A transformer is a device for increasing or decreasing an a.c. voltage.

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A transformer is a device for increasing or decreasing an a.c. voltage.

Transcript of A transformer is a device for increasing or decreasing an a.c. voltage.

Page 1: A transformer is a device for increasing or decreasing an a.c. voltage.

A transformer is a device for increasing or decreasing

an a.c. voltage.

Page 2: A transformer is a device for increasing or decreasing an a.c. voltage.

Structure of Transformer

Page 3: A transformer is a device for increasing or decreasing an a.c. voltage.

Circuit Symbol for Transformer

Page 4: A transformer is a device for increasing or decreasing an a.c. voltage.

How Transformer works

Laminated soft iron core

Primary coil Secondary coil

Input voltage

(a.c.)

Output voltage (a.c.)

Page 5: A transformer is a device for increasing or decreasing an a.c. voltage.

All transformers have three parts:

1. Primary coil – the incoming voltage Vp

(voltage across primary coil) is connected across this coil.

2. Secondary coil – this provides the output voltage Vs (voltage across the secondary coil)

to the external circuit.

3. Laminated iron core – this links the two coils magnetically.

Notice that there is no electrical connection between the two coils, which are constructed using insulated wire.

Page 6: A transformer is a device for increasing or decreasing an a.c. voltage.

Two Types of Transformer

A step-up transformer increases the voltage - there are more turns on the secondary than on the primary.

A step-down transformer decreases the voltage - there are fewer turns on the secondary than on the primary.

To step up the voltage by a factor of 10, there must be 10 times as many turns on the secondary coil as on the primary. The turns ratio tells us the factor by which the voltage will be changed.

Page 7: A transformer is a device for increasing or decreasing an a.c. voltage.

Formula for Transformer

voltage across the primary coil

voltage across the secondary coil

number of turns on primary

number of turns on secondary

V

V

N

Np

s

p

s

Where Vp = primary voltage

Vs = secondary voltage

Np= Number of turns in primary coil

Ns = Number of turns in a secondary coil.

Page 8: A transformer is a device for increasing or decreasing an a.c. voltage.

Worked example No. 1The diagram shows a transformer. Calculate the voltage across the secondary coil of this transformer.

Step-up transformer!

Page 9: A transformer is a device for increasing or decreasing an a.c. voltage.

Solution

VV

NN

Substituting12V

180540

Crossmultiplying180.V 12 x 540

V 12 x 540180

V 36 V

P

S

P

S

S

S

S

S

Page 10: A transformer is a device for increasing or decreasing an a.c. voltage.

Worked example No. 2A transformer which has 1380 turns in its primary coil is to be used to convert the mains voltage of 230 V to operate a 6 V bulb. How many turns should the secondary coil of this transformer have?

VP = 230 V

NP = 1380VS = 6 V

NS = ?

Obviously, a Step-down transformer!!

Page 11: A transformer is a device for increasing or decreasing an a.c. voltage.

Solution

VV

NN

Substituting2306

1380N

Crossmultiplying2300.N 6 x 13800

N 6 x 1380230

N 36 turns

P

S

P

S

S

S

S

S

Page 12: A transformer is a device for increasing or decreasing an a.c. voltage.

The input voltage and output voltage are not in phase

When the input voltage is at a maximum/minimum value, the output voltage is zero and vice versa

Page 13: A transformer is a device for increasing or decreasing an a.c. voltage.