Overview
Aims
• The design and use of hardware and software applications less complex specific applied electronics.
• Applying knowledge, concepts and basic methods: power electronics, automation systems, electrical power management.
• Defining specific elements identifying the devices and electronic circuits in the fields of power electronics, automation systems, energy management, medical electronics, automotive electronics, consumer goods.
• Qualitative and quantitative interpretation of the functioning circuits in the fields of power electronics, automation systems, energy management, medical electronics, automotive electronics, consumer goods; operation analysis in terms of electromagnetic compatibility.
• Development of specifications, installation and operation of equipment in the fields of applied electronics: power electronics, automation systems, energy management, medical electronics, automotive electronics, consumer goods.
Course contents
• Electronic devices • Electronic circuits • Converting alternative tensions • Convert tensions continue • Elements of control systems theory • Electronic stabilizing • Electronic generators • Variable applications. • Inverters, Manure • Regulators, Stabilizers • Surveillance and control circuits • Modeling and control of manufacturing systems • Petri Networks and Applications, Matlab, Visual Object Net ++ • Colored Petri nets, CPN
Learning outcomes
• The manifestation of a positive and responsible attitudes towards continuous training in industrial informatics taken as part of their professional development. • Compliance with the rules specific prevention and firefighting and labor protection in industrial computing. • Understanding the importance of correct and efficient tools for documentation and information in the art.
Assessment
Written paper – interpretative essay – 50%; continuous assessment – 50%.