Electrical Engineering - Practical Session (E)
Niveau
First cycle, Bachelor
Learning outcomes of the courses/module
The participants are able to:
• use common electrical measuring instruments (e.g. digital multimeters, oscilloscopes, ...) correctly and safely.
• understand electrical or electronic circuit diagrams.
• measure and evaluate current, voltage and resistance in electrical circuits.
• identify basic laws of electrical engineering.
• construct and analyze electrical and electronic circuits according to circuit diagrams.
• demonstrate the behavior of capacitor and coil in the AC circuit.
• distinguish and select electronic components.
• identify and select circuits for electrical machines (e.g. three-phase asynchronous motors).
• use common electrical measuring instruments (e.g. digital multimeters, oscilloscopes, ...) correctly and safely.
• understand electrical or electronic circuit diagrams.
• measure and evaluate current, voltage and resistance in electrical circuits.
• identify basic laws of electrical engineering.
• construct and analyze electrical and electronic circuits according to circuit diagrams.
• demonstrate the behavior of capacitor and coil in the AC circuit.
• distinguish and select electronic components.
• identify and select circuits for electrical machines (e.g. three-phase asynchronous motors).
Prerequisites for the course
not applicable
Course content
• Measurement of current, voltage and resistance
• Interpretation of the fundamental electrotechnical laws
• Series and parallel connection
• Capacitor and coil in AC circuit
• Use and switching of electrical equipment and electrical machines
• Structure of basic logic functions with integrated circuits (IC)
• Electronic components
• Interpretation of the fundamental electrotechnical laws
• Series and parallel connection
• Capacitor and coil in AC circuit
• Use and switching of electrical equipment and electrical machines
• Structure of basic logic functions with integrated circuits (IC)
• Electronic components
Recommended specialist literature
• Hagmann (2006): Grundlagen der Elektrotechnik, 12. Aufl., AULA-Verlag Graz
• Bieneck (2005): Elektro T, Grundlagen der Elektrotechnik, Lehrbuch: Informations- und Arbeitsbuch für Schüler und Studenten der elektrotechnischen Berufe, Holland & Josenhans Stuttgart
• Orlowski (2008): Praktische Regeltechnik: Anwendungsorientierte Einführung für Maschinenbauer und Elektrotechniker, 7. Aufl., Springer Verlag Berlin
• Stiller (2006): Grundlagen der Mess- und Regelungstechnik, Shaker Verlag München
• Bieneck (2005): Elektro T, Grundlagen der Elektrotechnik, Lehrbuch: Informations- und Arbeitsbuch für Schüler und Studenten der elektrotechnischen Berufe, Holland & Josenhans Stuttgart
• Orlowski (2008): Praktische Regeltechnik: Anwendungsorientierte Einführung für Maschinenbauer und Elektrotechniker, 7. Aufl., Springer Verlag Berlin
• Stiller (2006): Grundlagen der Mess- und Regelungstechnik, Shaker Verlag München
Assessment methods and criteria
Portfolio exam
Language
English
Number of ECTS credits awarded
2
Semester hours per week
Planned teaching and learning method
Exercise
Semester/trimester in which the course/module is offered
1