Maximum Flux in Core using Primary Winding Solution

STEP 0: Pre-Calculation Summary
Formula Used
Maximum Core Flux = EMF Induced in Primary/(4.44*Supply Frequency*Number of Turns in Primary)
Φmax = E1/(4.44*f*N1)
This formula uses 4 Variables
Variables Used
Maximum Core Flux - (Measured in Weber) - Maximum Core Flux is defined as the maximum amount of flux that is flowing through the coil of a transformer.
EMF Induced in Primary - (Measured in Volt) - EMF Induced in Primary Winding is the production of voltage in a coil because of the change in magnetic flux through a coil.
Supply Frequency - (Measured in Hertz) - Supply Frequency means Induction motors are designed for a specific voltage per frequency ratio (V/Hz). The voltage is called the supply voltage and the frequency is called the 'Supply Frequency'.
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.
STEP 1: Convert Input(s) to Base Unit
EMF Induced in Primary: 13.2 Volt --> 13.2 Volt No Conversion Required
Supply Frequency: 500 Hertz --> 500 Hertz No Conversion Required
Number of Turns in Primary: 20 --> No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Φmax = E1/(4.44*f*N1) --> 13.2/(4.44*500*20)
Evaluating ... ...
Φmax = 0.000297297297297297
STEP 3: Convert Result to Output's Unit
0.000297297297297297 Weber -->0.297297297297297 Milliweber (Check conversion ​here)
FINAL ANSWER
0.297297297297297 0.297297 Milliweber <-- Maximum Core Flux
(Calculation completed in 00.004 seconds)

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Transformer Design Calculators

Area of Core given EMF Induced in Secondary Winding
​ LaTeX ​ Go Area of Core = EMF Induced in Secondary/(4.44*Supply Frequency*Number of Turns in Secondary*Maximum Flux Density)
Area of Core given EMF Induced in Primary Winding
​ LaTeX ​ Go Area of Core = EMF Induced in Primary/(4.44*Supply Frequency*Number of Turns in Primary*Maximum Flux Density)
Maximum Flux in Core using Primary Winding
​ LaTeX ​ Go Maximum Core Flux = EMF Induced in Primary/(4.44*Supply Frequency*Number of Turns in Primary)
Maximum Core Flux
​ LaTeX ​ Go Maximum Core Flux = Maximum Flux Density*Area of Core

Magnetic Flux Calculators

Maximum Flux Density using Secondary Winding
​ LaTeX ​ Go Maximum Flux Density = EMF Induced in Secondary/(4.44*Area of Core*Supply Frequency*Number of Turns in Secondary)
Maximum Flux Density given Primary Winding
​ LaTeX ​ Go Maximum Flux Density = EMF Induced in Primary/(4.44*Area of Core*Supply Frequency*Number of Turns in Primary)
Maximum Flux in Core using Secondary Winding
​ LaTeX ​ Go Maximum Core Flux = EMF Induced in Secondary/(4.44*Supply Frequency*Number of Turns in Secondary)
Maximum Flux in Core using Primary Winding
​ LaTeX ​ Go Maximum Core Flux = EMF Induced in Primary/(4.44*Supply Frequency*Number of Turns in Primary)

Maximum Flux in Core using Primary Winding Formula

​LaTeX ​Go
Maximum Core Flux = EMF Induced in Primary/(4.44*Supply Frequency*Number of Turns in Primary)
Φmax = E1/(4.44*f*N1)

What is induced EMF?

Alternating flux gets linked with the secondary winding, and because of the phenomenon of mutual induction, an emf gets induced in the secondary winding. The magnitude of this induced emf can be found by using the following EMF equation of the transformer.

How to Calculate Maximum Flux in Core using Primary Winding?

Maximum Flux in Core using Primary Winding calculator uses Maximum Core Flux = EMF Induced in Primary/(4.44*Supply Frequency*Number of Turns in Primary) to calculate the Maximum Core Flux, Maximum Flux in Core using Primary Winding formula is defined as any effect that appears to pass or travel (whether it actually moves or not) through a surface or substance. Maximum Core Flux is denoted by Φmax symbol.

How to calculate Maximum Flux in Core using Primary Winding using this online calculator? To use this online calculator for Maximum Flux in Core using Primary Winding, enter EMF Induced in Primary (E1), Supply Frequency (f) & Number of Turns in Primary (N1) and hit the calculate button. Here is how the Maximum Flux in Core using Primary Winding calculation can be explained with given input values -> 297.2973 = 13.2/(4.44*500*20).

FAQ

What is Maximum Flux in Core using Primary Winding?
Maximum Flux in Core using Primary Winding formula is defined as any effect that appears to pass or travel (whether it actually moves or not) through a surface or substance and is represented as Φmax = E1/(4.44*f*N1) or Maximum Core Flux = EMF Induced in Primary/(4.44*Supply Frequency*Number of Turns in Primary). EMF Induced in Primary Winding is the production of voltage in a coil because of the change in magnetic flux through a coil, Supply Frequency means Induction motors are designed for a specific voltage per frequency ratio (V/Hz). The voltage is called the supply voltage and the frequency is called the 'Supply Frequency' & The Number of Turns in Primary Winding is the number of turns primary winding is the winding of a transformer.
How to calculate Maximum Flux in Core using Primary Winding?
Maximum Flux in Core using Primary Winding formula is defined as any effect that appears to pass or travel (whether it actually moves or not) through a surface or substance is calculated using Maximum Core Flux = EMF Induced in Primary/(4.44*Supply Frequency*Number of Turns in Primary). To calculate Maximum Flux in Core using Primary Winding, you need EMF Induced in Primary (E1), Supply Frequency (f) & Number of Turns in Primary (N1). With our tool, you need to enter the respective value for EMF Induced in Primary, Supply Frequency & Number of Turns in Primary 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 Maximum Core Flux?
In this formula, Maximum Core Flux uses EMF Induced in Primary, Supply Frequency & Number of Turns in Primary. We can use 3 other way(s) to calculate the same, which is/are as follows -
  • Maximum Core Flux = Maximum Flux Density*Area of Core
  • Maximum Core Flux = EMF Induced in Secondary/(4.44*Supply Frequency*Number of Turns in Secondary)
  • Maximum Core Flux = EMF Induced in Secondary/(4.44*Supply Frequency*Number of Turns in Secondary)
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