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B.Tech. in Electrical Engineering with L&T

Best B.Tech. in Electrical Engineering with L&T College in Uttar Pradesh

Overview

The B.Tech. in Electrical Engineering (EV Engineering) at SRMU, in collaboration with L&T, is designed to power the future of sustainable transportation. As the world transitions to electric mobility and renewable energy solutions, this program focuses on battery management systems, electric powertrains, motor control, energy storage, and EV charging infrastructure. With industry-aligned modules and hands-on training, students develop expertise in high-voltage systems, power electronics, and smart grid integration, preparing them for the rapidly expanding EV sector.

NAAC

Accredited

100%*

Placement

90%

Placement in CMM L 5

4.5 LPA

Average Package

Eligibility Criterion

Candidate must have passed 10+2 or equivalent system from any recognized Central/ State Board with Physics and Mathematics as compulsory subjects along with one of the Chemistry/Computer Science/Technical Vocational Subject with minimum aggregate marks of 45%.

Why SRMU?

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ASDC certified module and certificates

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Sessions and lectures by industry stalwarts for experiential acquaintance to enhance learning

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Industry sponsored labs for providing the best hands-on knowledge exposure

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Specializations offered in emerging technologies like HEV, PHEV, EREV, BEV and many more

Centre of Excellence

Centre of Excellence

Academic Tie-Up

Academic Tie-Up

Training Partner

Training Partner

Preferred Partner

Preferred Partner

Program Fee

Duration (in Year)1 Year2 Year3 Year4 Year
Course fee152000152000152000152000
Student Welfare Fund100100100100
Caution Money5000---
Total Fee157100152100152100152100
Hostel Fees + Caution Money (1st Yr. Only)85000800008000080000
Transportation Fees35000350003500035000

Alumni Fee: 500

Degree Fee: 1000

Both these fees are payable in the final year of the program

Scholarship Schemes

Career Counselling at Shri Ramswaroop Memorial University offers counselling to students, guiding the young minds by helping them to understand their strength and also to sail through at all levels in the job market.

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Department Highlights

Achievements

  • MoU signed between Shri Ramswaroop Memorial University and L&T 2022 to impart technical training on switch gear & protection and solar technology

  • MoU Signed between SRMU & TATA Motors 2022 to impart certification course on EV Technology for graduate engineers of TATA Motors

  • MoU Signed between SRMU & EIT ,MELBOURNE AUSTRAILIA on 2023 to have student exchange program between EIT Australia and SRMU

Research

  • 42+ Research Papers published in reputed journals

  • 04+ Books and Book Chapters published

  • 02+ Ph.D. Awarded

  • 06+ Patents Granted/ Published

  • 04+ Research/ Consultancy Projects Completed

Labs

  • Electrical Engineering Lab

  • Control System Lab

  • Electrical Machine Lab

  • Electrical Measurement Lab

  • Power System Lab

  • PLC/ SCADA Lab

  • Electric Drive Lab

  • L&T sponsored EV Lab

Beyond Academics

  • Dr. Shailendra Singh PhD (IIT BHU) Former Research Scholar at National Renewable Energy Laboratory (NREL), USA delivered a guest lecture on “Smart Grid Technology”, March 2022

  • On August 8, 2023, the Department of Electrical Engineering hosted a guest lecture on electric vehicles by Dr. Ritula Thakur, a renowned expert and researcher in the field of “Eelectric mobility and renewable energy” Sep 2023

PO, PLO & PSO


Program Objectives
  1. To prepare under graduate students to excel in technical profession/ industry and/or higher education by providing a strong foundation in mathematics, science and Engineering.

  2. To support professional industrial and economic development by providing students with opportunities for an intensive learning experience and direct application of knowledge in the field of Electrical engineering.

  3. To stimulate students to contribute to their fields or professions and to excel them in professional ethics and leadership qualities.

  4. To inculcate in students, professional attitude, effective communication skills and capability to succeed in multi-disciplinary and diverse fields.

  5. To promote students to continue to pursue professional development, relevant to their career growth and to create enthusiasm for life-long learning.


Program Learning Outcomes
  1. Engineering knowledge: Apply the knowledge of mathematics, science, engineering fundamentals, and an engineering specialization to the solution of complex engineering problems.

  2. Problem analysis: Identify, formulate, research literature, and analyze complex engineering problems reaching substantiated conclusions using first principles of mathematics, natural sciences, and engineering sciences.

  3. Design/development of solutions: Design solutions for complex engineering problems and design system components or processes that meet the specified needs with appropriate consideration for the public health and safety, and the cultural, societal, and environmental considerations.

  4. Conduct investigations of complex problems: Use research-based knowledge and research methods including design of experiments, analysis and interpretation of data, and synthesis of the information to provide valid conclusions.

  5. Modern tool usage: Create, select, and apply appropriate techniques, resources, and modern engineering and IT tools including prediction and modelling to complex engineering activities with an understanding of the limitations.

  6. The engineer and society: Apply reasoning informed by the contextual knowledge to assess societal, health, safety, legal and cultural issues and the consequent responsibilities relevant to the professional engineering practice. 

  7. Environment and sustainability: Understand the impact of the professional engineering solutions in societal and environmental contexts, and demonstrate the knowledge of, and need for sustainable development. 

  8. Ethics: Apply ethical principles and commit to professional ethics and responsibilities and norms of the engineering practice. 

  9. Individual and team work: Function effectively as an individual, and as a member or leader in diverse teams, and in multidisciplinary settings.

  10. Communication: Communicate effectively on complex engineering activities with the engineering community and with society at large, such as, being able to comprehend and write effective reports and design documentation, make effective presentations, and give and receive clear instructions.

  11. Project management and finance: Demonstrate knowledge and understanding of the engineering and management principles and apply these to one’s own work, as a member and leader in a team, to manage projects and in multidisciplinary environments.

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


Program Specific Outcomes
  1. To develop the impact of engineering on society and utilize the skills to work on multi- disciplinary tasks for social and economic benefit of society.

  2. Ability to identify, formulate and solve complex engineering problems by utilizing the knowledge gained from different subjects of Electrical Engineering. 

  3. Ability to develop new knowledge to use modern engineering tools, software and equipments to analyze problems necessary for engineering practice and the knowledge and skills gained also help to make up society aware of non-conventional energy resources and also help to overcome the problems of depletion of conventional energy resources.

  4.  Ability to improve the techniques and skills to appear and succeed in competitive examinations like GATE, GRE, TOEFL, GMAT etc and to develop the technical skills, communication skills and helps in implementing in small sector industries to develop the entrepreneur skills.


Scopein Companies

  • Instrumentation Engineer

  • Micro Electrical Engineer

  • Junior Engineer

  • Power System Engineer

  • Electrical Design Engineer

  • Quality Control Engineer

  • Power Plant Engineer

  • Test Engineer

  • EV Design Engineer

  • EV Test Engineer

  • Engineer

  • Engineer

  • Vehicle Diagnosis Engineer

  • Electric Drive Engineer

  • EV Technician

You can easily be absorbed in above positions at Organizations like:

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Further Study Opportunities

Frequently Asked Questions

B.Tech in Electric Vehicle (EV) Technology is an undergraduate engineering program that focuses on the design, development, operation, and maintenance of electric vehicles and their supporting technologies. The program integrates Electrical and Electronics Engineering with battery technology, electric drives, power electronics, charging infrastructure, energy management systems, and smart mobility solutions to prepare students for careers in the rapidly growing EV industry.
The scope of an EV Engineer is expanding rapidly due to the global shift toward sustainable transportation. Graduates can work in electric vehicle manufacturing, battery technology, automotive electronics, charging infrastructure, renewable energy, research and development, embedded systems, power electronics, and energy management. Opportunities are available in automobile companies, EV startups, government organizations, and multinational corporations.
Salary after B.Tech in EV Technology depends on technical skills, job role, employer, location, certifications, and experience. Graduates with expertise in battery systems, electric drives, power electronics, and electric mobility can secure competitive salary packages, with growth opportunities as the EV sector continues to expand.
Yes, B.Tech EEE with a specialization in EV Engineering is a promising career option. As governments and industries invest in electric mobility, renewable energy, and sustainable transportation, professionals with expertise in electrical systems and EV technologies are expected to remain in high demand across automotive, manufacturing, and energy sectors.
The curriculum generally includes Electrical Machines, Power Electronics, Electric Drives, Battery Technology, Electric Vehicle Systems, Energy Storage Systems, Embedded Systems, Control Systems, Charging Infrastructure, Smart Grid Technologies, Renewable Energy Systems, Internet of Things (IoT), and practical laboratory training.
Candidates generally need to have completed 10+2 with Physics, Chemistry, and Mathematics from a recognized board. Admission criteria may vary depending on the institution, entrance examination requirements, and applicable regulations.
Graduates can explore placement opportunities in electric vehicle manufacturers, automotive companies, battery manufacturers, renewable energy companies, electronics industries, charging infrastructure providers, research organizations, and technology startups. Placement opportunities depend on technical knowledge, internships, industry certifications, and practical skills.
Lucknow has institutions offering engineering programs with Electric Vehicle Engineering specializations. Students should compare curriculum quality, laboratory infrastructure, faculty expertise, industry collaborations, internships, placement support, and research opportunities before selecting a college.
Graduates can work as EV Design Engineers, Battery Engineers, Electrical Engineers, Power Electronics Engineers, Embedded Systems Engineers, Charging Infrastructure Engineers, Energy Systems Engineers, EV Testing Engineers, Research Engineers, and Product Development Engineers across automotive, energy, and technology industries.
B.Tech EE with specialization in EV Engineering combines core Electrical and Electronics Engineering concepts with emerging electric mobility technologies. The program equips students with practical skills in battery systems, electric powertrains, charging technologies, energy management, and smart transportation, preparing them for careers in one of the fastest-growing engineering sectors.

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