Electrical Engineering
Niveau
Introduction
Learning outcomes of the courses/module
The participants:
• use common electrical measuring instruments such as digital multimeters or oscilloscopes correctly and safely.
• interpret electrical and electronic circuit diagrams.
• measure current, voltage and resistance in electrical circuits and evaluate the measurement results.
• identify the fundamental laws of electrical engineering and apply them in basic circuit analyzes.
• build electrical and electronic circuits according to given circuit diagrams and analyze how they work.
• describe the behavior of capacitors and inductors in an AC circuit.
• distinguish between electronic components and select suitable components for simple circuits.
• recognise the wiring of electrical machines such as three-phase asynchronous motors and select suitable connection and operating modes.
• use common electrical measuring instruments such as digital multimeters or oscilloscopes correctly and safely.
• interpret electrical and electronic circuit diagrams.
• measure current, voltage and resistance in electrical circuits and evaluate the measurement results.
• identify the fundamental laws of electrical engineering and apply them in basic circuit analyzes.
• build electrical and electronic circuits according to given circuit diagrams and analyze how they work.
• describe the behavior of capacitors and inductors in an AC circuit.
• distinguish between electronic components and select suitable components for simple circuits.
• recognise the wiring of electrical machines such as three-phase asynchronous motors and select suitable connection and operating modes.
Prerequisites for the course
none
Course content
- Introduction and basic concepts
- Fundamental laws of electrical engineering
- Voltage sources and current sources
- Basic circuits
- Electric field and capacitor
- Magnetic field and inductor
- Circuit design
- AC and three-phase technology
- Electrical installations and machines
- Protective measures
- Fundamentals of electronic components
- Fundamental laws of electrical engineering
- Voltage sources and current sources
- Basic circuits
- Electric field and capacitor
- Magnetic field and inductor
- Circuit design
- AC and three-phase technology
- Electrical installations and machines
- Protective measures
- Fundamentals of electronic components
Recommended specialist literature
- Bieneck, H. (2005). Elektro T. Grundlagen der Elektrotechnik. Lehrbuch: Informations- und Arbeitsbuch für Schüler und Studenten der elektrotechnischen Berufe. Holland & Josenhans.
- Hagmann, R. (2006). Grundlagen der Elektrotechnik (12. Aufl.). AULA-Verlag.
- Orlowski, A. (2008). Praktische Regeltechnik. Anwendungsorientierte Einführung für Maschinenbauer und Elektrotechniker (7. Aufl.). Springer.
- Stiller, C. (2006). Grundlagen der Mess- und Regelungstechnik. Shaker Verlag.
- Hagmann, R. (2006). Grundlagen der Elektrotechnik (12. Aufl.). AULA-Verlag.
- Orlowski, A. (2008). Praktische Regeltechnik. Anwendungsorientierte Einführung für Maschinenbauer und Elektrotechniker (7. Aufl.). Springer.
- Stiller, C. (2006). Grundlagen der Mess- und Regelungstechnik. Shaker Verlag.
Assessment methods and criteria
Portfolio assessment
Language
English
Number of ECTS credits awarded
3
Semester hours per week
Planned teaching and learning method
Lecture
Semester/trimester in which the course/module is offered
1