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?

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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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