Multiplier Resistance for DC Operation Half Wave Rectifier Solution

STEP 0: Pre-Calculation Summary
Formula Used
Multiplier Resistance = Voltage RMS Value*DC Meter Sensitivity-Half Wave Shunt Meter Resistance-Diode Resistance
Rs = Vrms*Sdc-Rh-Rd
This formula uses 5 Variables
Variables Used
Multiplier Resistance - (Measured in Ohm) - Multiplier Resistance is the value of series resistance attached to the pmmc-based voltmeter.
Voltage RMS Value - (Measured in Volt) - Voltage RMS Value is the effective value of an alternating voltage, representing the equivalent direct current (DC) voltage that would produce the same power dissipation in a resistive load.
DC Meter Sensitivity - (Measured in Ohm Per Volt) - DC Meter Sensitivity refers to the ability of a DC measuring instrument to detect and accurately measure small direct current (DC) voltages or currents.
Half Wave Shunt Meter Resistance - (Measured in Ohm) - Half Wave Shunt Meter Resistance is the value of Shunt Meter resistance connected parallel to each other attached to the permanent magnet moving coil-based voltmeter.
Diode Resistance - (Measured in Ohm) - Diode Resistance refers to the resistance a diode presents to the flow of electric current.
STEP 1: Convert Input(s) to Base Unit
Voltage RMS Value: 7.07 Volt --> 7.07 Volt No Conversion Required
DC Meter Sensitivity: 8.6 Ohm Per Volt --> 8.6 Ohm Per Volt No Conversion Required
Half Wave Shunt Meter Resistance: 43.517 Ohm --> 43.517 Ohm No Conversion Required
Diode Resistance: 0.75 Ohm --> 0.75 Ohm No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Rs = Vrms*Sdc-Rh-Rd --> 7.07*8.6-43.517-0.75
Evaluating ... ...
Rs = 16.535
STEP 3: Convert Result to Output's Unit
16.535 Ohm --> No Conversion Required
FINAL ANSWER
16.535 Ohm <-- Multiplier Resistance
(Calculation completed in 00.004 seconds)

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Created by Nikita Suryawanshi
Vellore Institute of Technology (VIT), Vellore
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Rectifier Type Voltmeter Calculators

AC Voltage
​ LaTeX ​ Go Voltage = Voltage Peak Value*sin(Angular Frequency*Time)
Vrms value
​ LaTeX ​ Go Voltage RMS Value = Voltage Peak Value/sqrt(2)
Average Voltage of Half Wave Rectifier
​ LaTeX ​ Go Half Rectifier Average Voltage = 0.45*Voltage RMS Value
Average Voltage of Full Wave Rectifier
​ LaTeX ​ Go Full Rectifier Average Voltage = 0.9*Voltage RMS Value

Multiplier Resistance for DC Operation Half Wave Rectifier Formula

​LaTeX ​Go
Multiplier Resistance = Voltage RMS Value*DC Meter Sensitivity-Half Wave Shunt Meter Resistance-Diode Resistance
Rs = Vrms*Sdc-Rh-Rd

How to calculate Rs?

In a half-wave rectifier, only one diode is used for the operation. Therefore, we subtract the value of just one diode resistance, along with meter resistance, from the total resistance. Total resistance is calculated using DC sensitivity since the instrument is in DC operation mode.

How to Calculate Multiplier Resistance for DC Operation Half Wave Rectifier?

Multiplier Resistance for DC Operation Half Wave Rectifier calculator uses Multiplier Resistance = Voltage RMS Value*DC Meter Sensitivity-Half Wave Shunt Meter Resistance-Diode Resistance to calculate the Multiplier Resistance, The Multiplier Resistance for DC Operation Half Wave Rectifier formula is defined as the series resistor used to extend the voltage range of the rectifier circuit by limiting the current flow to the rectifier and the load. Multiplier Resistance is denoted by Rs symbol.

How to calculate Multiplier Resistance for DC Operation Half Wave Rectifier using this online calculator? To use this online calculator for Multiplier Resistance for DC Operation Half Wave Rectifier, enter Voltage RMS Value (Vrms), DC Meter Sensitivity (Sdc), Half Wave Shunt Meter Resistance (Rh) & Diode Resistance (Rd) and hit the calculate button. Here is how the Multiplier Resistance for DC Operation Half Wave Rectifier calculation can be explained with given input values -> 19.363 = 7.07*8.6-43.517-0.75.

FAQ

What is Multiplier Resistance for DC Operation Half Wave Rectifier?
The Multiplier Resistance for DC Operation Half Wave Rectifier formula is defined as the series resistor used to extend the voltage range of the rectifier circuit by limiting the current flow to the rectifier and the load and is represented as Rs = Vrms*Sdc-Rh-Rd or Multiplier Resistance = Voltage RMS Value*DC Meter Sensitivity-Half Wave Shunt Meter Resistance-Diode Resistance. Voltage RMS Value is the effective value of an alternating voltage, representing the equivalent direct current (DC) voltage that would produce the same power dissipation in a resistive load, DC Meter Sensitivity refers to the ability of a DC measuring instrument to detect and accurately measure small direct current (DC) voltages or currents, Half Wave Shunt Meter Resistance is the value of Shunt Meter resistance connected parallel to each other attached to the permanent magnet moving coil-based voltmeter & Diode Resistance refers to the resistance a diode presents to the flow of electric current.
How to calculate Multiplier Resistance for DC Operation Half Wave Rectifier?
The Multiplier Resistance for DC Operation Half Wave Rectifier formula is defined as the series resistor used to extend the voltage range of the rectifier circuit by limiting the current flow to the rectifier and the load is calculated using Multiplier Resistance = Voltage RMS Value*DC Meter Sensitivity-Half Wave Shunt Meter Resistance-Diode Resistance. To calculate Multiplier Resistance for DC Operation Half Wave Rectifier, you need Voltage RMS Value (Vrms), DC Meter Sensitivity (Sdc), Half Wave Shunt Meter Resistance (Rh) & Diode Resistance (Rd). With our tool, you need to enter the respective value for Voltage RMS Value, DC Meter Sensitivity, Half Wave Shunt Meter Resistance & Diode Resistance and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
How many ways are there to calculate Multiplier Resistance?
In this formula, Multiplier Resistance uses Voltage RMS Value, DC Meter Sensitivity, Half Wave Shunt Meter Resistance & Diode Resistance. We can use 3 other way(s) to calculate the same, which is/are as follows -
  • Multiplier Resistance = Voltage RMS Value*DC Meter Sensitivity-Full Wave Shunt Meter Resistance-2*Diode Resistance
  • Multiplier Resistance = Voltage RMS Value*AC Meter Sensitivity-Half Wave Shunt Meter Resistance-Diode Resistance
  • Multiplier Resistance = Voltage RMS Value*AC Meter Sensitivity-Full Wave Shunt Meter Resistance-2*Diode Resistance
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