Masdar Institute of Science and Technology

Master in Microsystems Engineering - Ingeniería de Microsistemas

Masdar Institute of Science and Technology
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  • Imparte:
  • Modalidad:
    Presencial en Masdar City
  • Precio:
    There are five scholarships available to applicants of Masdar Institute – the Masdar Institute Scholarship, BP Innovation Scholarship, IRENA Scholarship, Toyota Scholarship and ICT Fund Scholarship.
  • Comienzo:
    Septiembre 2016
  • Lugar:
    Masdar City (Abu Dhabi)
    Emiratos Árabes Unidos
  • Idioma:
    El Curso se imparte en Inglés
  • Titulación:
    Máster MSc in Microsystems Engineering - Ingeniería de Microsistemas

Presentación

Microelectronic devices and circuits are the fundamental building blocks in the communication and information technologies that are enabling current and future transformations in energy, embedded systems, medical electronics and large scale systems.
In order to drive research, development and commercialization of future systems, engineers are needed that understand both the underlying semiconductor device and fabrication technology, and the application of these devices in the design of integrated circuits and systems. The mission of the Microsystems Engineering Program is to create a regional and global center of excellence for microelectronics that drives leading-edge research and education both into existing and new directions. These range from state-of-the-art integrated circuit fabrication and foundry technology to novel device concepts, providing new capabilities, to circuits and systems bringing new functionality and capability for critical industrial and global needs including energy and medical technologies.

Requisitos

A relevant undergraduate degree in the fields of science, engineering or information technology
A minimum CGPA of 3.0 (on a scale of 4.0) or equivalent (2nd class upper in the British system)
A minimum GRE Quantitative score of 155 (700 on the old scale).
A minimum TOEFL score of 91 (Internet based) or equivalent paper/computer based TOEFL, or a minimum academic IELTS score of 6.5.

Academically strong applicants who do not have the GRE test may be evaluated for admission. If admitted, they will then be required to take placement exams and/or additional 400-level courses.

Objetivos

The MSc in Microsystems Engineering Program aims to produce post-graduate students with the disciplinary preparation that meets the following goals:
•An ability to identify and address current and future microelectronics and devices, photonics, and micromechanical (collectively, Microsystems) engineering problems related to data communication, health and medicine, and energy sources, production, conversion, efficiency, and control within a broader framework of sustainable development;
•An ability to apply a multi-disciplinary approach to conceive, plan, design, and implement solutions to microsystems engineering problems in the fields of data communication, health and medicine, and energy and sustainability;
•An understanding of the impact of solutions to data communication, health and medicine, and energy problems in a global, economic, environmental, and societal context; and
•An understanding of the value of technical and scientific scholarship, service to society, leadership and lifelong learning required to further their career aspirations.

Programa

MIC501 – Micro/Nano Processing Technology – 3 credits
MIC502 – Digital Systems Laboratory – 3 credits
MIC503 – Integrated Microelectronic Devices – 3 credits
MIC504 – Advanced Signal Processing – 3 credits
MIC505 – Electromagnetic and Applications – 3 credits
MIC600 – Master Thesis in Microsystems Engineering – Total 24 credits
MIC610 – Analysis and Design of Digital Integrated Circuits – 3 credits
MIC611 – Analysis and Design of Analog Integrated Circuits – 3 credits
MIC612 – High Speed Communication Circuits – 3 credits
MIC613 – Analog and Mixed-Signal Design Techniques – 3 credits
MIC614 – Low Energy Biomedical Circuits and Systems – 3 credits
MIC615 – Computer Architecture – 3 credits
MIC620 - Advanced VLSI Devices - 3 credits
MIC621 – Advanced Integrated Circuits Technology – 3 credits
MIC622 – Integrated Circuit Fabrication Laboratory – 3 credits
MIC623 – Nanoelectronics – 3 credits
MIC624 – The Physics of Solar Cells – 3 credits
MIC630 – Fundamentals of Photonics – 3 credits
MIC631 – Computational Electrodynamics – 3 credits
MIC632 – Photonic Materials and Devices – 3 credits
MIC633 – Photonic Sensors for Chemical, Biomedical and Environmental Applications – 3 credits
MIC634 – Propagation and Generation of Light – 3 credits
MIC635 - Semiconductor Optoelectronic Devices – 3 credits
MIC636 – Advanced Micro and Nanofabrication of Microsystems Devices – 3 credits
MIC637 – Advanced Photonic Integrated Circuits Design – 3 credits
MIC640 – Design and Fabrication of MEMS – 3 credits
MIC641 – Materials and Processes for Microelectromechanical Devices and Systems – 3 credits
MIC650 – Computer-Aided Design of Microelectronic Systems – 3 credits
MIC651 Numerical Simulation of Circuits and Systems – 3 credits
MIC660– Applied Quantum and Statistical Physics – 3 credits
MIC661 – Physics and Manufacturability of Advanced Microfabrication – 3 credits

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