Front Pitch for DC Shunt Generator Solution

STEP 0: Pre-Calculation Summary
Formula Used
Front Pitch = ((2*Number of Slots)/Number of Poles)-1
YF = ((2*S)/P)-1
This formula uses 3 Variables
Variables Used
Front Pitch - Front Pitch the distance between the two coil sides connected to the same commutator segment is called front pitch.
Number of Slots - The number of slots per pole per phase determines how the winding layout is arranged. It is also disclosing information about the winding factor and its harmonics.
Number of Poles - Number of Poles is defined as the number of poles in an electrical machine for the flux generation.
STEP 1: Convert Input(s) to Base Unit
Number of Slots: 100 --> No Conversion Required
Number of Poles: 4 --> No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
YF = ((2*S)/P)-1 --> ((2*100)/4)-1
Evaluating ... ...
YF = 49
STEP 3: Convert Result to Output's Unit
49 --> No Conversion Required
FINAL ANSWER
49 <-- Front Pitch
(Calculation completed in 00.021 seconds)

Credits

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Created by Aman Dhussawat
GURU TEGH BAHADUR INSTITUTE OF TECHNOLOGY (GTBIT), NEW DELHI
Aman Dhussawat has created this Calculator and 50+ more calculators!
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Verified by Parminder Singh
Chandigarh University (CU), Punjab
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Mechanical Specifications Calculators

Front Pitch for DC Shunt Generator
​ LaTeX ​ Go Front Pitch = ((2*Number of Slots)/Number of Poles)-1
Back Pitch for DC Shunt Generator
​ LaTeX ​ Go Back Pitch = ((2*Number of Slots)/Number of Poles)+1
Commutator Pitch for DC Shunt Generator
​ LaTeX ​ Go Commutator Pitch = (Back Pitch+Front Pitch)/2

Front Pitch for DC Shunt Generator Formula

​LaTeX ​Go
Front Pitch = ((2*Number of Slots)/Number of Poles)-1
YF = ((2*S)/P)-1

What is span tolerance?

Tolerance. %Span. The values for the %Span criterion are calculated from the calibrated input span of the asset. The values are then converted to output units and are added to or subtracted from the desired output value to determine the range limits.

How to Calculate Front Pitch for DC Shunt Generator?

Front Pitch for DC Shunt Generator calculator uses Front Pitch = ((2*Number of Slots)/Number of Poles)-1 to calculate the Front Pitch, The Front Pitch for DC Shunt Generator formula is defined as the coil advances on the back of the armature. This advancement is measured in terms of armature conductors and is called front pitch. It is equal to the number difference of the conductor connected to a given segment of the commutator. Front Pitch is denoted by YF symbol.

How to calculate Front Pitch for DC Shunt Generator using this online calculator? To use this online calculator for Front Pitch for DC Shunt Generator, enter Number of Slots (S) & Number of Poles (P) and hit the calculate button. Here is how the Front Pitch for DC Shunt Generator calculation can be explained with given input values -> 49 = ((2*100)/4)-1.

FAQ

What is Front Pitch for DC Shunt Generator?
The Front Pitch for DC Shunt Generator formula is defined as the coil advances on the back of the armature. This advancement is measured in terms of armature conductors and is called front pitch. It is equal to the number difference of the conductor connected to a given segment of the commutator and is represented as YF = ((2*S)/P)-1 or Front Pitch = ((2*Number of Slots)/Number of Poles)-1. The number of slots per pole per phase determines how the winding layout is arranged. It is also disclosing information about the winding factor and its harmonics & Number of Poles is defined as the number of poles in an electrical machine for the flux generation.
How to calculate Front Pitch for DC Shunt Generator?
The Front Pitch for DC Shunt Generator formula is defined as the coil advances on the back of the armature. This advancement is measured in terms of armature conductors and is called front pitch. It is equal to the number difference of the conductor connected to a given segment of the commutator is calculated using Front Pitch = ((2*Number of Slots)/Number of Poles)-1. To calculate Front Pitch for DC Shunt Generator, you need Number of Slots (S) & Number of Poles (P). With our tool, you need to enter the respective value for Number of Slots & Number of Poles 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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