Load Voltage of DC Three Phase Uncontrolled Rectifier Solution

STEP 0: Pre-Calculation Summary
Formula Used
DC Load Voltage = (3*sqrt(3)*Peak Input Voltage)/(2*pi)
VL(dc) = (3*sqrt(3)*Vmax)/(2*pi)
This formula uses 1 Constants, 1 Functions, 2 Variables
Constants Used
pi - Archimedes' constant Value Taken As 3.14159265358979323846264338327950288
Functions Used
sqrt - A square root function is a function that takes a non-negative number as an input and returns the square root of the given input number., sqrt(Number)
Variables Used
DC Load Voltage - (Measured in Volt) - DC Load Voltage uncontrolled rectifier is the voltage that is applied to the load. DC uncontrolled rectifier is always less than the peak amplitude of the AC input voltage.
Peak Input Voltage - (Measured in Volt) - Peak Input Voltage is the peak of the alternating voltage provided at the input of any electrical circuit.
STEP 1: Convert Input(s) to Base Unit
Peak Input Voltage: 220 Volt --> 220 Volt No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
VL(dc) = (3*sqrt(3)*Vmax)/(2*pi) --> (3*sqrt(3)*220)/(2*pi)
Evaluating ... ...
VL(dc) = 181.938535489191
STEP 3: Convert Result to Output's Unit
181.938535489191 Volt --> No Conversion Required
FINAL ANSWER
181.938535489191 181.9385 Volt <-- DC Load Voltage
(Calculation completed in 00.020 seconds)

Credits

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Created by Mohamed Fazil V
Acharya institute of technology (AIT), Bengaluru
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9 Full Wave Calculators

RMS Load Current of Three Phase Uncontrolled Rectifier
​ Go RMS Load Current = (Winding Ratio*Peak Input Voltage)/(Load Resistance*sqrt(2))*sqrt(1+(3*sqrt(3))/(2*pi))
RMS Diode Current of Three Phase Uncontrolled Rectifier
​ Go RMS Diode Current = (Winding Ratio*Peak Input Voltage)/(Load Resistance*sqrt(2))*sqrt(1/3+sqrt(3)/(4*pi))
RMS Load Voltage of Three Phase Uncontrolled Rectifier
​ Go RMS Load Voltage = (Winding Ratio*Peak Input Voltage)/sqrt(2)*sqrt(1+(3*sqrt(3))/(2*pi))
Average Load Current of Three Phase Uncontrolled Rectifier
​ Go Average Load Current = (3*sqrt(3)*Winding Ratio*Peak Input Voltage)/(2*pi*Load Resistance)
Average Diode Current of Three Phase Uncontrolled Rectifier
​ Go Average Diode Current = (sqrt(3)*Winding Ratio*Peak Input Voltage)/(2*pi*Load Resistance)
Load Current of DC Three Phase Uncontrolled Rectifier
​ Go DC Load Current = (3*sqrt(3)*Peak Input Voltage)/(2*pi*Load Resistance)
Load Voltage of DC Three Phase Uncontrolled Rectifier
​ Go DC Load Voltage = (3*sqrt(3)*Peak Input Voltage)/(2*pi)
Load Voltage of Full Wave Three Phase Uncontrolled Rectifier
​ Go AC Voltage = (2*Winding Ratio*Peak Input Voltage)/pi
Power Delivered to Load in Three Phase Uncontrolled Rectifier
​ Go Delivery Power = AC Voltage*Average Output Voltage

Load Voltage of DC Three Phase Uncontrolled Rectifier Formula

DC Load Voltage = (3*sqrt(3)*Peak Input Voltage)/(2*pi)
VL(dc) = (3*sqrt(3)*Vmax)/(2*pi)

What is Load Voltage of dc Three Phase Uncontrolled Rectifier?

In a three-phase uncontrolled rectifier, the load voltage is a direct current (DC) voltage after rectification of the three-phase alternating current (AC) input. The load voltage of a DC three-phase uncontrolled rectifier can be calculated based on the peak value of the AC input voltage and the configuration of the rectifier.

How to Calculate Load Voltage of DC Three Phase Uncontrolled Rectifier?

Load Voltage of DC Three Phase Uncontrolled Rectifier calculator uses DC Load Voltage = (3*sqrt(3)*Peak Input Voltage)/(2*pi) to calculate the DC Load Voltage, Load Voltage of DC Three Phase Uncontrolled Rectifier is the voltage that is delivered to the load. The load voltage of a three-phase uncontrolled rectifier is typically higher than the load voltage of a single-phase uncontrolled rectifier. This is because the three-phase rectifier has a higher average voltage than the single-phase rectifier. The load voltage of a three-phase uncontrolled rectifier can be varied by changing the peak amplitude of the AC input voltage. It can also be varied by using a transformer with a different turns ratio. DC Load Voltage is denoted by VL(dc) symbol.

How to calculate Load Voltage of DC Three Phase Uncontrolled Rectifier using this online calculator? To use this online calculator for Load Voltage of DC Three Phase Uncontrolled Rectifier, enter Peak Input Voltage (Vmax) and hit the calculate button. Here is how the Load Voltage of DC Three Phase Uncontrolled Rectifier calculation can be explained with given input values -> 181.9385 = (3*sqrt(3)*220)/(2*pi).

FAQ

What is Load Voltage of DC Three Phase Uncontrolled Rectifier?
Load Voltage of DC Three Phase Uncontrolled Rectifier is the voltage that is delivered to the load. The load voltage of a three-phase uncontrolled rectifier is typically higher than the load voltage of a single-phase uncontrolled rectifier. This is because the three-phase rectifier has a higher average voltage than the single-phase rectifier. The load voltage of a three-phase uncontrolled rectifier can be varied by changing the peak amplitude of the AC input voltage. It can also be varied by using a transformer with a different turns ratio and is represented as VL(dc) = (3*sqrt(3)*Vmax)/(2*pi) or DC Load Voltage = (3*sqrt(3)*Peak Input Voltage)/(2*pi). Peak Input Voltage is the peak of the alternating voltage provided at the input of any electrical circuit.
How to calculate Load Voltage of DC Three Phase Uncontrolled Rectifier?
Load Voltage of DC Three Phase Uncontrolled Rectifier is the voltage that is delivered to the load. The load voltage of a three-phase uncontrolled rectifier is typically higher than the load voltage of a single-phase uncontrolled rectifier. This is because the three-phase rectifier has a higher average voltage than the single-phase rectifier. The load voltage of a three-phase uncontrolled rectifier can be varied by changing the peak amplitude of the AC input voltage. It can also be varied by using a transformer with a different turns ratio is calculated using DC Load Voltage = (3*sqrt(3)*Peak Input Voltage)/(2*pi). To calculate Load Voltage of DC Three Phase Uncontrolled Rectifier, you need Peak Input Voltage (Vmax). With our tool, you need to enter the respective value for Peak Input Voltage 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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