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B.E.

B.E. in Electronics & Instrumentation Engineering

NBA

Approved Intake

60

Duration

4 Years

Accreditation

NBA

About the Programme

The programme develops expertise in measurement systems, process control, industrial automation, biomedical instrumentation and IoT, with strong laboratory and project components.

Vision

To produce instrumentation engineers skilled in automation and measurement systems.

Mission

Impart quality technical education through effective teaching–learning processes. Promote research, innovation and industry-institute interaction for societal benefit. Inculcate professional ethics, leadership and life-long learning among students. Produce competent professionals ready to address global and local challenges.

Programme Educational Objectives (PEOs)

  • 1

    PEO 1: Demonstrate technical competency in the core areas of electronics & Instrumentation to excel in the respective industrial and research sectors.

  • 2

    PEO 2:: Develop solutions for the global challenges in the field of sensors, signal and image processing, embedded systems, control and automation, in their diverse careers.

  • 3

    PEO 3:: Exhibit professional attitude, leadership, and project management skills to work effectively in a multidisciplinary team for sustainable development.

Programme Outcomes (POs)

1

PO1: Engineering Knowledge: Apply knowledge of mathematics, natural science, computing, engineering fundamentals and an engineering specialization as specified in WK1 to WK4 respectively to develop to the solution of complex engineering problems. PO2: Problem Analysis: Identify, formulate, review research literature and analyze complex engineering problems reaching substantiated conclusions with consideration for sustainable development. (WK1 to WK4)

2

PO3: Design/Development of Solutions: Design creative solutions for complex engineering problems and design/develop systems/components/processes to meet identified needs with consideration for the public health and safety, whole-life cost, net zero carbon, culture, society and environment as required. (WK5)

3

PO4: Conduct Investigations of Complex Problems: Conduct investigations of complex engineering problems using research-based knowledge including design of experiments, modelling, analysis & interpretation of data to provide valid conclusions. (WK8). PO5: Engineering Tool Usage: Create, select and apply appropriate techniques, resources and modern engineering & IT tools, including prediction and modelling recognizing their limitations to solve complex engineering problems. (WK2 and WK6)

4

PO6: The Engineer and The World: Analyze and evaluate societal and environmental aspects while solving complex engineering problems for its impact on sustainability with reference to economy, health, safety, legal framework, culture and environment. (WK1, WK5, and WK7).

5

PO7: Ethics: Apply ethical principles and commit to professional ethics, human values, diversity and inclusion; adhere to national & international laws. (WK9)

6

PO8: Individual and Collaborative Team work: Function effectively as an individual, and as a member or leader in diverse/multi-disciplinary teams.

7

PO9: Communication: Communicate effectively and inclusively within the engineering community and society at large, such as being able to comprehend and write effective reports and design documentation, make effective presentations considering cultural, language, and learning differences

8

PO10: Project Management and Finance: Apply knowledge and understanding of engineering management principles and economic decision-making and apply these to one’s own work, as a member and leader in a team, and to manage projects and in multidisciplinary environments.

9

PO11: Life-Long Learning: Recognize the need for, and have the preparation and ability for i) independent and life-long learning, ii) adaptability to new and emerging technologies and iii) critical thinking in the broadest context of technological change. (WK8).

10

Knowledge and Attitude Profile (WK)

11

WK1: A systematic, theory-based understanding of the natural sciences applicable to the discipline and awareness of relevant social sciences.

12

WK2: Conceptually-based mathematics, numerical analysis, data analysis, statistics and formal aspects of computer and information science to support detailed analysis and modelling applicable to the discipline.

13

WK3: A systematic, theory-based formulation of engineering fundamentals required in the engineering discipline.

14

WK4: Engineering specialist knowledge that provides theoretical frameworks and bodies of knowledge for the accepted practice areas in the engineering discipline; much is at the forefront of the discipline.

15

WK5: Knowledge, including efficient resource use, environmental impacts, wholelife cost, reuse of resources, net zero carbon, and similar concepts, that supports engineering design and operations in a practice area.

16

WK6: Knowledge of engineering practice (technology) in the practice areas in the engineering discipline.

17

WK7: Knowledge of the role of engineering in society and identified issues in engineering practice in the discipline, such as the professional responsibility of an engineer to public safety and sustainable development.

18

WK8: Engagement with selected knowledge in the current research literature of the discipline, awareness of the power of critical thinking and creative approaches to evaluate emerging issues.

19

WK9: Ethics, inclusive behavior and conduct. Knowledge of professional ethics, responsibilities, and norms of engineering practice. Awareness of the need for diversity by reason of ethnicity, gender, age, physical ability etc. with mutual understanding and respect, and of inclusive attitudes

Programme Specific Outcomes (PSOs)

  • 1

    PSO1: Demonstrate technical competency in measurements, instrumentation and automation domains for industrial and research sectors.

  • 2

    PSO2: Apply sensors knowledge and electronics principles for problem analysis, design and development of solutions.

  • 3

    PSO3: Implement appropriate engineering practices and state of the art technology tools for Electronics and Instrumentation domain.

Top Recruiters & Industry Collaboration

Honeywell Emerson ABB Siemens Yokogawa Rockwell Automation

Career Options

Instrumentation Engineer

Automation Engineer

Control Systems Engineer

Process Engineer

Biomedical Engineer

IoT Engineer

Software Engineer

Research / Academia

Scheme & Syllabus

First Year Fourth Year
2022 – Scheme and Syllabus 2018 – Scheme and Syllabus

B.E. Curriculum Structure (4 Years)

Curriculum Component Credits (% of total) Contact Hours
Basic Sciences 14 23
Engineering Mathematics 12 20
Humanities & Social Sciences 8 12
Engineering Sciences & Foundation 18 28
Professional Core 62 90
Professional Electives 18 26
Open Electives 9 12
Project / Internship / Seminar 19
Total 160