6.1 INTRODUCTION6.2 FUNDAMENTAL MEASURES6.2.1 Resolution6.2.1.1 Digital vs. Film6.2.2 Interlacing6.2.3 TV Standards6.2.3.1 The Kell Factor6.2.3.2 Eye Resolution and Displays6.2.4 Display Resolution and Motion6.2.5 Brightness6.2.6 Contrast and Dynamic Range6.2.7 Gamma6.2.8 Geometry6.2.9 Angular Range6.2.9.1 Viewing Cone6.2.10 Speed6.3 COLOR AND INTENSITY PRODUCTION6.3.1 Color Gamut6.3.2 Wide-Color-Gamut Displays6.3.3 Multicolor Displays6.3.4 Additive and Subtractive Color Mixing6.3.4.1 Subtractive Color Mixing6.3.5 YUV-Formats6.3.6 Dyes and Filters6.3.7 Light Sources6.3.8 Luminescent vs. Light Valve Displays6.3.9 Test Pictures6.4 SIGNAL AND IMAGE PROCESSING6.4.1 Signal Transmission6.4.2 The Sampling Theorem6.4.2.1 Dirac Pulse Series6.4.2.2 Pulses and Sampling6.4.2.3 Fourier Transform of the Dirac Series6.4.2.4 Back to Analog6.4.3 Tonal Resolution, Signal Noise, and Transfer Function6.4.4 Antialiasing6.4.5 Moiré6.4.6 Resizing6.4.7 Noise Reduction6.4.8 Image Compression6.4.9 Deinterlacing6.5 ELECTRONICS6.5.1 Semiconductors6.5.2 Passive Matrix Displays6.5.3 Multiplexing and Connection6.5.4 Active Matrix Displays6.5.5 Smart Displays6.6 ASSEMBLY6.6.1 Panel Construction6.6.2 Backlighting6.6.3 Antireflective Coatings6.6.3.1 Sol-Gel Coating6.6.4 Touch Screens6.6.4.1 Force Sensors6.6.4.2 Surface Wave Detection6.6.4.3 Light Grid and Optical Imaging6.6.4.4 Bidirectional Display Touch Detection6.6.4.5 Resistive Panels6.6.4.6 Percolation6.6.4.7 Quantum Tunneling Composite (QTC)6.6.4.8 Surface Capacitance6.6.4.9 Projected Capacitance (PCT)6.6.4.10 Inductive Touch Panels6.6.4.11 Touch Panels with Tactile Feedback6.6.5 Flexible Electronics6.6.6 Transparent Electronics6.6.6.1 Transparent Semiconductors6.6.6.2 Organic Transparent Semiconductors6.6.6.3 Carbon Nanotubes6.6.7 Printed Displays6.7 POWER CONSUMPTION6.8 SUMMARY