PDP Technology Report
Summary
Plasma panel displays have tremendous appeal to both the consumer and industrial market. The 2007 PDP Technology Report is a 200+ page comprehensive review of the evolution of plasma technology and where it is going. DisplaySearch's thorough analysis of PDP device, process and module technologies allows suppliers, manufacturers, brands, financial analysts and other companies in the plasma market to make well-informed strategic decisions.
What's next?
With the 2007 PDP Technology Report you will learn about the impact of new technology advancements, including higher luminous efficiencies of up to 10 lumens per watt, on cost and performance, including cost forecasts through 2011.
Analyst Information
Yoonsung Chung
Director, FPD Material & Technology Analysis
Subscription Package
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Outline
History of Plasma Display
Overview of Plasma Displays
- Structure of PDP
- Introduction of PDP
- Characteristics of PDP Technology
- PDP Panel Structure
- PDP Circuit Structure
- Mechanics
- Optical Filter
- Driving Schemes
- Discharging Mechanism
- Principle of Driving Scheme
- Grayscale Expression
- Software Algorithm for Improving Picture Quality
- Luminous Efficacy
- PDP Performance
- Optical Performance
- Sensitive Image Quality
- Reliability and EMI
PDP Materials and Costs
- PDP Panel Materials
- Glass
- Dielectric Layer
- Electrodes
- Barrier Rib
- Indium Tin Oxide (ITO)
- MgO
- Phosphor
- PDP Circuit Materials
- Transistor
- FET (Field Effect Transistor)
- Diode
- MLCC (Multilayer Ceramic Chip Capacitor)
- PCB (Printed Circuit Board)
- Connector
- Electrolytic Capacitor
- Film Capacitor
- Array Resistance
- Chip Resistance
- Ferrite Bead
- PDP Material Cost
- PDP Material Cost Reduction History
- Driving A
- Driving B
- Driver IC
- Logic
- Mechanics
PDP Process Overview
- Front Glass
- ITO (Transparency Electrode) Coating & Patterning
- Bus Electrode
- Dielectric Layer
- MgO Coating
- Front Glass Cutting
- Rear Glass Process
- Address Patterning
- Barrier Rib: Sand Blaster Method
- Barrier Rib: Etching Method
- Phosphor
- Frit Coating and Phosphor Baking
- Assembly for the Front and Rear Glass
- Sealing and Exhaust Process
- Aging and Lighting Inspection
- Module Process
- Interconnection Process
- Chassis and Module Assembly
- The First Adjustment Inspection and Module Running Inspection
- Second Adjustment Inspection and Packing
Current Technology of PDP
- Panel
- Development of Panel Structure
- Hero Structure Using High Xe Gas Mixture
- High-Luminance-Efficacy Barrier-Rib Fish Bone Structure
- Pioneer Waffle Structure
- New Type Structure from TCA
- Luminous Characteristics Analysis of a New SDR Cell Structure
- High-Luminance and Highly Luminous-Efficient with DelTA Cell Structure
- High-Frequency Drive of High-Xe-Panel
- New Electrode Structure to Improve Discharge Characteristics in AC PDPs
- Eu3+ Activated Red Emitting Phosphors
- Fourth Gen PDPs: High Image Quality and Low Power Consumption
- Advanced Complementary Colored Panel
- ITO-Less in 80” 1080p PDP
- Film Filter
- Circuit
- Single Scan
- ERC Circuit (Energy Recovery Circuit)
- Switching Components
- Driving Waveform
- TERES Driving Method
- 50 Hz Flicker Reduction for PDP
- High-Performance with Extended ALIS Technology
- High Luminous Efficacy and High Display Quality with CLEAR Driving
- Virtual Pixel Technique for Doubling the PDP Resolution of Moving Images
- Highly-Efficient DelTA Cell Structure Using New Sustain Waveforms
- ALIS Method for High-Resolution Color PDPs
- Reduction of Power Consumption in Address Driver ICs for PDP by Power Distributing Method
- Improving EMI
- Manufacturing Process
- Barrier Ribs Formed for PDP by Rolling of Green Tape
- Low-Cost Barrier Rib and Address Electrode Formation for a 42” High-Definition PDP
- Photolithographic Method of Patterning Barrier Ribs for PDP
- Echo Design
- Status of Cost
- High Resolution 1080p Technology Development Trends
Future PDP Technology
- Technology Development Directions in 3-Electrode Surface Discharge Structure
- Cost Reduction Directions in 3-Electrode Surface Discharge Structure
- Driver ICs
- Glass
- Optical Filter
- Efforts for Luminance Efficacy Improvement
- Various Proposals for the Luminance Efficacy Improvements
- 10 lm/W PDP
- Next Generation Process Technology
- Ink-Jet Pattering
- Off-Set Technologies
- Direct Patterning Technique
- Impact of 5 Lumens per Watt on Cost
- Impact of 10 Lumens per Watt on Cost
Company Profiles
- Hitachi (FHP)
- Pioneer
- Panasonic
- LG Electronics
- Samsung SDI
PDP Market Outlook
- PDP Supply and Supply/Demand
- PDP Module and TV Pricing
- PDP Module Shipment Forecast
- PDP TV Shipment Forecast
- Annual PDP Revenue Forecast
- PDP Fab Activity
- PDP Capacity Growth
- Regional Capacity Share
- PDP Supply/Demand
- Long-Term Supply/Demand
- PDP ASP Forecast by Size/Resolution
- PDP ASPs by Application
- PDP ASP by Resolution
- PDP Shipments by Supplier
- Q/Q PDP Shipment Growth by Supplier
- PDP Revenues by Supplier
- HD Share by Supplier
- Hitachi’s Shipments
- LGE’s Shipments
- Matsushita’s Shipments
- Orion’s Shipments
- Pioneer’s Shipments
- Samsung SDI
- Long-Term PDP TV Shipment Forecast
- Long-Term PDP TV Revenue Forecast
- PDP TV ASP Forecasts
- PDP TV Revenues, Share and Growth by Brand
- Public Display Shipments by Supplier
- Public Display Unit Share By Supplier






