Course Overview
The Electronics & Communication Engineering program at GNITS is tailored to equip students with the knowledge and technical expertise to design and implement advanced communication systems. With a focus on real-world applications such as sound event detection in autonomous robots and wearable devices for healthcare, students work on projects that push the boundaries of innovation. The program includes deep learning techniques, biomedical signal processing, and antenna propagation, providing students with the tools to lead in the fields of electronics, telecommunications, and signal processing.
Dr. K. Ragini
M.Tech, Ph.D, FIE, MIETE, Professor & HOD, ECE
Program Curriculum
Discover the pivotal moments that have shaped the institution’s growth, from its foundational years to its emergence as a leading engineering college.
Why Choose GNITS For B.Tech
Established Track Record
The ECE department, founded in 1997, has a long-standing reputation for excellence, with its undergraduate program having been accredited multiple times and its intake expanded significantly over the years.
Comprehensive Facilities
The department boasts 16 specialized laboratories and a modern digital E-classroom, equipped with advanced tools and technologies for practical and interactive learning.
Innovative Projects and Patents
Students and faculty engage in cutting-edge projects and product development, such as IoT-based systems and smart technologies, showcasing the department's focus on innovation.
Outcome Based Education
Imparting the knowledge of basic sciences, mathematics and programming skills in solving various engineering problems pertaining to the field of Electronics and Communication Engineering.
Training the students in analysing, designing and imparting research based knowledge and acquainting them with modern scientific tools.
Creating professional, ethical environment and inculcating effective communication skills.
Encouraging Teamwork and interdisciplinary ideas benefiting the Society.
Motivating students to be independent with a desire for life-long learning and adapting to the changing professional needs.
Engineering Knowledge: Apply the knowledge of mathematics, science, engineering fundamentals, and an engineering specialization to the solution of complex engineering problems.
Problem Analysis:Identify, formulate, research literature, and analyze complex engineering problems reaching substantiated conclusions using first principles of mathematics, natural sciences, and engineering sciences.
Design & Development Solutions: Design solutions for complex engineering problems and design system components or processes that meet the specified needs with appropriate consideration for the public health and safety, and the cultural, societal, and environmental considerations.
Investigation of complex problems: Use research-based knowledge and research methods including design of experiments, analysis and interpretation of data, and synthesis of the information to provide valid conclusions.
Modern Tool Usage: Create, select, and apply appropriate techniques, resources, and modern engineering and IT tools including prediction and modelling to complex engineering activities with an understanding of the limitations.
Engineering & Society: Apply reasoning informed by the contextual knowledge to assess societal, health, safety, legal and cultural issues and the consequent responsibilities relevant to the professional engineering practice.
Environment & Sustainability: Understand the impact of the professional engineering solutions in societal and environmental contexts, and demonstrate the knowledge of, and need for sustainable development.
Ethics: Apply ethical principles and commit to professional ethics and responsibilities and norms of the engineering practice.
Individual & Team work: Function effectively as an individual, and as a member or leader in diverse teams, and in multidisciplinary settings.
Communication: Communicate effectively on complex engineering activities with the engineering community and with society at large, such as, being able to comprehend and write effective reports and design documentation, make effective presentations, and give and receive clear instructions.
Project management & finance: Demonstrate knowledge and understanding of the engineering and management principles and apply these to one’s own work, as a member and leader in a team, to manage projects and in multidisciplinary environments.
Life Long Learning: Recognize the need for, and have the preparation and ability to engage in independent and life-long learning in the broadest context of technological change.
- Research Activities : Develop abilities to successfully analyze, execute and synthesize hardware and software oriented mini- and technical major- projects in identified Specializations and areas of interest, and enrich industry compatibility.
- Professional Outlook : Establish a good knowledge sharing network and peer connectivity through Professional Society Memberships, Conduct of seminars, Technical Events and Conference Paper Presentations, and earn prominence.
Career Path
Discover the pivotal moments that have shaped the institution’s growth, from its foundational years to its emergence as a leading engineering college.
- Communication Systems Engineer
- Embedded Systems Developer
- Network Engineer
- Hardware Design Engineer
- Electronics Engineer
- VLSI Design Engineer
- Senior Electronics Engineer
- Lead Communication Systems Engineer
- Senior Systems Engineer
- Head of Electronics Engineering
- Senior Consultant (Electronics & Communications)
Our Impeccable Faculty
Discover the pivotal moments that have shaped the institution’s growth, from its foundational years to its emergence as a leading engineering college.
Infrastructure
Achievements and Extras
GNITS excels in academics, top placements, and pioneering research, with students and faculty earning national and international recognition. Vibrant extracurriculars further enrich campus life.
Department Achievements
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Department Incubation Center
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Industry Institute Interactions
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