Lee / Liu / Wu | Introduction to Flat Panel Displays | Buch | 978-0-470-51693-5 | sack.de

Buch, Englisch, 280 Seiten, Format (B × H): 173 mm x 249 mm, Gewicht: 590 g

Reihe: Wiley Series in Display Technology

Lee / Liu / Wu

Introduction to Flat Panel Displays


1. Auflage 2008
ISBN: 978-0-470-51693-5
Verlag: PAPERBACKSHOP UK IMPORT

Buch, Englisch, 280 Seiten, Format (B × H): 173 mm x 249 mm, Gewicht: 590 g

Reihe: Wiley Series in Display Technology

ISBN: 978-0-470-51693-5
Verlag: PAPERBACKSHOP UK IMPORT


Flat Panel Displays (FPDs) are a frequent feature in our daily lives, used in mobile phones, laptop computers, desktop computer monitors and TVs. Several display technologies have been developed for FPDs, such as liquid crystal display (LCD), plasma display panel (PDP), light emitting diode (LED), organic light emitting device (OLED) and field emission display (FED).

Introduction to Flat Panel Displays describes the fundamental sciences behind each display technology: LCD, PDP, LED, OLED and FED including carbon nanotubes. It contains a comparative analysis of the different display technologies in which detailed overviews of each technology are linked together so as to provide a comprehensive reference for students and display engineers, alike. Solved problems as well as homework problems are provided in each chapter to help consolidate students' reading, as well as solutions hosted on an accompanying website.

Features include:

* the classifications and specifications of display technologies as guidelines for developing a display and judging their performances;

* principles for designing color displays with good color saturation and wide color gamut;

* basic operating principles of thin-film transistors (TFTs) and their applications to state-of-the-art TFT-LCD and TFT-OLED;

* an overview of FED fundamentals comprising the physics of field emission, as well as FED structure and display mechanism.

Senior undergraduate and graduate students taking courses in engineering, physics and chemistry will benefit from the systematic approach used throughout the book, which will help to prepare students for entry into a display profession. Display engineers, research scientists and technicians working on the development of flat panel display technology will also find this book an invaluable resource. Comparisons of the strengths and weaknesses of each of the display technologies will help professionals to decide which to use for their applications.

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Weitere Infos & Material


Series Editor's Foreword

About the authors

Preface

Acknowledgements

Chapter 1: Introduction

1.1 Flat Panel displays

1.2 Emissive and non-emissive displays

1.3 Display specifications

1.4 Applications of flat panel displays

References

Chapter 2: Color Science and Engineering

2.1 Introduction

2.2 The Eye

2.3 Colorimetry

2.4 Produce and re-produce colors

References

Chapter 3: Thin Film Transistors

3.1 Introduction

3.2 Basic concepts of crystallized semiconductor materials

3.3 Disorder semiconductor

3.4 TFT characteristics

3.5 PM and AM driving schemes

3.6 Non-Si based TFTs

References

Chapter 4: Liquid Crystal Displays

4.1 Introduction

4.2 Transmissive TFT LCDs

4.3 Liquid Crystal Materials

4.4 Liquid Crystal Alignment

4.5 Homogeneous Cell

4.6 Twisted Nematic (TN)

4.7 In-Plane Switching (IPS)

4.8 Fringe Field Switching (FFS)

4.9 Alignment (VA)

4.10 Optically Compensated Bend (OCB) Cell

4.11 Transflective LCDs

4.12 Future Directions

References

Chapter 5: Plasma Display Panels

5.1 Introduction

5.2 Physics of gas discharge

5.3 PDP panels

5.4 Front plate techniques

5.5 Rear plate techniques

5.6 Assembly and aging techniques

5.7 System techniques

References

Chapter 6: Light-emitting Diodes

6.1 Introduction

6.2 Material systems

6.3 Diode characteristics

6.4 Light-emitting characteristics

6.5 Device fabrication

6.6 Applications

References

Chapter 7: Organic Light-emitting Devices

7.1 Introduction

7.2 Energy states in organic materials

7.3 Photophysical process

7.4 Carrier injection, transport and recombination

7.5 Structure, fabrication and characterization

7.6 Improvement of internal quantum efficiency

7.7 Improvement of extraction efficiency

References

Chapter 8: Field Emission Displays

8.1 Introduction

8.2 Physics of field emission

8.3 FED structure and display mechanism

8.4. Emitter

8.5 Panel process

8.6 Field emission array (FEA) plate techniques

8.7 Phosphor plate techniques

8.8 Assembly and aging techniques

8.9 System techniques

References



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