Table of Contents
1. Overview
2. PSS (Polarization Shielded Smectic) Mode
- 2.1. Structure and Overview
- 2.2. Characteristics of PSS
- 2.2.1. High Speed Response Characteristic
- 2.2.2. Wide Viewing Angle
- 2.2.3. Clear Picture Effect of Moving Pictures
- 2.3. Panel Structure
- 2.3.1. Flat Panel Structure
- 2.3.2. Cell Gap
- 2.4. Panel Productivity
- 2.5. Panel Reliability
- 2.6. Drive-Module Correspondence
3. e-Paper Trend
- 3.1. Overview 21
- 3.2. Comparison with Liquid Crystal Display
- 3.3. Technology for Application Expansion
- 3.3.1. Colorization
- 3.3.2. High Speed Response
- 3.3.3. Flexible Trend
- 3.3.4. Low Cost Trend
4. Performance Improvement
- 4.1. Characteristic Overview
- 4.1.1. Contrast Ratio
- 4.1.2. Viewing Angle
- 4.1.3. Intermediate Response
- 4.1.4. Scattered Liquid Crystal Orientation
- 4.2. Assignments to Conquer
- 4.2.1. IPS Facade Contrast Improvement
- 4.2.2. VA Viewing Angle Improvement
- 4.2.3. VA Intermediate Response Improvement
- 4.2.4. VA Scattered Orientation Improvement
5. LTPS Technology
- 5.1. 2¥im Pattern/Recrystallization Technology for High Integration
- 5.2. Low Cost Trend in LTPS
- 5.3. Off Electric Current Stabilization
- 5.4. Panel Manufacturing Technology
6. Touch Panel Technology
- 6.1. Overview
- 6.2. Electric Capacity Status of Conjugation Type
- 6.3. Electric Capacity TSP of Single Layer Type
- 6.4. Lead Detail
- 6.5. LCD Module and TSP Window Integration
7. Ink Jet Technology Application
- 7.1. Color Filter Formulation
- 7.2. Orientation Film Formulation
- 7.3. FPC Integrated Circuit Writing (Nano, Ag, etc.) Formulation
- 7.4. Photo resist Direct Spread Formulation
- 7.5. Direct Lead Wire Writing (Nano, Ag, etc.) Formulation
- 7.6. LCD Interior Photo Spacer Formulation
- 7.7. Micro lens Formulation
- 7.8. Back Light Reflection Pattern Formulation
8. Inverse Printing Technology Application
9. Glass slimming Equipment
- 9.1. Dip Type
- 9.2. Shower Type
10. Low Cost Back Light
- 10.1. Optical Parts Cut
- 10.2. Mold Case Cut
- 10.3. Module Technology Development
- 10.4. Display Quality Improvement
- 10.5. High Brightness Correspondence
- 10.6. Low Reflectivity
- 10.7. Mechanical Performance Improvement
- 10.8. Bonding Cost Cut
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