Lecturer(s)
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Grossl Jiří, prof. Ing. Ph.D.
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Adamcová Lucie, Ing.
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Kušnír Tomáš, doc. Ing. Ph.D.
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Poláček Jiří, doc. Ing. Ph.D.
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Course content
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1. Microsystem structures, basic physical principles of energy conversion, actuators and sensors, MEMS 2. Basic production processes, interconnection of control, action and sensors 3. Micromanipulators on electrostatic principle, possible applications 4. Micromanipulators on piezoelectric principle, possible applications 5. Micromanipulators on electro-thermal principle, possible applications 6. Micromanipulators on magnetic principle, possible applications 7. Special designs, switches, optical mirrors, polymer-based actuators 8. Sensors of mechanical quantities and their applications, tension and pressure sensors 9. Electrochemical sensors for gases and liquids 10. Special sensors using graphene and nanotubes 11. Microgenerators of electricity, energy harvesting 12. Modeling and simulation of actuators 13. Modeling and simulation of sensor
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Learning activities and teaching methods
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- Contact hours
- 39 hours per semester
- unspecified
- 27 hours per semester
- Contact hours
- 12 hours per semester
- Preparation for comprehensive test (10-40)
- 20 hours per semester
- Undergraduate study programme term essay (20-40)
- 20 hours per semester
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prerequisite |
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Knowledge |
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to have knowledge of electromagnetic field theory |
Skills |
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to apply skills in theoretical electrical engineering |
to solve tasks with problematics of electrical and magnetic field |
Competences |
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N/A |
N/A |
N/A |
learning outcomes |
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Knowledge |
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explain basic physical parameters used in MEMS applications |
explain the physical principles of energy conversion on typical examples |
Skills |
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to work with a computer program for the analysis of electromagnetic phenomena and coupled problems |
to explain basic physical principles of microactuators |
Competences |
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N/A |
N/A |
teaching methods |
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Knowledge |
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Practicum |
Lecture supplemented with a discussion |
Skills |
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Lecture supplemented with a discussion |
Practicum |
Task-based study method |
Competences |
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Lecture supplemented with a discussion |
Practicum |
Self-study of literature |
assessment methods |
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Knowledge |
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Test |
Seminar work |
Skills |
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Test |
Skills demonstration during practicum |
Seminar work |
Competences |
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Test |
Seminar work |
Recommended literature
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Ezzat G. Bakhoum. Micro- and Nano-Scale Sensors and Transducers. 2015. ISBN 978-1482250909.
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Husák, Miroslav. Mikrosenzory a mikroaktuátory. Vyd. 1. Praha : Academia, 2008. ISBN 978-80-200-1478-8.
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Sedlák, Bedřich; Štoll, Ivan. Elektřina a magnetismus. První elektronické vydání (Čtvrté vydání, v Nakladatelství Karolinum třetí). 2017. ISBN 978-80-246-3146-2.
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