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EE535L

The document outlines the course details for Digital VLSI Design (EE535L), which is a postgraduate course offered by the Department of Electrical Engineering starting July 2022. The course covers various topics related to digital integrated circuits, including CMOS inverter construction, power analysis, combinational and sequential circuit design, and memory designs. Recommended textbooks and references are provided for further study.

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0% found this document useful (0 votes)
14 views1 page

EE535L

The document outlines the course details for Digital VLSI Design (EE535L), which is a postgraduate course offered by the Department of Electrical Engineering starting July 2022. The course covers various topics related to digital integrated circuits, including CMOS inverter construction, power analysis, combinational and sequential circuit design, and memory designs. Recommended textbooks and references are provided for further study.

Uploaded by

joyanusha28
Copyright
© © All Rights Reserved
We take content rights seriously. If you suspect this is your content, claim it here.
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Download as PDF, TXT or read online on Scribd
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1.

Title of the course Digital VLSI Design


2. Course number EE535L
3. Structure of credits 3-0-0-3
4. Offered to PG
5. New course/modification to Modification To EE5109/16
6. To be offered by Department of Electrical Engineering
7. To take effect from July 2022
8. Prerequisite Nil
9. Course Objective(s): To introduce the concepts of the digital integrated circuits design and the
transistor based circuits design.
10. Course Content: CMOS inverter construction, transfer characteristics; Resistance and
capacitance, transient response; Dynamic, short circuit and leakage power analysis; Combinational
circuit design and capacitance; Parasitic delay, logical effort and electrical effort; Gate sizing,
buffering; Asymmetric gate, skewed gates, ratioed logic; Dynamic gates, domino logic and static
timing analysis; Sequential circuits and feedback; Various D flip flop circuits - static and dynamic;
Setup and hold time measurement, timing analysis of latch/flipflop based systems; Adders - mirror
adder, carry skip adder, carry select adder, square root adder; Multipliers - signed and unsigned
arithmetic, carry save multiplier implementation; DRAM, SRAM and CAM memory designs.
11. Textbook(s):
1. Baker R J, CMOS: Circuit Design, Layout, and Simulation, 4th Edition, John Wiley and Sons
(2019).
2. Rabaey J M, Chandrakasan A and Nikolic B, Digital Integrated Circuits: A design perspective,
2nd Edition, Pearson Education India (2016).

12. Reference(s):
1. Harris D M and Weste N, CMOS VLSI Design: A Circuits and Systems Perspective, 4th Edition,
Pearson Education India (2015).
2. Kang S M, Leblebici Y and Chulwoo K, CMOS Digital Integrated Circuits, Analysis and Design,
4th Edition, McGraw Hill Education (2019).
3. Uyemura J P, CMOS Logic Circuit Design, 2nd Edition, Springer Books (2005).

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