Equivalent Resistance of Transformer from Secondary Side Solution

STEP 0: Pre-Calculation Summary
Formula Used
Equivalent Resistance from Secondary = Resistance of Primary in Secondary+Resistance of Secondary
R02 = R'1+R2
This formula uses 3 Variables
Variables Used
Equivalent Resistance from Secondary - (Measured in Ohm) - Equivalent resistance from Secondary side is the total secondary side resistance.
Resistance of Primary in Secondary - (Measured in Ohm) - Resistance of Primary in Secondary is the Resistance of Primary winding in Secondary.
Resistance of Secondary - (Measured in Ohm) - Resistance of Secondary Winding is the resistance of secondary winding.
STEP 1: Convert Input(s) to Base Unit
Resistance of Primary in Secondary: 25.89 Ohm --> 25.89 Ohm No Conversion Required
Resistance of Secondary: 25.9 Ohm --> 25.9 Ohm No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
R02 = R'1+R2 --> 25.89+25.9
Evaluating ... ...
R02 = 51.79
STEP 3: Convert Result to Output's Unit
51.79 Ohm --> No Conversion Required
FINAL ANSWER
51.79 Ohm <-- Equivalent Resistance from Secondary
(Calculation completed in 00.004 seconds)

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Created by Urvi Rathod
Vishwakarma Government Engineering College (VGEC), Ahmedabad
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Verified by Anirudh Singh
National Institute of Technology (NIT), Jamshedpur
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18 Resistance Calculators

Equivalent Resistance from Secondary Side using Equivalent Impedance from Secondary Side
​ Go Equivalent Resistance from Secondary = sqrt(Equivalent Impedance from Secondary^2-Equivalent Reactance from Secondary^2)
Equivalent Resistance from Primary Side using Equivalent Impedance from Primary Side
​ Go Equivalent Resistance from Primary = sqrt(Equivalent Impedance from Primary^2-Equivalent Reactance from Primary^2)
Primary Winding Resistance given Secondary Winding Resistance
​ Go Resistance of Primary = (Equivalent Resistance from Secondary-Resistance of Secondary)/(Transformation Ratio^2)
Secondary Winding Resistance given Equivalent Resistance from Primary Side
​ Go Resistance of Secondary = (Equivalent Resistance from Primary-Resistance of Primary)*Transformation Ratio^2
Secondary Winding Resistance given Primary Winding Resistance
​ Go Resistance of Secondary = Equivalent Resistance from Secondary-Resistance of Primary*Transformation Ratio^2
Equivalent Resistance from Secondary Side
​ Go Equivalent Resistance from Secondary = Resistance of Secondary+Resistance of Primary*Transformation Ratio^2
Equivalent Resistance from Primary Side
​ Go Equivalent Resistance from Primary = Resistance of Primary+Resistance of Secondary/Transformation Ratio^2
P.U. Primary Resistance Drop
​ Go P U Primary Resistance drop = (Primary Current*Equivalent Resistance from Primary)/EMF Induced in Primary
Secondary Winding Resistance given Impedance of Secondary Winding
​ Go Resistance of Secondary = sqrt(Impedance of Secondary^2-Secondary Leakage Reactance^2)
Primary Winding Resistance given Impedance of Primary Winding
​ Go Resistance of Primary = sqrt(Impedance of Primary^2-Primary Leakage Reactance^2)
Resistance of Primary in Secondary using Equivalent Resistance from Secondary Side
​ Go Resistance of Primary in Secondary = Equivalent Resistance from Secondary-Resistance of Secondary in Primary
Equivalent Resistance of Transformer from Secondary Side
​ Go Equivalent Resistance from Secondary = Resistance of Primary in Secondary+Resistance of Secondary
Resistance of Secondary in Primary using Equivalent Resistance from Primary Side
​ Go Resistance of Secondary in Primary = Equivalent Resistance from Primary-Resistance of Primary
Equivalent Resistance of Transformer from Primary Side
​ Go Equivalent Resistance from Primary = Resistance of Secondary in Primary+Resistance of Primary
Resistance of Secondary Winding in Primary
​ Go Resistance of Secondary in Primary = Resistance of Secondary/Transformation Ratio^2
Secondary Winding Resistance
​ Go Resistance of Secondary = Resistance of Secondary in Primary*Transformation Ratio^2
Primary Winding Resistance
​ Go Resistance of Primary = Resistance of Primary in Secondary/(Transformation Ratio^2)
Resistance of Primary Winding in Secondary
​ Go Resistance of Primary in Secondary = Resistance of Primary*Transformation Ratio^2

Equivalent Resistance of Transformer from Secondary Side Formula

Equivalent Resistance from Secondary = Resistance of Primary in Secondary+Resistance of Secondary
R02 = R'1+R2

Explain equivalent resistance of transformer?

The primary and the secondary winding of an actual transformer have some resistance which is represented by R1 and R2 respectively. The resistances of the two windings can be transferred to any one side. It is done in order to make the calculations easy.
The resistance is transferred from one side to the other side in such a manner that percentage voltage drop remains the same on either side.

How to Calculate Equivalent Resistance of Transformer from Secondary Side?

Equivalent Resistance of Transformer from Secondary Side calculator uses Equivalent Resistance from Secondary = Resistance of Primary in Secondary+Resistance of Secondary to calculate the Equivalent Resistance from Secondary, The Equivalent Resistance of Transformer from Secondary Side formula is defined as the sum of Secondary Winding Resistance and Resistance of Primary winding in Secondary. Equivalent Resistance from Secondary is denoted by R02 symbol.

How to calculate Equivalent Resistance of Transformer from Secondary Side using this online calculator? To use this online calculator for Equivalent Resistance of Transformer from Secondary Side, enter Resistance of Primary in Secondary (R'1) & Resistance of Secondary (R2) and hit the calculate button. Here is how the Equivalent Resistance of Transformer from Secondary Side calculation can be explained with given input values -> 51.79 = 25.89+25.9.

FAQ

What is Equivalent Resistance of Transformer from Secondary Side?
The Equivalent Resistance of Transformer from Secondary Side formula is defined as the sum of Secondary Winding Resistance and Resistance of Primary winding in Secondary and is represented as R02 = R'1+R2 or Equivalent Resistance from Secondary = Resistance of Primary in Secondary+Resistance of Secondary. Resistance of Primary in Secondary is the Resistance of Primary winding in Secondary & Resistance of Secondary Winding is the resistance of secondary winding.
How to calculate Equivalent Resistance of Transformer from Secondary Side?
The Equivalent Resistance of Transformer from Secondary Side formula is defined as the sum of Secondary Winding Resistance and Resistance of Primary winding in Secondary is calculated using Equivalent Resistance from Secondary = Resistance of Primary in Secondary+Resistance of Secondary. To calculate Equivalent Resistance of Transformer from Secondary Side, you need Resistance of Primary in Secondary (R'1) & Resistance of Secondary (R2). With our tool, you need to enter the respective value for Resistance of Primary in Secondary & Resistance of Secondary and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
How many ways are there to calculate Equivalent Resistance from Secondary?
In this formula, Equivalent Resistance from Secondary uses Resistance of Primary in Secondary & Resistance of Secondary. We can use 2 other way(s) to calculate the same, which is/are as follows -
  • Equivalent Resistance from Secondary = sqrt(Equivalent Impedance from Secondary^2-Equivalent Reactance from Secondary^2)
  • Equivalent Resistance from Secondary = Resistance of Secondary+Resistance of Primary*Transformation Ratio^2
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