Educate and train the students to be ready for placement, industry, incubation and research
To progressively achieve higher levels of standards in Information Communication Technology by adopting innovative teaching learning process and latest technology embedding it into support system to maintain a holistic environment to develop all round engineers.
22 Students have cleared the level-5 of ESSCI Certification exam from the first batch out of 36 registered students.
3G/
4G
Communication Laboratory is one of the research laboratory for advanced wireless communication.
200 hours summer skill development courses in different electronic domains.
4 National Conferences (NCDC) to provide a technical environment to the young researchers in different domains each year.
NIST Device Laboratory is commissioned within the Department of Electronics and Communication engineering. The lab has excellent research facilities to conduct experimental research in the field of Nano Science and Engineering for the B.Tech, M.Tech as well as Ph.D students under the guidance of expertise faculties. The research area spans widely from basic semiconductor research to developing semiconductor based devices, material research for finding advanced alternative materials for device applications, sensor modules for futuristic applications and renewable energy and future solar cells. The lab has capability for high quality thin film growth/deposition (oxidation furnace, rf and DC sputtering, Vacuum evaporator), thin film coating (spin coater), film characterization (UV VIS Spectroscopy, Photo luminescence, Four probe, STM) as well as device characterization (LCR meter, IV meter). Each and every year, a mass number of students successfully complete their B.Tech and M.Tech projects in the areas like MOS and MIM capacitor fabrication and characterization, RRAM, fabrication of sensor devices and prototypes, experimental solar cells etc.
The Electronics and Communication Engineering curriculum provides a balanced view of design and implementation electronics circuits, microprocessors, narrowband and broadband communication technology. Recent advances in microprocessor and communication technology, is making the fine lines between electronics and communication very trivial.
Electronics and Communication engineering is a dynamic and broadly interdisciplinary field that continues to experience a rapid professional growth. The curriculum is designed cover all aspects of microelectronics, circuits and systems, microprocessor design, computer and telecommunications.
The students in this discipline are offered a broad ranges of courses such as optics and laser, solid state devices and materials, digital logic and design, VLSI design, device microfabrication, computer networks, satellite communication, broadband networks and microwave engineering.
In addition, all the students in this discipline have to take core computer science courses.
The department of Electronics and Communication Engineering is being organized into various groups like Microwave & Laser communication, Satellite Communication, Signal Processing & microelectronics. It is proposed that the department should support industrial research activities in the near future.