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Maximum Flux Density is defined as the number of lines of force passing through a unit area of material. Check FAQs
Bmax=E24.44AcorefN2
Bmax - Maximum Flux Density?E2 - EMF Induced in Secondary?Acore - Area of Core?f - Supply Frequency?N2 - Number of Turns in Secondary?

Maximum Flux Density using Secondary Winding Example

With values
With units
Only example

Here is how the Maximum Flux Density using Secondary Winding equation looks like with Values.

Here is how the Maximum Flux Density using Secondary Winding equation looks like with Units.

Here is how the Maximum Flux Density using Secondary Winding equation looks like.

0.0012Edit=15.84Edit4.442500Edit500Edit24Edit
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Maximum Flux Density using Secondary Winding Solution

Follow our step by step solution on how to calculate Maximum Flux Density using Secondary Winding?

FIRST Step Consider the formula
Bmax=E24.44AcorefN2
Next Step Substitute values of Variables
Bmax=15.84V4.442500cm²500Hz24
Next Step Convert Units
Bmax=15.84V4.440.25500Hz24
Next Step Prepare to Evaluate
Bmax=15.844.440.2550024
Next Step Evaluate
Bmax=0.00118918918918919T
LAST Step Rounding Answer
Bmax=0.0012T

Maximum Flux Density using Secondary Winding Formula Elements

Variables
Maximum Flux Density
Maximum Flux Density is defined as the number of lines of force passing through a unit area of material.
Symbol: Bmax
Measurement: Magnetic Flux DensityUnit: T
Note: Value should be greater than 0.
EMF Induced in Secondary
EMF Induced in Secondary Winding is the production of voltage in a coil because of the change in magnetic flux through a coil.
Symbol: E2
Measurement: Electric PotentialUnit: V
Note: Value can be positive or negative.
Area of Core
Area of Core is defined as the space occupied by the core of a transformer in 2 dimensional space.
Symbol: Acore
Measurement: AreaUnit: cm²
Note: Value should be greater than 0.
Supply Frequency
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'.
Symbol: f
Measurement: FrequencyUnit: Hz
Note: Value should be greater than 0.
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.

Other Formulas to find Maximum Flux Density

​Go Maximum Flux Density given Primary Winding
Bmax=E14.44AcorefN1

Other formulas in Magnetic Flux category

​Go Maximum Flux in Core using Primary Winding
Φmax=E14.44fN1
​Go Maximum Flux in Core using Secondary Winding
Φmax=E24.44fN2
​Go Maximum Core Flux
Φmax=BmaxAcore

How to Evaluate Maximum Flux Density using Secondary Winding?

Maximum Flux Density using Secondary Winding evaluator uses Maximum Flux Density = EMF Induced in Secondary/(4.44*Area of Core*Supply Frequency*Number of Turns in Secondary) to evaluate the Maximum Flux Density, Maximum Flux Density using Secondary Winding formula is defined as the measure of the number of magnetic lines of force per unit of cross-sectional area. The magnitude of this induced emf can be found by using the following EMF equation of the transformer. Maximum Flux Density is denoted by Bmax symbol.

How to evaluate Maximum Flux Density using Secondary Winding using this online evaluator? To use this online evaluator for Maximum Flux Density using Secondary Winding, enter EMF Induced in Secondary (E2), Area of Core (Acore), Supply Frequency (f) & Number of Turns in Secondary (N2) and hit the calculate button.

FAQs on Maximum Flux Density using Secondary Winding

What is the formula to find Maximum Flux Density using Secondary Winding?
The formula of Maximum Flux Density using Secondary Winding is expressed as Maximum Flux Density = EMF Induced in Secondary/(4.44*Area of Core*Supply Frequency*Number of Turns in Secondary). Here is an example- 0.001189 = 15.84/(4.44*0.25*500*24).
How to calculate Maximum Flux Density using Secondary Winding?
With EMF Induced in Secondary (E2), Area of Core (Acore), Supply Frequency (f) & Number of Turns in Secondary (N2) we can find Maximum Flux Density using Secondary Winding using the formula - Maximum Flux Density = EMF Induced in Secondary/(4.44*Area of Core*Supply Frequency*Number of Turns in Secondary).
What are the other ways to Calculate Maximum Flux Density?
Here are the different ways to Calculate Maximum Flux Density-
  • Maximum Flux Density=EMF Induced in Primary/(4.44*Area of Core*Supply Frequency*Number of Turns in Primary)OpenImg
Can the Maximum Flux Density using Secondary Winding be negative?
No, the Maximum Flux Density using Secondary Winding, measured in Magnetic Flux Density cannot be negative.
Which unit is used to measure Maximum Flux Density using Secondary Winding?
Maximum Flux Density using Secondary Winding is usually measured using the Tesla[T] for Magnetic Flux Density. Weber per Square Meter[T], Maxwell Per Square Meter[T], Gauss[T] are the few other units in which Maximum Flux Density using Secondary Winding can be measured.
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