B.Tech VLSI

Duration
4 Years
Eligibility

Eligibility Norms for Admission to B. Tech Programs:

Passed 10+2 examination with Physics/ Mathematics Compulsory along with Chemistry/ Computer Science/ Electronics/ Information Technology/ Biology/ Informatics Practices/ Biotechnology/ Technical Vocational subject/ Agriculture/ Engineering Graphics/ Business Studies Obtained at least 45% marks (40% marks in case of candidates belonging to reserved category) in the above subjects taken together.



Eligibility Norms for Admission to B. Tech Programs (Lateral):

Passed Minimum THREE years / TWO years (Lateral Entry) Diploma examination with at least 45% marks (40% marks in case of candidates belonging to reserved category) in relevant branch of Engineering and Technology as mentioned in the AICTE APH 2024-25.
OR
Passed B.Sc. Degree from a recognized University as defined by UGC, with at least 45% marks (40% marks in case of candidates belonging to reserved category) and passed 10+2 examination with Mathematics as a subject.
OR
Passed B.Voc/3-year D.Voc. Stream in the same or allied sector. (The Universities will offer suitable bridge courses such as Mathematics, Physics, Engineering drawing, etc., for the students coming from diverse backgrounds to achieve desired learning outcomes of the programme)

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B.Tech VLSI

Programme Overview

B. Tech in VLSI is a 4-year Program designed to provide students with a comprehensive knowledge of key aspects of Integrated Circuit designs. This program focuses on in-depth understanding of key aspects in VLSI, including semiconductor devices, microelectronics, IC-fabrication technology, CMOS, electronic systems & PCB design, ASIC design, design verification, and FPGA design for embedded systems with leading EDA (Electronic Design & Automation) tools, which are fundamental for electronic circuit design and manufacturing industries. The VLSI discipline is dedicated for the design and verification of electronics systems and circuits, and its applications are found in areas such as signal processing, image processing, networks and communication applications, space applications, IC design, healthcare, quantum computing, etc. 

Course Curriculum

  • 01Basic Engineering Sciences - CIV1008
  • 02Problem Solving Using C - CSE1004
  • 03Basics of Electrical and Electronics Engineering - EEE1007
  • 04Applied Statistics - MAT1003
  • 05Technical English - ENG1002
  • 06Introduction to Soft Skills - PPS1001
  • 07Indian Constitution and Professional Ethics for Engineers - LAW1008
  • 08Environmental Science - CHE1018
  • 01Problem Solving using JAVA - CSE1006
  • 02Calculus and Linear Algebra - MAT1001
  • 03Optoelectronics & Device Physics - PHY1002
  • 04Engineering Graphics - MEC1006
  • 05Circuit Analysis - ECE2015
  • 06Advanced English - ENG2001
  • 07Innovative Projects using Arduino - ECE2010
  • 08Enhancing Personality through Soft Skills - PPS1012
  • 09Applied Chemistry for Engineers - CHE1017
  • 01Transform Techniques, Partial Differential Equations and Their Applications - MAT1002
  • 02Digital Electronics - ECE2014
  • 03Solid State Electronics - ECE2012
  • 04Signal Processing - ECE3109
  • 05Innovative Projects using Raspberry Pi - ECE2011
  • 06Professional Elective - I - ECEXXXX
  • 07Programming in Python - CSE1005
  • 08Introduction to Aptitude - PPS4002
  • 09Data Structures and Algorithms - CSE2001
  • 01Numerical Methods for Engineers - MAT2003
  • 02Digital System Design using HDL - ECE2013
  • 03Microelectronics - ECE3122
  • 04Microcontrollers and Computer Architecture - ECE3119
  • 05Micro-Fabrication Technology - ECE3120
  • 06Professional Elective - II - ECEXXXX
  • 07Professional Elective - III - ECEXXXX
  • 08Mastering Object-Oriented Concepts in Python - CSE3216
  • 09Aptitude Training Intermediate - PPS4004
  • 01Introduction to CMOS VLSI Design - ECE3121
  • 02Communication Systems - ECE3160
  • 03Embedded Systems and its Applications - ECE3159
  • 04Design for Testability - ECE3050
  • 05Professional Elective - IV - ECEXXXX
  • 06Professional Elective - V - ECEXXXX
  • 07Digital Entrepreneurship - MGT2007
  • 08Data Structure and Web Development with Python - CSE3217
  • 09Logical and Critical Thinking - PPS4006
  • 01Mixed Signal Circuit Design - ECE3043
  • 02VLSI Design Verification - ECE3124
  • 03RF Integrated Circuits and Systems - ECE3125
  • 04Physical Design and Automation - ECE3126
  • 05Professional Elective - VI - ECEXXXX
  • 06Professional Elective - VII - ECEXXXX
  • 07Open Elective - I - XXXXXXX
  • 08Python Full-Stack Development - CSE3218
  • 09Aptitude for Employability - PPS4005
  • 01Professional Elective - VIII - ECEXXXX
  • 02Professional Elective - IX - ECEXXXX
  • 03Professional Elective - X - ECEXXXX / UREXXXX
  • 04Open Elective - II - XXXXXXX
  • 05Preparedness for Interview - PPS3018
  • 06Capstone Project - PIP4004
  • 01Internship - PIP2002

Programme Educational Objectives

The B. Tech. VLSI Graduates from Presidency University after 4 years of completion of the program shall:

PEO-1: Demonstrate as a successful VLSI Professional with innovative skills and with moral and ethical values.

PEO-2: Engage in life-long learning through research and professional development.

PEO-3: Serve as a leader in the profession through consultancy and entrepreneurship.

Programme Outcomes (POs)

Graduates of the B. Tech. Program in VLSI will be able to:

PO1: Engineering knowledge: Apply the knowledge of mathematics, science, engineering fundamentals, and an engineering specialization to the solution of complex engineering problems.

PO2: Problem analysis: Identify, formulate, review research literature, and analyze complex engineering problems reaching substantiated conclusions using first principles of mathematics, natural sciences, and engineering sciences.

PO3: 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.

PO4: 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.

PO5: Modern tool usage: Create, select, and apply appropriate techniques, resources, and modern engineering and IT tools including prediction and modeling to complex engineering activities with an understanding of the limitations.

PO6: The engineer and society: Apply reasoning informed by contextual knowledge to assess societal, health, safety, legal and cultural issues and the consequent responsibilities relevant to professional engineering practice.

PO7: Environment and sustainability: Understand the impact of professional engineering solutions in societal and environmental contexts, and demonstrate the knowledge of, and need for sustainable development.

PO8: Ethics: Apply ethical principles and commit to professional ethics and responsibilities and norms of engineering practice.

PO9: Individual and team work: Function effectively as an individual, and as a member or leader in diverse teams, and in multidisciplinary settings.

PO10: 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.

PO11: 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.

PO12: 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.

Programme Specific Outcomes

After the successful completion of the program, the graduate shall have:

PSO1: An ability to identify, formulate and solve VLSI Design-based real-life problems using Artificial Intelligence and Machine Learning techniques.

PSO2: An ability to be a successful engineer by inculcating the concepts of architecture, programming and control for embedded systems design.

PSO3: An ability to be a successful researcher by identifying, evaluating, validating and analyzing engineering problems by using VLSI domain knowledge.

PSO4: An ability to be a successful entrepreneur by understanding the impact of signal processing, communication and developing prototypes for real-world sustainable problems.

Student handbook

Program Regulations

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USP

  • Comprehensive Curriculum covering digital and analog VLSI design, semiconductor physics, FPGA, ASIC, and embedded systems.
  • State-of-the-Art VLSI Labs equipped with industry-standard tools like Cadence, Synopsys, Xilinx, and Mentor Graphics for hands-on training.
  • Expert Faculty & Industry Mentorship providing real-world insights into semiconductor technology and chip design.
  • Hands-On Learning through live projects, circuit simulations, RTL design, and silicon prototyping.
  • Global Internship & Study Abroad Opportunities for international exposure and career advancement.
  • Strong Industry Collaborations with leading semiconductor and chip design companies for research projects and internships.
  • Certifications & Training including Verilog, System Verilog, RTL Design, and ASIC Design for enhanced technical expertise.
  • Excellent Placement Records with top recruiters in semiconductor, embedded systems, and hardware design industries.

Career Opportunities

  • Design & Development

    VLSI Design Engineer

    ASIC Design Engineer

    FPGA Engineer

  • Verification & Testing

    Verification Engineer

    Test Engineer

  • Physical & Process Roles

    Physical Design Engineer

    Process Engineer

    Product Engineer

  • Research & Innovation

    R&D Engineer

    EDA Tool Developer

    Academia

  • Tools & Support

    CAD Engineer

    Technical Support Engineer

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