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Analog Electronic Circuits

Type of study Follow-up Master
Language of instruction Czech
Code 430-4104/01
Abbreviation AEO
Course title Analog Electronic Circuits
Credits 6
Coordinating department Department of Applied Electronics
Course coordinator prof. Ing. Petr Palacký, Ph.D.

Subject syllabus

Lectures:
Broadband amplifier small signal. Transfer characteristics. Analysis on frequency zone. Solving small signal amplifiers.
Multi - Wideband amplifiers of small signal. Transfer parameters. Analysis in the frequency area. Design of small signal amplifiers.
Multi - stage amplifier. DC and AC coupling. Feedback in electronic circuits. Differential amplifier. Circuit solution, characteristics, design, applications.
Power amplifiers. Class A, B, AB. Circuit solution, characteristics, design of power amplifiers, applications.
Theory of operational amplifier. Stability of operational nets. Basic connections of operational amplifiers. Linear applications of operational amplifiers. Nonlinear applications of operational amplifiers.
Analog control means . Circuit solution, design, static and dynamic properties, applications.
Amplitude signal limiters. Steepness signal limiters. Circuit solution, design, static and dynamic properties, applications.
Signal filtration, active filters with operational amplifiers. Circuit solution, design, static and dynamic properties.
Signal rectifiers, absolute value members, functional converters. Circuit solution, design, static and dynamic properties.
Switchers, modulators, analog multiplexers. Circuit solution, design, static and dynamic properties.
Analog memories and their applications. Circuit solution, design, static and dynamic properties.
Analog multipliers and their applications. Circuit solution, design, static and dynamic properties.
Phase-locked loop (PLL) and its applications. Converters voltage - frequency. Circuit solution, design, static and dynamic properties.
Signal generators. Harmonic oscillators. Generators with the rectangular, triangular and saw signal. Circuit solution, design, characteristics, applications.
Signal modulation. Modulators and convertor. Circuit solution, design, characteristics, applications.
Measuring components. Requirements for measuring components. Voltage and current sensors, isolation amplifiers. Circuit design, static and dynamic characteristics.
Speed and position sensors. Speed and position evaluation circuits. Circuit design, static and dynamic properties.

Exercise:
Design of transistor operating point stabilization, simulation.
Design of a broadband amplifier, simulation.
Examples of differential amplifier design, simulation
TEST 1 - Amplifiers and their applications
Properties of a real operational amplifier, simulation.
Filter design, simulation.
Properties of operational rectifiers, simulation.
Properties of PI controllers, simulation.
Generator design, simulation.
Properties of analog multipliers, simulation.
Isolation amplifier with optocoupler, simulation.
Speed and position sensors, evaluation, simulation.
TEST 2 - Operational amplifiers and their applications.

Projects:
Processing the results of simulation exercises.

E-learning

Study supports are available in the LMS to students of the course.

Literature

Brandštetter, P.: Analog Electronic Circuits. Study text in English, VŠB-Technical University of Ostrava, 2010.
Horowitz, P., Hill, W.: The Art of Electronics. Cambridge University Press, 1989, ISBN 0-521-37095-7.

Advised literature

Kale, C.O.: Introduction to passive, linear, and digital electronics. Reston Publishing Company, 1985, ISBN 0-8359-3263-X.