Course: Electronics I

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Course title Electronics I
Course code UFY/EKA1
Organizational form of instruction Lecture + Lesson
Level of course Bachelor
Year of study 2
Frequency of the course In each academic year, in the winter semester.
Semester Winter
Number of ECTS credits 4
Language of instruction Czech
Status of course Compulsory
Form of instruction Face-to-face
Work placements This is not an internship
Recommended optional programme components None
Lecturer(s)
  • Hubička Zdeněk, Mgr. Ph.D.
Course content
Content of lectures: 1. Electronics - determining the subject contents, definitions, passive dipoles, ideal sources, application of methods of electric circuits solving. 2. Elementary phenomena of semiconducting techniques - physical electronics of semiconductors, technology of production of semiconducting materials and chosen components, two materials contact with rectifying properties. 3. Semiconducting components, principals and their functions, parameters, application - diodes, thyristor, triacs. 4. Bipolar transistors, transistors controlled by electric field, principal, function, properties, parameters, application. 5. Elementary circuitry of amplifying levels with transistors, transistor level as a two gate. Chosen transistor circuitry - stabilizers, oscillating circuits. 6. Operational amplifiers, ideal operational amplifier, mistakes and parameters of real operational amplifiers. 7. Elementary linear circuitry with operational amplifiers. Application. 8. Digital circuits - types of digital logical circuits TTL, S, LS, HCT, combinational logical circuits, flip-flop circuits. 9. Counters, memories, bus exciting, elementary logic algebra. 10. Digital-analogue converters - principals, functions, parameters, mistakes. 11. Analogue-digital converters - principals, functions, parameters, mistakes. 12. Signal generating and processing - generating, modulation, filtration, frequency analysis. 13. Personal computer hardware - John von Neumann architecture and Harvard architecture, processors, controllers. 14. Computer buses - definitions, types, application, parameters. Content of practicals: Solving of examples of electronic circuits design presented in lectures.

Learning activities and teaching methods
Monologic (reading, lecture, briefing)
Learning outcomes
Prerequisites
Fundamental knowledges of Physics and Mathematical analysis from the first year of study are expected.

Assessment methods and criteria
Interim evaluation

Recommended literature
  • Frohn, W. Oberthur, H. Siedler, M. Wiemer, P. Zastrow. Elektronika, Polovodičové součástky a základní zapojení. BEN Praha, 2006.
  • J. Belza. Operační zesilovače pro obyčejné smrtelníky. BEN, 2004.
  • M. Antošová, V. Davídek. Číslicová technika. Kopp, 2013.
  • P. Neumann, J. Uhlíř. Elektronické obvody a funkční bloky 1. skriptum ČVUT, 2005.


Study plans that include the course
Faculty Study plan (Version) Category of Branch/Specialization Recommended year of study Recommended semester
Faculty: Faculty of Science Study plan (Version): Physics (1) Category: Physics courses 2 Recommended year of study:2, Recommended semester: Winter
Faculty: Faculty of Science Study plan (Version): Biophysics (1) Category: Physics courses - Recommended year of study:-, Recommended semester: Winter
Faculty: Faculty of Science Study plan (Version): Physics for future teachers (1) Category: Physics courses 2 Recommended year of study:2, Recommended semester: Winter