18276074. DISPLAY DEVICE, DISPLAY MODULE, AND ELECTRONIC DEVICE simplified abstract (SEMICONDUCTOR ENERGY LABORATORY CO., LTD.)

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DISPLAY DEVICE, DISPLAY MODULE, AND ELECTRONIC DEVICE

Organization Name

SEMICONDUCTOR ENERGY LABORATORY CO., LTD.

Inventor(s)

Shunpei Yamazaki of Setagaya (JP)

Kenichi Okazaki of Atsugi (JP)

Shingo Eguchi of Atsugi (JP)

Ryota Hodo of Atsugi (JP)

DISPLAY DEVICE, DISPLAY MODULE, AND ELECTRONIC DEVICE - A simplified explanation of the abstract

This abstract first appeared for US patent application 18276074 titled 'DISPLAY DEVICE, DISPLAY MODULE, AND ELECTRONIC DEVICE

Simplified Explanation

The high-resolution display device described in the patent application includes light-emitting devices, coloring layers, and insulators to produce white light and transmit visible light of different colors. Here are some key points to explain the innovation:

  • The display device consists of first and second light-emitting devices that emit white light.
  • First and second coloring layers are positioned to overlap with the respective light-emitting devices and transmit visible light of different colors.
  • The first light-emitting device includes a first conductive layer and a first light-emitting layer, while the second light-emitting device includes a second conductive layer and a second light-emitting layer.
  • Insulators are used to isolate and protect the light-emitting devices, with the first and second insulators positioned over a third insulator.
  • The third insulator covers the end portions of the first and second conductive layers.

Potential Applications

The technology described in the patent application could be applied in:

  • High-resolution displays for electronic devices
  • Lighting fixtures for color-changing effects
  • Medical imaging equipment for precise color representation

Problems Solved

This technology addresses the following issues:

  • Ensuring accurate color reproduction in displays
  • Protecting and isolating light-emitting components
  • Enhancing the resolution and brightness of displays

Benefits

The benefits of this technology include:

  • Improved color accuracy and vibrancy in displays
  • Enhanced durability and longevity of light-emitting devices
  • Higher resolution and brightness for better visual quality

Potential Commercial Applications

The potential commercial applications of this technology could include:

  • Manufacturing of high-end smartphones and tablets
  • Production of professional-grade monitors and TVs
  • Development of specialized medical and scientific equipment

Possible Prior Art

One possible prior art for this technology could be the use of insulators in display devices to protect and isolate light-emitting components. Additionally, the concept of coloring layers overlapping with light-emitting devices to transmit different colors may have been explored in previous display technologies.

Unanswered Questions

How does this technology compare to existing high-resolution display devices on the market?

The article does not provide a direct comparison between this technology and existing high-resolution display devices. Further research and testing would be needed to evaluate the performance and features of this innovation in comparison to current market offerings.

What are the potential manufacturing challenges associated with implementing this technology on a large scale?

The article does not address the potential manufacturing challenges that may arise when scaling up production of this high-resolution display device. Factors such as cost, production efficiency, and quality control could impact the commercial viability of this technology. Additional research and development would be required to assess and address these challenges.


Original Abstract Submitted

A high-resolution display device is provided. The display device includes first and second light-emitting devices, first and second coloring layers, and first, second, and third insulators; the first coloring layer is positioned to overlap with the first light-emitting device; the second coloring layer is positioned to overlap with the second light-emitting device; the first light-emitting device and the second light-emitting device have a function of emitting white light; the first coloring layer and the second coloring layer have a function of transmitting visible light of different colors; the first light-emitting device includes a first conductive layer and a first light-emitting layer over the first conductive layer; the second light-emitting device includes a second conductive layer and a second light-emitting layer over the second conductive layer; the first insulator is in contact with at least part of a side surface of the first light-emitting device; the second insulator is in contact with at least part of a side surface of the second light-emitting device; the first insulator and the second insulator are positioned over the third insulator; and the third insulator is positioned to cover an end portion of the first conductive layer and an end portion of the second conductive layer.