Sankalchand Patel College of Engineering

B.Tech in Electronics and Communication

Programme Overview

The Bachelor of Technology (B.Tech.) in Electronics and Communication Engineering is a four-year undergraduate programme designed to prepare students for careers in modern electronics, communication technologies, embedded systems, semiconductor design, VLSI, Internet of Things (IoT), Artificial Intelligence-enabled hardware systems, and wireless communication. The programme combines strong theoretical foundations with extensive laboratory practice, industry-oriented projects, innovation, and research. Students gain expertise in designing intelligent electronic systems while developing analytical, technical, and problem-solving skills required for the rapidly evolving technology landscape. The curriculum emphasizes academic excellence, industrial exposure, entrepreneurship, and lifelong learning to prepare graduates for global engineering careers.

🏛 Academic & Infrastructure Excellence

The B.Tech. Electronics and Communication Engineering programme is designed in accordance with NEP guidelines, AICTE recommendations, and current industry requirements. The curriculum provides strong foundations in electronics, communication engineering, digital systems, signal processing, embedded systems, semiconductor technology, and emerging technologies. Modern classrooms, smart laboratories, digital learning resources, research facilities, and innovation centers provide students with an outstanding academic environment.

🤝 Industry-Relevant Learning Environment

The programme integrates industry-oriented learning through practical exposure to electronic system design, communication networks, IoT, embedded platforms, FPGA, VLSI design, wireless communication, and industrial automation. Students participate in industrial visits, internships, certification programmes, workshops, hackathons, and live projects in collaboration with leading industries and research organizations.

👨‍🏫 Faculty & Teaching Approach

The programme is delivered by highly qualified and experienced faculty members specializing in Electronics, Communication Systems, Embedded Systems, VLSI Design, Signal Processing, Antenna Engineering, and IoT technologies. The teaching methodology emphasizes experiential learning through lectures, laboratory experiments, project-based learning, simulations, design assignments, seminars, technical presentations, and research-oriented activities.

💼 Practical Experience & Career Readiness

Students receive extensive hands-on training through laboratories, mini-projects, industrial internships, design challenges, and major capstone projects. The programme develops competencies in circuit design, embedded programming, communication system implementation, PCB design, simulation tools, hardware debugging, teamwork, communication, leadership, and professional ethics, ensuring graduates are industry-ready.

🌍 Global Expert Engagement

Students regularly interact with eminent academicians, industry professionals, researchers, entrepreneurs, and international experts through guest lectures, webinars, workshops, technical symposiums, and international conferences. These interactions provide exposure to emerging technologies including 6G communication, AI-enabled electronics, robotics, autonomous systems, and semiconductor innovations.

🚀 Holistic Development

The programme encourages students to participate in technical clubs, innovation competitions, entrepreneurship cells, community outreach programmes, cultural activities, leadership development programmes, and interdisciplinary research projects. Students develop professional ethics, teamwork, communication, innovation, creativity, and lifelong learning skills.

🎯 Placement Support

Comprehensive career development support includes aptitude training, technical interview preparation, coding practice, resume development, personality development programmes, industrial internships, placement assistance, higher education guidance, entrepreneurship mentoring, and career counselling. Graduates are prepared for careers in Electronics, Telecommunications, Embedded Systems, Semiconductor Industries, Automation, Robotics, IoT, Aerospace, Defence, and Research & Development organizations.

🖥️ Advanced Laboratories

Students have access to well-equipped laboratories including:
  • Basic Electronics Laboratory
  • Digital Electronics Laboratory
  • IoT Laboratory
  • AI- Laboratory of NVIDIA
Candidates seeking admission to the B.Tech. Electronics and Communication Engineering programme must have:
  • [ As per other Criteria of B.Tech. running in our SPCE ]

Programme

B.Tech in Electronics and Communication

Duration

4 Years

Intake

30 Seats

Annual Fees

Rs. 85,000*

Mode of Admission

As per ACPC / University Norms

Degree Awarded

Bachelor of Technology (B.Tech.)

Meet Our Distinguished Faculty

Our experienced faculty members bring together academic rigor, research expertise, and industry insights to prepare students for successful careers in the rapidly evolving world of technology. ✨

Semester 1

Program Educational Objectives (PEOs)

  • PEO 1: Engineering Knowledge and Problem Solving
    Equip graduates with a strong foundation in Electronics and Communication Engineering, enabling them to analyze, design, and develop innovative solutions to complex engineering problems using modern engineering principles and technologies.
  • PEO 2: Professional Competence and Career Development
    Prepare graduates for successful careers in industry, higher education, research, entrepreneurship, and multidisciplinary domains by applying advanced engineering tools, research methodologies, and emerging technologies.
  • PEO 3: Innovation, Research, and Lifelong Learning
    Encourage graduates to engage in research, innovation, product development, patents, entrepreneurship, and continuous professional learning to address evolving technological and societal needs.
  • PEO 4: Ethics, Leadership, and Social Responsibility
    Develop ethically responsible professionals with effective communication, leadership, teamwork, and managerial skills who contribute to sustainable development and societal well-being through lifelong learning.

Program Outcomes (POs)

  • PO1: Engineering knowledge – Apply the knowledge of mathematics, science, engineering fundamentals, and an engineering specialization to the solution of complex engineering problems.
  • PO2: Problem Analysis – Identify, formulate, review research literature, and analyze complex engineering problems reaching substantiated conclusions using first principles of mathematics, natural sciences, and engineering sciences.
  • PO3: Design/Development of 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.
  • PO4: Conduct Investigations 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.
  • PO5: 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.
  • PO6: The Engineer and 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.
  • PO7: Environment and Sustainability – Understand the impact of the professional engineering solutions in societal and environmental contexts, and demonstrate the knowledge of, and need for sustainable development.
  • PO8: Ethics – Apply ethical principles and commit to professional ethics and responsibilities and norms of the engineering practice.
  • PO9: Individual and Team Work – Function effectively as an individual, and as a member or leader in diverse teams, and in multidisciplinary settings.
  • PO10: 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.
  • PO11: Project Management and 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.
  • PO12: 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.

Pragya AI Center of Excellence (CoE)

Empowering Innovation Through Artificial Intelligence, Research, and Industry-Oriented Learning

The Pragya AI Center of Excellence is dedicated to advancing knowledge, research, and practical applications of AI technologies. Through hands-on training, industry partnerships, and innovative projects, we prepare students to become future-ready professionals in the rapidly evolving world of Artificial Intelligence.