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Fundamental of logic design ( 邏輯設計 ) Ching Yuan Su( 蘇清源 ) Dept. of Electronic Engineering Chang Gung University 2013.2.

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Presentation on theme: "Fundamental of logic design ( 邏輯設計 ) Ching Yuan Su( 蘇清源 ) Dept. of Electronic Engineering Chang Gung University 2013.2."— Presentation transcript:

1 Fundamental of logic design ( 邏輯設計 ) Ching Yuan Su( 蘇清源 ) Dept. of Electronic Engineering Chang Gung University 2013.2

2 1. 學分數 : 3 2. 教室 : E0301 3. 科目代號 : EN2080 4. 助教資料 : 何冠毅 (D0027101@stmail.cgu.edu.tw) 5. 上課時間 : 15:10-18:00 6. 上課方式 : 投影片、黑板講解、課後習題作業演練、延伸閱讀 教材 7. 使用教科書 : Charles H. Roth, Jr., "Fundamentals of Logic Design, international student edition," sixth edition, international edition.,2010 Cenga ge learning. 8. 作業 (30%) 期中考 ( 30% ) 期末考 ( 40% ) 9. 師生互動時間 : 周二上午 10 點 -12 點 10. 助教協助時間 : mail ( 或電話 5607) 約時間 課程評量資訊

3 延伸閱讀教材 1. 輔助教科書 : Digital logic design, M. M. Mano and Charles R. Kime, 4 th edition, Prentice Hall 2. 教材網頁 : 3. 網路延伸教材 : (a) 電子工程專輯 (b) 奈米科學網 (c) Newsletter Physorg.com (d) Nanowerk Nanotechnplogy (e) NPG Nature Asia-Pacific (f) Chemistry View etc…

4 課程大綱 1.INTRODUCTION NUMBER SYSTEMS AND CONVERSION ( 數字系統 ) 2. BOOLEAN ALGEBRA( 布林代數 ) 3. APPLICATIONS OF BOOLEAN ALGEBRA MINTERM AND MAXTERM EXPANSIONS ( 最大項與最小項 ) 1.KARNAUGH MAPS( 卡諾圖使用 ) 2.QUINE-McCLUSKEY METHOD 3.MULTI-LEVEL GATE CIRCUITS NAND AND NOR GATES( 多階 及 NAND,NOR 電路 ) 4.COMBINATIONAL CIRCUIT DESIGN AND SIMULATION USING GATES( 組合邏輯電路設計 ) 5.MULTIPLEXERS, DECODERS, AND PROGRAMMABLE LOGIC DEVICES( 多工器、解碼器與可程式控制邏輯電路 )

5 學程地圖

6 ? Why you need to learn this course?

7 A MOS Inverter Logic design unit (the building block) 1.Learning logic design 2.Learning how to carry out your designed circuit 3.The physical view of logic circuit

8 Integrated Circuit An Intel CPU layout

9 What’s the building blocks of a IC’s MOSFETs(Metal-Oxide-Semiconductor Field Effect Transistors)

10 DRAM(dynamic random accesses memory)

11 SRAM Chip

12 Flash memory

13 Nano electronics

14 1 nanometer devices!

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18 Molecules FET

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20 Nanowire-based logic circuit Si Nanowire logic curcuit

21 Signal: Analog or Digital? 1.Analog : The signal is vary continuously 2.Digital: The signal is discrete 3. Signal accuracy: (a) Analog depending on the component accuracy when it was made (b) Digital: the accuracy can be enhanced by adding more “digits” 4. Positive logic/ Negative logic: (a) True/False: 1/0, High/Low voltage 5. The performance of a digital circuit: (a) duty cycle

22 D/A and A/D convertor Sampling Quantization(3 bits)

23 Digital Logic circuit 1. Digital system: (a) System design (b) logic design (c) circuit design 2. Digital circuit can be divided into: (a) Combination Circuit (b) Sequential Circuit( depends on both the present and past input value ), therefore it requiring memory to “remember ” the past value

24 實現邏輯電路的方法 PLA, CPLD, FPGA, VHDL


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