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Learn Digital Logic and Microprocessor Design with VHDL
5:06 PMDigital Logic and Microprocessor Design with VHDL (soon with Verilog)- Enoch O. Hwang, La Sierra University, Riverside, CA. This book will teach students how to design digital logic circuits, specifically combinational and sequential circuits. Students will learn how to put these two types of circuits together to form dedicated and general-purpose microprocessors. This book is unique in that it combines the use of logic principles and the building of individual components to create data paths and control units, and finally the building of real dedicated custom microprocessors and general-purpose microprocessors. After understanding the material in the book, students will be able to design simple microprocessors and implement them in real hardware.
Cover
Preface
contents
1 Designing Microprocessors
2 Digital Circuits
3 Combinational Circuits
4 Standard Combinational Components
5 Implementation Technologies
6 Latches and Flip-Flops
7 Sequential Circuits
8 Standard Sequential Components
9 Datapaths
10 Control Units
11 Dedicated Microprocessors
12 General-Purpose Microprocessors Appendix (Quartus version)
Max+Plus Quartus
A Schematic Entry Tutorial 1Q
B VHDL Entry Tutorial 2Q
C UP2 Programming Tutorial 3Q
D VHDL Summary
Verilog Summary
Preface
contents
1 Designing Microprocessors
2 Digital Circuits
3 Combinational Circuits
4 Standard Combinational Components
5 Implementation Technologies
6 Latches and Flip-Flops
7 Sequential Circuits
8 Standard Sequential Components
9 Datapaths
10 Control Units
11 Dedicated Microprocessors
12 General-Purpose Microprocessors Appendix (Quartus version)
Max+Plus Quartus
A Schematic Entry Tutorial 1Q
B VHDL Entry Tutorial 2Q
C UP2 Programming Tutorial 3Q
D VHDL Summary
Verilog Summary
Dynamic System Modeling and Control
4:32 AM
This book introduces the basic concepts of system modeling with differential equations.
Status
The draft version includes updates made during the fall of 2004, including many corrections and clarifications.Chapters (FROM THE DRAFT VERSION 2.6)
- Introduction (PDF)
- Translation (PDF) (PPT)
- Solving Differential Equations (PDF) (PPT)
- Numerical Methods (PDF) (PPT)
- Rotation (PDF) (PPT)
- Transfer Functions (PDF) (PPT)
- Circuits (PDF) (PPT)
- Feedback Control Systems and Block Diagram (PDF)s (PPT)
- Phasor Analysis (PDF) (PPT)
- Bode Plots (PDF) (PPT)
- Root Locus Plots (PDF) (PPT)
- Non-linear systems (PDF) (PPT)
- Analog IO (PDF) (PPT)
- Sensors (PDF) (PPT)
- Actuators (PDF) (PPT)
- Motion Control Systems (PDF) (PPT)
- Laplace Techniques (PDF) (PPT)
- Linear Systems (PDF) (PPT)
- Convolution (PDF)
- State Analysis (PDF)
- State Based Controls (PDF)
- System Identification(PDF)
- Magnetic Systems (PDF) (PPT)
- Fluids (PDF) (PPT)
- Thermal (PDF) (PPT)
- Optimization(PDF)
- Finite Element Analysis(PDF)
- Fuzzy Logic(PDF)
- Neural Networks(PDF)
- Embedded Systems(PDF)
- Lab Guide (PDF)
- Writing (PDF)
- Math Review Guide (PDF)
- C Programming Review (PDF)
- Units (PDF)
- Materials (PDF)
Downloads
- Version 2.6 (CURRENT DRAFT VERSION) PDF (5.5MB) January 5, 2005
- Version 2.4 PDF (5.2MB) January 26, 2004
- Version 2.3 PDF (4.4MB) August 25, 2003
- Version 2.2 PDF (4.4MB) July 22, 2002
- Version 2.1 PDF (4.3MB) March 31, 2002 (HTML)
- Version 2.0 PDF (4.3MB) January 10, 2002
- Version 1.0 PDF (3.5MB) August 10, 2001