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Higher education teachers: Možek Matej
Prerequisits:
Content (Syllabus outline):
Sensor definitions, transduction principles, classifications of sensors and actuators.
Essential sensor properties: characteristics, sensitivity, accuracy, resolution, selectivity, minimal detected signal, threshold, nonlinearity, repeatability, noise, temperature zero drift, overload, stability, analysis of sensor dynamic response
Review of standard silicon microelectronic technologies: Micromachining: basic materials properties, deposition, etching, LIGA, sacrified film, laser application, opening sealing, substrate bonding, sensor chip encapsulation/packaging, 3D structures fabrication
Analog and digital signal conditioning in sensor and actuator systems.
Review of sensor and actuator structures and applications: Piezoresistive, Piezoelectric, Pyroelectric, Capacitive, Resonant, Thermoelectric, Radiation, Magnetic, Chemical, Optical fiberAdvanced sensor and actuator structures,
Objectives and competences:
Understanding of effects, structures, technologies and applications of sensors and actuators.
Application of obtained sensor and actuator knowledge for realization of advanced sensor and actuator systems.
Intended learning outcomes:
Presentation of effects, structures, technologies and applications of sensors and actuators, and their application in practical problems in advanced sensor and actuator systems.
Learning and teaching methods: