(a) The trasnsistor amplifier of Fig 1. is to be designed to deliver an output power of 5W. Given the following data, determine the values of the resistors. (R, RE,R1,R2). Data: B= 30 (NB: B is Beta) VBE = 0.7 V Vcc = 58 V %3D VE = 3 V VCE = 25 V Ic = 0.2 A Take: 10RBB = BRĘ -Vcc Ri Rc Rs Vs O Ra RE RL (b) Using the resistor values calculated in Fig. 1, and any relevant data, with Rs = 50, RL = 750, do the following. i. Draw the small signal equivalent circuit. ii. Calculate the a. gain of the transistor Av b. gain with signal Avs c. If Vs is specified as 10Vsinwt, what will be the output voltage Vo d. Draw the input Vs+Vo on the same graph

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(a) The trasnsistor amplifier of Fig 1. is to be designed to deliver an output power of 5W. Given
the following data, determine the values of the resistors. (R, RE,R1,R2).
Data:
B = 30
(NB: B is Beta)
VBE = 0.7 V
%3D
Vcc = 58 V
VE = 3 V
VCE = 25 V
Ic = 0.2 A
Take: 10RBB = BRĘ
Vcc
RI
Rc
Rs
RL
R
RE
Vs @
(b) Using the resistor values calculated in Fig. 1, and any relevant data, with Rs = 50, RL = 750,
do the following.
i. Draw the small signal equivalent circuit.
ii. Calculate the
a. gain of the transistor Av
b. gain with signal Avs
c. If Vs is specified as 10Vsinwt, what will be the output voltage Vo
d. Draw the input Vs +Vo on the same graph
wht
Transcribed Image Text:(a) The trasnsistor amplifier of Fig 1. is to be designed to deliver an output power of 5W. Given the following data, determine the values of the resistors. (R, RE,R1,R2). Data: B = 30 (NB: B is Beta) VBE = 0.7 V %3D Vcc = 58 V VE = 3 V VCE = 25 V Ic = 0.2 A Take: 10RBB = BRĘ Vcc RI Rc Rs RL R RE Vs @ (b) Using the resistor values calculated in Fig. 1, and any relevant data, with Rs = 50, RL = 750, do the following. i. Draw the small signal equivalent circuit. ii. Calculate the a. gain of the transistor Av b. gain with signal Avs c. If Vs is specified as 10Vsinwt, what will be the output voltage Vo d. Draw the input Vs +Vo on the same graph wht
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