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Electronic Principles 8th edition [Kõva köide]

  • Formaat: Hardback, 1120 pages, kõrgus x laius x paksus: 282x216x43 mm, kaal: 2515 g
  • Ilmumisaeg: 16-Feb-2015
  • Kirjastus: McGraw-Hill Inc.,US
  • ISBN-10: 0073373885
  • ISBN-13: 9780073373881
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  • Formaat: Hardback, 1120 pages, kõrgus x laius x paksus: 282x216x43 mm, kaal: 2515 g
  • Ilmumisaeg: 16-Feb-2015
  • Kirjastus: McGraw-Hill Inc.,US
  • ISBN-10: 0073373885
  • ISBN-13: 9780073373881
Teised raamatud teemal:
Malvino's Electronic Principles offers students a definitive overview of electronic circuits and devices. Expert knowledge of electronic devices is presented in a stimulating, clearly written, conversational style. The new, streamlined book design is full-color throughout, with ample, clear illustrations. Greater emphasis on modern integrated circuit (IC) technology, and the revision of nearly one third of the previous editions chapter problems and review questions, refresh this text while retaining its proven approach. The content gives clear, accessible coverage of basic electronics concepts in the first half of the book, then applies these to the important electronic circuits and devices most widely used in todays industry. In addition to the text, there is a wealth of supplementary material included for both student and instructor. An upgraded Experiments Manual, the optional use of MultiSIM software, an Instructors Manual with an Instructor Productivity Center CD, and the brand new Online Learning Center, make this text a powerful learning tool.

McGraw-Hill's Connect, is also available as an optional, add on item. Connect is the only integrated learning system that empowers students by continuously adapting to deliver precisely what they need, when they need it, how they need it, so that class time is more effective. Connect allows the professor to assign homework, quizzes, and tests easily and automatically grades and records the scores of the student's work. Problems are randomized to prevent sharing of answers an may also have a "multi-step solution" which helps move the students' learning along if they experience difficulty.
Preface ix
Chapter 1 Introduction
2(26)
1-1 The Three Kinds of Formulas
1-2 Approximations
1-3 Voltage Sources
1-4 Current Sources
1-5 Thevenin's Theorem
1-6 Norton's Theorem
1-7 Troubleshooting
Chapter 2 Semiconductors
28(28)
2-1 Conductors
2-2 Semiconductors
2-3 Silicon Crystals
2-4 Intrinsic Semiconductors
2-5 Two Types of Flow
2-6 Doping a Semiconductor
2-7 Two Types of Extrinsic Semiconductors
2-8 The Unbiased Diode
2-9 Forward Bias
2-10 Reverse Bias
2-11 Breakdown
2-12 Energy Levels
2-13 Barrier Potential and Temperature
2-14 Reverse-Biased Diode
Chapter 3 Diode Theory
56(30)
3-1 Basic Ideas
3-2 The Ideal Diode
3-3 The Second Approximation
3-4 The Third Approximation
3-5 Troubleshooting
3-6 Reading a Data Sheet
3-7 How to Calculate Bulk Resistance
3-8 DC Resistance of a Diode
3-9 Load Lines
3-10 Surface-Mount Diodes
3-11 Introduction to Electronic Systems
Chapter 4 Diode Circuits
86(54)
4-1 The Half-Wave Rectifier
4-2 The Transformer
4-3 The Full-Wave Rectifier
4-4 The Bridge Rectifier
4-5 The Choke-Input Filter
4-6 The Capacitor-Input Filter
4-7 Peak Inverse Voltage and Surge Current
4-8 Other Power-Supply Topics
4-9 Troubleshooting
4-10 Clippers and Limiters
4-11 Clampers
4-12 Voltage Multipliers
Chapter 5 Special-Purpose Diodes
140(48)
5-1 The Zener Diode
5-2 The Loaded Zener Regulator
5-3 Second Approximation of a Zener Diode
5-4 Zener Drop-Out Point
5-5 Reading a Data Sheet
5-6 Troubleshooting
5-7 Load Lines
5-8 Light-Emitting Diodes (LEDs)
5-9 Other Optoelectronic Devices
5-10 The Schottky Diode
5-11 The Varactor
5-12 Other Diodes
Chapter 6 BJT Fundamentals
188(52)
6-1 The Unbiased Transistor
6-2 The Biased Transistor
6-3 Transistor Currents
6-4 The CE Connection
6-5 The Base Curve
6-6 Collector Curves
6-7 Transistor Approximations
6-8 Reading Data Sheets
6-9 Surface-Mount Transistors
6-10 Variations in Current Gain
6-11 The Load Line
6-12 The Operating Point
6-13 Recognizing Saturation
6-14 The Transistor Switch
6-15 Troubleshooting
Chapter 7 BJT Biasing
240(40)
7-1 Emitter Bias
7-2 LED Drivers
7-3 Troubleshooting Emitter Bias Circuits
7-4 More Optoelectronic Devices
7-5 Voltage-Divider Bias
7-6 Accurate VDB Analysis
7-7 VDB Load Line and Q Point
7-8 Two-Supply Emitter Bias
7-9 Other Types of Bias
7-10 Troubleshooting VDB Circuits
7-11 PNP Transistors
Chapter 8 Basic BJT Amplifiers
280(46)
8-1 Base-Biased Amplifier
8-2 Emitter-Biased Amplifier
8-3 Small-Signal Operation
8-4 AC Beta
8-5 AC Resistance of the Emitter Diode
8-6 Two Transistor Models
8-7 Analyzing an Amplifier
8-8 AC Quantities on the Data Sheet
8-9 Voltage Gain
8-10 The Loading Effect of Input Impedance
8-11 Swamped Amplifier
8-12 Troubleshooting
Chapter 9 Multistage, CC, and CB Amplifiers
326(40)
9-1 Multistage Amplifiers
9-2 Two-Stage Feedback
9-3 CC Amplifier
9-4 Output Impedance
9-5 Cascading CE and CC
9-6 Darlington Connections
9-7 Voltage Regulation
9-8 The Common-Base Amplifier
9-9 Troubleshooting Multistage Amplifiers
Chapter 10 Power Amplifiers
366(48)
10-1 Amplifier Terms
10-2 Two Load Lines
10-3 Class-A Operation
10-4 Class-B Operation
10-5 Class-B Push-Pull Emitter Follower
10-6 Biasing Class-B/AB Amplifiers
10-7 Class-B/AB Driver
10-8 Class-C Operation
10-9 Class-C Formulas
10-10 Transistor Power Rating
Chapter 11 JFETs
414(56)
11-1 Basic Ideas
11-2 Drain Curves
11-3 The Transconductance Curve
11-4 Biasing in the Ohmic Region
11-5 Biasing in the Active Region
11-6 Transconductance
11-7 JFET Amplifiers
11-8 The JFET Analog Switch
11-9 Other JFET Applications
11-10 Reading Data Sheets
11-11 JFET Testing
Chapter 12 MOSFETs
470(54)
12-1 The Depletion-Mode MOSFET
12-2 D-MOSFET Curves
12-3 Depletion-Mode MOSFET Amplifiers
12-4 The Enhancement-Mode MOSFET
12-5 The Ohmic Region
12-6 Digital Switching
12-7 CMOS
12-8 Power FETs
12-9 High-Side MOSFET Load Switches
12-10 MOSFET H-Bridge
12-11 E-MOSFET Amplifiers
12-12 MOSFET Testing
Chapter 13 Thyristors
524(44)
13-1 The Four-Layer Diode
13-2 The Silicon Controlled Rectifier
13-3 The SCR Crowbar
13-4 SCR Phase Control
13-5 Bidirectional Thyristors
13-6 IGBTs
13-7 Other Thyristors
13-8 Troubleshooting
Chapter 14 Frequency Effects
568(56)
14-1 Frequency Response of an Amplifier
14-2 Decibel Power Gain
14-3 Decibel Voltage Gain
14-4 Impedance Matching
14-5 Decibels above a Reference
14-6 Bode Plots
14-7 More Bode Plots
14-8 The Miller Effect
14-9 Risetime-Bandwidth Relationship
14-10 Frequency Analysis of BJT Stages
14-11 Frequency Analysis of FET Stages
14-12 Frequency Effects of Surface-Mount Circuits
Chapter 15 Differential Amplifiers
624(42)
15-1 The Differential Amplifier
15-2 DC Analysis of a Diff Amp
15-3 AC Analysis of a Diff Amp
15-4 Input Characteristics of an Op Amp
15-5 Common-Mode Gain
15-6 Integrated Circuits
15-7 The Current Mirror
15-8 The Loaded Diff Amp
Chapter 16 Operational Amplifiers
666(44)
16-1 Introduction to Op Amps
16-2 The 741 Op Amp
16-3 The Inverting Amplifier
16-4 The Noninverting Amplifier
16-5 Two Op-Amp Applications
16-6 Linear ICs
16-7 Op Amps as Surface-Mount Devices
Chapter 17 Negative Feedback
710(30)
17-1 Four Types of Negative Feedback
17-2 VCVS Voltage Gain
17-3 Other VCVS Equations
17-4 The ICVS Amplifier
17-5 The VCIS Amplifier
17-6 The ICIS Amplifier
17-7 Bandwidth
Chapter 18 Linear Op-Amp Circuit Applications
740(48)
18-1 Inverting-Amplifier Circuits
18-2 Noninverting-Amplifier Circuits
18-3 Inverter/Noninverter Circuits
18-4 Differential Amplifiers
18-5 Instrumentation Amplifiers
18-6 Summing Amplifier Circuits
18-7 Current Boosters
18-8 Voltage-Controlled Current Sources
18-9 Automatic Gain Control
18-10 Single-Supply Operation
Chapter 19 Active Filters
788(62)
19-1 Ideal Responses
19-2 Approximate Responses
19-3 Passive Filters
19-4 First-Order Stages
19-5 VCVS Unity-Gain Second-Order Low-Pass Filters
19-6 Higher-Order Filters
19-7 VCVS Equal-Component Low-Pass Filters
19-8 VCVS High-Pass Filters
19-9 MFB Bandpass Filters
19-10 Bandstop Filters
19-11 The All-Pass Filter
19-12 Biquadratic and State-Variable Filters
Chapter 20 Nonlinear Op-Amp Circuit Applications
850(52)
20-1 Comparators with Zero Reference
20-2 Comparators with Nonzero References
20-3 Comparators with Hysteresis
20-4 Window Comparator
20-5 The Integrator
20-6 Waveform Conversion
20-7 Waveform Generation
20-8 Another Triangular Generator
20-9 Active-Diode Circuits
20-10 The Differentiator
20-11 Class-D Amplifier
Chapter 21 Oscillators
902(56)
21-1 Theory of Sinusoidal Oscillation
21-2 The Wien-Bridge Oscillator
21-3 Other RC Oscillators
21-4 The Colpitts Oscillator
21-5 Other LC Oscillators
21-6 Quartz Crystals
21-7 The 555 Timer
21-8 Astable Operation of the 555 Timer
21-9 555 Circuit Applications
21-10 The Phase-Locked Loop
21-11 Function Generator ICs
Chapter 22 Regulated Power Supplies
958(52)
22-1 Supply Characteristics
22-2 Shunt Regulators
22-3 Series Regulators
22-4 Monolithic Linear Regulators
22-5 Current Boosters
22-6 DC-to-DC Converters
22-7 Switching Regulators
Appendix A Data Sheet List 1010(1)
Appendix B Mathematical Derivations 1011(6)
Appendix C Multisim Primer 1017(46)
Appendix D Thevenizing the R/2R D/A Converter 1063(2)
Appendix E Summary Table Listing 1065(2)
Appendix F Digital/Analog Trainer System 1067(3)
Glossary 1070(13)
Answers Odd-Numbered Problems 1083(6)
Index 1089
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