Electronic Devices and Amplifier Circuits :: with MATLAB /
This is an introductory text containing the description and applications of state-of-the-art solid=state electronic devices. It includes many practical examples to illustrate their use.
Gespeichert in:
1. Verfasser: | |
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Format: | Elektronisch E-Book |
Sprache: | English |
Veröffentlicht: |
Fremont, California, USA :
Orchard Publications,
2012.
|
Ausgabe: | 3rd ed. |
Schlagworte: | |
Online-Zugang: | Volltext |
Zusammenfassung: | This is an introductory text containing the description and applications of state-of-the-art solid=state electronic devices. It includes many practical examples to illustrate their use. |
Beschreibung: | 5.14 Summing and Averaging Op Amp Circuits. |
Beschreibung: | 1 online resource (664 pages) |
ISBN: | 9781934404263 1934404268 |
Internformat
MARC
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245 | 1 | 0 | |a Electronic Devices and Amplifier Circuits : |b with MATLAB / |c Simulink / SimElectronics Examples. |
250 | |a 3rd ed. | ||
260 | |a Fremont, California, USA : |b Orchard Publications, |c 2012. | ||
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505 | 0 | |a Front Matter Electronic DevicesTHIRD pBook; Preface Electronic Devices THIRD; Chapter 01 Electronic Devices THIRD; Chapter 02 Electronic Devices THIRD; Chapter 2; 2.1 Electrons and Holes; 2.2 The Junction Diode; 2.3 Graphical Analysis of Circuits with Non-Linear Devices; 2.4 Piecewise Linear Approximations; 2.5 Low Frequency AC Circuits with Junction Diodes; 2.6 Junction Diode Applications in AC Circuits; 2.7 Peak Rectifier Circuits; 2.8 Clipper Circuits; 2.9 DC Restorer Circuits; 2.10 Voltage Doubler Circuits; 2.11 Diode Applications in Amplitude Modulation (AM) Detection Circuits. | |
505 | 8 | |a 2.12 Diode Applications in Frequency Modulation (FM) Detection Circuits2.13 Zener Diodes; 2.14 The Schottky Diode; 2.15 Tunnel Diode; 2.16 The Varactor; 2.17 Optoelectronic Devices; 2.18 Summary; 2.19 Exercises; 2.20 Solutions to End-of-Chapter Exercises; Chapter 03 Electronic Devices THIRD; Chapter 3; 3.1 Introduction; 3.2 NPN Transistor Operation; 3.3 The Bipolar Junction Transistor as an Amplifier; 3.3.1 Equivalent Circuit Models -- NPN Transistors; 3.3.2 Equivalent Circuit Models -- PNP Transistors; 3.3.3 Effect of Temperature on the -- Characteristics. | |
505 | 8 | |a 3.3.4 Collector Output Resistance -- Early Voltage3.4 Transistor Amplifier Circuit Biasing; 3.5 Fixed Bias; 3.6 Self-Bias; 3.7 Amplifier Classes and Operation; 3.3.1 Class A Amplifier Operation; 3.3.2 Class B Amplifier Operation; 3.3.3 Class AB Amplifier Operation; 3.3.4 Class C Amplifier Operation; 3.4 Graphical Analysis; 3.5 Power Relations in the Basic Transistor Amplifier; 3.6 Piecewise-Linear Analysis of the Transistor Amplifier; 3.7 Incremental Linear Models; 3.8 Transconductance; 3.9 High-Frequency Models for Transistors; 3.10 The Darlington Connection; 3.11 Transistor Networks. | |
505 | 8 | |a 3.3.1 The h-Equivalent Circuit for the Common-Base Transistor3.3.2 The T-Equivalent Circuit for the Common-Base Transistor; 3.3.3 The h-Equivalent Circuit for the Common-Emitter Transistor; 3.3.4 The T-Equivalent Circuit for the Common-Emitter Transistor; 3.3.5 The h-Equivalent Circuit for the Common-Collector Transistor; 3.3.6 The T-Equivalent Circuit for the Common-Collector Transistor Amplifier; 3.4 Transistor Cutoff and Saturation Regions; 3.3.1 Cutoff Region; 3.3.2 Active Region; 3.3.3 Saturation Region; 3.4 The Ebers-Moll Transistor Model; 3.5 Schottky Diode Clamp. | |
505 | 8 | |a 3.6 Transistor Specifications3.7 Summary; 3.8 Exercises; 3.9 Solutions to End-of-Chapter Exercises; Chapter 04 Electronic Devices THIRD; Chapter 05 Electronic Devices THIRD; Chapter 5; 5.1 Operational Amplifier; 5.2 An Overview of the Op Amp; 5.3 Op Amp in the Inverting Mode; 5.4 Op Amp in the Non-Inverting Mode; 5.5 Active Filters; 5.6 Analysis of Op Amp Circuits; 5.7 Input and Output Resistances; 5.8 Op Amp Open Loop Gain; 5.9 Op Amp Closed Loop Gain; 5.10 Transresistance Amplifier; 5.11 Closed Loop Transfer Function; 5.12 Op Amp Integrator; 5.13 Op Amp Differentiator. | |
500 | |a 5.14 Summing and Averaging Op Amp Circuits. | ||
520 | |a This is an introductory text containing the description and applications of state-of-the-art solid=state electronic devices. It includes many practical examples to illustrate their use. | ||
630 | 0 | 0 | |a MATLAB. |0 http://id.loc.gov/authorities/names/n92036881 |
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650 | 0 | |a Amplifiers (Electronics) |0 http://id.loc.gov/authorities/subjects/sh85004652 | |
650 | 2 | |a Amplifiers, Electronic |0 https://id.nlm.nih.gov/mesh/D000669 | |
650 | 6 | |a Amplificateurs. | |
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776 | 0 | 8 | |i Print version: |a Karris, Steven T. |t Electronic Devices and Amplifier Circuits : with MATLAB / Simulink / SimElectronics Examples. |d Fremont, California, USA : Orchard Publications, ©2012 |z 9781934404256 |
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Datensatz im Suchindex
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any_adam_object | |
author | Karris, Steven T. |
author_facet | Karris, Steven T. |
author_role | |
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building | Verbundindex |
bvnumber | localFWS |
callnumber-first | T - Technology |
callnumber-label | TK7871 |
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callnumber-search | TK7871.2 |
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contents | Front Matter Electronic DevicesTHIRD pBook; Preface Electronic Devices THIRD; Chapter 01 Electronic Devices THIRD; Chapter 02 Electronic Devices THIRD; Chapter 2; 2.1 Electrons and Holes; 2.2 The Junction Diode; 2.3 Graphical Analysis of Circuits with Non-Linear Devices; 2.4 Piecewise Linear Approximations; 2.5 Low Frequency AC Circuits with Junction Diodes; 2.6 Junction Diode Applications in AC Circuits; 2.7 Peak Rectifier Circuits; 2.8 Clipper Circuits; 2.9 DC Restorer Circuits; 2.10 Voltage Doubler Circuits; 2.11 Diode Applications in Amplitude Modulation (AM) Detection Circuits. 2.12 Diode Applications in Frequency Modulation (FM) Detection Circuits2.13 Zener Diodes; 2.14 The Schottky Diode; 2.15 Tunnel Diode; 2.16 The Varactor; 2.17 Optoelectronic Devices; 2.18 Summary; 2.19 Exercises; 2.20 Solutions to End-of-Chapter Exercises; Chapter 03 Electronic Devices THIRD; Chapter 3; 3.1 Introduction; 3.2 NPN Transistor Operation; 3.3 The Bipolar Junction Transistor as an Amplifier; 3.3.1 Equivalent Circuit Models -- NPN Transistors; 3.3.2 Equivalent Circuit Models -- PNP Transistors; 3.3.3 Effect of Temperature on the -- Characteristics. 3.3.4 Collector Output Resistance -- Early Voltage3.4 Transistor Amplifier Circuit Biasing; 3.5 Fixed Bias; 3.6 Self-Bias; 3.7 Amplifier Classes and Operation; 3.3.1 Class A Amplifier Operation; 3.3.2 Class B Amplifier Operation; 3.3.3 Class AB Amplifier Operation; 3.3.4 Class C Amplifier Operation; 3.4 Graphical Analysis; 3.5 Power Relations in the Basic Transistor Amplifier; 3.6 Piecewise-Linear Analysis of the Transistor Amplifier; 3.7 Incremental Linear Models; 3.8 Transconductance; 3.9 High-Frequency Models for Transistors; 3.10 The Darlington Connection; 3.11 Transistor Networks. 3.3.1 The h-Equivalent Circuit for the Common-Base Transistor3.3.2 The T-Equivalent Circuit for the Common-Base Transistor; 3.3.3 The h-Equivalent Circuit for the Common-Emitter Transistor; 3.3.4 The T-Equivalent Circuit for the Common-Emitter Transistor; 3.3.5 The h-Equivalent Circuit for the Common-Collector Transistor; 3.3.6 The T-Equivalent Circuit for the Common-Collector Transistor Amplifier; 3.4 Transistor Cutoff and Saturation Regions; 3.3.1 Cutoff Region; 3.3.2 Active Region; 3.3.3 Saturation Region; 3.4 The Ebers-Moll Transistor Model; 3.5 Schottky Diode Clamp. 3.6 Transistor Specifications3.7 Summary; 3.8 Exercises; 3.9 Solutions to End-of-Chapter Exercises; Chapter 04 Electronic Devices THIRD; Chapter 05 Electronic Devices THIRD; Chapter 5; 5.1 Operational Amplifier; 5.2 An Overview of the Op Amp; 5.3 Op Amp in the Inverting Mode; 5.4 Op Amp in the Non-Inverting Mode; 5.5 Active Filters; 5.6 Analysis of Op Amp Circuits; 5.7 Input and Output Resistances; 5.8 Op Amp Open Loop Gain; 5.9 Op Amp Closed Loop Gain; 5.10 Transresistance Amplifier; 5.11 Closed Loop Transfer Function; 5.12 Op Amp Integrator; 5.13 Op Amp Differentiator. |
ctrlnum | (OCoLC)819635275 |
dewey-full | 621.381535 |
dewey-hundreds | 600 - Technology (Applied sciences) |
dewey-ones | 621 - Applied physics |
dewey-raw | 621.381535 |
dewey-search | 621.381535 |
dewey-sort | 3621.381535 |
dewey-tens | 620 - Engineering and allied operations |
discipline | Elektrotechnik / Elektronik / Nachrichtentechnik |
edition | 3rd ed. |
format | Electronic eBook |
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publisher | Orchard Publications, |
record_format | marc |
spelling | Karris, Steven T. Electronic Devices and Amplifier Circuits : with MATLAB / Simulink / SimElectronics Examples. 3rd ed. Fremont, California, USA : Orchard Publications, 2012. 1 online resource (664 pages) text txt rdacontent computer c rdamedia online resource cr rdacarrier Print version record. Front Matter Electronic DevicesTHIRD pBook; Preface Electronic Devices THIRD; Chapter 01 Electronic Devices THIRD; Chapter 02 Electronic Devices THIRD; Chapter 2; 2.1 Electrons and Holes; 2.2 The Junction Diode; 2.3 Graphical Analysis of Circuits with Non-Linear Devices; 2.4 Piecewise Linear Approximations; 2.5 Low Frequency AC Circuits with Junction Diodes; 2.6 Junction Diode Applications in AC Circuits; 2.7 Peak Rectifier Circuits; 2.8 Clipper Circuits; 2.9 DC Restorer Circuits; 2.10 Voltage Doubler Circuits; 2.11 Diode Applications in Amplitude Modulation (AM) Detection Circuits. 2.12 Diode Applications in Frequency Modulation (FM) Detection Circuits2.13 Zener Diodes; 2.14 The Schottky Diode; 2.15 Tunnel Diode; 2.16 The Varactor; 2.17 Optoelectronic Devices; 2.18 Summary; 2.19 Exercises; 2.20 Solutions to End-of-Chapter Exercises; Chapter 03 Electronic Devices THIRD; Chapter 3; 3.1 Introduction; 3.2 NPN Transistor Operation; 3.3 The Bipolar Junction Transistor as an Amplifier; 3.3.1 Equivalent Circuit Models -- NPN Transistors; 3.3.2 Equivalent Circuit Models -- PNP Transistors; 3.3.3 Effect of Temperature on the -- Characteristics. 3.3.4 Collector Output Resistance -- Early Voltage3.4 Transistor Amplifier Circuit Biasing; 3.5 Fixed Bias; 3.6 Self-Bias; 3.7 Amplifier Classes and Operation; 3.3.1 Class A Amplifier Operation; 3.3.2 Class B Amplifier Operation; 3.3.3 Class AB Amplifier Operation; 3.3.4 Class C Amplifier Operation; 3.4 Graphical Analysis; 3.5 Power Relations in the Basic Transistor Amplifier; 3.6 Piecewise-Linear Analysis of the Transistor Amplifier; 3.7 Incremental Linear Models; 3.8 Transconductance; 3.9 High-Frequency Models for Transistors; 3.10 The Darlington Connection; 3.11 Transistor Networks. 3.3.1 The h-Equivalent Circuit for the Common-Base Transistor3.3.2 The T-Equivalent Circuit for the Common-Base Transistor; 3.3.3 The h-Equivalent Circuit for the Common-Emitter Transistor; 3.3.4 The T-Equivalent Circuit for the Common-Emitter Transistor; 3.3.5 The h-Equivalent Circuit for the Common-Collector Transistor; 3.3.6 The T-Equivalent Circuit for the Common-Collector Transistor Amplifier; 3.4 Transistor Cutoff and Saturation Regions; 3.3.1 Cutoff Region; 3.3.2 Active Region; 3.3.3 Saturation Region; 3.4 The Ebers-Moll Transistor Model; 3.5 Schottky Diode Clamp. 3.6 Transistor Specifications3.7 Summary; 3.8 Exercises; 3.9 Solutions to End-of-Chapter Exercises; Chapter 04 Electronic Devices THIRD; Chapter 05 Electronic Devices THIRD; Chapter 5; 5.1 Operational Amplifier; 5.2 An Overview of the Op Amp; 5.3 Op Amp in the Inverting Mode; 5.4 Op Amp in the Non-Inverting Mode; 5.5 Active Filters; 5.6 Analysis of Op Amp Circuits; 5.7 Input and Output Resistances; 5.8 Op Amp Open Loop Gain; 5.9 Op Amp Closed Loop Gain; 5.10 Transresistance Amplifier; 5.11 Closed Loop Transfer Function; 5.12 Op Amp Integrator; 5.13 Op Amp Differentiator. 5.14 Summing and Averaging Op Amp Circuits. This is an introductory text containing the description and applications of state-of-the-art solid=state electronic devices. It includes many practical examples to illustrate their use. MATLAB. http://id.loc.gov/authorities/names/n92036881 MATLAB fast Electronic apparatus and appliances. http://id.loc.gov/authorities/subjects/sh85042254 Amplifiers (Electronics) http://id.loc.gov/authorities/subjects/sh85004652 Amplifiers, Electronic https://id.nlm.nih.gov/mesh/D000669 Amplificateurs. amplifiers. aat TECHNOLOGY & ENGINEERING Electronics Circuits General. bisacsh TECHNOLOGY & ENGINEERING Electronics Circuits Integrated. bisacsh Amplifiers (Electronics) fast Electronic apparatus and appliances fast Print version: Karris, Steven T. Electronic Devices and Amplifier Circuits : with MATLAB / Simulink / SimElectronics Examples. Fremont, California, USA : Orchard Publications, ©2012 9781934404256 FWS01 ZDB-4-EBA FWS_PDA_EBA https://search.ebscohost.com/login.aspx?direct=true&scope=site&db=nlebk&AN=477273 Volltext |
spellingShingle | Karris, Steven T. Electronic Devices and Amplifier Circuits : with MATLAB / Front Matter Electronic DevicesTHIRD pBook; Preface Electronic Devices THIRD; Chapter 01 Electronic Devices THIRD; Chapter 02 Electronic Devices THIRD; Chapter 2; 2.1 Electrons and Holes; 2.2 The Junction Diode; 2.3 Graphical Analysis of Circuits with Non-Linear Devices; 2.4 Piecewise Linear Approximations; 2.5 Low Frequency AC Circuits with Junction Diodes; 2.6 Junction Diode Applications in AC Circuits; 2.7 Peak Rectifier Circuits; 2.8 Clipper Circuits; 2.9 DC Restorer Circuits; 2.10 Voltage Doubler Circuits; 2.11 Diode Applications in Amplitude Modulation (AM) Detection Circuits. 2.12 Diode Applications in Frequency Modulation (FM) Detection Circuits2.13 Zener Diodes; 2.14 The Schottky Diode; 2.15 Tunnel Diode; 2.16 The Varactor; 2.17 Optoelectronic Devices; 2.18 Summary; 2.19 Exercises; 2.20 Solutions to End-of-Chapter Exercises; Chapter 03 Electronic Devices THIRD; Chapter 3; 3.1 Introduction; 3.2 NPN Transistor Operation; 3.3 The Bipolar Junction Transistor as an Amplifier; 3.3.1 Equivalent Circuit Models -- NPN Transistors; 3.3.2 Equivalent Circuit Models -- PNP Transistors; 3.3.3 Effect of Temperature on the -- Characteristics. 3.3.4 Collector Output Resistance -- Early Voltage3.4 Transistor Amplifier Circuit Biasing; 3.5 Fixed Bias; 3.6 Self-Bias; 3.7 Amplifier Classes and Operation; 3.3.1 Class A Amplifier Operation; 3.3.2 Class B Amplifier Operation; 3.3.3 Class AB Amplifier Operation; 3.3.4 Class C Amplifier Operation; 3.4 Graphical Analysis; 3.5 Power Relations in the Basic Transistor Amplifier; 3.6 Piecewise-Linear Analysis of the Transistor Amplifier; 3.7 Incremental Linear Models; 3.8 Transconductance; 3.9 High-Frequency Models for Transistors; 3.10 The Darlington Connection; 3.11 Transistor Networks. 3.3.1 The h-Equivalent Circuit for the Common-Base Transistor3.3.2 The T-Equivalent Circuit for the Common-Base Transistor; 3.3.3 The h-Equivalent Circuit for the Common-Emitter Transistor; 3.3.4 The T-Equivalent Circuit for the Common-Emitter Transistor; 3.3.5 The h-Equivalent Circuit for the Common-Collector Transistor; 3.3.6 The T-Equivalent Circuit for the Common-Collector Transistor Amplifier; 3.4 Transistor Cutoff and Saturation Regions; 3.3.1 Cutoff Region; 3.3.2 Active Region; 3.3.3 Saturation Region; 3.4 The Ebers-Moll Transistor Model; 3.5 Schottky Diode Clamp. 3.6 Transistor Specifications3.7 Summary; 3.8 Exercises; 3.9 Solutions to End-of-Chapter Exercises; Chapter 04 Electronic Devices THIRD; Chapter 05 Electronic Devices THIRD; Chapter 5; 5.1 Operational Amplifier; 5.2 An Overview of the Op Amp; 5.3 Op Amp in the Inverting Mode; 5.4 Op Amp in the Non-Inverting Mode; 5.5 Active Filters; 5.6 Analysis of Op Amp Circuits; 5.7 Input and Output Resistances; 5.8 Op Amp Open Loop Gain; 5.9 Op Amp Closed Loop Gain; 5.10 Transresistance Amplifier; 5.11 Closed Loop Transfer Function; 5.12 Op Amp Integrator; 5.13 Op Amp Differentiator. MATLAB. http://id.loc.gov/authorities/names/n92036881 MATLAB fast Electronic apparatus and appliances. http://id.loc.gov/authorities/subjects/sh85042254 Amplifiers (Electronics) http://id.loc.gov/authorities/subjects/sh85004652 Amplifiers, Electronic https://id.nlm.nih.gov/mesh/D000669 Amplificateurs. amplifiers. aat TECHNOLOGY & ENGINEERING Electronics Circuits General. bisacsh TECHNOLOGY & ENGINEERING Electronics Circuits Integrated. bisacsh Amplifiers (Electronics) fast Electronic apparatus and appliances fast |
subject_GND | http://id.loc.gov/authorities/names/n92036881 http://id.loc.gov/authorities/subjects/sh85042254 http://id.loc.gov/authorities/subjects/sh85004652 https://id.nlm.nih.gov/mesh/D000669 |
title | Electronic Devices and Amplifier Circuits : with MATLAB / |
title_auth | Electronic Devices and Amplifier Circuits : with MATLAB / |
title_exact_search | Electronic Devices and Amplifier Circuits : with MATLAB / |
title_full | Electronic Devices and Amplifier Circuits : with MATLAB / Simulink / SimElectronics Examples. |
title_fullStr | Electronic Devices and Amplifier Circuits : with MATLAB / Simulink / SimElectronics Examples. |
title_full_unstemmed | Electronic Devices and Amplifier Circuits : with MATLAB / Simulink / SimElectronics Examples. |
title_short | Electronic Devices and Amplifier Circuits : |
title_sort | electronic devices and amplifier circuits with matlab |
title_sub | with MATLAB / |
topic | MATLAB. http://id.loc.gov/authorities/names/n92036881 MATLAB fast Electronic apparatus and appliances. http://id.loc.gov/authorities/subjects/sh85042254 Amplifiers (Electronics) http://id.loc.gov/authorities/subjects/sh85004652 Amplifiers, Electronic https://id.nlm.nih.gov/mesh/D000669 Amplificateurs. amplifiers. aat TECHNOLOGY & ENGINEERING Electronics Circuits General. bisacsh TECHNOLOGY & ENGINEERING Electronics Circuits Integrated. bisacsh Amplifiers (Electronics) fast Electronic apparatus and appliances fast |
topic_facet | MATLAB. MATLAB Electronic apparatus and appliances. Amplifiers (Electronics) Amplifiers, Electronic Amplificateurs. amplifiers. TECHNOLOGY & ENGINEERING Electronics Circuits General. TECHNOLOGY & ENGINEERING Electronics Circuits Integrated. Electronic apparatus and appliances |
url | https://search.ebscohost.com/login.aspx?direct=true&scope=site&db=nlebk&AN=477273 |
work_keys_str_mv | AT karrisstevent electronicdevicesandamplifiercircuitswithmatlab |