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 EE202:  Introduction to Digital Integrated Circuits
  Berkeley數(shù)字集成電路視頻課程 
Instructor: Professor Jan Rabaey
( 41講   ¥85 )

        Introduction to Digital Integrated Circuits 是UC Berkekey電子工程本科生必修課程, 共41講,每講80分鐘左右;其中上課視頻29講,課程答疑/討論視頻12講,課程視頻全為.rm格式,同時(shí)有與視頻課程內(nèi)容配套的完整的課程講義;有了課程講義讓您的學(xué)習(xí)更有效,在潛移默化中提高專業(yè)知識(shí)和英語能力。
        加州大學(xué)伯克萊分校(UC Berkeley)作為世界一流大學(xué),有著世界頂級(jí)的大師,所設(shè)課程也都是精品中的精品,緊跟最新科技的進(jìn)展。本站推出的美國一流大學(xué)精品視頻課程套裝,讓您足不出戶就能一睹世界一流大學(xué)大師教學(xué)的風(fēng)采;聆聽大師的聲音、拓展國際化的視野、與國際水平看齊、實(shí)現(xiàn)自我價(jià)值的提升。

 

 

Course Description:

        This course is an introduction to digital integrated circuits. The material will cover CMOS devices and manufacturing technology along with CMOS inverters and gates. Other topics include propagation delay, noise margins, power dissipation, and regenerative logic circuits. We will look at various design styles and architectures as well as the issues that designers must face, such as technology scaling and the impact of interconnect. Examples presented in class include arithmetic circuits, semiconductor memories, and other novel circuits.
        The course will start with a detailed description and analysis of the core digital design block, the inverter. Implementations in CMOS will be discussed. Next, the design of more complex combinational gates such as NAND, NOR and EXORs will be discussed, looking at optimizing the speed, area, or power. The learned techniques will be applied on more evolved designs such as adders and multipliers. The influence of interconnect parasitics on circuit performance and approaches to cope with them are treated in detail. Substantial attention will then be devoted to sequential circuits, clocking approaches and memories. The course will be concluded with an examination of design methodologies. CAD Tools for layout, extraction, and simulation will be used for assignments, labs and projects.
 

Textbooks:

        "Digital Integrated Circuits: A Design Perspective",by Jan Rabaey, Anantha Chandrakasan and Borivoje Nikolic.
 

Course Schedule

Week

Lecture

Date

Lecture

Reading

1

1

Jan. 23

Introduction

Chapter 1

2

Jan. 25

Design metrics

Chapter 1

2

3

Jan. 30

Transistor Basics and CMOS Inverter

Chapter 3

4

Feb. 1

IC Manufacturing and Design Rules

Chapter 2

3

5

Feb. 8

MOS Transistor

Chapter 3

4

6

Feb. 15

MOS  Inverter VTC, MOS Delay

Chapter 5

5

7

Feb 19

MOS Capacitances

Chapter 3

8

Feb. 20

CMOS Delay and Power

Chapter 5

9

Feb. 22

Buffer sizing

Chapter 5

6

10

Feb 26

CMOS Scaling

Chapter 5

11

Feb. 27

CMOS Logic

Chapter 6

 

Feb. 29

Midterm Review

 

7

12

Mar. 5

CMOS Logic

Chapter 6

13

Mar. 7

Logical Effort

Chapter 6

8

14

Mar. 12

Adders

Chapter 11

15

Mar. 14

Adder + Ratioed Logic

Chapter 11

9

16

Mar. 19

Pass Transistor Logic

Chapter 6

17

Mar. 21

Dynamic logic

Chapter 6

10

18

Apr. 2

Domino Logic

Chapter 6

19

Apr. 4

Power +_ Sequential Circuits

Chapter 7

11

 

Apr. 9

Midterm Review

 

20

Apr. 11

Multipliers

Chapter 11

12

21

Apr. 16

Latches, registers

Chapter 7

22

Apr. 18

Timing

Chapter 10

13

23

Apr. 23

Timing +Wires

Chapter 10/4

24

Apr. 25

 Wires

Chapter 4

14

25

Apr. 29

Interconnect

Chapter 10

26

Apr. 30

Clocks and Power

Chapter 10

15

27

May  9

Memory/Perspectives

Chapter 12

 

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