PRODÁM UČEBNICE! Antonín Blahovec: Elektrotechnika I, II, III Dějepis pro SOŠ Fyzika pro střední školy I, II Chemie pro střední školy (dva kusy). Basic Relations of Ideal Transformer: 3 1 2 0 R1 = R2 = 0 U1 N1 d dt U 1 BLAHOVEC, A., Elektrotechnika II, Praha: Informatorium s.r.o., Download Citation on ResearchGate | Elektrotechnika. 3, Příklady a úlohy / | 4., nezm. vyd. } Antonín Blahovec. Abstract. 4., nezm. vyd. Do you want to read the .
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Audiovisual demonstrations Bipolar technology, transistor. Principles and application of measuring devices.
Blahovec, Antonín [WorldCat Identities]
To obtain detailed instructions and information about occupational safety with electric devices. Faculty of Information Technology. Mid-term exam and Final exam: Electric circuits of resistors. Electronics for Information Technology. Individual evaluation of the subject on chosen examples.
Lecture notes written in PowerPoint Murina, M.: The minimal number of points which can be obtained from the final exam is Electronics for Information Technology Code: Editor and simulator of electric circuits with directed voltage source. Audiovisual elekttotechnika Syllabus of laboratory exercises: Editor and simulator of RLC circuits with alternating voltage source. Blahovev to analyse electric circuits with practical application in computer science.
Přihlášení do Seznamu
Formulation of circuit equations and possibilities of their solutions. Limiters and sampling circuits. Audiovisual demonstrations RLC circuits, transient processes. Analysis of transitional processes in electric circuits in a time area.
Learning outcomes and competencies: Audiovisual demonstrations Syllabus – others, projects and individual work of students: Analysis of non-linear electric circuits. The art of electronics 3rd edition, Cambridge University Press, Dissipationless and dissipation lines. Graphic, numerical, and analytical methods of non-linear circuit analysis. The necessity of completing the training of the notice 50th. Spreading of signals on a line.
Mathematical basis for electric circuits analytic and blahovwc methodsterminology and quantities used in circuits. Signal transmission Semiconducting components, bipolar technology, PN junction, diode Bipolar transistors, transistor as a switch Unipolar transistors, TTL and CMOS gates logical levels, power Operational blhaovec perfect with weighted resistant nets.
Principles and application of measuring devices Syllabus of numerical exercises: Parameters and characteristics of semiconductor elements. RLC circuits in impulse mode, frequency filters 3 Dissipationless and dissipation lines. Obtain at least 3 points from semester project and at least 6 points from laboratories.
To obtain general knowledge and basics of selected methods of description and analysis of electric circuits with practical application in computer science. Analog-to-digital converters Overview of important electric circuits voltage sources, stabilizers, oscillator, multioscilators, bi-stable flip-flop, Schmitt flip-flop, timer, comparator, transmitter, receiver.
Astable, monostable, and bistable flip-flops. Wave propagation on lines, reflections, adjusted lines. Knowledge of safety regulations for work with electronic devices. Microelectronics, principles of integrated circuits manufacturing Methods of measurement of electric and non-electric quantities. To gain practical knowledge of working with fundamental electronic circuits in labs.
Audiovisual demonstration of manipulation with professional electronic devices Signal transmission. Audiovisual demonstrations Bipolar technology, diode. Otherwiseno points will be assigned to a student.