Dive into the comprehensive syllabus of the M.E. in Microelectronics program, covering advanced topics in semiconductor devices, VLSI design, and microelectronics fabrication. Gain insights into the knowledge and skills you'll acquire during your studies.
Syllabus and subjects in M.E Microelectronics
The M.E. in Microelectronics program offers a comprehensive curriculum designed to provide students with advanced knowledge and practical skills in the field of microelectronics. This program covers a wide range of topics, including semiconductor device physics, integrated circuit design, VLSI (Very Large Scale Integration) technology, microfabrication processes, analogue and digital electronics, and low-power circuit design. Students will engage in hands-on laboratory work, projects, and simulations to gain practical experience in designing and testing microelectronic circuits and systems. The program also explores emerging trends in microelectronics, such as nanoelectronics and MEMS (Micro-Electro-Mechanical Systems), ensuring that graduates are prepared to address the latest challenges and opportunities in the field. Upon completion of this program, students will be well-equipped for careers in microelectronics engineering, semiconductor industry, IC design, research and development, and related roles, contributing to advancements in technology and innovation in the microelectronics domain.
1st Year OR 1st & 2nd Semester Syllabus of Master of Engineering (M.E.) MicroelectronicsS.no | Subjects |
1 | Semiconductor
Devices and
Modelling
|
2 | VLSI Design |
3 | VLSI
Fabrication
Techniques |
4 | Semiconductor
Devices
Simulation
Laboratory
|
5 | MOS
Devices
and
Modelling |
6 | Analog IC Design
|
7 | MEMS
Simulation
Laboratory |
8 | Internship and Seminar |
2nd Year OR 3rd & 4th Semester Syllabus of Master of Engineering (M.E.) Microelectronics
S.No | Subjects |
1 | Digital Signal Processing
|
2 | RF Microelectronics
|
3 | Embedded System Design
|
4 | Hardware-Software Co-Design |
6 | Industrial Training and Seminar |