Course of Study Mechatronics (Study Cohort w23)

Sample course plan Y  Master Mechatronics (IMPMEC) Dual study program
Legend:
Core Qualification CompulsorySpecialisation CompulsoryFocus CompulsoryThesis Compulsory
Core Qualification Elective CompulsorySpecialisation Elective CompulsoryFocus Elective CompulsoryInterdisciplinary complement
LP
1
Robotics
Robotics: Modelling and ControlIV4
Robotics: Modelling and ControlPBL2
Practical module 2 (dual study program, Master's degree)
Practical term 2 0
Research Project Mechatronics
Master thesis (dual study program)
2
3
4
5
6
7
Vibration Theory
Vibration TheoryIV4
8
9
10
11
Applied Design Methodology in Mechatronics
Applied Design Methodology in MechatronicsVL2
Applied Design Methodology in MechatronicsPBL3
12
13
Finite Elements Methods
Finite Element MethodsVL2
Finite Element Methods2
Practical module 3 (dual study program, Master's degree)
Practical term 3 0
14
15
16
17
Systems Engineering
Systems EngineeringVL3
Systems Engineering1
18
19
Control Systems Theory and Design
Control Systems Theory and DesignVL2
Control Systems Theory and Design2
20
21
22
23
Microsystem Engineering
Microsystem EngineeringVL2
Microsystem EngineeringPBL2
24
25
Design and Implementation of Software Systems
Design and Implementation of Software SystemsVL2
Design and Implementation of Software SystemsPBL2
26
27
28
29
Methods of Product Development
Methods of Product DevelopmentVL3
Methods of Product DevelopmentPBL2
30
31
Practical module 1 (dual study program, Master's degree)
Practical term 1 0
32
33
34
35
Integrated Circuit Design
Integrated Circuit DesignVL3
Integrated Circuit Design1
36
37
38
39
40
Business & Management (from catalogue) - 6LP
Linking theory and practice (dual study program, Master's degree) (from catalogue) - 6LP

The choice of courses from the catalogue is flexible (depends on the semestral work load), provided the necessary number of required credits is reached.