Design of Bio-MEMS Systems
Année du cours : 1 année(s)
Etablissement : JUNIA Grande école d’ingénieurs
Langue : English
Formation(s) dans laquelle/lesquelles le cours apparait :
Période : S1
The student is able to synthesize his knowledge in complementary scientific fields, mainly in physics and chemistry. This course is complementary to the course entitled: ‘MEMS Applications : Biology & Clinics ‘. Basic knowledge in sensors and actuators as well as in microfabrication is not mandatory but help in the understanding of the presentations.
The goal of this course is to give the fundamentals for the design and fabrication of miniaturized system dedicated to life sciences, the so-called BioMEMS. By the end of the course, the student must be able to relate to the different scientific disciplines that encompass the BioMEMS field. The student should be able to identify tools required to fabricate BioMEMS devices using both traditional silicon microfabrication methodologies as well as the use of “soft” lithographic processes. They should illustrate applications of BioMEMS examples. They should be able to design devices for specifics applications and to choose a suitable physical mechanism to implement a function in key application areas within screening, diagnostics, monitoring, and therapy. He should be able to appraise the differences between a BioMEMS system and standard laboratory instruments performing similar tasks. Finally, the student should be able to combine knowledge from a new scientific discipline with that of its academic background. This will develop the skills required to master an interdisciplinary field and to construct the knowledge base required for subsequent specializations.
Targetted Skills: 31(311/313), 32(321/323), 34(342), 42(421), 146(1461), 1110(11103/11104)
W1. History of micro technologies (Vincent Senez – VS)
W2. Design concept at the micro scale (VS)
W3. Fundamentals of micromachining (Lionel Buchaillot – LB)
W4. Fundamentals of micromachining (LB)
W5. Principles of electro-mechanical actuation (LB)
W6. Modeling of BioMEMS and Microfluidics (VS)
W7. MEMS applications for automotive and consumers (LB)
W8. MEMS applications (towards biology and clinics) (Cagatay Tarhan – CT)