How to Design Collector-Emitter Feedback biased BJT Amplifier

  Here emitter biased BJT amplifier is designed using the online BJT amplifier design calculator. Emitter biasing method is one of several biasing method for BJT(Bipolar Junction Transistor).

The circuit diagram of a BJT amplifier designed using emitter biasing method is shown below.

In the above circuit, the emitter resistor RE is used as feedback resistor. When the collector current increases, the voltage across RE increases which then reduces the base voltage and thus the base current. As such the function of RE is to stabilize the output current by opposing the increase of output collector current. 

In the circuit above, V1 is the ac signal source say of 10mV and frequency of 1KHz. The dc voltage is VCC which is say 5V. The resistors RB, RC and RE dc biases the BJT transistor. The input signal is coupled into the dc biased circuit using the coupling capacitor C1. Similarly, the amplified signal at the collector is coupled into the load resistor say 10KOhm using another coupling capacitor C2. The capacitor C3 is the bypass capacitor which also is used to stabilize the biased circuit when there is ac signal in the circuit.

We will use the online BJT amplifier design calculator to get the valu

 Collector-Emitter Feedback bias method is one of the many biasing method for Bipolar Junction Transistor(BJT) based amplifier. Here we illustrate how to design a BJT amplifier using collector emitter feedback bias method. We will use the online BJT amplifier calculator to calculate the resistor and capacitor values. The designed BJT amplifier is then simulated in multisim circuit simulation software.

For construction and real time testing see Construction of Collector-Emitter Feedback Bias BJT Amplifier Test with PC Oscilloscope.

The following shows the circuit diagram of a BJT amplifier designed using collector emitter feedback bias.



 In the above circuit, V1 is the ac signal source. Let the amplitude and frequency of the V1 be 10mV and 1KHz. The transistor Q1 has DC beta of 100, Vbe of 0.75V. Let the DC source voltage Vcc be 5V. The resistors RB, RC and RE are used to bias the transistor Q1. Here both collector feedback and emitter feedback is used in order to stabilize the Q-point. The resistor RB is connected from the collector back to the base and this is what causes collector feedback. Similarly, the resistor RE is used to create an emitter feedback to the base. Because we have used both the collector and emitter feedback the circuit is called collector emitter feedback bias. In other to couple the input ac signal into the biased BJT circuit without disturbing the bias point the coupling capacitor C1 is used. Similarly, the amplified output signal at the collector is coupled to the load resistor using capacitor C2. The emitter resistor RE is bypassed using the bypass capacitor C3 to stabilize the bias point.

To calculate the resistors RB, RC, RE values, the coupling capacitors C1 and C2 values and the bypass capacitor C3 value we will use the online BJT amplifier design calculator. Consider that the load resistor RL is 10KOhm.

Using the calculated values in multisim we get the following circuit.

Collector-Emitter Feedback biased  BJT Amplifier

The following graph shows the input signal vin and the output signal vout,

signal in Collector-Emitter Feedback biased  BJT Amplifier

See other similar tutorials:

- How to bias a BJT using voltage divider biasing

- How to bias a BJT using base bias

- How to design emitter biased BJT amplifier

- How to plot BJT characteristic curves in Multisim 

es for the resistors RB, RC and RE and also the coupling capacitors C1 and C2 and the bypass capacitor C3.


 In this example we have used dc beta of 100 and Vbe of 0.75V.

With the obtained resistor and capacitor value the circuit diagram with component values is shown below.


The graph of input ac signal and amplified signal is shown below.


See other similar tutorials:

- How to bias a BJT using voltage divider biasing

- How to Design Collector-Emitter Feedback biased  BJT Amplifier

- How to bias a BJT using base bias

- How to design emitter biased BJT amplifier

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