Undergraduate
Level
4 Years
Duration
₹ 1.5L / ₹ 1.75L
Merit / Management Fee
60% marks
Sr. Secondary (10+2)
Overview
The Department of Electrical and Electronics Engineering (EEE) at Kishkinda University is committed to provide quality education in both core and emerging areas of electrical engineering.
The department offers a comprehensive undergraduate program with strong foundations in electrical machines, power systems, control systems, electrical networks, and power electronics, along with exposure to modern domains such as renewable energy, electric vehicles, smart grids, embedded systems, and AI-enabled applications. The curriculum is carefully designed as a blend of core and industry-relevant courses to meet present technological demands. The department is equipped with modern laboratories and AI-powered smart boards that foster effective teaching and interactive learning.
The faculty team brings an average experience of over 10 years, with several members holding Ph.D. degrees from institutes of national importance. To strengthen practical exposure, the department regularly organizes field visits, industrial trips, workshops, and technical activities. With a focus on hands-on learning, research, and professional development, the department prepares students for successful careers in industry, higher studies, and entrepreneurship while addressing the evolving needs of society and technology.
Eligibility
10+2 with Physics & Mathematics + Chemistry / CS / BiologyStudents who have passed BiPC, PCMB, PCB and any one from Physics, Chemistry, Biotechnology & Maths with English as one of the languages of study and should have obtained a minimum of 45% marks.For SC/ST & Other backward classes of Karnataka students only, the minimum marks is 40% in aggregate in the optional subjects in the qualifying examination like CET / Comed-K / AIEEE any other equivalent entrance examinations
Teaching Pedagogies
The Electrical and Electronics Engineering (EEE) program at Kishkinda University adopts innovative, industry-oriented, and application-based teaching pedagogies to develop students’ expertise in electrical systems, power engineering, electronics, automation, and renewable energy technologies. The teaching-learning process combines theoretical knowledge with practical implementation to prepare students for careers in core industries, research, and emerging technologies.
- Interactive Classroom Teaching
- Project-Based Learning
- Experiential Learning
- Outcome-Based Education (OBE)
- Case Study and Problem-Solving Methods
- Industry Interaction and Expert Sessions
- Collaborative Learning and Team Projects
- Research and Innovation-Oriented Learning
- Continuous Evaluation and Technical Assessments
Interactive Classroom Teaching

Interactive Classroom Teaching
Concept-oriented lectures using smart boards, multimedia presentations, circuit demonstrations, and digital learning tools for effective understanding of electrical engineering concepts.
Project-Based Learning
Experiential Learning
Outcome-Based Education (OBE)
Case Study and Problem-Solving Methods
Industry Interaction and Expert Sessions
Collaborative Learning and Team Projects
Research and Innovation-Oriented Learning
Continuous Evaluation and Technical Assessments
The department emphasizes emerging technologies such as Renewable Energy Systems, Smart Grid Technologies, Electric Vehicles, Industrial Automation, Power Electronics, Embedded Systems, Internet of Things (IoT), and Energy Management Systems.
Specialization
Program Educational Objectives (PEOs)
PEO - 1
Graduates will demonstrate a high level of technical proficiency and problem-solving skills in electrical and electronics engineering.
PEO - 2
Graduates will be prepared to meet industry demands by applying their hands-on experience and practical knowledge effectively.
PEO - 3
Graduates will uphold ethical standards and exhibit professionalism in their engineering practice, positively impacting their organizations and society.
PEO - 4
Graduates will engage in continuous learning and professional development to adapt to emerging technologies and maintain their relevance in the field.
Program Outcomes (PO)
PO - 1
Engineering Knowledge: Apply principles of mathematics, natural sciences, computing, engineering fundamentals, and specialized engineering knowledge to develop solutions for complex engineering problems.
PO - 2
Problem Analysis: Identify, formulate, and analyse complex engineering problems by reviewing research literature and drawing well-founded conclusions, while considering sustainable development.
PO - 3
Design/Development of Solutions: Design innovative solutions for complex engineering problems and develop systems, components, or processes that address identified needs, considering public health and safety, whole-life cost, net-zero carbon goals, culture, society, and environmental impact.
PO - 4
Conduct Investigations of Complex Problems: Utilize research-based knowledge to investigate complex engineering problems, incorporating experiment design, modelling, data analysis, and interpretation to derive valid conclusions.
PO - 5
Engineering Tool Usage: Develop, select, and apply appropriate techniques, resources, and modern engineering and IT tools, including prediction and modelling, while recognizing their limitations in solving complex engineering problems.
PO - 6
The Engineer and the World: Assess and evaluate societal and environmental factors when addressing complex engineering problems, considering their impact on sustainability in relation to the economy, health, safety, legal frameworks, culture, and the environment.
PO - 7
Ethics: Uphold ethical principles, demonstrate commitment to professional integrity, respect human values, and promote diversity and inclusion while adhering to national and international laws.
PO - 8
Individual and Team Collaboration: Work effectively both independently and as a member or leader in diverse, multidisciplinary teams.
PO - 9
Communication: Communicate clearly and inclusively within the engineering community and society, demonstrating the ability to write effective reports, develop design documentation, and deliver impactful presentations while considering cultural, language, and learning differences.
PO - 10
Project Management and Finance: Apply engineering management principles and economic decision-making to one’s work, effectively managing projects and contributing as both a team member and leader in multidisciplinary environments.
PO - 11
Life-Long Learning: Acknowledge the importance of continuous learning and cultivate the skills necessary for:
i) Independent and sustained self-improvement,
ii) Adaptability to evolving and emerging technologies, and
iii) Critical thinking in the broader landscape of technological advancements.
Program Specific Outcomes (PSO)
PSO - 1
Demonstrate strong fundamentals in network analysis, field theory, transmission and distribution, and programming.
PSO - 2
Apply critical thinking to solve challenges in modern power systems.
PSO - 3
Troubleshoot circuits involving microcontrollers, SCADA, and related technologies.
Scholarship
Kishkinda University supports eligible students in availing Government Scholarships through recognized portals such as SSP (State Scholarship Portal) and NSP (National Scholarship Portal). Students who meet the eligibility criteria can apply directly through these official portals and complete the scholarship process as per government guidelines.
Available Scholarship Portals
SSP – State Scholarship Portal
For students eligible under Karnataka State Government scholarship schemes.
NSP – National Scholarship Portal
For Central Government scholarship schemes applicable across India.
How to Apply
-
01
Visit the official SSP or NSP portal.
-
02
Register with required academic and personal details.
-
03
Upload necessary documents (income certificate, caste certificate, marks cards, Aadhaar, etc.)
-
04
Submit the application online within the specified deadline.
-
05
Submit acknowledgment copy to the University Scholarship/Accounts Section (if required).
Career Prospects
Core Career Opportunities
- Electrical Engineer
- Power Systems Engineer
- Control Systems Engineer
- Design Engineer
- Maintenance and Operations Engineer
Emerging Technology Domains
- Renewable Energy Systems (Solar, Wind)
- Smart Grid Technology
- Electric Vehicles (EV) and Battery Systems
- Automation and Industrial Robotics
- Power Electronics and Drives
Industry and Employment Opportunities
- Power Generation, Transmission, and Distribution Companies
- Renewable Energy Sector
- Manufacturing and Core Industries
- Government and Public Sector (PSUs)
- IT and Automation Companies
Higher Studies and Research
- M.Tech / MS in Power Systems, Control Systems, Power Electronics
- MBA (Energy / Operations Management)
- PhD and Research Opportunities
- Professional Certifications
Entrepreneurship and Other Paths
- Electrical Contracting and Consultancy
- Startups in Renewable Energy and EVs
- Industrial Automation Solutions
- Teaching and Academia
FAQ's
The department offers undergraduate, postgraduate, and research programs in Electrical and Electronics Engineering.


