Live zoom counselling Virtual
Tour

E&C Engineering


B.Tech. Electronics and Communication Engineering (VLSI Design & Technology)

Eligibility

The minimum qualification required to apply is a pass in the 10+2 examination in Science from PUC / ISC / CBSE or an equivalent board. A course recognized as equivalent thereto by the University.

Study Campus

JAIN Global Campus
Faculty of Engineering & Technology
NH-209, Bangalore - Kanakapura Main Road
Jakkasandra Post, Kanakapura Taluk
Ramanagara District - 562 112
+91 80 2757 7198
+91 73 3761 8222

Admissions Office

JAIN Knowledge Campus
# 44/4, District Fund Road
Jayanagar 9th Block Campus
Bangalore - 5600 69
+91 73 3761 8222
+91 80 6927 9444

About the Programme

The Electronics and Communication Engineering (VLSI Design & Technology) program at JAIN (Deemed-to-be University) is designed to provide top-notch technical education. Established in 2005, the department boasts a rich academic heritage spanning two decades. With a commitment to excellence, the department offers various programs, including a Doctoral program in Electronics Engineering, a PG program in Embedded Systems and VLSI Design, and a UG program in Electronics and Communication Engineering with specialisations in VLSI Design & Technology and Robotics.

Led by distinguished faculty members with extensive experience in academia and industry, the department offers five core specialisations: VLSI Design, Communication-Signal Processing, Embedded System Design, Remote Sensing and Navigation, and Cognitive Sciences. The

The B.Tech VLSI Design and Technology syllabus at the university is meticulously crafted to meet industry demands, with syllabi updated annually in collaboration with industry experts, external academic professionals, and alumni.

The B.Tech VLSI Design and Technology program emphasises self-study, hands-on projects, and internships to nurture students' independent learning and analytical skills. Through partnerships with industry giants like CADENCE, students have the opportunity to earn industry certificates in Advanced VLSI Design, enhancing their employability.

The Electronics and Communication Engineering (VLSI Design & Technology) program at the university includes industry-driven courses in collaboration with Texas Instruments and Intel, an ISRO-supported NavIC Lab, and accreditation by NBA. The curriculum is aligned with NCrF standards and primed for Industry 4.0, promoting project-centric learning approaches and ensuring 100% internship and placement support.

Students also benefit from teaching assistantships, industry internships, and support for conference participation and journal publications at one of the best colleges for Electronics and Communication Engineering (VLSI Design & Technology). The department's lab is sponsored by the Texas Instruments India University Program, further enriching the learning experience with state-of-the-art facilities and equipment.

In essence, the B.Tech VLSI Design and Technology program at JAIN (Deemed-to-be University) equips students with the knowledge, skills, and industry exposure needed to excel in the dynamic field of electronics and communication engineering.

Enhance your B.Tech experience with the option to pursue a Minor Degree from IIITH and gain unique opportunities for academic and professional growth!

Key Highlights of the UG Minor Degree Program from IIITH:

Certificate Issuance:

  • Students will have the option to receive certificates from IIITH upon successful completion of each semester.
  • These certificates will be issued in three parts over the course of the program, recognizing incremental progress.

Minor Degree Recognition:

  • University has the discretion to award a minor degree to their students, utilizing the certificates issued by IIITH.
  • This option allows students to earn additional credentials and enhance their academic profile.

Research Internships:

  • Top performers in the Minor Program will be considered for research internships at IIITH.
  • These internships provide an excellent opportunity for students to gain hands-on experience and deepen their expertise in their field of study.

Note:

  • An additional cost is applicable for enrolling in the UG Minor Degree Program.
  • To earn the minor degree, students must earn an additional 20 credits on top of their regular credits as part of the curriculum.
  • Microfabrication and Semiconductor materials
  • CMOS Integrated Circuits
  • SOC Design 1: Design & Verification
  • SOC Design 2: Chip Implementation with Physical Design leading to Tape-Out
  • CAD for VLSI
  • IC Packaging
  • Optoelectronics
  • Semiconductor Devices /Manufacturing
  • Analog Mixed Signal and RF Circuits
  • Digital Design and Systems
  • Electronic Design Automation
  • Display Technologies
  • Semiconductor Packaging

Enhance your B.Tech experience with the option to pursue a Minor Degree from IIITH and gain unique opportunities for academic and professional growth!

Key Highlights of the UG Minor Degree Program from IIITH:

Certificate Issuance:

  • Students will have the option to receive certificates from IIITH upon successful completion of each semester.
  • These certificates will be issued in three parts over the course of the program, recognizing incremental progress.

Minor Degree Recognition:

  • University has the discretion to award a minor degree to their students, utilizing the certificates issued by IIITH.
  • This option allows students to earn additional credentials and enhance their academic profile.

Research Internships:

  • Top performers in the Minor Program will be considered for research internships at IIITH.
  • These internships provide an excellent opportunity for students to gain hands-on experience and deepen their expertise in their field of study.

Note:

  • An additional cost is applicable for enrolling in the UG Minor Degree Program.
  • To earn the minor degree, students must earn an additional 20 credits on top of their regular credits as part of the curriculum.

After completing the above program, graduates can explore a myriad of career opportunities, including but not limited to:

  • ASIC Layout Engineer
  • Verification and Testing Engineer
  • Hardware Design Engineer
  • Design Validation Engineer
  • Robotics Engineer/Technician
  • Electronics Design Engineer
  • Research & Development Software Engineer
  • RF Engineer

Further Study Options Available After the Program

Once the graduates acquire their B.Tech degree from JAIN (Deemed-to-be University), offering one of the best colleges for Electronics and Communication Engineering (VLSI Design & Technology), they can also explore further study options, if interested.

  • Master's Degree (M.Tech): Pursuing a master's degree in a related field such as VLSI Design, Microelectronics, or Embedded Systems can deepen knowledge and specialisation in the domain. Many universities offer M.Tech programs with a focus on advanced topics in VLSI design and technology.
  • Ph.D. in Electronics Engineering - Research Opportunities: Students interested in research can pursue a Ph.D. in Electronics Engineering or a closely related discipline. A Ph.D. program provides the opportunity to conduct in-depth research, contribute to the advancement of knowledge in the field, and potentially pursue a career in academia or research and development (R&D).
  • Specialised Certifications and Short Courses: Various institutions and organisations offer certification programs and short courses in specialised areas of VLSI design and technology. These programs can provide additional skills and knowledge in specific topics, such as advanced VLSI design techniques, FPGA programming, or ASIC design.
  • Postgraduate Diplomas: Some universities offer postgraduate diploma programs in areas relevant to VLSI design and technology. These programs typically provide a shorter and more focused alternative to a master's degree, covering essential concepts and practical skills needed in the industry.
  • Professional Development Courses: Continuing education and professional development courses are available for engineers looking to stay updated with the latest advancements and trends in VLSI design and technology. These courses may cover topics such as emerging technologies, industry standards, and design methodologies.
  • Entrepreneurship and Start-ups: Graduates can explore entrepreneurship opportunities by leveraging their skills in VLSI design and technology to launch their own ventures or join startups in the electronics industry.
  • Collaborative Interdisciplinary Programs: Pursuing interdisciplinary programs allows students to broaden their knowledge beyond traditional boundaries, fostering innovation and collaboration across multiple disciplines related to electronics and communication engineering.
  • International Collaboration and Research Opportunities: Engaging in international collaboration and research offers students exposure to diverse perspectives, resources, and expertise, enriching their learning experience and expanding their professional network on a global scale.
  • Industry Driven Courses in collaboration with Texas Instruments and Intel.
  • ISRO supported NavIC Lab.
  • Department of ECE (Electronics and Communication Engineering) Accredited by NBA.
  • NCrF complied and Industry 4.0 primed curriculum
  • Project Centric Learning approaches
  • 100% Internship and Placement Support.
  • *Teaching assistantship during the course & Industry Internship.
  • Support for conference participation/Journal publications.

Industry Collaborations:

  • Lab Sponsored by Texas Instruments India University Program.
  • Center of Excellence in VLSI - by Cadence University Program (Entuple Technologies Pvt. Ltd).
  • Anvesha Research Centre, SVYASA.

While the students benefit from the most updated B.Tech VLSI Design and Technology Syllabus at JAIN (Deemed-to-be University), they also have the opportunity to enhance their skill set with value-added certifications in Embedded System Design and VLSI Design. These certifications provide hands-on experience and specialised knowledge, equipping graduates with a competitive edge in the rapidly evolving field of electronics and communication engineering.