the BJT in the following circuit has the parameters Beta = 200 , Vbeon = 0.75 V PT 1. Select resistor values from the standard values of resistors that will establish the DC Bias Point (Q-Point) Icq =...


the BJT in the following circuit has the parameters Beta = 200 , Vbeon = 0.75 V


PT 1. Select resistor values from the standard values of resistors that will establish the DC Bias Point (Q-Point) Icq = 0.8 mA and Vceq = 12 V and Vbq = 2 V. Set Ir1 = 10IBq.


PT 2. Analyze the circuit you designed and determine the actual Q-point of the circuit


PT 3. What is the small-signal voltage gain of the circuit


PT 4. Determine the size of the Coupling Capacitor C1 that will cause a corner frequency of 100 Hz


PT 5. Find the small signal gain if an emitter resistor by-pass capacitor is included


+24 V<br>Rc<br>Rout<br>IR1<br>o Vout<br>R1<br>I BQ<br>Rin<br>C1<br>Vin o<br>R2<br>RE<br>

Extracted text: +24 V Rc Rout IR1 o Vout R1 I BQ Rin C1 Vin o R2 RE
Standard Multiplier Values of±5% Resistors<br>Multiply any Power of 10<br>3.3<br>1.0<br>1.5<br>2.2<br>4.7<br>6.8<br>1.1<br>1.6<br>2.4<br>3.6<br>5.1<br>7.5<br>1.2<br>1.8<br>2.7<br>3.9<br>5.6<br>8.2<br>1.3<br>2.0<br>3.0<br>4.3<br>6.2<br>9.1<br>

Extracted text: Standard Multiplier Values of±5% Resistors Multiply any Power of 10 3.3 1.0 1.5 2.2 4.7 6.8 1.1 1.6 2.4 3.6 5.1 7.5 1.2 1.8 2.7 3.9 5.6 8.2 1.3 2.0 3.0 4.3 6.2 9.1

Jun 11, 2022
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