Q2: For the network in figure determine the input impedance, Output impedance, voltage gain ,current gain and output voltage by using Miller's theory if hi-1.8k0,he-2.5 10h-100.hu-25. 1 kOhm HH 260 kOhm hins IH AYEE

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Q2: For the network in figure determine the input impedance, Output impedance, voltage gain
,current gain and output voltage by using Miller's theory if hie-1.8k0,he-2.5 10h-100.hu-25us.
1 kOhm
10 uF
HH
260 kOhm
+YEE
TH
ㅏ
Konge
के
Q3:1.Design a voltage collector-feedback bias a circuit using a Vee supply of +18v, and an apa
silicon transistor with 3 of 80 Choose Ic at 1mA.
2. For the circuit designed in part (1),determine the change in le if a change in operating
conditions results in (Ico increasing from 0.2 to 10µA,VBE drops from 0.7 to 0.5 [v] and B
increase 25%.
3. Calculate the change in Ic if the temperature increase from 25°to 75e" for the same circuit in
part (1) if Ico-0.2μA and VBE-0.7.
Transcribed Image Text:Q2: For the network in figure determine the input impedance, Output impedance, voltage gain ,current gain and output voltage by using Miller's theory if hie-1.8k0,he-2.5 10h-100.hu-25us. 1 kOhm 10 uF HH 260 kOhm +YEE TH ㅏ Konge के Q3:1.Design a voltage collector-feedback bias a circuit using a Vee supply of +18v, and an apa silicon transistor with 3 of 80 Choose Ic at 1mA. 2. For the circuit designed in part (1),determine the change in le if a change in operating conditions results in (Ico increasing from 0.2 to 10µA,VBE drops from 0.7 to 0.5 [v] and B increase 25%. 3. Calculate the change in Ic if the temperature increase from 25°to 75e" for the same circuit in part (1) if Ico-0.2μA and VBE-0.7.
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