Course: Electrical Engineering

« Back
Course title Electrical Engineering
Course code KEEZ/PEMSP
Organizational form of instruction Lecture + Tutorial
Level of course Bachelor
Year of study 2
Semester Winter and summer
Number of ECTS credits 3
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)
  • Dvořák Karel, Ing.
  • Lenoch Václav, Ing. Ph.D.
  • Losenický Miroslav, Ing. CSc.
Course content
Introduction, electrostatic field in vacuum, in general media, capacitance, energy and forces, fields solutions. Stationary current field, current conduction mechanism in material. Ohms law, Kirchhoffs laws, DC circuits solution. Variable voltages and currents, variables characterizing variable voltages and currents, AC circuits. Magnetic field, Biot-Savart law, Amperes law, magnetic field in material. Magnetic field forces effects on a moving charge and current lead, Hall effect, skin effect. Electromagnetic induction, Faraday´s law, Lenzes law, self-inductance and mutual inductance . Transient effects, condenser charging and discharge, current rise and cut-off in inductor. Homogeneous line signal transmission. Semiconductor technology, PN junction, diode, bipolar transistor, diodes and transistors applications. Boolean algebra, digital technique. EMC, disturbance and its sources, coupled mechanisms of disturbance transmission. Electromagnetic shielding, EMI, EMS and testing.

Learning activities and teaching methods
Monologic (reading, lecture, briefing)
Learning outcomes
Principal aim of the subject is make the students acquainted with theoretical and practical grounding of electrical engeneering (theory of electromagnetic field, theory of electrical circuits, electronics), electric values measurement, labour protection and EMC.
After graduation of the subject student will be able to explain away basic notions of the electrostatics, magnetic field, current field, electromagnetism and EMC including signal propagation on the long lines. Student will be able to solve simple electrical circuits. Student will be able to enlighten function of PN junction and basic semiconductor parts - diode, transistor, analog and digital IC. Student will be practically identified with basic methods of measurement including principles of labour protection with electric unit.
Prerequisites
Math and physics from secondary school and the first term.

Assessment methods and criteria
Oral examination

Students should demonstrate understating of solved problems.
Recommended literature
  • http://ieeexplore.ieee.org/Xplore/dynhome.jsp.
  • http://www.radioeng.cz/search.htm.
  • Bezoušek, Pavel. Elektrotechnika. Pardubice: Univerzita Pardubice, 2008. ISBN 978-80-7395-101-6.
  • Schejbal, Vladimír . Elektrotechnika : příklady. Pardubice: Univerzita Pardubice, 2004. ISBN 80-7194-560-9.


Study plans that include the course
Faculty Study plan (Version) Category of Branch/Specialization Recommended year of study Recommended semester
Faculty: Faculty of Transport Engineering Study plan (Version): Management, Marketing and Logistics in Communications (2016) Category: Transportation and communications 2 Recommended year of study:2, Recommended semester: Winter
Faculty: Faculty of Transport Engineering Study plan (Version): Management of Electronic Communications and Postal Services (2013) Category: Transportation and communications 1 Recommended year of study:1, Recommended semester: Summer
Faculty: Faculty of Transport Engineering Study plan (Version): Management, Marketing and Logistics in Communications (2013) Category: Transportation and communications 1 Recommended year of study:1, Recommended semester: Summer
Faculty: Faculty of Transport Engineering Study plan (Version): Management of Electronic Communications and Postal Services (2014) Category: Transportation and communications 1 Recommended year of study:1, Recommended semester: Summer