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,...


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

Extracted 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<br>ll<br>VL (t)<br>v;(t)<br>RE VR(t)<br>vo(t)<br>-<br>-<br>Figure 6.3: A series RL circuit (lowpass filter circuit).<br>

Extracted text: L ll VL (t) v;(t) RE VR(t) vo(t) - - Figure 6.3: A series RL circuit (lowpass filter circuit).

Jun 11, 2022
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