B.Tech. (Electrical Engineering)

B. Tech. EE

School of Engineering & Technology

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  • Duration

    4 Years

  • Eligibility

    Min. 50% Aggregate Marks in 10+2

    with PCM

  • Selection Procedure

    ET+PI

Pedagogy

  • Project-based Learning

    Students work on live problem definitions and research ideas through minor and major projects.

  • Internships

    Students get a feel for current industry practices and advancements through internships.

  • Guided Inquiry

    This approach uses a learning cycle of exploration, concept invention, and application to help students construct new knowledge.

  • Problem Solving

    When faced with a problem or decision-making process, mind mapping enables a systematic approach.

  • Flipped Classroom Model

    Methodology that helps teachers to prioritize active learning during class time by assigning students lecture materials and presentations to be viewed at home or outside of class.

  • Chart and Model Based Learning

    The faculty use working models and visual charts in the classrooms which creates interest in the course.

  • Self Learning Courses

    The registration and participation of students in MOOC courses like NPTEL & Coursera to improve their self-learning capabilities.

  • Hands-on Labs and Simulation Tools

    Tools like MATLAB, Simulink, LT spice, and MULTISIM allow students to simulate circuits and systems without needing physical components.

Program Outcomes

Empirical Knowledge

To provide education that leads to comprehensive understanding of the principles and practices of Electrical Engineering.

Modern Tool Usage

Create, select, and apply appropriate techniques, resources, and modern engineering tools, including prediction and modeling, to solve complex engineering problems, while understanding the limitations.

Problem Analysis

Identify, formulate, and analyze complex electrical engineering problems by applying principles of engineering, science, and mathematics to reach substantiated conclusions.

Ethics

Apply ethical principles and commit to professional ethics and responsibilities in the context of electrical engineering practice.

Environment and Sustainability

Understand the impact of professional engineering solutions in societal and environmental contexts, and demonstrate knowledge of sustainable development.

Experimental Skills

To provide broad based training in technical skills in methods of Electrical Engineering.

Scientific Communication

To ensure students are able to effectively communicate with electrical and other interdisciplinary professionals.

Continuous learning

Recognize the need for, and have the ability to engage in independent and life-long learning in the broadest context of technological change.

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School of Engineering & Technology

Career Paths

Electrical Engineer

Robotics Engineer

Electronics Design Engineer

Power Systems Engineer

Renewable Energy Engineer

Automation Engineer

Research and Development (R&D) Engineer

Curriculum

Course Category Paper Title Credits
Core Engineering Graphics and Visualization 3
Core Engineering Chemistry 3
Core Engineering Mathematics I 4
Core Engineering Graphics and Visualization Lab 1
Core Engineering Chemistry Lab 1
DSE Fundamental of Electrical and Electronics 2
Fundamental of Electrical and Electronics Lab 1
OR
Introduction to Computer Science 2
Introduction to Computer Application Lab 1
AECC English 3
Language Lab 1
AUC# Sports/Yoga/NSS/NCC 1#
Total Credits 19

# Audit but Mandatory Course

Course Category Paper Title Credits
Core Programming for Problem Solving using C 3
Core Engineering Physics 3
Core Engineering Mathematics II 4
Core Programming for Problem Solving Lab 2
Core Engineering Physics Lab 1
SEC Design Thinking 1
SEC Design Thinking & Idea Lab 1
DSE Engineering Mechanics 3
OR
Smart and Sustainable Energy 3
AECC Communication and Soft Skills Lab 2
VAC# Environmental Science 2#
Total Credits 20

# Audit but Mandatory Course

Course Category Paper Title Credits
Core Electrical Circuit Analysis 4
Core Electrical Machine-I 4
Core Electrical Measurements & Measuring Instruments 4
Core Mathematics – III 4
Core Circuit Analysis Lab 1
Core Electrical Machines Laboratory - I 1
Core Electrical Measurement Lab 1
Core Analog Electronics Lab 1
DSE Energy Storage Devices 3
Analog Electronics
VAC Technical Report Writing 2
Total Credits 25

Course Category Paper Title Credits
Core Power Electronics -I 4
Core Electrical Machine-II 4
Core Digital Electronics 4
Core Electrical Material 4
Core Power Electronics Laboratory-I 1
Core Electrical Machines Laboratory - II 1
Core Digital Electronics Laboratory 1
Core Electrical Maintenance & Repair Lab 1
DSE Data Structures and Algorithms 3
Power Plant Engineering
VAC Basics Industrial Automation 2
Total Credits 25

Course Category Paper Title Credits
Core Power Electronics -II 4
Core Control Systems 4
Core Electrical Machine Design 4
Core Transmission and Distribution of Electrical Power 4
Core Power Electronics Lab-II 1
Core Control Systems Laboratory 1
Core Computer Based Electrical Machine Design Laboratory 1
Core Summer Training Seminar** 1
DSE Renewable Energy Resource 3
Signal & System
VAC Solar Roof Top Installation and Design 2
Total Credits 25

Course Category Paper Title Credits
Core Power Systems -I 4
Core Power System Protection 4
Core Electrical Traction System 4
Core Electrical Energy Conservation and Auditing 4
Core Power Systems Laboratory -I 1
Core Power System Protection Lab 1
Core Python Laboratory 1
Core System Programming Lab 1
DSE High Voltage Engineering 3
Python Programming
VAC Electrical Estimation and Energy Auditing 2
Total Credits 25

Course Category Paper Title Credits
Core HVDC Transmission System 4
Core Power Systems Analysis 4
Core Power Quality and FACTS 4
Core Electric Vehicle Technology 4
Core Power System and High Voltage Lab 1
Core Power system Lab II 1
Core Summer Training Seminar** 1
Core Project Stage 1
DSE Electric Drives 3
Artificial Intelligence & Machine Learning
VAC Substation Engineering 2
Total Credits 25

Course Category Paper Title Credits
Core Industrial Internship/Project Work 8

Tuition Fee

109,100

Note *Lab & Library fee will be charged separately
#Program Proposed from Session 2024-25

Scholarship

As per University norms

Write to us to check for your eligibility

Internship Opportunities

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State-of-the-Art
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250+

Smart
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30+

Signature Annual
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Frequently Asked Questions

Electrical Engineering is the branch of engineering that deals with the study, design, and application of systems and devices that use electricity, electronics, and electromagnetism. It encompasses a broad range of subfields including power systems, electronics, control systems, telecommunications, and renewable energy.

B.Tech. Electrical Engineering deals with the mathematical and physical aspects of electricity and electromagnetism. Students learn how electricity is produced and what the various components of electrical devices. Professionals are trained in handling and designing large-scale electrical systems across various engineering domains.

After completing Electrical Engineering course, graduates can either pursue higher studies or enter into academics. They can also work with private companies or government undertakings as Project Engineer, Controls Engineer, Test and Design Engineer etc. Electrical Engineers can work in designing consumer appliances to manufacturing large-scale industrial equipments or designing spare-parts for telecommunications systems etc.

Yes, any candidate can opt for the subject of his/her wish, however it is advised to candidates that they should choose the subject based on the grounds of their graduation and the course they want to study after clearing the GATE exam.

Essential skills include:
  • Strong analytical and problem-solving abilities
  • Proficiency in mathematics and physics
  • Technical drawing and design
  • Knowledge of engineering software/tools (e.g., MATLAB, AutoCAD, Simulink, ETAP)

Electrical engineers are employed across many industries, including:
  • Power Generation and Distribution
  • Telecommunications
  • Consumer Electronics
  • Automation and Robotics
  • Automobile and Aerospace
  • Renewable Energy and Green Technology
  • Manufacturing and Industrial Engineering
  • Construction and Infrastructure Development
  • Healthcare and Medical Device Manufacturing

Renewable energy is a rapidly growing field within electrical engineering. Electrical engineers in this area work on designing and implementing solar, wind, hydro, and other renewable energy systems. They focus on energy conversion, storage, and efficient distribution, playing a key role in reducing carbon footprints and supporting sustainable energy solutions.

Leading companies in various sectors that hire electrical engineers include:
  • Siemens
  • General Electric (GE)
  • Schneider Electric
  • ABB
  • Tata Power
  • Bosch
  • Siemens Gamesa Renewable Energy
  • Texas Instruments
  • Honeywell
  • BHEL (Bharat Heavy Electricals Limited)

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