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Encyclopedia of Thermal Packaging cover

Table of Contents:

Chapter 1 Lighting Overview for Conventional and LED System
1.1. Lighting for General Illumination
1.2. Metrics for General Illumination
1.3. Conventional Lighting Systems and LED Lighting Basics

Chapter 2 LED Lighting Approaches, Packaging and System Considerations
2.1. LED Based Lighting Systems 12
2.2. LED Energy and Environmental Savings 13
2.3. LED Packaging Overview, Trends and Future Demands
2.4. LED Types
2.5. Advanced High Power LED Packaging
2.6. High Power Ceramic Based LED Packages
2.7. Second Level Assembly and Heat Spreading Boards
2.8. Encapsulants and Optical Extraction
2.9. Optical Losses in LED Packages
2.10. Optical Design Approaches
2.11. Phosphor Placement
2.12. Multi-Chip Modules

Chapter 3 Thermal Management of LEDs
3.1. Chip Scale Thermal Management
3.2. Predicting Hot Spots in LED Packages
3.3. Phosphor Down Conversion Quenching Effects in LEDs
3.4. Thermal Effects on Phosphor Packaging in LEDs
3.5. Effects of Phosphor Heating on LED Lighting Performance
3.6. Understanding Interactions in LED Systems: Optothermal Experiments

Chapter 4 Candidate Thermal Technologies for LED Applications
4.1. Heat Sink Technology
4.2. Small-Scale Rotary Fans
4.3. Thermoelectric Technology
4.4. Piezo Fan Technology
4.5. Synthetic Jet Technology
4.6. Liquid Cooling of LEDs

Chapter 5 Organic LED (OLED) Technology
5.1. Overview of the Emerging OLED Technology and Comparison to LEDs

Chapter 6 LED Packages and Systems: Design and Modeling Approaches
6.1. LED Package Design (Single and Multiple Die)
6.2. LED System Design

Chapter 7 Closing Thoughts