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The Impedance of Secondary Winding is the impedance that is in Secondary winding. Check FAQs
Z2=(2Z1(ρv+1))-(1Z1)-(1Z3)
Z2 - Impedance of Secondary Winding?Z1 - Impedance of Primary Winding?ρv - Reflection Coefficient of Voltage?Z3 - Impedance of Tertiary Winding?

Impedance-2 using Reflected Coefficient of Voltage (Line PL) Example

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Here is how the Impedance-2 using Reflected Coefficient of Voltage (Line PL) equation looks like with Values.

Here is how the Impedance-2 using Reflected Coefficient of Voltage (Line PL) equation looks like with Units.

Here is how the Impedance-2 using Reflected Coefficient of Voltage (Line PL) equation looks like.

0.5657Edit=(218Edit(5Edit+1))-(118Edit)-(122Edit)
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Impedance-2 using Reflected Coefficient of Voltage (Line PL) Solution

Follow our step by step solution on how to calculate Impedance-2 using Reflected Coefficient of Voltage (Line PL)?

FIRST Step Consider the formula
Z2=(2Z1(ρv+1))-(1Z1)-(1Z3)
Next Step Substitute values of Variables
Z2=(218Ω(5+1))-(118Ω)-(122Ω)
Next Step Prepare to Evaluate
Z2=(218(5+1))-(118)-(122)
Next Step Evaluate
Z2=0.565656565656566Ω
LAST Step Rounding Answer
Z2=0.5657Ω

Impedance-2 using Reflected Coefficient of Voltage (Line PL) Formula Elements

Variables
Impedance of Secondary Winding
The Impedance of Secondary Winding is the impedance that is in Secondary winding.
Symbol: Z2
Measurement: Electric ResistanceUnit: Ω
Note: Value can be positive or negative.
Impedance of Primary Winding
The Impedance of Primary Winding is the total of primary Resistance and Reactance.
Symbol: Z1
Measurement: Electric ResistanceUnit: Ω
Note: Value should be greater than 0.
Reflection Coefficient of Voltage
Reflection Coefficient Of Voltage is defined as the ratio of the reflected voltage to the incident voltage of the Transmission line during any transient condition.
Symbol: ρv
Measurement: NAUnit: Unitless
Note: Value can be positive or negative.
Impedance of Tertiary Winding
Impedance of Tertiary Winding in electrical devices, refers to the amount of opposition faced by the direct or alternating current when it passes through a conductor component, circuit, or system.
Symbol: Z3
Measurement: Electric ResistanceUnit: Ω
Note: Value can be positive or negative.

Other Formulas to find Impedance of Secondary Winding

​Go Impedance-2 using Transmitted Current-2 (Line PL)
Z2=VtIt
​Go Impedance-2 using Transmitted Voltage (Line PL)
Z2=VtIt
​Go Impedance-2 using Transmitted Coefficient of Voltage (Line PL)
Z2=(2Z1τv)-(1Z1)-(1Z3)
​Go Impedance-2 using Transmitted Coefficient of Current-2 (Line PL)
Z2=VtZ1τiVi

Other formulas in Impedance 1,2 and 3 category

​Go Impedance-3 using Transmitted Voltage (Line PL)
Z3=VtIt
​Go Impedance-1 using Transmitted Voltage (Line PL)
Z1=(Vi-Er)Z2+Z3Vt
​Go Impedance-3 using Transmitted Coefficient of Voltage (Line PL)
Z3=(2Z1τv)-(1Z1)-(1Z2)
​Go Impedance-1 using Transmitted Coefficient of Current-2 (Line PL)
Z1=τiViZ2Vt

How to Evaluate Impedance-2 using Reflected Coefficient of Voltage (Line PL)?

Impedance-2 using Reflected Coefficient of Voltage (Line PL) evaluator uses Impedance of Secondary Winding = (2/Impedance of Primary Winding*(Reflection Coefficient of Voltage+1))-(1/Impedance of Primary Winding)-(1/Impedance of Tertiary Winding) to evaluate the Impedance of Secondary Winding, The Impedance-2 using Reflected Coefficient of Voltage (line PL) formula is defined as a measure of the overall opposition of a circuit to current, in other words: how much the circuit impedes the flow of charge. It is like resistance, but it also takes into account the effects of capacitance and inductance. Impedance-2 is measured in ohms. Impedance of Secondary Winding is denoted by Z2 symbol.

How to evaluate Impedance-2 using Reflected Coefficient of Voltage (Line PL) using this online evaluator? To use this online evaluator for Impedance-2 using Reflected Coefficient of Voltage (Line PL), enter Impedance of Primary Winding (Z1), Reflection Coefficient of Voltage v) & Impedance of Tertiary Winding (Z3) and hit the calculate button.

FAQs on Impedance-2 using Reflected Coefficient of Voltage (Line PL)

What is the formula to find Impedance-2 using Reflected Coefficient of Voltage (Line PL)?
The formula of Impedance-2 using Reflected Coefficient of Voltage (Line PL) is expressed as Impedance of Secondary Winding = (2/Impedance of Primary Winding*(Reflection Coefficient of Voltage+1))-(1/Impedance of Primary Winding)-(1/Impedance of Tertiary Winding). Here is an example- 0.565657 = (2/18*(5+1))-(1/18)-(1/22).
How to calculate Impedance-2 using Reflected Coefficient of Voltage (Line PL)?
With Impedance of Primary Winding (Z1), Reflection Coefficient of Voltage v) & Impedance of Tertiary Winding (Z3) we can find Impedance-2 using Reflected Coefficient of Voltage (Line PL) using the formula - Impedance of Secondary Winding = (2/Impedance of Primary Winding*(Reflection Coefficient of Voltage+1))-(1/Impedance of Primary Winding)-(1/Impedance of Tertiary Winding).
What are the other ways to Calculate Impedance of Secondary Winding?
Here are the different ways to Calculate Impedance of Secondary Winding-
  • Impedance of Secondary Winding=Transmitted Voltage/Transmitted CurrentOpenImg
  • Impedance of Secondary Winding=Transmitted Voltage/Transmitted CurrentOpenImg
  • Impedance of Secondary Winding=(2/(Impedance of Primary Winding*Transmission Coefficient of Voltage))-(1/Impedance of Primary Winding)-(1/Impedance of Tertiary Winding)OpenImg
Can the Impedance-2 using Reflected Coefficient of Voltage (Line PL) be negative?
Yes, the Impedance-2 using Reflected Coefficient of Voltage (Line PL), measured in Electric Resistance can be negative.
Which unit is used to measure Impedance-2 using Reflected Coefficient of Voltage (Line PL)?
Impedance-2 using Reflected Coefficient of Voltage (Line PL) is usually measured using the Ohm[Ω] for Electric Resistance. Megohm[Ω], Microhm[Ω], Volt per Ampere[Ω] are the few other units in which Impedance-2 using Reflected Coefficient of Voltage (Line PL) can be measured.
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