70 195 180 60 165 150 50 135 120 40 105 90 30 75 60 20 45 10 30 15 1.E05 LEH06 1.E07 1.E+08 1.E+09 1.E+10 1.E+11 1.E+12 Frequency, rad/sec 1.E+05 LE+06 1.E+07 1.E+08 1.E+09 1.E+10 1.E+11 LE+12 LE+13...


70<br>195<br>180<br>60<br>165<br>150<br>50<br>135<br>120<br>40<br>105<br>90<br>30<br>75<br>60<br>20<br>45<br>10<br>30<br>15<br>1.E05 LEH06 1.E07 1.E+08 1.E+09 1.E+10 1.E+11 1.E+12<br>Frequency, rad/sec<br>1.E+05<br>LE+06<br>1.E+07 1.E+08 1.E+09 1.E+10 1.E+11 LE+12 LE+13<br>1.E+13<br>Frequency, rad/se<br>Write the generalized form of the amplifier's transfer function,<br>Vout (w).<br>а.<br>A(w)<br>Vin<br>b.<br>Determine the value of the capacitor Cx.<br>What should be the quiescent collector current of the transistor?<br>C.<br>

Extracted text: 70 195 180 60 165 150 50 135 120 40 105 90 30 75 60 20 45 10 30 15 1.E05 LEH06 1.E07 1.E+08 1.E+09 1.E+10 1.E+11 1.E+12 Frequency, rad/sec 1.E+05 LE+06 1.E+07 1.E+08 1.E+09 1.E+10 1.E+11 LE+12 LE+13 1.E+13 Frequency, rad/se Write the generalized form of the amplifier's transfer function, Vout (w). а. A(w) Vin b. Determine the value of the capacitor Cx. What should be the quiescent collector current of the transistor? C.
A common emitter amplifier, with the circuit shown in Figure 1, is designed to have a Bode magnitude<br>and phase frequency response as shown in Figure 2.|The BJT has the following parameters: B = 100,<br>VA → 00, Cn = 500fF, and Cu = 10fF. Use Vr = 26mV, Rc = 10kN and note that the capacitor Cx is<br>an external capacitor used to achieve the desired frequency response.<br>Vec<br>VIN O<br>Cx<br>Rc<br>

Extracted text: A common emitter amplifier, with the circuit shown in Figure 1, is designed to have a Bode magnitude and phase frequency response as shown in Figure 2.|The BJT has the following parameters: B = 100, VA → 00, Cn = 500fF, and Cu = 10fF. Use Vr = 26mV, Rc = 10kN and note that the capacitor Cx is an external capacitor used to achieve the desired frequency response. Vec VIN O Cx Rc

Jun 11, 2022
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