Maximum Voltage using Load Current(Two-Wire One Conductor Earthed) Solution

STEP 0: Pre-Calculation Summary
Formula Used
Maximum Voltage Overhead DC = Power Transmitted/Current Overhead DC
Vm = P/I
This formula uses 3 Variables
Variables Used
Maximum Voltage Overhead DC - (Measured in Volt) - Maximum Voltage Overhead DC is defined as the peak amplitude of the AC voltage supplied to the line or wire.
Power Transmitted - (Measured in Watt) - Power Transmitted is defined as the product of current and voltage phasor in a overhead dc line at the receiving end.
Current Overhead DC - (Measured in Ampere) - Current Overhead DC is defined as the current flowing through the overhead ac supply wire.
STEP 1: Convert Input(s) to Base Unit
Power Transmitted: 920 Watt --> 920 Watt No Conversion Required
Current Overhead DC: 3.1 Ampere --> 3.1 Ampere No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Vm = P/I --> 920/3.1
Evaluating ... ...
Vm = 296.774193548387
STEP 3: Convert Result to Output's Unit
296.774193548387 Volt --> No Conversion Required
FINAL ANSWER
296.774193548387 296.7742 Volt <-- Maximum Voltage Overhead DC
(Calculation completed in 00.020 seconds)

Credits

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Current and Voltage Calculators

Maximum Voltage using Volume(Two-Wire One Conductor Earthed)
​ LaTeX ​ Go Maximum Voltage Overhead DC = sqrt(((Power Transmitted^2)*4*Resistivity*(Length of Wire DC^2))/(Volume of Conductor*Line Losses))
Maximum Voltage using Line Losses(Two-Wire One Conductor Earthed)
​ LaTeX ​ Go Maximum Voltage Overhead DC = sqrt((2*(Power Transmitted^2)*Resistance Overhead DC)/Line Losses)
Maximum Voltage using Load Current(Two-Wire One Conductor Earthed)
​ LaTeX ​ Go Maximum Voltage Overhead DC = Power Transmitted/Current Overhead DC
Load Current(Two-Wire One Conductor Earthed)
​ LaTeX ​ Go Current Overhead DC = Power Transmitted/Maximum Voltage Overhead DC

Maximum Voltage using Load Current(Two-Wire One Conductor Earthed) Formula

​LaTeX ​Go
Maximum Voltage Overhead DC = Power Transmitted/Current Overhead DC
Vm = P/I

What is the two-wire one conductor earthed system?

The load is connected between the two wires. where a1 is the area of the X-section of the conductor. It is a usual practice to make this system the basis for comparison with other systems.

How to Calculate Maximum Voltage using Load Current(Two-Wire One Conductor Earthed)?

Maximum Voltage using Load Current(Two-Wire One Conductor Earthed) calculator uses Maximum Voltage Overhead DC = Power Transmitted/Current Overhead DC to calculate the Maximum Voltage Overhead DC, The Maximum Voltage using Load Current(Two-Wire One Conductor Earthed) formula is defined as the absolute maximum rated supply voltage is the maximum voltage that can be supplied between the positive supply (VCC) and negative supply (VEE) pins without causing characteristics degradation or damage to the internal circuit. Maximum Voltage Overhead DC is denoted by Vm symbol.

How to calculate Maximum Voltage using Load Current(Two-Wire One Conductor Earthed) using this online calculator? To use this online calculator for Maximum Voltage using Load Current(Two-Wire One Conductor Earthed), enter Power Transmitted (P) & Current Overhead DC (I) and hit the calculate button. Here is how the Maximum Voltage using Load Current(Two-Wire One Conductor Earthed) calculation can be explained with given input values -> 296.7742 = 920/3.1.

FAQ

What is Maximum Voltage using Load Current(Two-Wire One Conductor Earthed)?
The Maximum Voltage using Load Current(Two-Wire One Conductor Earthed) formula is defined as the absolute maximum rated supply voltage is the maximum voltage that can be supplied between the positive supply (VCC) and negative supply (VEE) pins without causing characteristics degradation or damage to the internal circuit and is represented as Vm = P/I or Maximum Voltage Overhead DC = Power Transmitted/Current Overhead DC. Power Transmitted is defined as the product of current and voltage phasor in a overhead dc line at the receiving end & Current Overhead DC is defined as the current flowing through the overhead ac supply wire.
How to calculate Maximum Voltage using Load Current(Two-Wire One Conductor Earthed)?
The Maximum Voltage using Load Current(Two-Wire One Conductor Earthed) formula is defined as the absolute maximum rated supply voltage is the maximum voltage that can be supplied between the positive supply (VCC) and negative supply (VEE) pins without causing characteristics degradation or damage to the internal circuit is calculated using Maximum Voltage Overhead DC = Power Transmitted/Current Overhead DC. To calculate Maximum Voltage using Load Current(Two-Wire One Conductor Earthed), you need Power Transmitted (P) & Current Overhead DC (I). With our tool, you need to enter the respective value for Power Transmitted & Current Overhead DC 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 Maximum Voltage Overhead DC?
In this formula, Maximum Voltage Overhead DC uses Power Transmitted & Current Overhead DC. We can use 3 other way(s) to calculate the same, which is/are as follows -
  • Maximum Voltage Overhead DC = sqrt((2*(Power Transmitted^2)*Resistance Overhead DC)/Line Losses)
  • Maximum Voltage Overhead DC = sqrt(((Power Transmitted^2)*4*Resistivity*(Length of Wire DC^2))/(Volume of Conductor*Line Losses))
  • Maximum Voltage Overhead DC = sqrt(4*(Power Transmitted^2)*Resistivity*(Length of Wire DC^2)/(Constant Overhead DC*Line Losses))
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