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| Module code:  WIBb21-730 | 
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30P (30 hours per week) | 
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5 | 
| Semester: 7 | 
| Mandatory course: yes | 
Language of instruction:  
German | 
Assessment:  
Project work
  
[updated 11.06.2025] 
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450 class hours (= 337.5 clock hours) over a 15-week period. The total student study time is 150 hours (equivalent to 5 ECTS credits). There are therefore -187.5 hours available for class preparation and follow-up work and exam preparation.
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Recommended prerequisites (modules):  
WIBb21-150  WIBb21-230  WIBb21-330  WIBb21-340 Engineering Mechanics WIBb21-420 Statistics and Data Analysis WIBb21-430 Programming for Real-Time Systems WIBb21-440 Machine Elements and CAD WIBb21-530 Basics of Mechatronics and Hydraulics WIBb21-630 
 
  
[updated 30.05.2025] 
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Recommended as prerequisite for:  
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Module coordinator:  
Studienleitung | 
Lecturer:  Studienleitung
  
[updated 08.10.2021] 
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Learning outcomes:  
After successfully completing this module, students will: •        be able to develop a suitable concept for implementing a prototype design based on appropriate requirements for a system. •        be able to select the appropriate components for the design of such a system based on the relevant requirements for a system and create the system as a prototype design.
  
[updated 11.06.2025] 
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Module content:  
Creating a prototype system 1.      Analysis of the requirements for the system 2.      Selecting components 3.      Prototype implementation of the system (e.g., using an Arduino Uno or Mega microcontroller)
  
[updated 11.06.2025] 
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Teaching methods/Media:  
Project work
  
[updated 11.06.2025] 
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Recommended or required reading:  
•       Lunze, J.: Regelungstechnik 1; 9. Auflage, Springer Verlag, 2013 •       Unbehauen, H.: Regelungstechnik 1; 15. Auflage, Vieweg+Teubner Verlag, 2008 •       Reuter, M., Zacher, S.: Regelungstechnik für Ingenieure; 12. Auflage, Vieweg+Teubner Verlag, 2008 •       Tröster, F.: Steuerungs- und Regelungstechnik für Ingenieure; 3. Auflage, Oldenbourg Verlag, 2011 •       Roddeck, W.: Einführung in die Mechatronik; 4. Auflage,  Vieweg+Teubner Verlag, 2012 •       Bode, H.: Systeme der Regelungstechnik mit Matlab und Simulink – Analyse und Simulation; Oldenbourg Verlag, 2010 •       Gasperi, M.: Labview for Lego Mindstorms NXT; National Technology & Science Press, 2008 •       RRZN Handbuch: Matlab/Simulink; 4. Auflage, 2012 
  
[updated 11.06.2025] 
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