6 ECTS credits
160 u studietijd
Aanbieding 1 met studiegidsnummer 4012659ENR voor alle studenten in het 2e semester met een verdiepend master niveau.
Chapter 1: Sensors en Actuators
Chapter 2: Elektronical Interfacing of Sensors en Actuators
Chapter 3: Elektronical transmission of data
Chapter 4: Microsystems, practice examples
Course material
Syllabus and slides used during the course
References
• [1] J. Fraden, "Handbook of Modern Sensors" (AIP)
• [2] R. Pallàs-Areny / John Webster, “Sensors and signal conditioning” (Wiley and Sons)
• [3] Ilene J. Busch-Vishniac, “Electromechanical Sensors and Actuators”
• [4] Georges Asch, "Les Capteurs en Instrumentation Industrielle"
• [5] John P. Bentley, "Principles of Measurement Systems"
• [6] P. Rai-Choudhury, "Handbook of Microlithography, Micromachining and Microfabrication, • Volume 2"
• [7] Aldert Van Der Ziel, "Noise", Prentice-Hall
• [8] D.V. Bugg, "Circuits, Amplifiers and Gates", Adam Hilger
• [9] James J. Allen, "Micro Electro Mechanical System Design", Taylor & Francis (Available • via "EngNetBase")
• [10] Scientific literature
Learning to build the bridge between electronics and sensors & actuators. Acquire insight in the different opto-electronic interfacing techniques, and in the pros and cons of the different solutions.
Acquire the skills and audacity to perform opto-electronic interfacing using transistors, microcontrollers,etc.
Getting experienced in solving problems related to electrical communication of measurement data, both at low and high (telecom) frequencies.
De beoordeling bestaat uit volgende opdrachtcategorieën:
Examen Andere bepaalt 100% van het eindcijfer
Binnen de categorie Examen Andere dient men volgende opdrachten af te werken:
Information on the examination methods
During examination period: oral closed-book exam (with written preparation if organised on site; without written preparation if it has to be organised online).
During semester: graded project reports; graded lab sessions; graded homework.
Calculation of the examination mark
Special conditions: lab exercises + projects + homework: 1/3%. examination: 2/3%.
The use of generative artificial intelligence (GenAI) as a supporting tool is allowed to some extent, provided that the "AI-guidelines for students" are strictly adhered to.
The student has to properly report on the use of AI. Specific instructions will be communicated via the learning platform.
Deze aanbieding maakt deel uit van de volgende studieplannen:
Master in de ingenieurswetenschappen: biomedische ingenieurstechnieken: Standaard traject
Master of Photonics Engineering: Standaard traject (enkel aangeboden in het Engels)