60me 10MH 250utH l.652 t amvelee eele V,(4) 100:500 Primary Side Series Resistance = 60 mOhm Leakage Inductance = 10 microH Magnetizing Inductance = 100 mH Secondary Side Series Resistance = 1.6 Ohm Leakage Inductance = 250 microH Turns Ratio = 100:500 1) A 120 Vrms sinusoidal voltage at frequency of 2500HZ is applied to the primary with no secondary load. Calculate the RMS magnetizing current. 2) From 1, what are the no-load losses of this transformer (Watts)? 3) At full power, the transformer outputs 400W at the secondary side. What are the total losses when operating at 400W?

Power System Analysis and Design (MindTap Course List)
6th Edition
ISBN:9781305632134
Author:J. Duncan Glover, Thomas Overbye, Mulukutla S. Sarma
Publisher:J. Duncan Glover, Thomas Overbye, Mulukutla S. Sarma
Chapter6: Power Flows
Section: Chapter Questions
Problem 6.61P
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60me 10uit
250utH
I.652 t
amvelel
leee-
Vp (t)
To0mH
V,(4)
100:500
Primary Side
Series Resistance = 60 mOhm
Leakage Inductance = 10 microH
Magnetizing Inductance = 100 mH
Secondary Side
Series Resistance = 1.6 Ohm
Leakage Inductance = 250 microH
%3D
Turns Ratio = 100:500
1) A 120 Vrms sinusoidal voltage at frequency of 2500HZ is applied to the primary with no
secondary load. Calculate the RMS magnetizing current.
2) From 1, what are the no-load losses of this transformer (Watts)?
3) At full power, the transformer outputs 400W at the secondary side. What are the total
losses when operating at 400W?
Transcribed Image Text:60me 10uit 250utH I.652 t amvelel leee- Vp (t) To0mH V,(4) 100:500 Primary Side Series Resistance = 60 mOhm Leakage Inductance = 10 microH Magnetizing Inductance = 100 mH Secondary Side Series Resistance = 1.6 Ohm Leakage Inductance = 250 microH %3D Turns Ratio = 100:500 1) A 120 Vrms sinusoidal voltage at frequency of 2500HZ is applied to the primary with no secondary load. Calculate the RMS magnetizing current. 2) From 1, what are the no-load losses of this transformer (Watts)? 3) At full power, the transformer outputs 400W at the secondary side. What are the total losses when operating at 400W?
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