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The Number of Turns in Secondary Winding is the number of turns secondary winding is the winding of a transformer. Check FAQs
N2=N1K
N2 - Number of Turns in Secondary?N1 - Number of Turns in Primary?K - Transformation Ratio?

Number of Turns in Secondary Winding given Transformation Ratio Example

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With units
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Here is how the Number of Turns in Secondary Winding given Transformation Ratio equation looks like with Values.

Here is how the Number of Turns in Secondary Winding given Transformation Ratio equation looks like with Units.

Here is how the Number of Turns in Secondary Winding given Transformation Ratio equation looks like.

24Edit=20Edit1Edit
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Number of Turns in Secondary Winding given Transformation Ratio Solution

Follow our step by step solution on how to calculate Number of Turns in Secondary Winding given Transformation Ratio?

FIRST Step Consider the formula
N2=N1K
Next Step Substitute values of Variables
N2=201
Next Step Prepare to Evaluate
N2=201
LAST Step Evaluate
N2=24

Number of Turns in Secondary Winding given Transformation Ratio Formula Elements

Variables
Number of Turns in Secondary
The Number of Turns in Secondary Winding is the number of turns secondary winding is the winding of a transformer.
Symbol: N2
Measurement: NAUnit: Unitless
Note: Value can be positive or negative.
Number of Turns in Primary
The Number of Turns in Primary Winding is the number of turns primary winding is the winding of a transformer.
Symbol: N1
Measurement: NAUnit: Unitless
Note: Value can be positive or negative.
Transformation Ratio
The Transformation Ratio of the transformer is used to find the relation between primary voltage and secondary voltage.
Symbol: K
Measurement: NAUnit: Unitless
Note: Value should be greater than 0.

Other Formulas to find Number of Turns in Secondary

​Go Number of Turns in Secondary Winding
N2=E24.44fAcoreBmax

Other formulas in Mechanical Specifications category

​Go Number of Turns in Primary Winding
N1=E14.44fAcoreBmax
​Go Area of Core given EMF Induced in Secondary Winding
Acore=E24.44fN2Bmax
​Go Area of Core given EMF Induced in Primary Winding
Acore=E14.44fN1Bmax
​Go Number of Turns in Primary Winding given Transformation Ratio
N1=N2K

How to Evaluate Number of Turns in Secondary Winding given Transformation Ratio?

Number of Turns in Secondary Winding given Transformation Ratio evaluator uses Number of Turns in Secondary = Number of Turns in Primary*Transformation Ratio to evaluate the Number of Turns in Secondary, Number of Turns in Secondary Winding given Transformation Ratio formula is defined as the ratio of the EMF in the secondary coil to that in the primary coil. It is denoted with K. Due to the resistance in the winding and some leakage flux, there is some loss in voltage. This is called Voltage Drop. Number of Turns in Secondary is denoted by N2 symbol.

How to evaluate Number of Turns in Secondary Winding given Transformation Ratio using this online evaluator? To use this online evaluator for Number of Turns in Secondary Winding given Transformation Ratio, enter Number of Turns in Primary (N1) & Transformation Ratio (K) and hit the calculate button.

FAQs on Number of Turns in Secondary Winding given Transformation Ratio

What is the formula to find Number of Turns in Secondary Winding given Transformation Ratio?
The formula of Number of Turns in Secondary Winding given Transformation Ratio is expressed as Number of Turns in Secondary = Number of Turns in Primary*Transformation Ratio. Here is an example- 24 = 20*1.2.
How to calculate Number of Turns in Secondary Winding given Transformation Ratio?
With Number of Turns in Primary (N1) & Transformation Ratio (K) we can find Number of Turns in Secondary Winding given Transformation Ratio using the formula - Number of Turns in Secondary = Number of Turns in Primary*Transformation Ratio.
What are the other ways to Calculate Number of Turns in Secondary?
Here are the different ways to Calculate Number of Turns in Secondary-
  • Number of Turns in Secondary=EMF Induced in Secondary/(4.44*Supply Frequency*Area of Core*Maximum Flux Density)OpenImg
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