Lecture topics: 1. Passive electronic elements (R, L, C - design, marking, parameters). 2. Diodes (types, parameters, V-A characteristics), rectifiers, thyristors. 3. Bipolar and unipolar transistors (associated characteristics, spare circuits, h/y parameters, dynamic properties). 4. Amplifiers (basic division, parameters, working point stabilization, classes), differential stage, push-pull, Darlington connection. 5. Operational amplifiers (ideal and real OA, parameters). 6. Basic operating networks with operational amplifiers (parameters, application). 7. Regulators and converters (division, principles, parameters). 8. Digital electronics (numerical systems, logical operators, basic gates, digital circuit technologies). 9. Combination logic circuits (description, parameters, design of combination circuits). 10. Sequential logic circuits (description, parameters, flip-flops, design of sequence circuits). 11. State machine (Mealy and Moore, internal states, design of state machines). 12. Programmable logic circuits (PLD and FPGA circuits - principles, architectures). 13. A/D and D/A converters (principles, parameters). Exercise content: The exercises will consist of the following parts: - solution of sample examples (calculations of component and circuit parameters, setting of working points, solving waveforms of signals, etc.); - measurement of basic characteristics and parameters of components and circuits; - design of simple analog and digital circuits; - orientation in datasheets of components.
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Doležal, I. a kol. Analogová elektronika. Liberec, 2014. ISBN 978-80-7494-136-8.
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Láníček, R. Elektronika, obvody - součástky - děje. Praha: BEN, 1998. ISBN 80-86056-25-2.
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Novák, O. a kol. Číslicová elektronika. Liberec, 2014. ISBN 978-80-7494-137-5.
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Vobecký, J. - Záhlava, V. Elektronika - součástky a obvody, principy a příklady. Praha: Grada, 2000.
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