Undergraduate programme

B.Tech Lateral Entry in Electrical Engineering

A three-year undergraduate Electrical Engineering programme pathway, connecting applied learning, laboratory practice and industry-relevant engineering foundations.

Programme overview

Build on your electrical engineering foundation

The B.Tech programme in Electrical Engineering prepares students for careers in the Electrical, Electronics and IT industries. It follows an internationalized curriculum in compliance with statutory bodies and national and international accreditation, with emphasis on experiential and project-based learning and impact studies for higher studies and entrepreneurship.

The curriculum is flexible, with industry electives, minors and honours. Its research is framed around three United Nations goals: Affordable and Clean Energy; Industry, Innovation and Infrastructure; and Sustainable Cities and Communities.

Students learn in smart classrooms, state-of-the-art laboratories, centres of excellence with corporate collaborations and research laboratories spanning electric vehicles, battery technology, IoT, industrial automation, renewable energy, smart grid, AI, ML and FPGA.

Lateral Entry pathway

The School’s programme catalogue lists B.Tech Lateral Entry in Electrical Engineering as a three-year undergraduate programme. Admission requirements are not stated here; refer to KIIT’s current admissions information for eligibility.

Learning environment

Learning that connects theory, tools and practice

Published features of the School’s B.Tech Electrical Engineering learning environment.

01

Experiential Learning

Project-based learning and impact studies that also support higher studies and entrepreneurial endeavours.

02

Flexible Curriculum

Industry electives, minors and honours within the Electrical Engineering curriculum.

03

Modern Facilities

Smart classrooms, state-of-the-art laboratories and centres of excellence with corporate collaborations.

04

Applied Research

Innovation facilities spanning electric vehicles, battery technology, IoT, industrial automation, renewable energy, smart grid, AI, ML and FPGA.

Academic outcomes

Knowledge with purpose

Published programme educational objectives, outcomes and Electrical Engineering-specific outcomes.

01 · PEOs

Programme Educational Objectives

  1. Address complex problems and apply learned skills in a wide range of career opportunities in industry and academics.
  2. Fulfil societal needs by solving technical problems using engineering principles, tools and practices ethically and responsibly.
  3. Develop leadership skills in the workplace and function professionally in a globally competitive world.
02 · POs

Programme Outcomes

  1. Apply engineering knowledge to complex engineering problems.
  2. Identify, formulate and analyse complex engineering problems.
  3. Design solutions with appropriate health, safety, societal and environmental consideration.
  4. Use research-based knowledge and methods to provide valid conclusions.
  5. Apply modern engineering and IT tools with an understanding of limitations.
  6. Assess professional responsibilities in societal, health, safety, legal and cultural contexts.
  7. Understand environmental impacts and sustainable development.
  8. Apply ethical principles and engineering-practice norms.
  9. Function effectively in diverse and multidisciplinary teams.
  10. Communicate effectively with the engineering community and society.
  11. Apply engineering and management principles to teams and projects.
  12. Engage in independent and life-long learning.
03 · PSOs

Programme Specific Outcomes

  1. Demonstrate knowledge and hands-on competence in characteristics, operations, analysis and design of electrical machines and their applications.
  2. Demonstrate knowledge of analysis, design and implementation of electrical, electronic and power electronic circuits, measurements and control systems.
  3. Enhance knowledge in power-system generation, transmission, distribution, protection and renewable energy systems for clean energy and sustainable technologies.
Academic laboratories

Learn by building, measuring and testing

Electrical Engineering academic laboratories published by the School, offering practical foundations for the programme.

Electrical Machines Laboratory
01

Electrical Machines Laboratory

Electrical Measurement and Sensor Laboratory
02

Electrical Measurement & Sensor Laboratory

Power System Laboratory
03

Power System Laboratory

Analog and Digital Electronics Circuit Laboratory
04

Analog & Digital Electronics Laboratory

Power Electronics Research Laboratory
05

Power Electronics Research Laboratory

Microprocessor Laboratory
06

Microprocessor Laboratory

Electrical Design Laboratory
07

Electrical Design Laboratory

Control System Laboratory
08

Control System Laboratory

Basic Electrical Engineering Laboratory
09

Basic Electrical Engineering Laboratory

Explore all academic laboratories
Take the next step

Continue your path in Electrical Engineering at KIIT.