Program Outcomes
PO1: Engineering Knowledge
Apply knowledge of mathematics, natural sciences, engineering fundamentals, and Electronics & Communication Engineering to develop solutions for complex engineering problems.
PO2: Problem Analysis
Identify, formulate, review research literature, and analyze complex engineering problems using principles of mathematics, natural sciences, and engineering sciences to arrive at substantiated conclusions.
PO3: Design/Development of Solutions
Design innovative systems, components, or processes that meet specified needs with appropriate consideration for public health, safety, cultural, societal, and environmental factors.
PO4: Investigation
Conduct investigations of complex engineering problems using research-based knowledge, including design of experiments, analysis and interpretation of data, and synthesis of information to provide valid conclusions.
PO5: Modern Tool Usage
Create, select, and apply appropriate techniques, resources, and modern engineering and IT tools, including prediction and modelling, for complex engineering activities with an understanding of their limitations.
PO6: The Engineer and the World
Analyze and evaluate societal, health, safety, legal, cultural, and environmental aspects of engineering practice, and understand the responsibilities of professional engineers towards sustainable development.
PO7: Ethics
Apply ethical principles and commit to professional ethics, responsibilities, diversity, equity, inclusion, and norms of engineering practice.
PO8: Individual and Collaborative Teamwork
Function effectively as an individual and as a member or leader in diverse, multidisciplinary, and inclusive teams to accomplish common goals.
PO9: Communication
Communicate effectively and inclusively on complex engineering activities with the engineering community and society through reports, design documentation, presentations, and effective interpersonal communication.
PO10: Project Management and Finance
Apply engineering management principles and economic decision-making to manage engineering projects effectively as an individual, team member, or leader in multidisciplinary environments.
PO11: Life-long Learning
Recognize the need for independent learning and adapt to emerging technologies, engage in continuous professional development, innovation, research, and entrepreneurship to address evolving engineering challenges.
Program Educational Objectives
PEO1: Graduates will apply the fundamental principles of Electronics and Communication Engineering and modern engineering tools to analyze, design, and develop innovative solutions for real-world engineering problems in core and emerging technologies.
PEO2:Graduates will build successful careers in industry, higher education, research, or entrepreneurship by adapting to emerging technologies, engaging in innovation, and demonstrating leadership, teamwork, and effective communication skills.
PEO3: Graduates will uphold professional ethics, social responsibility, and environmental consciousness while pursuing lifelong learning to contribute effectively to sustainable technological and societal development.
Program Specific Outcomes
PSO1: Demonstrate competency in the analysis, design, and implementation of electronic circuits, embedded systems, signal processing, and communication networks using the fundamental concepts of Electronics and Communication Engineering.
PSO2: Design, simulate, and validate electronic systems using modern engineering tools, VLSI technologies, embedded platforms, communication protocols, and software packages to solve complex engineering problems.
PSO3: Develop intelligent and interdisciplinary engineering solutions by integrating Electronics and Communication Engineering with IoT, AI, Robotics, Wireless Technologies, and Semiconductor Systems to address societal, industrial, and research challenges.
