Q2 (i) Consider the circuit shown in Fig. 2.1. R = 100 Vi = Vsin t (a) (b) (c) (d) (e) C = 50 µF Vo Fig. 2.1. Is the circuit a high pass, or low pass network? Derive the circuit transfer response Vo / Vi Calculate the angular frequency Oc where cut off occurs Sketch the gain and phase Bode diagrams of the circuit showing the cut off frequency, the maximum gain, the gain slope, and the maximum and minimum phases. How could the network be altered to increase its gain slope?

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Author:Robert L. Boylestad
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Q2
(i)
Consider the circuit shown in Fig. 2.1.
R = 100
Vi = Vsin ot
(a)
(b)
(c)
(d)
(e)
C = 50 µF
Vo
Fig. 2.1.
Is the circuit a high pass, or low pass network?
Derive the circuit transfer response Vo / Vi
Calculate the angular frequency □c where cut off occurs
Sketch the gain and phase Bode diagrams of the circuit showing
the cut off frequency, the maximum gain, the gain slope, and the
maximum and minimum phases.
How could the network be altered to increase its gain slope?
Transcribed Image Text:Q2 (i) Consider the circuit shown in Fig. 2.1. R = 100 Vi = Vsin ot (a) (b) (c) (d) (e) C = 50 µF Vo Fig. 2.1. Is the circuit a high pass, or low pass network? Derive the circuit transfer response Vo / Vi Calculate the angular frequency □c where cut off occurs Sketch the gain and phase Bode diagrams of the circuit showing the cut off frequency, the maximum gain, the gain slope, and the maximum and minimum phases. How could the network be altered to increase its gain slope?
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