Boe technology group co., ltd. (20240306465). Display Panel and Display Apparatus simplified abstract

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Display Panel and Display Apparatus

Organization Name

boe technology group co., ltd.

Inventor(s)

Yu Tian of Beijing (CN)

Tianhao Lu of Beijing (CN)

Yang Li of Beijing (CN)

Qian Jin of Beijing (CN)

Qian Sun of Beijing (CN)

Dejiang Zhao of Beijing (CN)

Wei Huang of Beijing (CN)

Display Panel and Display Apparatus - A simplified explanation of the abstract

This abstract first appeared for US patent application 20240306465 titled 'Display Panel and Display Apparatus

The abstract describes a display panel with a first base substrate, a light emitting device layer with three light emitting devices in three sub-pixels, a thin film encapsulation layer, a color filter layer with light shielding patterns and color filter patterns, a color conversion layer with color conversion patterns, and a transmission pattern.

  • Display panel with advanced technology for improved image quality
  • Incorporates multiple layers for color filtering, light emission, and color conversion
  • Utilizes thin film encapsulation for protection and durability
  • Features specific patterns and sub-pixel arrangements for optimal performance
  • Enhances display panel efficiency and color accuracy

Potential Applications: - High-resolution displays in smartphones, tablets, and TVs - Medical imaging devices for accurate color representation - Automotive displays for clear visibility and color vibrancy

Problems Solved: - Improved color accuracy and image quality - Enhanced durability and protection of display components - Optimized performance for various display applications

Benefits: - Crisp and vibrant display quality - Long-lasting and durable technology - Enhanced color accuracy for a better viewing experience

Commercial Applications: Title: Advanced Display Panel Technology for Enhanced Image Quality This technology can be utilized in various commercial applications such as consumer electronics, medical devices, and automotive displays. The improved image quality and color accuracy make it ideal for high-end display products in the market.

Prior Art: Readers can explore prior art related to display panel technologies, color filtering methods, and thin film encapsulation techniques to understand the evolution of this innovative display panel design.

Frequently Updated Research: Researchers are constantly working on improving display panel technologies, color conversion methods, and thin film encapsulation materials to enhance the performance and efficiency of display panels. Stay updated on the latest advancements in this field to incorporate cutting-edge technologies into future products.

Questions about Display Panel Technology: 1. How does the color conversion layer impact the overall color accuracy of the display panel? The color conversion layer plays a crucial role in transforming the light emitted by the display into accurate and vibrant colors, enhancing the overall color accuracy of the panel.

2. What are the key factors to consider when designing a display panel with multiple layers for optimal performance? Designing a display panel with multiple layers requires careful consideration of factors such as light transmission, color filtering efficiency, and durability to ensure optimal performance and longevity of the technology.


Original Abstract Submitted

a display panel includes: a first base substrate; a light emitting device layer located at a side of the first base substrate, including three light emitting devices respectively located in three sub-pixels; a thin film encapsulation layer located at a side of the light emitting device layer away from the first base substrate; a color filter layer located at a side of the color conversion layer away from the first base substrate, and at least including a first light shielding pattern, a first color filter pattern and a second color filter pattern, wherein the first light shielding pattern defines a plurality of light transmitting areas; a color conversion layer located between the light emitting device layer and the color filter layer, and including a first color conversion pattern, a second color conversion pattern and a transmission pattern respectively located within three sub-pixels.