CMOS VLSI Design - Lecture 2: Circuits & Layout docx

CMOS VLSI Design - Lecture 2: Circuits & Layout docx

CMOS VLSI Design - Lecture 2: Circuits & Layout docx

... CMOS VLSI Design 4th Ed. 1: Circuits & Layout 10 And Now… CMOS VLSI Design 4th Ed. 1: Circuits & Layout 11 Feature Size  Minimum feature size shrinking 30% every 2-3 years CMOS VLSI ... 13 CMOS Gate Design  Activity: – Sketch a 4-input CMOS NOR gate A B C D Y CMOS VLSI Design 4th Ed. 1: Circuits & Layout 14 Complementary CMOS  Comp...

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CMOS VLSI Design - Lecture 1: Introduction ppt

CMOS VLSI Design - Lecture 1: Introduction ppt

... 1 s d g s d s d s d nMOS pMOS OFF ON ON OFF CMOS VLSI Design 4th Ed. 0: Introduction 12 0 V DD A Y GND CMOS Inverter A Y 0 1 1 0 A Y OFF ON 1 ON OFF CMOS VLSI Design 4th Ed. 0: Introduction 13 CMOS NAND Gate A B Y 0 ... OFF ON OFF 1 0 ON ON OFF OFF 0 0 A B Y CMOS VLSI Design 4th Ed. 0: Introduction 14 CMOS NOR Gate A B Y 0 0 1 0 1 0 1 0 0 1 1 0 A B Y CMOS VLSI...

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CMOS VLSI Design - Lecture 3: CMOS Transistor Theory potx

CMOS VLSI Design - Lecture 3: CMOS Transistor Theory potx

... Saturation V g V s V d V gd V gs V ds + - + - + - CMOS VLSI DesignCMOS VLSI Design 4th Ed. 3: CMOS Transistor Theory 6 nMOS Cutoff  No channel  I ds ≈ 0 + - V gs = 0 n+ n+ + - V gd p-type body b g s d CMOS VLSI DesignCMOS VLSI ... V t n+ n+ + - V gd = V gs + - V gs > V t n+ n+ + - V gs > V gd > V t V ds = 0 0 < V ds < V...

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CMOS VLSI Design - Lecture 4: Nonideal Transistor Theory pdf

CMOS VLSI Design - Lecture 4: Nonideal Transistor Theory pdf

... ox 2q 2q A A N t N C ε γε ε = = CMOS VLSI DesignCMOS VLSI Design 4th Ed. 4: Nonideal Transistor Theory 16 Body Effect Cont.  For small source-to-body voltage, treat as linear CMOS VLSI DesignCMOS VLSI Design 4th ... Reverse-biased p-n junctions have some leakage – Ordinary diode leakage – Band-to-band tunneling (BTBT) – Gate-induced drain leakage (GIDL) n well n+n+ n+ p+p+p...

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CMOS VLSI Design - Lecture 5: DC & Transient Response doc

CMOS VLSI Design - Lecture 5: DC & Transient Response doc

... = 6RC CMOS VLSI DesignCMOS VLSI Design 4th Ed. 5: DC and Transient Response 28 Delay Model Comparison CMOS VLSI DesignCMOS VLSI Design 4th Ed. 5: DC and Transient Response 29 Example: 3-input ... Low Output Range CMOS VLSI DesignCMOS VLSI Design 4th Ed. 5: DC and Transient Response 17 V DD V in V out V OH V DD V OL V IL V IH V tn Unity Gain Points Slope = -1 V D...

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CMOS VLSI Design - Lecture 6: Power potx

CMOS VLSI Design - Lecture 6: Power potx

... leakage negligible CMOS VLSI DesignCMOS VLSI Design 4th Ed. 7: Power 22 Solution ( ) ( )( )( ) ( ) ( )( ) ( ) ( ) ( ) ( ) t t tt tt 66 normal-V 66 6 high-V normal-V high-V normal-V high-V 50 10 12 ... circuit sleeps long enough CMOS VLSI DesignCMOS VLSI Design 4th Ed. 7: Power 2 Outline  Power and Energy  Dynamic Power  Static Power CMOS VLSI DesignCMOS VLSI Design...

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Tài liệu Solutions for CMOS VLSI Design 4th Edition (Odd). ppt

Tài liệu Solutions for CMOS VLSI Design 4th Edition (Odd). ppt

... W='N'L=2 + AS='N*5' PS='2*N+10' AD='N*5' PD='2*N+10' M2 y a vdd vdd PMOS W='P'L=2 + AS='P*5' PS='2*P+10' AD='P*5' ... W='N' L=2 + AS='N*5' PS='2*N+10' AD='N*5' PD='2*N+10' M2 y a vdd vdd PMOS W='P' L=2 + AS='P*5' PS='2*P+10&apos...

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VLSI DESIGN Thiết kế vi mạch số - Chapter 0: Course Introduction docx

VLSI DESIGN Thiết kế vi mạch số - Chapter 0: Course Introduction docx

... pMOS transistor 1.2 CMOS gate 1.3 CMOS fabrication 6 2 Circuit and Layout 2.1 CMOS gate design 2. 2CMOS Latches & Flip-Flops 2.3 Standard Cell Layouts 2.4 Stick Diagrams 9 3 CMOS Transistor Theory 3.1 ... Addison Wesley, 2010 2. Tống Văn On, Thiết kế vi mạch CMOS VLSI - tập 1, NXB Phương Đông, 2007 3. Tống Văn On, Thiết kế vi mạch CMOS VLSI - tập 2, NXB Phương...

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Lecture 2: Object Oriented Programming docx

Lecture 2: Object Oriented Programming docx

... plainPencil = new Pencil("PLAIN"); System.out.println("original color: " + plainPencil.color); paintRed(plainPencil); System.out.println("new color: " + plainPencil.color); } public ... args[0]; String name2 = args[1]; System.out.println("Hello " + name1 + “&“ +name2); } }  java Greetings Jacky Mary Hello Jacky & Mary  Note: What y...

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