiency is given as:
%
100


in
out
P
P

%
100



loss
out
out
P
P
P

transformer breif introduction HV and LV Connection

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transformer breif introduction HV and LV Connection

  • 1.
  • 2. Introduction Transformer is the main reason to transmit and distribute power in AC. Transformer is a device which works on the principle of mutual induction.
  • 3. It is based on principle of MUTUAL INDUCTION. According to which an e.m.f. is induced in a coil when current in the neighboring coil changes.
  • 4. Principle of transformer is it convert high voltage (low current) into low voltage (high current). In ideal transformer, input power is equal to out power. In transformer the relation between EMF and current is inversely proportional and EMF and number of turns is directly proportional to each other. The ratio of Es/Ep= Ns/Np is called turns ratio or transformer ratio. Then there are two types of transformer, step-up and step-down transformer. Transformer is the main reason to transmit and distribute power in AC.
  • 5. The ratio is called as turn ratio or transformer ratio. In idea transformer I/P power = O/P Power
  • 6. Put this values in equation III, we get
  • 7. Applications There are wide applications of transformers such as,  step up (increases) or Step down (Decreases) the level of voltage in other words increases or decreases the level of current, while power almost be same,  Welding Machine  X-ray tube  mobile charging  To transform electric current through metallic cables
  • 8. Applications  It can increases or decreases the value of L, C or R in an AC circuit. This can act as impedance transferring device  It can isolate two circuit electrically  To prevent DC from passing from one circuit to the other  Step-down level of voltage at single phase 11KV to 220 V, Three phase 11KV to 440 V
  • 9. Applications The current transformer Np/Ns and Potential transformer Ns/Np are used in industry and power system  It used for impedance matching  Impedance transformer ratio=(Ns/Np)2
  • 10. Power Losses In Transformer Iron losses Copper losses Eddy current losses Hysteresis losses Heat losses I2R
  • 11. Transformer Efficiency Transformer efficiency is given as: % 100   in out P P  % 100    loss out out P P P 