B. Tech (Electronics Engineering) VLSI Design and Technology Powered by L&T EduTech - Bennett University
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B. Tech (Electronics Engineering) VLSI Design and Technology Powered by L&T EduTech
About
B. Tech (Electronics Engineering) VLSI Design and Technology Powered by L&T EduTech
The B. Tech in (Electronics Engineering) VLSI Design and Technology Powered by L&T EduTech is a four-year undergraduate program designed to build strong foundations in semiconductor physics, circuit design, and advanced Very-Large-Scale Integration (VLSI) technology. Developed in collaboration with Larsen & Toubro (L&T), the program integrates industry-aligned training with cutting-edge EDA tools and chip design practices, preparing students for the rapidly growing semiconductor ecosystem. Students gain hands-on experience in analog and digital IC design, verification, and fabrication processes through specialised laboratories and real-world projects. Graduates emerge as skilled professionals ready for careers in semiconductor design, embedded systems, EDA development, and chip manufacturing, with opportunities in leading global and Indian firms driving the semiconductor mission such as Intel, Texas Instruments, Qualcomm, AMD, Micron, Synopsys, Cadence, MediaTek, Samsung Semiconductor, Tata Electronics, and L&T Technology Services, among others driving India’s semiconductor mission.
Duration
4 Years
Credits
162
Start Date
August 2026
Curriculum Highlights
Experiential and practical learning opportunities
Curriculum developed in collaboration with Larsen & Toubro (L&T).
Strong foundations in semiconductor physics, circuit design, and VLSI technology.
Experiential and practical learning opportunities through industry-driven projects and specialised laboratories.
Hands-on training with advanced EDA tools and IC design and verification platforms.
Career opportunities with leading semiconductor companies such as Intel, Texas Instruments, Qualcomm, AMD, Micron, Synopsys, Cadence, MediaTek, Samsung Semiconductor, Tata Electronics, and L&T Technology Services.
Global exposure
The program provides students with global exposure through industry collaborations, expert lectures, and joint projects with Larsen & Toubro (L&T) and other international partners. Learners gain insights into global semiconductor trends, emerging VLSI technologies, and cross-cultural engineering practices, preparing them to work effectively in multinational design and fabrication environments across the world.
Curriculum USPs
Developed in collaboration with Larsen & Toubro (L&T), ensuring strong alignment with global semiconductor industry needs.
Extensive lab sessions using EDA tools, FPGA kits, and chip design platforms for real-world exposure.
Designed under NEP 2020 with multiple entry–exit options and multidisciplinary learning pathways.
Encourages capstone projects, internships, and participation in semiconductor design challenges.
Equips students for roles in IC design, verification, and fabrication, fostering industry readiness and entrepreneurship. For detailed curriculum,
click here.
Why B. Tech (Electronics Engineering) VLSI Design and Technology from Bennett University
Industry-Collaborative Curriculum:
Developed jointly with Larsen & Toubro (L&T) to ensure alignment with the latest semiconductor and chip design industry requirements.
Hands-on Learning with EDA Tools:
Extensive practical training using industry-standard Electronic Design Automation (EDA) software and hardware platforms.
Specialised VLSI Labs & Projects:
Dedicated VLSI design and verification laboratories sponsored by MEITy in C2S Program for real-time exposure to IC layout, synthesis, and testing.
NEP 2020 and Semiconductor Mission Aligned:
Flexible credit framework with multiple entry–exit options and focus on India’s Semiconductor Mission and Design Linked Incentive (DLI) goals.
Diverse Career Pathways:
This program prepares students for roles in semiconductor design, embedded systems, fabrication, and chip manufacturing with top recruiters and opportunities for a career in research and development.
Program Objectives
The program aims to develop competent engineers with a strong foundation in VLSI design, semiconductor technology, and digital systems. It emphasises industry-relevant skills, hands-on experience with EDA tools, and innovation in chip design, preparing students for careers in semiconductor design, embedded systems, and electronics manufacturing, while promoting research, creativity, and lifelong learning.
Learning Outcomes
Upon completion, students will be able to design, analyze, and implement VLSI circuits and systems using modern EDA tools. They will demonstrate proficiency in semiconductor device modeling, digital and analog IC design, and system-on-chip development, apply engineering principles to real-world problems, and exhibit teamwork, ethical values, and effective communication skills in professional environments.
Career Pathways
Graduates can build specialised careers in the semiconductor and VLSI industry, working in design, verification, and manufacturing roles. Key positions include Analog/Digital VLSI Design Engineer, ASIC/FPGA Engineer, Physical Design Engineer, Verification and Validation Engineer, EDA Tool Developer, and Test Engineer. Opportunities exist in global companies such as Intel, Qualcomm, Texas Instruments, Micron, AMD, MediaTek, Synopsys, and Cadence, as well as in India’s emerging semiconductor fabs and design startups under the India Semiconductor Mission. Graduates may also pursue M.Tech /MS or Ph.D. in Microelectronics, Nanotechnology, or Embedded Systems for research and academic careers.
Eligibility Criteria
Class XII from any recognised education board with Physics, Mathematics, and any other third subject*, securing a minimum of 55% marks OR passed the IB Board with a minimum of 24 credits, including three Higher Level and three Standard Level subjects.
*Third subject should not be vocational- Music, Dance, Painting, Home Science, Physical Education, Arts, etc.
B. Tech (Electronics Engineering) VLSI Design and Technology Fee
Get complete details of the B. Tech (Electronics Engineering) VLSI Design and Technology program fee, including tuition, hostel, and other applicable charges.
Click here for details.
Faculty
Prof. N. Latha
Ph.D. - IIT, Delhi
Dr. Ajay Yadav
Ph.D. - IIT Delhi
Dr. Rahul Mukherjee
Ph.D. - IIT Kharagpur
Dr. Ankit Kumar Pandey
Ph.D. - NIT, Delhi
Dr. Rohan Katti
Ph.D - SRM Institute of Science and Technology
Dr. Mahesh Kumawat
Ph.D. IIT Indore
Dr. Priyanka Mathur
Ph.D. - Shiv Nadar Institute of Eminence, Greater Noida
Dr. Mohammed Usman
Ph.D. - University of Strathclyde, Glasgow, United Kingdom
Dr. Umesh Sharma
Post-Doctoral - IIT, Delhi
Dr. Anil Rajput
Post-Doctoral Fellow - IIT, Dhanbad
Dr. Ashima Sharma
Ph.D - NIT, Delhi
Dr. Ashish Maurya
Ph.D.- IIT, Dhanbad
OUR ASK
B. Tech (Electronics Engineering) VLSI Design and Technology
Frequently Asked Questions
What is the duration and structure of the program?
The program has a duration of four years (eight semesters) and is aligned with the NEP 2020 framework.
How is this program different from traditional Electronics or ECE courses?
Unlike a conventional ECE degree, the B. Tech (Electronics Engineering) VLSI Design and Technology program is VLSI-centric, emphasising semiconductor device design, chip layout, fabrication processes, and verification, developed in collaboration with Larsen & Toubro (L&T) to ensure real-world industry alignment.
Which industry-standard software tools will students learn?
Students are trained on EDA and design tools such as:
Cadence Virtuoso
– Analog and mixed-signal IC design
Synopsys Design Compiler & PrimeTime
– Synthesis and timing analysis
Mentor Graphics ModelSim
– Simulation and verification
Xilinx Vivado / Intel Quartus
– FPGA and ASIC design
LTspice, MATLAB, and Tanner Tools
– Circuit analysis and layout design
What laboratories and facilities are available to students?
Students have access to specialised labs, including the Analog & Digital VLSI Design Lab, FPGA & Embedded Systems Lab, and an EDA Tool Training Centre (in partnership with L&T).
What practical experiences will students gain?
Students undertake mini-projects every semester and complete a capstone project in the final year. Examples include simulation of CMOS circuits using EDA tools, design of a low-power 8-bit ALU on FPGA, implementation of a CMOS operational amplifier using Cadence, and development of RISC-V–based embedded processors.
What career opportunities are available to graduates after B. Tech (Electronics Engineering) in VLSI Design and Technology?
Graduates can pursue roles such as
VLSI Design Engineer
(Intel, Qualcomm, Broadcom, NVIDIA),
Physical Design Engineer
(Synopsys, Cadence, Micron),
Verification Engineer
(AMD, ARM, MediaTek),
EDA Tool Developer
(Mentor Graphics, L&T Technology Services), and
Test Engineer or SoC Integration Engineer
(Texas Instruments, Samsung).
Is the program aligned with India’s Semiconductor Mission?
Yes, the curriculum supports the India Semiconductor Mission (ISM) and Design Linked Incentive (DLI) initiative, equipping students to contribute to India’s growing chip design and fabrication ecosystem.
What kind of internships or industry projects are included?
Internships are a mandatory component of the program. Students are facilitated to undertake 6 – 8 weeks internships at various semiconductor industries or research centers.
Can students pursue higher education after this program?
Absolutely, graduates are well-prepared for M. Tech/MS/Ph.D. in areas such as VLSI Design, Semiconductor Technology, Microelectronics, and Embedded Systems at premier institutes like IITs, IISc, IIITs, and several international universities.
What are the global career prospects in VLSI?
With the worldwide chip talent shortage, graduates can pursue roles in semiconductor design centers across India, Taiwan, South Korea, the U.S., and Europe, working in companies like TSMC, Samsung Foundry, Intel, Infineon, and GlobalFoundries.
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B. Tech (Electronics Engineering) VLSI Design and Technology Powered by L&T EduTech
About
B. Tech (Electronics Engineering) VLSI Design and Technology Powered by L&T EduTech
The B. Tech in (Electronics Engineering) VLSI Design and Technology Powered by L&T EduTech is a four-year undergraduate program designed to build strong foundations in semiconductor physics, circuit design, and advanced Very-Large-Scale Integration (VLSI) technology. Developed in collaboration with Larsen & Toubro (L&T), the program integrates industry-aligned training with cutting-edge EDA tools and chip design practices, preparing students for the rapidly growing semiconductor ecosystem. Students gain hands-on experience in analog and digital IC design, verification, and fabrication processes through specialised laboratories and real-world projects. Graduates emerge as skilled professionals ready for careers in semiconductor design, embedded systems, EDA development, and chip manufacturing, with opportunities in leading global and Indian firms driving the semiconductor mission such as Intel, Texas Instruments, Qualcomm, AMD, Micron, Synopsys, Cadence, MediaTek, Samsung Semiconductor, Tata Electronics, and L&T Technology Services, among others driving India’s semiconductor mission.
Duration
4 Years
Credits
162
Start Date
August 2026
Curriculum Highlights
Experiential and practical learning opportunities
Curriculum developed in collaboration with Larsen & Toubro (L&T).
Strong foundations in semiconductor physics, circuit design, and VLSI technology.
Experiential and practical learning opportunities through industry-driven projects and specialised laboratories.
Hands-on training with advanced EDA tools and IC design and verification platforms.
Career opportunities with leading semiconductor companies such as Intel, Texas Instruments, Qualcomm, AMD, Micron, Synopsys, Cadence, MediaTek, Samsung Semiconductor, Tata Electronics, and L&T Technology Services.
Global exposure
The program provides students with global exposure through industry collaborations, expert lectures, and joint projects with Larsen & Toubro (L&T) and other international partners. Learners gain insights into global semiconductor trends, emerging VLSI technologies, and cross-cultural engineering practices, preparing them to work effectively in multinational design and fabrication environments across the world.
Curriculum USPs
Developed in collaboration with Larsen & Toubro (L&T), ensuring strong alignment with global semiconductor industry needs.
Extensive lab sessions using EDA tools, FPGA kits, and chip design platforms for real-world exposure.
Designed under NEP 2020 with multiple entry–exit options and multidisciplinary learning pathways.
Encourages capstone projects, internships, and participation in semiconductor design challenges.
Equips students for roles in IC design, verification, and fabrication, fostering industry readiness and entrepreneurship. For detailed curriculum,
click here.
Why B. Tech (Electronics Engineering) VLSI Design and Technology from Bennett University
Industry-Collaborative Curriculum:
Developed jointly with Larsen & Toubro (L&T) to ensure alignment with the latest semiconductor and chip design industry requirements.
Hands-on Learning with EDA Tools:
Extensive practical training using industry-standard Electronic Design Automation (EDA) software and hardware platforms.
Specialised VLSI Labs & Projects:
Dedicated VLSI design and verification laboratories sponsored by MEITy in C2S Program for real-time exposure to IC layout, synthesis, and testing.
NEP 2020 and Semiconductor Mission Aligned:
Flexible credit framework with multiple entry–exit options and focus on India’s Semiconductor Mission and Design Linked Incentive (DLI) goals.
Diverse Career Pathways:
This program prepares students for roles in semiconductor design, embedded systems, fabrication, and chip manufacturing with top recruiters and opportunities for a career in research and development.
Program Objectives
The program aims to develop competent engineers with a strong foundation in VLSI design, semiconductor technology, and digital systems. It emphasises industry-relevant skills, hands-on experience with EDA tools, and innovation in chip design, preparing students for careers in semiconductor design, embedded systems, and electronics manufacturing, while promoting research, creativity, and lifelong learning.
Learning Outcomes
Upon completion, students will be able to design, analyze, and implement VLSI circuits and systems using modern EDA tools. They will demonstrate proficiency in semiconductor device modeling, digital and analog IC design, and system-on-chip development, apply engineering principles to real-world problems, and exhibit teamwork, ethical values, and effective communication skills in professional environments.
Career Pathways
Graduates can build specialised careers in the semiconductor and VLSI industry, working in design, verification, and manufacturing roles. Key positions include Analog/Digital VLSI Design Engineer, ASIC/FPGA Engineer, Physical Design Engineer, Verification and Validation Engineer, EDA Tool Developer, and Test Engineer. Opportunities exist in global companies such as Intel, Qualcomm, Texas Instruments, Micron, AMD, MediaTek, Synopsys, and Cadence, as well as in India’s emerging semiconductor fabs and design startups under the India Semiconductor Mission. Graduates may also pursue M.Tech /MS or Ph.D. in Microelectronics, Nanotechnology, or Embedded Systems for research and academic careers.
Eligibility Criteria
Class XII from any recognised education board with Physics, Mathematics, and any other third subject*, securing a minimum of 55% marks OR passed the IB Board with a minimum of 24 credits, including three Higher Level and three Standard Level subjects.
*Third subject should not be vocational- Music, Dance, Painting, Home Science, Physical Education, Arts, etc.
B. Tech (Electronics Engineering) VLSI Design and Technology Fee
Get complete details of the B. Tech (Electronics Engineering) VLSI Design and Technology program fee, including tuition, hostel, and other applicable charges.
Click here for details.
Faculty
Prof. N. Latha
Ph.D. - IIT, Delhi
Dr. Ajay Yadav
Ph.D. - IIT Delhi
Dr. Rahul Mukherjee
Ph.D. - IIT Kharagpur
Dr. Ankit Kumar Pandey
Ph.D. - NIT, Delhi
Dr. Rohan Katti
Ph.D - SRM Institute of Science and Technology
Dr. Mahesh Kumawat
Ph.D. IIT Indore
Dr. Priyanka Mathur
Ph.D. - Shiv Nadar Institute of Eminence, Greater Noida
Dr. Mohammed Usman
Ph.D. - University of Strathclyde, Glasgow, United Kingdom
Dr. Umesh Sharma
Post-Doctoral - IIT, Delhi
Dr. Anil Rajput
Post-Doctoral Fellow - IIT, Dhanbad
Dr. Ashima Sharma
Ph.D - NIT, Delhi
Dr. Ashish Maurya
Ph.D.- IIT, Dhanbad
OUR ASK
B. Tech (Electronics Engineering) VLSI Design and Technology
Frequently Asked Questions
What is the duration and structure of the program?
The program has a duration of four years (eight semesters) and is aligned with the NEP 2020 framework.
How is this program different from traditional Electronics or ECE courses?
Unlike a conventional ECE degree, the B. Tech (Electronics Engineering) VLSI Design and Technology program is VLSI-centric, emphasising semiconductor device design, chip layout, fabrication processes, and verification, developed in collaboration with Larsen & Toubro (L&T) to ensure real-world industry alignment.
Which industry-standard software tools will students learn?
Students are trained on EDA and design tools such as:
Cadence Virtuoso
– Analog and mixed-signal IC design
Synopsys Design Compiler & PrimeTime
– Synthesis and timing analysis
Mentor Graphics ModelSim
– Simulation and verification
Xilinx Vivado / Intel Quartus
– FPGA and ASIC design
LTspice, MATLAB, and Tanner Tools
– Circuit analysis and layout design
What laboratories and facilities are available to students?
Students have access to specialised labs, including the Analog & Digital VLSI Design Lab, FPGA & Embedded Systems Lab, and an EDA Tool Training Centre (in partnership with L&T).
What practical experiences will students gain?
Students undertake mini-projects every semester and complete a capstone project in the final year. Examples include simulation of CMOS circuits using EDA tools, design of a low-power 8-bit ALU on FPGA, implementation of a CMOS operational amplifier using Cadence, and development of RISC-V–based embedded processors.
What career opportunities are available to graduates after B. Tech (Electronics Engineering) in VLSI Design and Technology?
Graduates can pursue roles such as
VLSI Design Engineer
(Intel, Qualcomm, Broadcom, NVIDIA),
Physical Design Engineer
(Synopsys, Cadence, Micron),
Verification Engineer
(AMD, ARM, MediaTek),
EDA Tool Developer
(Mentor Graphics, L&T Technology Services), and
Test Engineer or SoC Integration Engineer
(Texas Instruments, Samsung).
Is the program aligned with India’s Semiconductor Mission?
Yes, the curriculum supports the India Semiconductor Mission (ISM) and Design Linked Incentive (DLI) initiative, equipping students to contribute to India’s growing chip design and fabrication ecosystem.
What kind of internships or industry projects are included?
Internships are a mandatory component of the program. Students are facilitated to undertake 6 – 8 weeks internships at various semiconductor industries or research centers.
Can students pursue higher education after this program?
Absolutely, graduates are well-prepared for M. Tech/MS/Ph.D. in areas such as VLSI Design, Semiconductor Technology, Microelectronics, and Embedded Systems at premier institutes like IITs, IISc, IIITs, and several international universities.
What are the global career prospects in VLSI?
With the worldwide chip talent shortage, graduates can pursue roles in semiconductor design centers across India, Taiwan, South Korea, the U.S., and Europe, working in companies like TSMC, Samsung Foundry, Intel, Infineon, and GlobalFoundries.
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