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Course List

Electronic Circuits

  • Course Code :
    ELE 364
  • Level :
    Undergraduate
  • Course Hours :
    4.00 Hours
  • Department :
    Department of Electrical Engineering

Instructor information :

Area of Study :

The Course aims to provide : 1- Transistor small signal models: π- model , T-model. 2- Analysis of audio frequency (AF) amplifiers: RC-coupled, and frequency response. 3- Power amplifiers: Class-A, Push-pull operation (Class-A, Class-B, Class C). 4- Operational amplifiers (OPAMPs): difference amplifier, OPAMP specifications and frequency characteristics, OPAMP applications. 5- Inverting, non-inverting, adder, subtractor, integrator, differentiator. Feedback amplifiers (FB). 6- FB concept, general characteristics of negative FB amplifiers, input and output impedances 7- Oscillators: concept of stability and oscillations, OPAMP oscillators. 8- Multivibrators (MVs): bistable MVs, monostable and astable MVs. 9- Waveform shaping circuits and the 555 timer.

For further information :

Electronic Circuits

For further information :

Electronic Circuits

Course outcomes:

a. Knowledge and Understanding:

1- understand the fundamentals of the Audio and Power transistor Amplifiers .
2- Operational amplifiers (OPAMPs): specifications , frequency characteristics, and applications.
3- Inverting, non-inverting, adder, integrator, differentiator. and feedback amplifiers (FB).
4- OPAMP oscillators
5- Multivibrators (MVs): bistable MVs, monostable and astable MVs.
6- development of the practical skills and testing of the electronic circuits

b. Intellectual Skills:

1- Ability to apply different alternative solutions.
2- Ability to apply different solution alternatives using different approximation models.
3- Analysis of the obtained results both individually or as a part of a team

c. Professional and Practical Skills:

1- Testing and measurements of the characteristics of the Transistor and Operational Amplifier circuits..
2- Connections and Measurements of the input and output signal levels and waveforms of the transistor and Operational Amplifier Circuits
3- Fault detection and repair of the OP Amplifier and transistor circuits.

d. General and Transferable Skills:

1- Ability to write technical reports.
2- Ability to work in a self-directed manner.
3- Can work coherently as a part of a team.
4- Can find innovative solutions

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Electronic Circuits

Course topics and contents:

Topic No. of hours Lecture Tutorial/Practical
Transistor small signal models: π- model , T-model. RC-coupled audio frequency (AF) amplifiers. 6 3 3
Power amplifiers: Class-A, Push-pull operation, (Class-A, Class-B, Class C). 12 6 6
Operational amplifiers (OPAMPs) difference amplifier, OPAMP applications. 12 6 6
Inverting, non-inverting, adder, subtractor, integrator, differentiator. Feedback amplifiers (FB). 12 6 6
FB concept, general characteristics of negative FB amplifiers, input and output impedances 6 3 3
Oscillators: concept of stability and oscillations, OPAMP oscillators. Waveform shaping circuits. 18 9 9
Multivibrators (MVs): bistable MVs, monostable and astable MVs. 12 6 6

For further information :

Electronic Circuits

Teaching And Learning Methodologies:

Teaching and learning methods
Lectures
Tutorials
Laboratories

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Electronic Circuits

Course Assessment :

Methods of assessment Relative weight % Week No. Assess What

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Electronic Circuits

Books:

Book Author Publisher
Microelectronic Circuits Adel S.Sedra Oxford

Course notes :

No course notes are required

Recommended books :

"Electronic Principles", 7th edition, A. Malvino. “Electronic Circuit Analysis and Design”, 2nd ed., Neamen D.

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