Maximum Phase Voltage between Outer and Neutral Wire (2-Phase 3-Wire US) Solution

STEP 0: Pre-Calculation Summary
Formula Used
Peak Phase Voltage = Maximum Voltage Underground AC/(sqrt(2))
Vm(phase) = Vm/(sqrt(2))
This formula uses 1 Functions, 2 Variables
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
Peak Phase Voltage - (Measured in Volt) - Peak Phase Voltage is the maximum amplitude of the phase voltage of a 3 phase system.
Maximum Voltage Underground AC - (Measured in Volt) - Maximum Voltage Underground AC is defined as the peak amplitude of the AC voltage supplied to the line or wire.
STEP 1: Convert Input(s) to Base Unit
Maximum Voltage Underground AC: 230 Volt --> 230 Volt No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Vm(phase) = Vm/(sqrt(2)) --> 230/(sqrt(2))
Evaluating ... ...
Vm(phase) = 162.634559672906
STEP 3: Convert Result to Output's Unit
162.634559672906 Volt --> No Conversion Required
FINAL ANSWER
162.634559672906 162.6346 Volt <-- Peak Phase Voltage
(Calculation completed in 00.004 seconds)

Credits

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14 Current & Voltage Calculators

Maximum Voltage using Line Losses (2-Phase 3-Wire US)
Go Maximum Voltage Underground AC = (Power Transmitted*sqrt((2+sqrt(2))*Resistivity*Length of Underground AC Wire/(Area of Underground AC Wire*Line Losses)))/cos(Phase Difference)
Maximum Voltage using Volume of Conductor Material (2-phase 3-wire US)
Go Maximum Voltage Underground AC = (2+sqrt(2))*sqrt(Resistivity*(Power Transmitted*Length of Underground AC Wire)^2/(Line Losses*Volume Of Conductor*(cos(Phase Difference))^2))
RMS Voltage using Line Losses (2-Phase 3-Wire US)
Go Root Mean Square Voltage = Power Transmitted*sqrt((2+sqrt(2))*Resistivity*Length of Underground AC Wire/(Area of Underground AC Wire*Line Losses))/cos(Phase Difference)
Maximum Voltage using Current in Neutral Wire (2-Phase 3-Wire US)
Go Maximum Voltage Underground AC = sqrt(2)*Power Transmitted/(cos(Phase Difference)*Current Underground AC)
Current in Neutral Wire (2-Phase 3-Wire US)
Go Current Underground AC = sqrt(2)*Power Transmitted/(Maximum Voltage Underground AC*cos(Phase Difference))
RMS Voltage using Current in Neutral Wire (2-Phase 3-Wire US)
Go Root Mean Square Voltage = Power Transmitted/(sqrt(2)*cos(Phase Difference)*Current Underground AC)
Maximum Voltage using Current in Each Outer (2-Phase 3-Wire US)
Go Maximum Voltage Underground AC = Power Transmitted/(cos(Phase Difference)*Current Underground AC)
Current in Each Outer (2-Phase 3-Wire US)
Go Current Underground AC = Power Transmitted/(Maximum Voltage Underground AC*cos(Phase Difference))
RMS Voltage using Current in Each Outer (2-Phase 3-Wire US)
Go Root Mean Square Voltage = Power Transmitted/(2*cos(Phase Difference)*Current Underground AC)
Maximum Phase Voltage between Outer and Neutral Wire (2-Phase 3-Wire US)
Go Peak Phase Voltage = Maximum Voltage Underground AC/(sqrt(2))
Current in Each Outer using Current in Neutral Wire (2-Phase 3-Wire US)
Go Current Underground AC = Current in Neutral Wire/sqrt(2)
Current in Neutral Wire using Current in Each Outer (2-Phase 3-Wire US)
Go Current in Neutral Wire = sqrt(2)*Current Underground AC
Maximum Voltage using RMS Voltage between Outer and Neutral Wire (2-Phase 3-Wire US)
Go Maximum Voltage Underground AC = 2*Root Mean Square Voltage
RMS Voltage between Outer and Neutral Wire (2-Phase 3-Wire US)
Go Root Mean Square Voltage = Maximum Voltage Underground AC/2

Maximum Phase Voltage between Outer and Neutral Wire (2-Phase 3-Wire US) Formula

Peak Phase Voltage = Maximum Voltage Underground AC/(sqrt(2))
Vm(phase) = Vm/(sqrt(2))

What is the value of maximum voltage in 2-phase 3-wire US?

The maximum voltage between conductors is vm/√2 so that r.m.s. value of voltage between them is vm/2.

How to Calculate Maximum Phase Voltage between Outer and Neutral Wire (2-Phase 3-Wire US)?

Maximum Phase Voltage between Outer and Neutral Wire (2-Phase 3-Wire US) calculator uses Peak Phase Voltage = Maximum Voltage Underground AC/(sqrt(2)) to calculate the Peak Phase Voltage, The Maximum Phase Voltage between Outer and Neutral Wire (2-Phase 3-Wire US) formula is defined as highest voltage rating for electrical devices and equipment that can be used with voltage definition. Peak Phase Voltage is denoted by Vm(phase) symbol.

How to calculate Maximum Phase Voltage between Outer and Neutral Wire (2-Phase 3-Wire US) using this online calculator? To use this online calculator for Maximum Phase Voltage between Outer and Neutral Wire (2-Phase 3-Wire US), enter Maximum Voltage Underground AC (Vm) and hit the calculate button. Here is how the Maximum Phase Voltage between Outer and Neutral Wire (2-Phase 3-Wire US) calculation can be explained with given input values -> 162.6346 = 230/(sqrt(2)).

FAQ

What is Maximum Phase Voltage between Outer and Neutral Wire (2-Phase 3-Wire US)?
The Maximum Phase Voltage between Outer and Neutral Wire (2-Phase 3-Wire US) formula is defined as highest voltage rating for electrical devices and equipment that can be used with voltage definition and is represented as Vm(phase) = Vm/(sqrt(2)) or Peak Phase Voltage = Maximum Voltage Underground AC/(sqrt(2)). Maximum Voltage Underground AC is defined as the peak amplitude of the AC voltage supplied to the line or wire.
How to calculate Maximum Phase Voltage between Outer and Neutral Wire (2-Phase 3-Wire US)?
The Maximum Phase Voltage between Outer and Neutral Wire (2-Phase 3-Wire US) formula is defined as highest voltage rating for electrical devices and equipment that can be used with voltage definition is calculated using Peak Phase Voltage = Maximum Voltage Underground AC/(sqrt(2)). To calculate Maximum Phase Voltage between Outer and Neutral Wire (2-Phase 3-Wire US), you need Maximum Voltage Underground AC (Vm). With our tool, you need to enter the respective value for Maximum Voltage Underground AC 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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