Prelab 6.2: Series RL circuit Given the circuit shown in Figure 6.3 with v;(t) = 1.5 sin(50000rt) [V], R = 10 [kN], and L = 50 [mH). %3D 1. Find the impedance phasor ZRL- 2. Determine the phasors Vi, VR, and VL corresponding to the phasors for the input voltage, resistor voltage, and inductor voltage. 3. Draw the impedance and voltage phasor diagrams.

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Prelab 6.2: Series RL circuit
Given the circuit shown in Figure 6.3 with vi(t)
1.5 sin(50000t) [V], R = 10 [kN], and L = 50 [mH].
=
1. Find the impedance phasor ZRL-
2. Determine the phasors Vi, VR, and V, corresponding to the phasors for the input voltage, resistor
voltage, and inductor voltage.
3. Draw the impedance and voltage phasor diagrams.
Transcribed Image Text:Prelab 6.2: Series RL circuit Given the circuit shown in Figure 6.3 with vi(t) 1.5 sin(50000t) [V], R = 10 [kN], and L = 50 [mH]. = 1. Find the impedance phasor ZRL- 2. Determine the phasors Vi, VR, and V, corresponding to the phasors for the input voltage, resistor voltage, and inductor voltage. 3. Draw the impedance and voltage phasor diagrams.
L
ll
VL (t)
v;(t)
RE VR(t)
vo(t)
-
-
Figure 6.3: A series RL circuit (lowpass filter circuit).
Transcribed Image Text:L ll VL (t) v;(t) RE VR(t) vo(t) - - Figure 6.3: A series RL circuit (lowpass filter circuit).
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Given: source voltage, resistance,inductance , frequency of operation

Calculate : impedance and voltage phasors

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