TIEE3021 Syllabus - Vlsi Design - 2022 Regulation Anna University
TIEE3021 Syllabus - Vlsi Design - 2022 Regulation Anna University
TIEE3021 |
VLSI DESIGN |
L T P C |
---|
2023
COURSE OBJECTIVES
• To explain the basic concepts of CMOS and
• To introduce the IC fabrication methods
• To introduce the Reconfigurable Processor technologies
• To introduce the basics of analog VLSI design and its importance.
• To learn about the programming of Programmable device using Hardware description Language.
• To introduce the IC fabrication methods
• To introduce the Reconfigurable Processor technologies
• To introduce the basics of analog VLSI design and its importance.
• To learn about the programming of Programmable device using Hardware description Language.
UNIT I |
CMOS BASICS |
6 |
---|
MOSFET Scaling - CMOS logic design- Dynamic CMOS –Transmission Gates- BiCMOS
UNIT II |
IC FABRICATION |
6 |
---|
CMOS IC Fabrications: n well, p well, twin tub, SoI - Design Rules and Layout.
UNIT III |
PROGRAMABLE LOGIC DEVICES |
6 |
---|
PAL, PLA, CPLD architecture and application
UNIT IV |
RECONFIGURABLE PROCESSOR |
6 |
---|
FPGA- Architecture, FPGA based application development- Introduction to FPAA.
UNIT V |
HDL PROGRAMMING |
6 |
---|
Verilog HDL- Overview - structural and behavioural modeling concepts-Design examples- Carry Look ahead adders, ALU, Shift Registers.
TOTAL: 30+30 = 60 PERIODS
COURSE OUTCOMES: At the end of this course, the students will have the ability to
CO1: Develop CMOS design techniques
CO2: Learn and build IC fabrication
CO3: Explain the need of reconfigurable computing with PLDs.
CO4: Design and development of reprogrammable FPGA.
CO5: Illustrate and develop HDL computational processes with improved design strategies.
CO2: Learn and build IC fabrication
CO3: Explain the need of reconfigurable computing with PLDs.
CO4: Design and development of reprogrammable FPGA.
CO5: Illustrate and develop HDL computational processes with improved design strategies.
TEXT BOOKS:
1. M.J.S Smith, “Application Specific integrated circuits”,Addition Wesley Longman Inc. 1st Edition 2010.
2. Kamran Eshraghian,Douglas A.pucknell and Sholeh Eshraghian,”Essentials of VLSI circuits and system”, Prentice Hall India,2005, 1st Edition.
2. Kamran Eshraghian,Douglas A.pucknell and Sholeh Eshraghian,”Essentials of VLSI circuits and system”, Prentice Hall India,2005, 1st Edition.
REFERENCES:
1. Donald G. Givone, “Digital principles and Design”, Tata McGraw Hill 2002, 1st Edition.
2. Charles H. Roth Jr., “Fundamentals of Logic design”, Thomson Learning, 7th Edition 2013.
3. Nurmi, Jari (Ed.) "Processor Design System-On-Chip Computing for ASICs and FPGAs" Springer, 2007, 1st Edition.
4. Joao Cardoso, Michael Hübner, "Reconfigurable Computing: From FPGAs to Hardware/Software Codesign" Springer, 2011, 1st Edition.
5. Pierre-Emmanuel Gaillardon, Reconfigurable Logic: Architecture, Tools, and Applications, 1st Edition, CRC Press , 2018.
2. Charles H. Roth Jr., “Fundamentals of Logic design”, Thomson Learning, 7th Edition 2013.
3. Nurmi, Jari (Ed.) "Processor Design System-On-Chip Computing for ASICs and FPGAs" Springer, 2007, 1st Edition.
4. Joao Cardoso, Michael Hübner, "Reconfigurable Computing: From FPGAs to Hardware/Software Codesign" Springer, 2011, 1st Edition.
5. Pierre-Emmanuel Gaillardon, Reconfigurable Logic: Architecture, Tools, and Applications, 1st Edition, CRC Press , 2018.
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