Reflection Coefficient in Transmission Line Formula

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Reflection coefficient refers to a parameter that describes the behavior of waves at the interface between different media or at the termination of a transmission line. Check FAQs
Γ=ZL-ZoZL+Zo
Γ - Reflection Coefficient?ZL - Load Impedance of Transmission Line?Zo - Characteristics Impedance of Transmission Line?

Reflection Coefficient in Transmission Line Example

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Here is how the Reflection Coefficient in Transmission Line equation looks like with Values.

Here is how the Reflection Coefficient in Transmission Line equation looks like with Units.

Here is how the Reflection Coefficient in Transmission Line equation looks like.

0.549Edit=68Edit-19.8Edit68Edit+19.8Edit
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Reflection Coefficient in Transmission Line Solution

Follow our step by step solution on how to calculate Reflection Coefficient in Transmission Line?

FIRST Step Consider the formula
Γ=ZL-ZoZL+Zo
Next Step Substitute values of Variables
Γ=68Ω-19.8Ω68Ω+19.8Ω
Next Step Prepare to Evaluate
Γ=68-19.868+19.8
Next Step Evaluate
Γ=0.548974943052392
LAST Step Rounding Answer
Γ=0.549

Reflection Coefficient in Transmission Line Formula Elements

Variables
Reflection Coefficient
Reflection coefficient refers to a parameter that describes the behavior of waves at the interface between different media or at the termination of a transmission line.
Symbol: Γ
Measurement: NAUnit: Unitless
Note: Value can be positive or negative.
Load Impedance of Transmission Line
Load impedance of transmission line is the concept of connecting a device or component to the output of a functional block, thus drawing from it a measurable amount of current.
Symbol: ZL
Measurement: Electric ResistanceUnit: Ω
Note: Value can be positive or negative.
Characteristics Impedance of Transmission Line
Characteristics Impedance of Transmission Line (Z0) is the ratio of voltage to current in a wave propagating along the line.
Symbol: Zo
Measurement: Electric ResistanceUnit: Ω
Note: Value can be positive or negative.

Other formulas in Transmission Line Characteristics category

​Go Resistance at Second Temperature
R2=R1(T+TfT+To)
​Go Relative Pitch of Wound Conductor
Pcond=(Ls2rlayer)
​Go Length of Wound Conductor
Lcond=1+(πPcond)2
​Go Wavelength of Line
λ=2πβ

How to Evaluate Reflection Coefficient in Transmission Line?

Reflection Coefficient in Transmission Line evaluator uses Reflection Coefficient = (Load Impedance of Transmission Line-Characteristics Impedance of Transmission Line)/(Load Impedance of Transmission Line+Characteristics Impedance of Transmission Line) to evaluate the Reflection Coefficient, The Reflection Coefficient in Transmission Line formula is defined as defined as the ratio of the reflected voltage at load to the incident voltage at load. Reflection coefficient refers to a parameter that describes the behavior of waves at the interface between different media or at the termination of a transmission line. Reflection Coefficient is denoted by Γ symbol.

How to evaluate Reflection Coefficient in Transmission Line using this online evaluator? To use this online evaluator for Reflection Coefficient in Transmission Line, enter Load Impedance of Transmission Line (ZL) & Characteristics Impedance of Transmission Line (Zo) and hit the calculate button.

FAQs on Reflection Coefficient in Transmission Line

What is the formula to find Reflection Coefficient in Transmission Line?
The formula of Reflection Coefficient in Transmission Line is expressed as Reflection Coefficient = (Load Impedance of Transmission Line-Characteristics Impedance of Transmission Line)/(Load Impedance of Transmission Line+Characteristics Impedance of Transmission Line). Here is an example- 0.548975 = (68-19.8)/(68+19.8).
How to calculate Reflection Coefficient in Transmission Line?
With Load Impedance of Transmission Line (ZL) & Characteristics Impedance of Transmission Line (Zo) we can find Reflection Coefficient in Transmission Line using the formula - Reflection Coefficient = (Load Impedance of Transmission Line-Characteristics Impedance of Transmission Line)/(Load Impedance of Transmission Line+Characteristics Impedance of Transmission Line).
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