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Display Technology
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AbstractThe article contains sections titled:1.Introduction2.Display Categories3.Cathode Ray Tubes (CRTs)3.1.Color CRTs3.2.Electron Optics3.3.Phosphors3.4.Trends4.Flat Panels and Matrix Addressing4.1.Light‐Generating (Active) Displays4.1.1.Gas Discharge4.1.1.1.Alternating‐Current Plasma Displays4.1.1.2.Plasma Display Addressing4.1.1.3.Remaining Problems for Plasma Displays4.1.2.Cathodoluminescence4.1.2.1.Vacuum Fluorescence Displays (VFDs)4.1.2.2.Field‐Emission Displays (FEDs)4.1.3.Electroluminescence4.1.3.1.Visible Light Emitting Diodes (LEDs)4.1.3.2.Organic and Polymer Light Emitting Diodes4.1.3.3.Electroluminescence in Inorganic Materials4.2.Light Modulating (Passive) Displays4.2.1.Liquid Crystal Displays4.2.1.1.Fundamental Operation4.2.1.2.Simple Matrix‐Addressed LCDs4.2.1.3.Novel Addressing Schemes for Direct‐Addressed STN LCDs4.2.2.Reflective LCDs for Low‐Power Systems4.2.2.1.Reflective LCDs with Polarizers4.2.2.2.Polarizer‐Free Reflective LCDs4.2.3.Bistable Liquid Crystal Devices4.2.4.Active Matrix‐Addressed Liquid Crystal Displays (AMLCDs)4.2.4.1.Fundamental Properties4.2.4.2.Manufacturing Issues4.2.4.3.Viewing Angle Improvements4.2.4.4.System Performance4.2.4.5.Large Area Liquid Crystal Displays4.2.5.Microparticle‐Based Displays4.2.5.1.Electrophoretic Displays4.2.5.2.Rotating Ball Displays (Gyricon)4.2.6.Direct View Microelectromechanical Systems5.Projection Displays5.1.Projection CRT5.2.Liquid Crystal Projection5.2.1.Transmissive Projection LCDs5.2.2.Reflective Projection LCDs5.3.Micromechanical Light Valve Projection
Title: Display Technology
Description:
AbstractThe article contains sections titled:1.
Introduction2.
Display Categories3.
Cathode Ray Tubes (CRTs)3.
1.
Color CRTs3.
2.
Electron Optics3.
3.
Phosphors3.
4.
Trends4.
Flat Panels and Matrix Addressing4.
1.
Light‐Generating (Active) Displays4.
1.
1.
Gas Discharge4.
1.
1.
1.
Alternating‐Current Plasma Displays4.
1.
1.
2.
Plasma Display Addressing4.
1.
1.
3.
Remaining Problems for Plasma Displays4.
1.
2.
Cathodoluminescence4.
1.
2.
1.
Vacuum Fluorescence Displays (VFDs)4.
1.
2.
2.
Field‐Emission Displays (FEDs)4.
1.
3.
Electroluminescence4.
1.
3.
1.
Visible Light Emitting Diodes (LEDs)4.
1.
3.
2.
Organic and Polymer Light Emitting Diodes4.
1.
3.
3.
Electroluminescence in Inorganic Materials4.
2.
Light Modulating (Passive) Displays4.
2.
1.
Liquid Crystal Displays4.
2.
1.
1.
Fundamental Operation4.
2.
1.
2.
Simple Matrix‐Addressed LCDs4.
2.
1.
3.
Novel Addressing Schemes for Direct‐Addressed STN LCDs4.
2.
2.
Reflective LCDs for Low‐Power Systems4.
2.
2.
1.
Reflective LCDs with Polarizers4.
2.
2.
2.
Polarizer‐Free Reflective LCDs4.
2.
3.
Bistable Liquid Crystal Devices4.
2.
4.
Active Matrix‐Addressed Liquid Crystal Displays (AMLCDs)4.
2.
4.
1.
Fundamental Properties4.
2.
4.
2.
Manufacturing Issues4.
2.
4.
3.
Viewing Angle Improvements4.
2.
4.
4.
System Performance4.
2.
4.
5.
Large Area Liquid Crystal Displays4.
2.
5.
Microparticle‐Based Displays4.
2.
5.
1.
Electrophoretic Displays4.
2.
5.
2.
Rotating Ball Displays (Gyricon)4.
2.
6.
Direct View Microelectromechanical Systems5.
Projection Displays5.
1.
Projection CRT5.
2.
Liquid Crystal Projection5.
2.
1.
Transmissive Projection LCDs5.
2.
2.
Reflective Projection LCDs5.
3.
Micromechanical Light Valve Projection.
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