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From Silicon to Microelectronics Yahya Lakys EE & CE 200 Fall 2014

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Presentation on theme: "From Silicon to Microelectronics Yahya Lakys EE & CE 200 Fall 2014"— Presentation transcript:

1 From Silicon to Microelectronics Yahya Lakys EE & CE 200 Fall 2014

2

3 Outline Introduction How Transistors Work ? Logic Gates FPGA & ASIC
New Trending Technologies

4 Introduction Syllabus Microelectronics

5 How Does a Transistor Work?
Semiconductor, Silicon and transistors

6 Digital Logic Gates Digital Logic Function Product AND (&) Sum OR (|)
3 Inputs SUM of PRODUCTS Black Box Truth Table Boolean Logic Minimisation Connect Standard Logic Chips Very Simple Glue Logic FIXED Logic Transistor Switches

7 Integrated Circuits Standard Cells

8 Programmable Logic Devices PLDs
Un-programmed State Planes of ANDs, ORs Different Types SUM of PRODUCTS Prefabricated Programmble Links Reconfigurable Logic Function Inputs Sums ANDs OR Programmed PLD Product Terms Sum of Products Source :

9 How can we make a “programmable logic”?
SRAM-based (Memory) Reconfigurable Track latest SRAM technology Volatile Generally high power Anti-fuse technique One-time programmable Non-volatile – security app.

10 Field Programmable Gate Arrays FPGA
‘Simple’ Programmable Logic Blocks Massive Fabric of Programmable Interconnects

11 FPGA – Look Up Table LUT contains Memory Cells to implement small logic functions Each cell holds ‘0’ or ‘1’ . Programmed with outputs of Truth Table Inputs select content of one of the cells as output

12 Logic Blocks Larger Logic Functions built up by connecting many Logic Blocks together

13 Circuit Compilation

14 Routing Example FPGA

15 Application Specific Integrated Circuit ASIC
Designed for a specific use or application NRE – Non Recurrent Engineering Cost High volume products

16 ASIC Design Flow

17 ASIC vs FPGA

18 Moore’s Law

19 New Trending Technologies
Technology shrinking bottleneck Leakage issues

20 New Trending Technologies
Carbon nanotubes Magnetic devices Graphene

21 Thank you!


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