Incident Voltage using Transmitted Voltage Solution

STEP 0: Pre-Calculation Summary
Formula Used
Incident Voltage = Transmitted Voltage*(Characteristic Impedance+Load Impedance)/(2*Load Impedance)
Vi = Vt*(Z0+Il)/(2*Il)
This formula uses 4 Variables
Variables Used
Incident Voltage - (Measured in Volt) - The Incident Voltage on the transmission line is equal to half the generator voltage.
Transmitted Voltage - (Measured in Volt) - Transmitted Voltage is defined as the Voltage wave that is traveling through the Load of the Transmission line.
Characteristic Impedance - (Measured in Ohm) - The characteristic impedance of a uniform transmission line is the ratio of the amplitudes of voltage and current of a single wave propagating along the line during transient condition.
Load Impedance - (Measured in Ohm) - The load impedance is defined as the impedance of the load of the Transmission line during transient.
STEP 1: Convert Input(s) to Base Unit
Transmitted Voltage: 20 Volt --> 20 Volt No Conversion Required
Characteristic Impedance: 55.5 Ohm --> 55.5 Ohm No Conversion Required
Load Impedance: 8.56 Ohm --> 8.56 Ohm No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Vi = Vt*(Z0+Il)/(2*Il) --> 20*(55.5+8.56)/(2*8.56)
Evaluating ... ...
Vi = 74.8364485981308
STEP 3: Convert Result to Output's Unit
74.8364485981308 Volt --> No Conversion Required
FINAL ANSWER
74.8364485981308 74.83645 Volt <-- Incident Voltage
(Calculation completed in 00.004 seconds)

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Created by Urvi Rathod
Vishwakarma Government Engineering College (VGEC), Ahmedabad
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7 Transmitted Or Refracted Waves Calculators

Load Impedance using Transmitted Current
​ Go Load Impedance = Transmitted Voltage*Characteristic Impedance/(2*Incident Current-Transmitted Current)
Incident Voltage using Transmitted Voltage
​ Go Incident Voltage = Transmitted Voltage*(Characteristic Impedance+Load Impedance)/(2*Load Impedance)
Incident Current using Transmitted Current
​ Go Incident Current = Transmitted Current*(Load Impedance+Characteristic Impedance)/(2*Load Impedance)
Transmitted Voltage using Incident Current
​ Go Transmitted Voltage = 2*Incident Voltage*Load Impedance/(Load Impedance+Characteristic Impedance)
Transmitted Current using Incident Current
​ Go Transmitted Current = 2*Incident Current*Load Impedance/(Characteristic Impedance+Load Impedance)
Transmitted Current using Incident and Reflected Current
​ Go Transmitted Current = Incident Current+Reflected Current
Transmitted Voltage Transmitted Wave
​ Go Transmitted Voltage = Load Impedance*Transmitted Current

Incident Voltage using Transmitted Voltage Formula

Incident Voltage = Transmitted Voltage*(Characteristic Impedance+Load Impedance)/(2*Load Impedance)
Vi = Vt*(Z0+Il)/(2*Il)

Define transmitted waves.

The transmitted waves are the Voltage wave or current wave that is traveling through the Load of the Transmission line.

How to Calculate Incident Voltage using Transmitted Voltage?

Incident Voltage using Transmitted Voltage calculator uses Incident Voltage = Transmitted Voltage*(Characteristic Impedance+Load Impedance)/(2*Load Impedance) to calculate the Incident Voltage, The Incident Voltage using Transmitted Voltage formula is defined as the voltage wave that is traveling from the sending end to the receiving end of the Transmission line. Incident Voltage is denoted by Vi symbol.

How to calculate Incident Voltage using Transmitted Voltage using this online calculator? To use this online calculator for Incident Voltage using Transmitted Voltage, enter Transmitted Voltage (Vt), Characteristic Impedance (Z0) & Load Impedance (Il) and hit the calculate button. Here is how the Incident Voltage using Transmitted Voltage calculation can be explained with given input values -> 74.83645 = 20*(55.5+8.56)/(2*8.56).

FAQ

What is Incident Voltage using Transmitted Voltage?
The Incident Voltage using Transmitted Voltage formula is defined as the voltage wave that is traveling from the sending end to the receiving end of the Transmission line and is represented as Vi = Vt*(Z0+Il)/(2*Il) or Incident Voltage = Transmitted Voltage*(Characteristic Impedance+Load Impedance)/(2*Load Impedance). Transmitted Voltage is defined as the Voltage wave that is traveling through the Load of the Transmission line, The characteristic impedance of a uniform transmission line is the ratio of the amplitudes of voltage and current of a single wave propagating along the line during transient condition & The load impedance is defined as the impedance of the load of the Transmission line during transient.
How to calculate Incident Voltage using Transmitted Voltage?
The Incident Voltage using Transmitted Voltage formula is defined as the voltage wave that is traveling from the sending end to the receiving end of the Transmission line is calculated using Incident Voltage = Transmitted Voltage*(Characteristic Impedance+Load Impedance)/(2*Load Impedance). To calculate Incident Voltage using Transmitted Voltage, you need Transmitted Voltage (Vt), Characteristic Impedance (Z0) & Load Impedance (Il). With our tool, you need to enter the respective value for Transmitted Voltage, Characteristic Impedance & Load Impedance and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
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