The B.Tech IOT Program was established in 2020. The B.Tech IOT Program houses faculty that has rich industry experience to cater to the industry and academic needs of the students. The B.Tech IOT Program plays a pivotal role in shaping the future of connected technologies, driving digital transformation, and unlocking new opportunities across industries. Through a relentless focus on innovation, reliability, and collaboration, we are committed to delivering cutting-edge IoT solutions that address the evolving needs of our customers and contribute to the advancement of society as a whole.
At our B.Tech IOT Program, we are deeply committed to fostering the next generation of talent and empowering students to excel in the rapidly evolving field of Internet of Things (IoT). Our commitment to students encompasses several key initiatives and principles:
To evolve into a globally recognized center of excellence in the frontier areas of the Internet of Things (IoT), fostering innovation, research, and industry collaboration for societal and technological advancement.
| PEO1 | Pursue a career in IoT and allied fields in the private/public sector (or) as an entrepreneur in areas such as smart systems, embedded solutions, cloud computing, and AI-driven IoT applications. |
| PEO2 | Engage in the design, invention, and development of novel IoT technologies by applying an interdisciplinary approach, fostering creativity, innovation, and complex problem-solving skills to address real-world engineering challenges. |
| PEO3 | Apply IoT-based professional knowledge to develop cost-effective, sustainable, and ethical solutions for technical and societal challenges, ensuring responsible innovation and social impact.. |
| 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 modeling 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 teamwork: 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. |
| PSO1 | Acquire knowledge in key IoT thrust areas such as Cloud Computing, Internet of Things (IoT), Data Science, Machine Learning, Network Security, and Artificial Intelligence to develop innovative solutions for societal and industry challenges of varying complexities. |
| PSO2 | Design and develop innovative IoT-based prototypes or projects, individually or in teams, to address real-world industrial challenges by integrating sensors, embedded systems, wireless communication, and cloud platforms. |
COURSE OUTCOMES (CO) 2022-2023 A.Y