I only want the gain stage part i attached the picture to only illustrate its place  Gain Stage: This stage should be designed with BJT the gain should be 3

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I only want the gain stage part i attached the picture to only illustrate its place 

Gain Stage:
This stage should be designed with BJT

the gain should be 3 

A generalized multistage amplifier is shown in Fig.1.
You are expected to design only red boxes in Fig1.
The input signal is an audio signal.
- Describe each circuit element you used in your design (what is the role of
the elements?).
Comment about the project.
Buffer
Equalizer
Štage
Gain
Output
Stage
Audio
Source
Stage
Stage
Figure 1: Generalized multistage audio amplifier
Buffer Stage:
• Only JFET and MOSFET are allowed.
Buffer stage's gain should be 1 (unity).
Equalizer Stage:
You are expected to build a band pass filter which can be adjustable by
potentiometer.
The equalizer should pass signals whose frequency is between upper and lower
cut-off frequencies; however, the equalizer does not apply the same gain to all
frequency components in this frequency range. In your design, a potentiometer
should be used to selectively provide more gain to some frequencies. For
example, in the more professional equalizers, one can select to enhance the
lower frequencies in a music sample to increase the effect of the bass guitar
using an equalizer.
• Upper cut-off frequency is fnigh.
Lower cut-off frequency is fiow.
Transcribed Image Text:A generalized multistage amplifier is shown in Fig.1. You are expected to design only red boxes in Fig1. The input signal is an audio signal. - Describe each circuit element you used in your design (what is the role of the elements?). Comment about the project. Buffer Equalizer Štage Gain Output Stage Audio Source Stage Stage Figure 1: Generalized multistage audio amplifier Buffer Stage: • Only JFET and MOSFET are allowed. Buffer stage's gain should be 1 (unity). Equalizer Stage: You are expected to build a band pass filter which can be adjustable by potentiometer. The equalizer should pass signals whose frequency is between upper and lower cut-off frequencies; however, the equalizer does not apply the same gain to all frequency components in this frequency range. In your design, a potentiometer should be used to selectively provide more gain to some frequencies. For example, in the more professional equalizers, one can select to enhance the lower frequencies in a music sample to increase the effect of the bass guitar using an equalizer. • Upper cut-off frequency is fnigh. Lower cut-off frequency is fiow.
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