Principles of transistor circuits introduction to the design of amplifiers, receivers, and digital circuits

Over the last 40 years, Principles of Transistor Circuits has provided students and practitioners with a text they can rely on to keep them at the forefront of transistor circuit design. Although integrated circuits have widespread application, the role of discrete transistors both as important buil...

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Detalles Bibliográficos
Autor principal: Amos, S. W. (-)
Otros Autores: James, Mike, 1954-
Formato: Libro electrónico
Idioma:Inglés
Publicado: Oxford ; Boston : Newnes 2000.
Edición:9th ed
Materias:
Ver en Biblioteca Universitat Ramon Llull:https://discovery.url.edu/permalink/34CSUC_URL/1im36ta/alma991009627401706719
Tabla de Contenidos:
  • Front Cover; Principles of Transistor Circuits: Introduction to the Design of Amplifiers, Receivers and Digital Circuits; Copyright Page; Table of Contents; Preface to the ninth edition; Chapter 1. Semiconductors and junction diodes; Introduction; Mechanism of semiconduction; Compound semiconductors; PN junctions; Junction diodes; Chapter 2. Basic principles of transistors; Bipolar transistors; Field-effect transistors; Thyristors; Chapter 3. Common-base and common-gate amplifiers; Common-base amplifiers; Common-gate amplifiers; Chapter 4. Common-emitter and common-source amplifiers
  • Common-emitter amplifiersCommon-source amplifiers; Chapter 5. Common-collector and common-drain amplifiers (emitter and source followers); Common-collector amplifiers; Comparison of bipolar transistor amplifiers; Common-drain amplifiers; Comparison of field-effect transistor amplifiers; Chapter 6. Bias and d.c. stabilisation; Bipolar transistors; Field-effect transistors; Chapter 7. Small-signal a.f. amplifiers; Definition of small-signal amplifier; Distinction between voltage and current amplifiers; Transistor parameters in small-signal amplifiers; Single-transistor stages
  • Two-stage amplifiersUse of negative feedback; Two-stage amplifiers; Complementary amplifiers; Emitter follower; Darlington circuit; Low-noise transistor amplifiers; Circuits employing fet and bipolar transistors; Chapter 8. Large-signal a.f. amplifiers; Definition of a large-signal amplifier; Transistor parameters in large-signal amplifiers; Class-A amplifiers; Class-B amplifiers; Complementary class-B amplifier; Current-dumping amplifiers; Bridge output stage; Integrated-circuit a.f. power amplifier; Heat sinks; Darlington power transistors; Chapter 9. D.C. and pulse amplifiers; Introduction
  • D.C. amplifiersOperational amplifiers; Pulse amplifiers; Voltage pulse amplifiers; Complementary emitter follower; Video amplifier for television receiver; Integrated-circuit pulse amplifier; Chapter 10. R.F. and J.F. amplifiers; Introduction; Class-C operation; Common-emitter r.f. amplifiers; Common-base r.f. amplifier; I.F. amplifiers; Automatic gain control (A.G.C.); Decoupling; Use of integrated circuits; Chapter 11. Sinusoidal oscillators; Introduction; Positive-feedback oscillators; Phase-shift oscillators; Negative-resistance oscillators
  • Chapter 12. Modulators, demodulators, mixers and receiversIntroduction; Amplitude modulators; Frequency modulators; A.M. detectors; F.M. detectors; Mixers; Satellite low noise block; Complete receivers; Chapter 13. Pulse generators; Introduction: the transistor as a switch; Multivibrator: bistable; Multivibrator: monostable; Multivibrator: astable; Synchronising of multivibrators; Emitter-coupled multivibrator; Blocking oscillator; Chapter 14. Sawtooth generators; Introduction; Simple discharger circuit; Miller-integrator circuit; Constant-current charger
  • Line output stage for television receiver