Fundamentals of Semiconductor Devices 2nd Edition by Betty Anderson,Richard Anderson – Ebook PDF Instant Download/Delivery: 0073529567 978-0073529561
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Product details:
ISBN 10: 0073529567
ISBN 13: 978-0073529561
Author: Betty Anderson,Richard Anderson
Fundamentals of Semiconductor Devices provides a realistic and practical treatment of modern semiconductor devices. A solid understanding of the physical processes responsible for the electronic properties of semiconductor materials and devices is emphasized. With this emphasis, the reader will appreciate the underlying physics behind the equations derived and their range of applicability. The author’s clear writing style, comprehensive coverage of the core material, and attention to current topics are key strengths of this book.
Fundamentals of Semiconductor Devices 2nd Table of contents:
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Preface
- Overview of Semiconductor Devices
- Key Updates in the 2nd Edition
- Acknowledgements
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Chapter 1: Introduction to Semiconductor Materials
- What Are Semiconductors?
- Classification of Materials: Conductors, Insulators, and Semiconductors
- Atomic Structure and Energy Bands
- Intrinsic and Extrinsic Semiconductors
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Chapter 2: Carrier Transport in Semiconductors
- Charge Carriers: Electrons and Holes
- Drift and Diffusion of Carriers
- Carrier Mobility and Conductivity
- Continuity Equation and Current Density
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Chapter 3: Energy Bands and Carrier Statistics
- The Band Structure of Semiconductors
- Fermi Level and Carrier Concentration
- The Boltzmann and Fermi-Dirac Distributions
- Temperature Dependence of Carrier Concentration
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Chapter 4: p-n Junctions and Diodes
- The Formation of p-n Junctions
- Ideal Diode Characteristics
- Diode Equation and Current-Voltage Relationship
- Reverse Bias, Breakdown, and Zener Diodes
- Junction Capacitance and Dynamic Behavior
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Chapter 5: Bipolar Junction Transistors (BJTs)
- Structure and Operation of BJTs
- Current Gain and Transistor Characteristics
- Input and Output Characteristics of BJTs
- Switching Behavior and Applications of BJTs
- Thermal Effects and Power Dissipation in BJTs
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Chapter 6: Field-Effect Transistors (FETs)
- Structure and Operation of FETs
- Types of FETs: JFET, MOSFET, and MESFET
- Characteristics of MOSFETs
- Channel Formation and Threshold Voltage
- Applications of FETs in Digital and Analog Circuits
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Chapter 7: Semiconductor Materials for Advanced Devices
- Wide Bandgap Semiconductors (e.g., GaN, SiC)
- Organic Semiconductors and Molecular Electronics
- Quantum Dots and Nanomaterials
- Emerging Semiconductor Materials for Future Devices
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Chapter 8: Optoelectronic Devices
- Basic Principles of Optoelectronics
- Light Emitting Diodes (LEDs) and Laser Diodes
- Photodetectors and Photodiodes
- Solar Cells and Photovoltaics
- Applications in Communication and Sensing
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Chapter 9: Semiconductor Device Fabrication
- Overview of Semiconductor Manufacturing Processes
- Diffusion, Ion Implantation, and Oxidation
- Lithography and Photolithography
- Thin Film Deposition Techniques
- Etching, Doping, and Metallization Processes
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Chapter 10: Advanced Semiconductor Device Models
- Small Signal Models for Diodes and BJTs
- Large Signal and Switching Models
- High-Frequency Models for Semiconductor Devices
- SPICE Modeling and Simulation of Semiconductor Circuits
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Chapter 11: Power Semiconductor Devices
- Power Diodes and Rectifiers
- Thyristors, Triacs, and SCRs
- Insulated Gate Bipolar Transistors (IGBTs)
- Power MOSFETs and Their Applications
- Thermal Management in Power Devices
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Chapter 12: Semiconductor Devices in Integrated Circuits (ICs)
- Overview of Integrated Circuits
- CMOS Technology and Digital ICs
- Analog ICs: Operational Amplifiers and Voltage Regulators
- Mixed-Signal ICs
- System-on-Chip (SoC) Design and Applications
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Chapter 13: Reliability and Failure Mechanisms in Semiconductor Devices
- Types of Failures: Electrical, Mechanical, and Thermal
- Lifetime and Reliability Testing of Devices
- Burn-In, Stress Testing, and Failure Analysis
- Reliability in Power Electronics
-
Chapter 14: Semiconductor Devices in Modern Electronics
- Semiconductor Devices in Communication Systems
- Power Electronics and Renewable Energy Systems
- Semiconductor Devices in Consumer Electronics
- Automotive and Industrial Applications
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Chapter 15: Future Directions in Semiconductor Devices
- The Role of Semiconductor Devices in the Internet of Things (IoT)
- Quantum Computing and Semiconductor Technologies
- 2D Materials and Nanoelectronics
- Advancements in Energy-Efficient Devices
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Appendices
- Mathematical Tools for Semiconductor Analysis
- Semiconductor Constants and Material Properties
- Semiconductor Device Design Considerations
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References
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Index
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Betty Anderson,Richard Anderson,Semiconductor Devices