Non-Ideal Transformer Circuit Use mesh analysis on the circuit in Figure 1 below to calculate 1) the two mesh currents, 2) the phasor voltage drop across the primary winding (L1), 3) the phasor voltage across R2 and 4) the total impedance seen by the source. R1 V1 100Q T1 1Vpk 1kHz R2 L1 L2 50kQ 0° Figure 1. Non-ideal transformer circuit where T1 is a non-ideal transformer with L1 = 1H, L2 = 81H and k = .5 (coefficient of coupling).

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Non-Ideal Transformer Circuit
Use mesh analysis on the circuit in Figure 1 below to calculate 1) the two mesh currents, 2) the
phasor voltage drop across the primary winding (L1), 3) the phasor voltage across R2 and 4) the
total impedance seen by the source.
R1
V1
100Q
T1
1Vpk
1kHz
R2
L1
50k2
0°
Figure 1. Non-ideal transformer circuit where T1 is a non-ideal transformer with L1 = 1H, L2 =
81H and k = .5 (coefficient of coupling).
%3D
12
Transcribed Image Text:Non-Ideal Transformer Circuit Use mesh analysis on the circuit in Figure 1 below to calculate 1) the two mesh currents, 2) the phasor voltage drop across the primary winding (L1), 3) the phasor voltage across R2 and 4) the total impedance seen by the source. R1 V1 100Q T1 1Vpk 1kHz R2 L1 50k2 0° Figure 1. Non-ideal transformer circuit where T1 is a non-ideal transformer with L1 = 1H, L2 = 81H and k = .5 (coefficient of coupling). %3D 12
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