i. For the circuit in Figure 16-1, the voltage gain from base to collector is approximately (a) 1 2. The output signal is out-of-phase with the input by (a) 0° 3. If the emitter supply voltage is made...


These questions from electronics lab course, from  The Common-Base Amplifier Experiment.



Hint:



the Value for Vcc in RE
= - 9 Volt



the Value for Vcc in RC
=  +9 Volt


i. For the circuit in Figure 16-1, the voltage gain from base to collector<br>is approximately<br>(a) 1<br>2. The output signal is out-of-phase with the input by<br>(a) 0°<br>3. If the emitter supply voltage is made more negative, the voltage gain<br>(b) 17<br>(c) 34<br>(d) 50<br>( )<br>(b) 45°<br>(c) 90°<br>(d) 180°<br>will<br>(a) increase<br>(b) decrease<br>(c) remain essentially the same<br>( )<br>

Extracted text: i. For the circuit in Figure 16-1, the voltage gain from base to collector is approximately (a) 1 2. The output signal is out-of-phase with the input by (a) 0° 3. If the emitter supply voltage is made more negative, the voltage gain (b) 17 (c) 34 (d) 50 ( ) (b) 45° (c) 90° (d) 180° will (a) increase (b) decrease (c) remain essentially the same ( )
メ<br>Re<br>10 KS?<br>100 uF<br>2.2 uF<br>2N3904<br>25 mV p-p<br>5 kilz<br>RE<br>I kf!<br>CH 2<br>Oscilloscope<br>CH I<br>FIGURE 16-1 Schematic diengram of circuit.<br>16<br>

Extracted text: メ Re 10 KS? 100 uF 2.2 uF 2N3904 25 mV p-p 5 kilz RE I kf! CH 2 Oscilloscope CH I FIGURE 16-1 Schematic diengram of circuit. 16

Jun 11, 2022
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