The Department of Electronics and Communication Engineering nurtures engineers who integrate innovative technology with ethical standards, pioneering global electronic advancements while emphasising sustainability. Since the college first opened its doors, the department has grown around the same intention: cultivating members of society who are not only highly qualified but also of high quality, possessing sound theoretical knowledge. Students gain hands-on experience in embedded systems, VLSI design and communication engineering through regular seminars, workshops and symposiums held on campus, making them more marketable to potential employers.
To nurture electronics and communication engineers who integrate innovative tech with ethical standards, pioneering in global electronic advancements while emphasizing sustainability and industry-ready skill development.
Provide a strong foundation in electronics, signal processing and communication systems.
Maintain well-equipped laboratories for hands-on embedded systems and VLSI design.
Encourage participation in technical symposia, workshops and certification programmes.
Promote ethical practice and a commitment to continuous learning.
Principal & Professor
Professor
Professor
Professor
Assoc. Professor
Assoc. Professor & HoD
Assoc. Professor
Assoc. Professor
Assoc. Professor
Assoc. Professor
Assoc. Professor
Assoc. Professor
Assoc. Professor
Asst. Professor
Asst. Professor
Asst. Professor
Asst. Professor
Asst. Professor
Asst. Professor
Asst. Professor
Asst. Professor
Graduates will pursue careers in electronics, telecommunications, embedded systems or higher studies.
Graduates will apply engineering fundamentals to analyse and design electronic systems.
Graduates will function effectively in multidisciplinary teams with sound professional ethics.
Ability to design and analyse analog and digital electronic circuits and communication systems.
Ability to apply embedded systems and VLSI design skills to real-world engineering problems.
Apply knowledge of mathematics, science and engineering fundamentals to electronics and communication problems.
Identify, formulate and analyse complex engineering problems using first principles.
Design solutions for complex problems and design system components or processes to meet specified needs.
Use research-based knowledge and methods, including design of experiments and data analysis, to investigate complex problems.
Select and apply appropriate modern tools, including engineering and IT tools, with an understanding of their limitations.
Apply contextual knowledge to assess societal, health, safety, legal and cultural issues in professional practice.
Understand the impact of engineering solutions in societal and environmental contexts, and the need for sustainable development.
Apply ethical principles and commit to professional ethics and responsibilities.
Function effectively as an individual and as a member or leader in diverse teams and multidisciplinary settings.
Communicate effectively with the engineering community and society through reports, documentation and presentations.
Demonstrate knowledge of engineering and management principles to manage projects in multidisciplinary environments.
Recognise the need for, and engage in, independent and life-long learning in the broadest context of technological change.
Course Outcomes (COs) are defined for every subject in the ECE curriculum and mapped to the Programme Outcomes and Programme Specific Outcomes above. They are published in each course's handout at the start of the semester and reviewed by the department's Board of Studies as part of the annual curriculum revision cycle.
Center of Excellence supporting embedded systems and IoT projects, with lab infrastructure for student prototyping and technical competitions.