2.a) Calculate Ay, A¡, Rin, and Rout on the circuit given in Figure 2. Assume that the coupling capacitors, Cc; and Cco, behave as open circuit for DC signals and as short circuit for AC signals. 2.b) Determine limits of the signal source, Vs, for the transistor to remain in forward- active region. (Hint: AC current on R, will be added onto the quiescent emitter current.) Vcc=15V Q1: BC237 RB 220KQ or BC238 B=200 VBE(on)=0.7V Rs Cci 1000 4.7µF vs RE 1.2kQ Cco RL 4.7μF 1000 Rin Rout Figure 2. Common-collector amplifier (emitter follower).

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2.a) Calculate Ay, Aj, Rin; and Rout on the circuit given in Figure 2. Assume that the
coupling capacitors, Ccj and Cco, behave as open circuit for DC signals and as short
circuit for AC signals.
2.b) Determine limits of the signal source, Vs, for the transistor to remain in forward-
active region. (Hint: AC current on R will be added onto the quiescent emitter
current.)
Q1: BC237
or BC238
B=200
VBE(on)=0.7V
Vcc=15V
RB
220KQ
Cci
Rs
1000 4.7µF
Q1
Vs
RE
1.2kQ
Cco
4.7µF
RL
1000
Rin
Rout
Figure 2. Common-collector amplifier
(emitter follower).
Transcribed Image Text:2.a) Calculate Ay, Aj, Rin; and Rout on the circuit given in Figure 2. Assume that the coupling capacitors, Ccj and Cco, behave as open circuit for DC signals and as short circuit for AC signals. 2.b) Determine limits of the signal source, Vs, for the transistor to remain in forward- active region. (Hint: AC current on R will be added onto the quiescent emitter current.) Q1: BC237 or BC238 B=200 VBE(on)=0.7V Vcc=15V RB 220KQ Cci Rs 1000 4.7µF Q1 Vs RE 1.2kQ Cco 4.7µF RL 1000 Rin Rout Figure 2. Common-collector amplifier (emitter follower).
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