Q. 3: : Consider the differential amplifier in Fig. 4. Where, IT=1mA, R=10 KQ, VBE = 0.7 V. (a) For VB1 = VB2 =0, determine Icı, Veı, VE, and VCEI- (b) Calculate the single ended output voltage (Vo) if V¡1 =2 mV, and Vi2= 0 (c) Draw the equivalent schematic circuit. Vcc = +10 V Rc Voi Vo2 V82 Q2 V BE1 IE IE, VBE2 4 VE Vi1 1,=1 mA VER = -10 V

Introductory Circuit Analysis (13th Edition)
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Q. 3: : Consider the differential amplifier in Fig. 4. Where, IT=1mA, Rc=10 KN, VBE = 0.7 V.
(a) For VB1 = VB2 =0, determine ICı, Vci, VE, and V CE1-
(b) Calculate the single ended output voltage (Vo) if Vi =2 mV, and Vi2= 0
(c) Draw the equivalent schematic circuit.
Vcc = +10 V
Rc
Vo1
Vo2
V B1
VB2
Q2
BE1
IE VBE2
VE +
Vi1
=1mA
VEE = -10 V
Transcribed Image Text:Q. 3: : Consider the differential amplifier in Fig. 4. Where, IT=1mA, Rc=10 KN, VBE = 0.7 V. (a) For VB1 = VB2 =0, determine ICı, Vci, VE, and V CE1- (b) Calculate the single ended output voltage (Vo) if Vi =2 mV, and Vi2= 0 (c) Draw the equivalent schematic circuit. Vcc = +10 V Rc Vo1 Vo2 V B1 VB2 Q2 BE1 IE VBE2 VE + Vi1 =1mA VEE = -10 V
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