Q.1: Calculate the value of Vbase for circuit in figure (1) when the inputs VA = VB = 15V.

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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Q.1: Calculate the value of Vbase for circuit in figure (1) when the inputs VA = VB = 15V.
Q.2: Draw the output voltage (V.) of the circuit shown in figure (2), for the input voltage
Vi = + 13Sinwt.
Q.3: Sketch the output voltage (V.) of the clamper circuit shown in figure (3) for the
input voltage Vi = -2 + 12Sinwt.
Q.4: Draw the output voltage (V.) for the circuit and the input voltage (V) shown
in figure (4).
Q.5: Sketch the transfer curve characteristics for an p-channel depletion MOSFET with
IDss = 16 mA and VP = |8|V.
Vcc = 12V
+12V
E
D
Rc
2.2k
Ri 15k
Vie
Vo
D1
0.2V
Si
R2
VA
15k
R3
100k
D2
VB
-12V
Fig. 1
Fig. 2
R
Vị +Wr
5kn DVzı=15V D; AVz =8V
ViHH
Vo
+12V
Ideal
R
E=5V-
-12V
D AS;
D4 G.
Fig. 3
Fig. 4
GOOD L UCK
Transcribed Image Text:Q.1: Calculate the value of Vbase for circuit in figure (1) when the inputs VA = VB = 15V. Q.2: Draw the output voltage (V.) of the circuit shown in figure (2), for the input voltage Vi = + 13Sinwt. Q.3: Sketch the output voltage (V.) of the clamper circuit shown in figure (3) for the input voltage Vi = -2 + 12Sinwt. Q.4: Draw the output voltage (V.) for the circuit and the input voltage (V) shown in figure (4). Q.5: Sketch the transfer curve characteristics for an p-channel depletion MOSFET with IDss = 16 mA and VP = |8|V. Vcc = 12V +12V E D Rc 2.2k Ri 15k Vie Vo D1 0.2V Si R2 VA 15k R3 100k D2 VB -12V Fig. 1 Fig. 2 R Vị +Wr 5kn DVzı=15V D; AVz =8V ViHH Vo +12V Ideal R E=5V- -12V D AS; D4 G. Fig. 3 Fig. 4 GOOD L UCK
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