Introductory Electronic Devices and Circuits
Conventional Flow Version
Robert T. Paynter(Author)
Pearson (Publisher)
5th Edition
Published on 18. August 1999
Book
Hardback
1069 pages
978-0-13-927203-5 (ISBN)
Article exhausted; check for reprint
Description
For courses in Electronic Devices or Semiconductors.
Making comprehension of material a top priority and encouraging students to be active participants in the learning process, the two versions of this practical and popular text (Electron Flow Version and Conventional Flow Version) provide a hands-on approach to electronic devices and circuits, and support discussions with an abundance of learning aids to motivate and assist students at every turn.
Making comprehension of material a top priority and encouraging students to be active participants in the learning process, the two versions of this practical and popular text (Electron Flow Version and Conventional Flow Version) provide a hands-on approach to electronic devices and circuits, and support discussions with an abundance of learning aids to motivate and assist students at every turn.
More details
Edition
5th edition
Language
English
Place of publication
United States
Publishing group
Pearson Education (US)
Target group
Professional and scholarly
Dimensions
Height: 285 mm
Width: 215 mm
Thickness: 35 mm
Weight
2399 gr
ISBN-13
978-0-13-927203-5 (9780139272035)
Copyright in bibliographic data is held by Nielsen Book Services Limited or its licensors: all rights reserved.
Schweitzer Classification
Other editions
New editions

Book
09/2003
6th Edition
Pearson
€88.11
Article exhausted; check for reprint
Content
1. Fundamental Solid-State Principles.
2. Diodes.
3. Common Diode Applications: Basic Power Supply Circuits.
4. Common Diode Applications: Clippers, Clampers, Multipliers, and Displays.
5. Special Applications Diodes.
6. Bipolar Junction Transistors.
7. DC Biasing Circuits.
8. Introduction to Amplifiers.
9. Common-Emitter Amplifiers.
10. Other BJT Amplifiers.
11. Power Amplifiers.
12. Field-Effect Transistors.
13. MOSFETs.
14. Amplifier Frequency Response.
15. Operational Amplifiers.
16. Additional Op-Amp Applications.
17. Tuned Amplifiers.
18. Oscillators.
19. Solid-State Switching Circuits.
20. Thyristors and Optoelectronic Devices.
21. Discrete and Integrated Voltage Regulators.
Appendix A: Specification Sheet Guide.
Appendix B: Approximating Circuit Values.
Appendix C: H-Parameter Equations and Derivations.
Appendix D: Selected Equation Derivations.
Appendix E: Glossary.
Appendix F: Transistor Amplifier Design.
Appendix G: Answers to Odd-Numbered Problems.
Index.
2. Diodes.
3. Common Diode Applications: Basic Power Supply Circuits.
4. Common Diode Applications: Clippers, Clampers, Multipliers, and Displays.
5. Special Applications Diodes.
6. Bipolar Junction Transistors.
7. DC Biasing Circuits.
8. Introduction to Amplifiers.
9. Common-Emitter Amplifiers.
10. Other BJT Amplifiers.
11. Power Amplifiers.
12. Field-Effect Transistors.
13. MOSFETs.
14. Amplifier Frequency Response.
15. Operational Amplifiers.
16. Additional Op-Amp Applications.
17. Tuned Amplifiers.
18. Oscillators.
19. Solid-State Switching Circuits.
20. Thyristors and Optoelectronic Devices.
21. Discrete and Integrated Voltage Regulators.
Appendix A: Specification Sheet Guide.
Appendix B: Approximating Circuit Values.
Appendix C: H-Parameter Equations and Derivations.
Appendix D: Selected Equation Derivations.
Appendix E: Glossary.
Appendix F: Transistor Amplifier Design.
Appendix G: Answers to Odd-Numbered Problems.
Index.