‏إظهار الرسائل ذات التسميات electronics. إظهار كافة الرسائل
‏إظهار الرسائل ذات التسميات electronics. إظهار كافة الرسائل

الثلاثاء، 26 يناير 2016

Digital Circuits

Digital Integrated Circuits: Analysis and Design 

Author: John E. Ayers

Version: 1st edition

Size: 10.9 MB



Download link: http://sh.st/mnoEa







Overview

Focusing on underlying principles rather than the details of current technologies that will soon be obsolete, Ayers (University of Connecticut) provides broad coverage of the field of digital integrated circuits for students interested in designing circuits and designing with integrated circuits. Stressing computer tools throughout, with SPICE examples and exercises in every chapter, the book covers principles of digital circuits and their attributes, including bipolar, MESFET, MOS, and BiCMOS circuits, and their manufacture, testing, interfacing, and packaging. Readers are assumed to have a core engineering science background. Annotation ©2004 Book News, Inc., Portland, OR

Table of Contents

1Introduction to Digital Integrated Circuits1
2Semiconductor Materials45
3Diodes61
4Bipolar Junction Transistors89
5Transistor-Transistor Logic115
6Emitter-Coupled Logic207
7Field-Effect Transistors255
8NMOS Logic287
9CMOS Logic321
10Low-Power CMOS Logic391
11BiCMOS Logic423
12GaAs Direct-Coupled FET Logic449
13Interfacing between Digital Logic Circuits481
14Interconnect509
15Bistable Circuits543
16Digital Memories577
17Design and Layout607
18Integrated Circuit Packages635
App. AProperties of Si and GaAs at 300 K663
App. BDesign Rules, Constants, Symbols, and Definitions665
Index673

الأربعاء، 20 يناير 2016

ELECTROMAGNETIC | كهرومغناطيسية

Engineering Electromagnetics

Author: Nathan Ida

Version: 1st edition

Size: 45.6 MB


Download link: http://sh.st/n3QB9






Overview

The book is a comprehensive two semester textbook. It is written with all details of derivations included and all steps in solutions listed. It requires little beyond basic calculus and can be used for self-study. The wealth of examples and alternative explanations makes it approachable by students.

Table of Contents

1Vector algebra1
2Vector calculus57
3Coulomb's law and the electric field121
4Gauss's law and the electric potential173
5Boundary value problems : analytic methods of solution281
6Boundary value problems : numerical (approximate) methods351
7The steady electric current415
8The static magnetic field469
9Magnetic materials and properties523
10Faraday's law and induction629
11Maxwell's equations687
12Electromagnetic waves and propagation725
13Reflection and transmission of plane waves807
14Theory of transmission lines877
15The Smith chart, impedance matching, and transmission line circuits955
16Transients on transmission lines999
17Waveguides and resonators1043
18Antennas and electromagnetic radiation1121

ELECTROMAGNETIC | كهرومغناطيسية

Elements of Electromagnetics

Author: Matthew N. O. Sadiku

Version: 3rd edition

size (book & solution): 50.3 MB


Download link: http://sh.st/nM76H










Overview

Elements of Electromagnetics, Fourth Edition, uses a vectors-first approach to explain electrostatics, magnetostatics, fields, waves, and applications like transmission lines, waveguides, and antennas. It also provides a balanced presentation of time-varying and static fields, preparing students for employment in today's industrial and manufacturing sectors.
Streamlined to facilitate student understanding, this edition features worked examples in every chapter that explain how to use the theory presented in the text to solve different kinds of problems. Numerical methods, including MATLAB and vector analysis, are also included to help students analyze situations that they are likely to encounter in industry practice.
Elements of Electromagnetics, Fourth Edition, is designed for introductory undergraduate courses in electromagnetics. An Instructor's Solutions Manual (co-authored by Sudarshan Rao Nelatury of Penn State Erie, The Behrend College) and PowerPoint slides of all figures in the text are available to adopters.


Table of Contents


Preface
A Note to the Student
Pt. IVector Analysis1
1Vector Algebra3
2Coordinate Systems and Transformation31
3Vector Calculus58
Pt. IIElectrostatics112
4Electrostatic Fields113
5Electric Fields in Material Space184
6Electrostatic Boundary-ValueProblems223
Pt. IIIMagnetostatics287
7Magnetostatic Fields289
8Magnetic Forces, Materials, and Devices336
Pt. IVWaves and Applications408
9Maxwell's Equations409
10Electromagnetic Wave Propagation453
11Transmission Lines518
12Waveguides593
13Antennas643
14Numerical Methods696
Appendix A Mathematical Formulas722
Appendix B Material Constants781
Appendix C Computer Programs785
Appendix D List of Symbols788
Appendix E Answers to Odd-Numbered Problems792
Index817

ELECTROMAGNETIC | كهرومغناطيسية

Fundamentals of Applied Electromagnetics

Author: Fawwaz T.Ulaby

Version: 5th edition

size: 167.6 MB


Download link: http://sh.st/n3Ieu

solution: http://sh.st/nM7pz







Overview

FEATURES/BENEFITS
  • NEW—Over 370 chapter-end problems.
    • Offers users more opportunities to practice applications, and test their understanding of chapter concepts.
  • NEW—Accompanying CD-ROM.
    • Provides readers with complete sample solutions for 45 chapter-end problems selected from and identified in the text, and enables them to generate a high-quality print of Smith Chart for use with
  • Logical organization—Begins coverage with transmission lines.
    • Presents a natural bridge between familiar circuits material and new electromagnetics material.
  • More emphasis on dynamics than statics.
  • Unique coverage of optical fibers and imaging (Ch. 8).
    • Gives the reader valuable material on optical fibers in wideband communication and optical imaging by mirrors and lenses.
  • User-friendly approach.
    • Explains and clarifies the physics by using math, and avoids lengthy derivations of theorems.
  • Thorough verification of material.

Table of Contents

Preface
1Introduction: Waves and Phasors1
2Transmission Lines32
3Vector Analysis96
4Electrostatics132
5Magnetostatics174
6Maxwell's Equations for Time-Varying Fields214
7Plane-Wave Propagation242
8Wave Reflection and Transmission, and Geometric Optics272
9Radiation and Antennas316
10Satellite Communication Systems and Radar Sensors366
App. ASymbols, Quantities, and Units387
App. BMaterial Constants of Some Common Materials389
App. CMathematical Formulas391
App. DAnswers to Odd-Numbered Problems393
Bibliography397
Index399

الثلاثاء، 19 يناير 2016

Electric Circuits

Fundamentals of Electric Circuits

Authors: Charles Alexander, Matthew Sadiku

Version: 5th edition

size: 23.9 MB


Download link: http://sh.st/n3Ov9

solution: http://sh.st/nN6l5 








Description

Alexander and Sadiku's fifth edition of Fundamentals of Electric Circuits continues in the spirit of its successful previous editions, with the objective of presenting circuit analysis in a manner that is clearer, more interesting, and easier to understand than other, more traditional texts. Students are introduced to the sound, six-step problem solving methodology in chapter one, and are consistently made to apply and practice these steps in practice problems and homework problems throughout the text.
A balance of theory, worked examples and extended examples, practice problems, and real-world applications, combined with over 468 new or changed homework problems for the fifth edition and robust media offerings, renders the fifth edition the most comprehensive and student-friendly approach to linear circuit analysis.
This edition retains the Design a Problem feature which helps students develop their design skills by having the student develop the question as well as the solution. There are over 100 Design a Problem exercises integrated into the problem sets in the book.

Table of Contents

Preface
Acknowledgments
Guided Tour
A Note to the Student
About the Authors
Pt. 1 DC Circuits                                                   1
Ch. 1 Basic Concepts                                            3
Ch. 2 Basic Laws                                                 27
Ch. 3 Methods of Analysis                                  77
Ch. 4 Circuit Theorems                                      125
Ch. 5 Operational Amplifiers                             173
Ch. 6 Capacitors of Inductors                             211
Ch. 7 First-Order Circuits                                   249
Ch. 8 Second-Order Circuits                               309
Pt. 2 AC Circuits                                                 367
Ch. 9 Sinusoids and Phasors                               369
Ch. 10 Sinusoidal Steady-State Analysis            413
Ch. 11 AC Power Analysis                                 457 
Ch. 12 Three-Phase Circuits                               503
Ch. 13 Magnetically Coupled Circuits               555
Ch. 14 Frequency Response                               613
Pt. 3 Advanced Circuit Analysis                        673
Ch. 15 Introduction to Laplace Transforms       675
Ch. 16 Applications of Laplace Transforms      715
Ch. 17 The Fourier Series                                  757
Ch. 18 Fourier Transform                                  813
Ch. 19 Two-Port Networks                               853
App. A Simultaneous Equations and Matrix Inversion
App. B Complex Numbers
App. C Mathematical Formulas
App. D PSpice for Windows
App. E MATLAB
App. F Answers to Odd-Numbered Problems
Selected Bibliography
Index


الاثنين، 18 يناير 2016

THE ART OF ELECTRONICS

   The Art of Electronics 


Authors: Paul Horowitz, Winfield Hill

Version: 2nd edition

size: 30.9 MB



download links:

chapter 1: http://sh.st/n3Dn1

chapter2-chapter15: http://sh.st/n3DZe




Description

This is the thoroughly revised and updated Second Edition of the single, authoritative text and reference on electronic circuit design--both analog and digital. It emphasizes the methods actually used by circuit designers--a combination of some basic laws, rules of thumb, and a large bag of tricks. This completely new edition responds to the breakneck pace of change in electronics with a large number of new and revised topics.

Table of Contents

List of tables
Preface
Preface to first edition
Chapter 1: Foundations
Chapter 2: Transistors
Chapter 3: Field-effect transistors
Chapter 4: Feedback and operational amplifiers
Chapter 5: Active filters and oscillators
Chapter 6: Voltage regulators and power circuits
Chapter 7: Precision circuits and low-noise techniques
Chapter 8: Digital electronics
Chapter 9: Digital meets analog
Chapter 10: Microcomputers
Chapter 11: Microprocessors
Chapter 12: Electronic construction techniques
Chapter 13: High-frequency and high-speed techniques
Chapter 14: Low-power design
Chapter 15: Measurements and signal processing
Appendix A: The oscilloscope
Appendix B: Math review
Appendix C: The 5% resistor color code
Appendix D: 1% Precision resistors
Appendix E: How to draw schematic diagrams
Appendix F: Load lines
Appendix G: Transistor saturation
Appendix H: LC Butterworth filters
Appendix I: Electronics magazines and journals
Appendix J: IC prefixes
Appendix K: Data sheets
Bibliography
Index

Microelectronics

Microelectronics Circuit analysis and design



Author: DONALD A. NEAMEN

Version: 4th edition

size: 111.8 MB


download link: http://sh.st/n3Afa






Description

Microelectronics: Circuit Analysis and Design is intended as a core text in electronics for undergraduate electrical and computer engineering students. The fourth edition continues to provide a foundation for analyzing and designing both analog and digital electronic circuits. The goal has always been to make this book very readable and student friendly.
An accessible approach to learning through clear writing and practical pedagogy has become the hallmark of Microelectronics: Circuit Analysis and Design by Donald Neamen. Now in its fourth edition, the text builds upon its strong pedagogy and tools for student assessment with key updates as well as revisions that allow for flexible coverage of op-amps. 

Table of Contents

Part I: Semiconductor Devices and Basic Applications

Chapter 1: Semiconductor Materials and DiodesChapter
 2: Diode CircuitsChapter 
3: The Field-Effect TransistorChapter 
4: Basic FET AmplifiersChapter 
5: The Bipolar Junction TransistorChapter 
6: Basic BJT AmplifiersChapter 
7: Frequency ResponseChapter
 8: Output Stages and Power Amplifiers

Part II: Analog ElectronicsChapter

9: Ideal Operational Amplifiers and Op-Amp CircuitsChapter
10: Integrated Circuit Biasing and Active LoadsChapter 
11: Differential and Multistage AmplifiersChapter 
12: Feedback and StabilityChapter 
13: Operational Amplifier CircuitsChapter 
14: Nonideal Effects in Operational Amplifier CircuitsChapter 
15: Applications and Design of Integrated Circuits

Part III: Digital ElectronicsChapter

16: MOSFET Digital CircuitsChapter 
17: Bipolar Digital Circuits

Digital Design

Digital Design 4th edition 


Authors:  M. Morris Mano, Michael D. Ciletti  

version: 4th edition

size: 177.8 MB


download link: http://sh.st/n3Fal

solution manual: http://sh.st/n3FEq







Description

Digital Design, fourth edition is a modern update of the classic authoritative text on digital design. This book teaches the basic concepts of digital design in a clear, accessible manner. The book presents the basic tools for the design of digital circuits and provides procedures suitable for a variety of digital applications.

Table of Contents

1. Binary Systems.
Digital Systems. Binary Numbers. Number Base Conversions. Octal and Hexadecimal Numbers. Complements. Signed Binary Numbers. Binary Codes. Binary Storage and Registers. Binary Logic.

2. Boolean Algebra and Logic Gates.
Basic Definitions. Axiomatic Definition of Boolean Algebra. Basic Theorems and Properties of Boolean Algebra. Boolean Functions. Canonical and Standard Forms. Other Logic Operations. Digital Logic Gates. Integrated Circuits.

3. Gate-Level Minimization.
The Map Method. Four-Variable Map. Five-Variable Map. Product of Sums Simplification. Don't-Care Conditions. NAND and NOR Implementation. Other Two-Level Implementations. Exclusive-OR Function. HardwareDescriptionLanguage(HDL).

4. Combinational Logic.
Combinational Circuits. Analysis Procedure. Design Procedure. Binary Adder-Subtractor. Decimal Adder. Binary Multiplier. Magnitude Comparator. Decoders. Encoders. Multiplexers. HDLFor CombinationalCircuits.

5. Synchronous Sequential Logic.
Sequential Circuits. Latches. Flip-Flops. Analysis of Clocked Sequential Circuits. HDL For Sequential Circuits. State Reduction and Assignment. Design Procedure.

6. Registers ad Counters.
Registers. Shift Registers. Ripple Counters. Synchronous Counters. Other Counters. HDL for Registers and Counters.

7. Memory and Programmable Logic.
Introduction. Random-Access Memory. Memory Decoding. Error Detection and Correction. Read-Only Memory. Programmable Logic Array. Programmable Array Logic. Sequential Programmable Devices.

8. Register Transfer Level.
Register Transfer Level (RTL) Notation. Register Transfer Level in HDL. Algorithmic State Machines (ASM). Design Example. HDL Description of Design Example. Binary Multiplier. Control Logic. HDL Description of Binary Multiplier. Design With Multiplexers.

9. Asynchronous Sequential Logic.
Introduction. Analysis Procedure. Circuits With Latches. Design Procedure. Reduction of State and Flow Tables. Race-Free State Assignment. Hazards. Design Example.

10. Digital Integrated Circuits.
Introduction. Special Characteristics. Bipolar-Transistor Characteristics. RTL and DTL Circuits. Transistor-Transistor Logic (TTL). Emitter-Coupled Logic (ECL). Metal-Oxide Semiconductor (MOS). Complementary MOS (CMUS). CMOS Transmission Gate Circuits. Switch-Lever Modeling With HDL.

11. Laboratory Experiments.
Introduction to Experiments. Binary and Decimal Numbers. Digital Logic Gates. Simplification of Boolean Functions. Combinational Circuits. Code Converters. Design with Multiplexers. Adders and Subtractors. Flip-flops. Sequential Circuits. Counters. Shift Registers. Serial Addition. Memory Unit. Lamp Handball. Clock-Pulse Generator. Parallel Adder and Accumulator. Binary Multiplier. Asynchronous Sequential Circuits. Verilog HDL Simulation Experiments.

12. Standard Graphic Symbols.
Rectangular-Shape Symbols. Qualifying Symbols. Dependency Notation. Symbols For Combinational Elements. Symbols For Flip-Flops. Symbols For Registers. Symbols For Counters. Symbol For RAM.

Answers To Selected Problems.