17974639. OLED DISPLAY PANEL simplified abstract (Shenzhen China Star Optoelectronics Semiconductor Display Technology Co., Ltd.)

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OLED DISPLAY PANEL

Organization Name

Shenzhen China Star Optoelectronics Semiconductor Display Technology Co., Ltd.

Inventor(s)

Zhijun Wan of Shenzhen (CN)

Jinchuan Li of Shenzhen (CN)

Weiran Cao of Shenzhen (CN)

OLED DISPLAY PANEL - A simplified explanation of the abstract

This abstract first appeared for US patent application 17974639 titled 'OLED DISPLAY PANEL

Simplified Explanation

The OLED display panel described in the patent application includes various layers such as a driving circuit layer, a light-emitting functional layer, a cathode layer, and a conductive layer. These layers are arranged in a specific sequence in the overlapping area of the panel.

  • The driving circuit layer, first conductive layer, second conductive layer, electron transport layer, electron injection layer, and cathode layer are stacked sequentially in the overlapping area.
  • The first conductive layer has protrusions that disconnect the electron transport layer and electron injection layer, allowing the cathode layer to be in contact with the protrusions.

Potential Applications

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

  • OLED displays for electronic devices
  • Lighting panels for commercial and residential use

Problems Solved

This technology helps in:

  • Improving the efficiency and performance of OLED displays
  • Enhancing the overall brightness and color accuracy of the display

Benefits

The benefits of this technology include:

  • Better image quality and contrast ratio
  • Reduced power consumption and longer lifespan of OLED displays

Potential Commercial Applications

The potential commercial applications of this technology could be in:

  • Smartphone and tablet displays
  • Television screens and monitors

Possible Prior Art

One possible prior art could be the use of similar layer arrangements in OLED display panels to improve performance and efficiency.

Unanswered Questions

How does this technology compare to existing OLED display panel designs in terms of cost-effectiveness?

The article does not provide information on the cost implications of implementing this technology compared to traditional OLED display panel designs.

What impact does this technology have on the overall thickness of the OLED display panel?

The article does not address how the addition of these specific layers in the overlapping area affects the thickness of the OLED display panel.


Original Abstract Submitted

An OLED display panel comprises an overlapping area, and further includes a driving circuit layer, a light-emitting functional layer, a cathode layer, and a conductive layer. In the overlapping area, a terminal of the driving circuit layer, a first conductive layer and a second conductive layer of the conductive layer, an electron transport layer and an electron injection layer of the light-emitting functional layer, and the cathode layer are disposed sequentially from bottom to top. The first conductive layer includes a plurality of protrusions. Each of the electron transport layer and the electron injection layer is disconnected at the protrusions, and the cathode layer is in contact with the protrusions.