Average DC Output Voltage of Single Phase Full Converter Solution

STEP 0: Pre-Calculation Summary
Formula Used
Average Voltage Full Converter = (2*Maximum DC Output Voltage Full Converter*cos(Firing Angle Full Converter))/pi
Vavg-dc(full) = (2*Vm-dc(full)*cos(αfull))/pi
This formula uses 1 Constants, 1 Functions, 3 Variables
Constants Used
pi - Archimedes' constant Value Taken As 3.14159265358979323846264338327950288
Functions Used
cos - Cosine of an angle is the ratio of the side adjacent to the angle to the hypotenuse of the triangle., cos(Angle)
Variables Used
Average Voltage Full Converter - (Measured in Volt) - Average Voltage Full Converter is defined as the average of voltage over one complete cycle in a full converter circuit.
Maximum DC Output Voltage Full Converter - (Measured in Volt) - Maximum DC Output Voltage Full Converter is defined as the peak amplitude obtained by the voltage at the output terminal of a full converter circuit.
Firing Angle Full Converter - (Measured in Radian) - Firing Angle Full Converter refers to the point within each AC voltage cycle at which the thyristors are triggered to conduct current in a full converter.
STEP 1: Convert Input(s) to Base Unit
Maximum DC Output Voltage Full Converter: 140 Volt --> 140 Volt No Conversion Required
Firing Angle Full Converter: 35 Degree --> 0.610865238197901 Radian (Check conversion ​here)
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Vavg-dc(full) = (2*Vm-dc(full)*cos(αfull))/pi --> (2*140*cos(0.610865238197901))/pi
Evaluating ... ...
Vavg-dc(full) = 73.0083743157634
STEP 3: Convert Result to Output's Unit
73.0083743157634 Volt --> No Conversion Required
FINAL ANSWER
73.0083743157634 73.00837 Volt <-- Average Voltage Full Converter
(Calculation completed in 00.004 seconds)

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Single Phase Full Converter Calculators

Average DC Output Voltage of Single Phase Full Converter
​ Go Average Voltage Full Converter = (2*Maximum DC Output Voltage Full Converter*cos(Firing Angle Full Converter))/pi
Maximum Output DC Voltage of Single Phase Full Converter
​ Go Maximum DC Output Voltage Full Converter = (2*Maximum Input Voltage Full Converter)/pi
Apparent Power for Constant Load Current
​ Go Apparent Power Full Converter = Load Current Full converter*Load Voltage Full Converter
RMS Output Voltage of Single Phase Full Converter
​ Go RMS Output Voltage Full Converter = Maximum Input Voltage Full Converter/(sqrt(2))

Power Converter Characteristics Calculators

DC Output Voltage of Second Converter
​ Go DC Output Voltage Second Converter = (2*Peak Input Voltage Dual Converter*(cos(Delay Angle of Second Converter)))/pi
DC Output Voltage for First Converter
​ Go DC Output Voltage First Converter = (2*Peak Input Voltage Dual Converter*(cos(Delay Angle of First Converter)))/pi
Average DC Output Voltage of Single Phase Full Converter
​ Go Average Voltage Full Converter = (2*Maximum DC Output Voltage Full Converter*cos(Firing Angle Full Converter))/pi
RMS Output Voltage of Single Phase Full Converter
​ Go RMS Output Voltage Full Converter = Maximum Input Voltage Full Converter/(sqrt(2))

Average DC Output Voltage of Single Phase Full Converter Formula

Average Voltage Full Converter = (2*Maximum DC Output Voltage Full Converter*cos(Firing Angle Full Converter))/pi
Vavg-dc(full) = (2*Vm-dc(full)*cos(αfull))/pi

What is single phase full converter?

A single-phase converter is a two-quadrant converter which has 4 thyristors connected in a bridge configuration. When the load of the converter is highly inductive, it means that the load current will be continuous.

How to Calculate Average DC Output Voltage of Single Phase Full Converter?

Average DC Output Voltage of Single Phase Full Converter calculator uses Average Voltage Full Converter = (2*Maximum DC Output Voltage Full Converter*cos(Firing Angle Full Converter))/pi to calculate the Average Voltage Full Converter, The Average DC Output Voltage of Single Phase Full Converter formula is the average value of the dc output of the converter. It depends on the peak input voltage and the firing angle of the thyristor. Average Voltage Full Converter is denoted by Vavg-dc(full) symbol.

How to calculate Average DC Output Voltage of Single Phase Full Converter using this online calculator? To use this online calculator for Average DC Output Voltage of Single Phase Full Converter, enter Maximum DC Output Voltage Full Converter (Vm-dc(full)) & Firing Angle Full Converter full) and hit the calculate button. Here is how the Average DC Output Voltage of Single Phase Full Converter calculation can be explained with given input values -> 73.00837 = (2*140*cos(0.610865238197901))/pi.

FAQ

What is Average DC Output Voltage of Single Phase Full Converter?
The Average DC Output Voltage of Single Phase Full Converter formula is the average value of the dc output of the converter. It depends on the peak input voltage and the firing angle of the thyristor and is represented as Vavg-dc(full) = (2*Vm-dc(full)*cos(αfull))/pi or Average Voltage Full Converter = (2*Maximum DC Output Voltage Full Converter*cos(Firing Angle Full Converter))/pi. Maximum DC Output Voltage Full Converter is defined as the peak amplitude obtained by the voltage at the output terminal of a full converter circuit & Firing Angle Full Converter refers to the point within each AC voltage cycle at which the thyristors are triggered to conduct current in a full converter.
How to calculate Average DC Output Voltage of Single Phase Full Converter?
The Average DC Output Voltage of Single Phase Full Converter formula is the average value of the dc output of the converter. It depends on the peak input voltage and the firing angle of the thyristor is calculated using Average Voltage Full Converter = (2*Maximum DC Output Voltage Full Converter*cos(Firing Angle Full Converter))/pi. To calculate Average DC Output Voltage of Single Phase Full Converter, you need Maximum DC Output Voltage Full Converter (Vm-dc(full)) & Firing Angle Full Converter full). With our tool, you need to enter the respective value for Maximum DC Output Voltage Full Converter & Firing Angle Full Converter 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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