12 monthsProgramme duration
29,168 USDTuition Fee/year
30 Apr, 2027Application Deadline
SepStarting Month
Programme overview
Main Subject
Materials Sciences
Degree
MSc
Study Level
Masters
Study Mode
On Campus
The Master of Science in Microelectronics Technology and Materials is designed to develop high-calibre talents with the knowledge and hands-on skills needed to contribute to the development of the booming semiconductor industry.
Based on the expertise of the Department of Applied Physics in device physics and materials science research, this one-year programme provides students with unique and professional training in the process flow of microelectronics and integrated circuit design, simulation, fabrication and processing, characterisation, and inspection.
Upon completion of the Programme, students should be able to:
(i) analyse the properties of semiconductor materials and the performance of microelectronic devices;
(ii) utilise knowledge and skills in key aspects of semiconductor material processing, microelectronics devices and systems fabrication;
(iii) evaluate device design and process flows, and devise strategies to improve device performances and process yields; and
(iv) demonstrate the ability to engage in continuous development as a professional in the microelectronics industry, through inquiry and reflection on the current technological development.
Programme overview
Main Subject
Materials Sciences
Degree
MSc
Study Level
Masters
Study Mode
On Campus
The Master of Science in Microelectronics Technology and Materials is designed to develop high-calibre talents with the knowledge and hands-on skills needed to contribute to the development of the booming semiconductor industry.
Based on the expertise of the Department of Applied Physics in device physics and materials science research, this one-year programme provides students with unique and professional training in the process flow of microelectronics and integrated circuit design, simulation, fabrication and processing, characterisation, and inspection.
Upon completion of the Programme, students should be able to:
(i) analyse the properties of semiconductor materials and the performance of microelectronic devices;
(ii) utilise knowledge and skills in key aspects of semiconductor material processing, microelectronics devices and systems fabrication;
(iii) evaluate device design and process flows, and devise strategies to improve device performances and process yields; and
(iv) demonstrate the ability to engage in continuous development as a professional in the microelectronics industry, through inquiry and reflection on the current technological development.
Admission Requirements
- A Bachelor’s degree with Honours in science, engineering or equivalent qualifications. Preference will be given to applicants with relevant work experience in microelectronics industries.
Tuition fees
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