Urvi Rathod
Vishwakarma Government Engineering College (VGEC), Ahmedabad
Urvi Rathod has created this Calculator and 500+ more calculators!
Kethavath Srinath
Osmania University (OU), Hyderabad
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11 Other formulas that you can solve using the same Inputs

Series Generator Terminal Voltage
Voltage=Induced voltage-(Armature Current*(Armature resistance+Series field resistance)) GO
Mechanical Power Of When Input Power Is Given
Mechanical Power=Input Power-(Armature Current*Armature Current*Armature resistance) GO
Power Loss Due To Brush Drop
Power Loss Due to Brush Drop=Armature Current*Voltage drop due to brush drop GO
Armature Copper Loss
Armature Copper Loss=Armature Current*Armature Current*Armature resistance GO
Back EMF
Electromotive Force=Voltage-(Armature Current*Armature resistance) GO
Mechanical Efficiency
Efficiency =Induced voltage*Armature Current/Angular Speed*Torque GO
Shunt Generator Terminal Voltage
Voltage=Induced voltage-(Armature Current*Armature resistance) GO
Input Power Per Phase
Input Power=Voltage*Armature Current*cos(Theta) GO
Field Current When Load Current Is Given
Field Current=Armature Current-Load current GO
Power Generated When The Armature Current Is Given
Power=Induced voltage*Armature Current GO
Converted Power
Power=Induced voltage*Armature Current GO

3 Other formulas that calculate the same Output

Converted Power Of Series DC Generator Using Input Power
Converted Power=Input Power-Stray Losses-Mechanical Losses-Core Losses GO
Converted Power Using Mechanical Efficiency Of Dc Motor
Converted Power=Mechanical Energy*Mechanical Power GO
Converted Power Using Electrical Efficiency Of Dc Motor
Converted Power=Electrical Efficiency*Input Power GO

Converted Power Of Series DC Generator Formula

Converted Power=Induced voltage*Armature Current
Pcon=Ea*Ia
More formulas
Armature Resistance Of Series DC Generator Using Voltage GO
Series Field Resistance Of Series DC Generator Using Terminal Voltage GO
Kf Of Series DC Generator GO
Angular Speed Of Series DC Generator Using Kf GO
Magnetic flux Of Series DC Generator Using Kf GO
Torque Of Series DC Generator Using Kf GO
Kf Of Series DC Generator Using Torque GO
Magnetic flux Of Series DC Generator Using Torque GO
Power Generated By A Series DC Generator GO
Angular Speed Of Series DC Generator Using Generated Power GO
Torque Of Series DC Generator Using Generated Power GO
Torque Of Series DC Generator Using Angular Speed And Armature Current GO
Angular Speed Of Series DC Generator Using Torque GO
Load Power Of Series DC Generator GO
Torque Of Series DC Generator Using Input Power GO
Converted Power Of Series DC Generator Using Input Power GO
The Stray Losses Of Series DC Generator Using Converted Power GO
mechanical Losses Of Series DC Generator Using Converted Power GO
Core Losses Of Series DC Generator Using Converted Power GO

What is a DC generator used for?

A DC generator is an electrical device used for generating electrical energy. The main function of this device is to change mechanical energy into electrical energy. There are several types of mechanical energy sources available such as hand cranks, internal combustion engines, water turbines, gas and steam turbines.

How to Calculate Converted Power Of Series DC Generator?

Converted Power Of Series DC Generator calculator uses Converted Power=Induced voltage*Armature Current to calculate the Converted Power, The Converted Power Of Series DC Generator formula is defined as the power of the series DC generator after removing all the loss from the input power. Converted Power and is denoted by Pcon symbol.

How to calculate Converted Power Of Series DC Generator using this online calculator? To use this online calculator for Converted Power Of Series DC Generator, enter Induced voltage (Ea) and Armature Current (Ia) and hit the calculate button. Here is how the Converted Power Of Series DC Generator calculation can be explained with given input values -> 25 = 50*0.5.

FAQ

What is Converted Power Of Series DC Generator?
The Converted Power Of Series DC Generator formula is defined as the power of the series DC generator after removing all the loss from the input power and is represented as Pcon=Ea*Ia or Converted Power=Induced voltage*Armature Current. Induced voltage when reactive power is given is the difference in electric potential between two points and Armature Current is the Current which Flows in Armature Winding or rotating Winding of Motor or generator.
How to calculate Converted Power Of Series DC Generator?
The Converted Power Of Series DC Generator formula is defined as the power of the series DC generator after removing all the loss from the input power is calculated using Converted Power=Induced voltage*Armature Current. To calculate Converted Power Of Series DC Generator, you need Induced voltage (Ea) and Armature Current (Ia). With our tool, you need to enter the respective value for Induced voltage and Armature Current 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 Converted Power?
In this formula, Converted Power uses Induced voltage and Armature Current. We can use 3 other way(s) to calculate the same, which is/are as follows -
  • Converted Power=Input Power-Stray Losses-Mechanical Losses-Core Losses
  • Converted Power=Mechanical Energy*Mechanical Power
  • Converted Power=Electrical Efficiency*Input Power
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