Q3 a- Design an op-amp circuit that will produce an output equal to -(4V + V2 + 0.1V3). %3D %3D b- Write an expression for the output when V =2 sin wt, V2 = +5 V dc, and V3 = = -100 V dc.

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Q3 a- Design an op-amp circuit that will produce an output equal to
-(4V, + V2 + 0.1V3).
b- Write an expression for the output when V = 2 sin wt, V2 = +5 V dc, and
V3 = -100 V dc.
Q4 Design an op-amp circuit using two inverting configurations to produce the
output V, = -10, + 5V2 + 0.5V3 – 20V4.
%3D
Qs Draw the output voltage waveform for each circuit in Fig. 4.30 with respect to
the input. Show voltage levels.
+1 V
+1 V
0-
-1 V
V.
net
+2 V
Vourum =t8 V
-2 V
(a)
(b)
Fig. 4.30.
Q6 Determine the rate of change of the output voltage in response to the step input
to the integrator in Fig. 4.31.
5 V
R
0.022 uF
V 0
56 kN
Transcribed Image Text:Q3 a- Design an op-amp circuit that will produce an output equal to -(4V, + V2 + 0.1V3). b- Write an expression for the output when V = 2 sin wt, V2 = +5 V dc, and V3 = -100 V dc. Q4 Design an op-amp circuit using two inverting configurations to produce the output V, = -10, + 5V2 + 0.5V3 – 20V4. %3D Qs Draw the output voltage waveform for each circuit in Fig. 4.30 with respect to the input. Show voltage levels. +1 V +1 V 0- -1 V V. net +2 V Vourum =t8 V -2 V (a) (b) Fig. 4.30. Q6 Determine the rate of change of the output voltage in response to the step input to the integrator in Fig. 4.31. 5 V R 0.022 uF V 0 56 kN
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