Computer Engineering
Computer Engineering is a discipline that integrates several fields of electrical engineering and computer science required to develop computer hardware and software. Computer engineering blends together computer science and electrical engineering to further advancement in digital technology, computer networking and computer systems. In turn, computer engineers use their extensive knowledge of hardware and software design and computer programming to make computing platforms and applications more efficient and effective. Seamlessly integrating the latest innovations, computer engineers develop new computer hardware, design and implement software applications, and enhance the capabilities of networks and communications systems.
VISION
To provide exceptional education, fostering highly skilled, globally recognized computer engineering professionals and entrepreneurs who demonstrate ethical integrity, advanced knowledge, and innovative thinking, thereby meeting the needs of industry and society.
MISSION
- To impart a comprehensive value-based education in computer science, emphasizing theoretical foundations, practical skills, and innovative thinking.
- To produce skilled and motivated engineers by imparting the ability to combine technical expertise, practical applications and ethical principles.
- To empower students with technical knowledge and confidence to tackle a wide range of problems, from simple to complex, both independently and collaboratively.
Program Educational Objectives (PEO’s)
- PEO 1: To apply the mathematical, scientific and engineering fundamentals to solve a wide range of computational problems in all work environments.
- PEO 2: To encourage higher education and research in computer engineering among students, aiming to cultivate successful entrepreneurs, employees or researchers.
- PEO 3: To develop professional and ethical attitudes, strong-communication skills and teamwork abilities preparing students for successful careers in computer science and related fields
Program Outcomes (PO’s)
- PO 1: Basic and Discipline specific knowledge: Apply knowledge of basic mathematics, science and engineering fundamentals and engineering specialization to solve the engineering problems.
- PO 2: Problem analysis: Identify and analyses well-defined engineering problems using codified standard methods.
- PO 3: Design/ development of solutions: Design solutions for well-defined technical problems and assist with the design of systems components or processes to meet specified needs.
- PO 4: Engineering Tools, Experimentation and Testing: Apply modern engineering tools and appropriate technique to conduct standard tests and measurements.
- PO 5: Engineering practices for society, sustainability and environment: Apply appropriate technology in context of society, sustainability, environment and ethical practices.
- PO 6: Project Management: Use engineering management principles individually, as a team member or a leader to manage projects and effectively communicate about well-defined engineering activities.
- PO 7: Life-long learning: Ability to analyze individual needs and engage in updating in the context of technological changes.
Program Specific Outcomes (PSO’s)
- PSO 1: Ability to analyze, design, implement and test software systems, adhering to requirement specifications and established software development methodologies.
- PSO 2: Ability to integrate computer science theory and mathematical principles to develop innovative solutions to complex computational problems.
- PSO 3: Ability to investigate technical advancements across diverse domains, critically evaluate their merits, identify research gaps, and propose innovative solutions to emerging challenges.