Boe technology group co., ltd. (20240212578). LIGHT-EMITTING SUBSTRATE AND DISPLAY DEVICE simplified abstract

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LIGHT-EMITTING SUBSTRATE AND DISPLAY DEVICE

Organization Name

boe technology group co., ltd.

Inventor(s)

Shunhang Zhang of Beijing (CN)

Kai Hou of Beijing (CN)

Liwei Liu of Beijing (CN)

Hongrun Wang of Beijing (CN)

Hui Zhang of Beijing (CN)

Changfeng Li of Beijing (CN)

Yunsik Im of Beijing (CN)

LIGHT-EMITTING SUBSTRATE AND DISPLAY DEVICE - A simplified explanation of the abstract

This abstract first appeared for US patent application 20240212578 titled 'LIGHT-EMITTING SUBSTRATE AND DISPLAY DEVICE

The patent application describes a light-emitting substrate, a display device, and an electronic apparatus. The light-emitting substrate consists of a base substrate, light-emitting units, and first driving signal line groups. Each light-emitting unit comprises light-emitting sub-units, with the first driving signal line connected to the first electrode terminal of the light-emitting sub-unit.

  • Translation distance in the column direction is provided between adjacent light-emitting units in different columns, with the distance being smaller than the spacing between two adjacent light-emitting units in the same column.
  • The first driving signal line group alternately passes through light-emitting units in adjacent columns, providing a unique driving configuration.
  • Each light-emitting unit is passed by two adjacent first driving signal line groups, enhancing the efficiency of the driving mechanism.

Potential Applications: - This technology can be applied in the manufacturing of high-resolution displays for various electronic devices. - It can be used in the development of advanced lighting systems for commercial and residential purposes.

Problems Solved: - Efficient driving of light-emitting units in a substrate with improved translation distances. - Enhanced display performance and resolution due to the unique driving signal line configuration.

Benefits: - Improved display quality and resolution. - Energy-efficient operation of light-emitting units. - Enhanced overall performance of electronic devices utilizing this technology.

Commercial Applications: Title: Advanced Display Technology for High-Resolution Electronic Devices This technology can be utilized in the production of smartphones, tablets, TVs, and other electronic devices requiring high-resolution displays. The market implications include improved visual experiences for consumers and increased demand for devices with advanced display capabilities.

Questions about the Technology: 1. How does the unique driving signal line configuration improve the performance of the light-emitting substrate? - The driving signal line configuration allows for efficient and precise control of the light-emitting units, resulting in enhanced display quality and resolution.

2. What are the potential cost implications of implementing this technology in electronic devices? - The cost implications may vary depending on the scale of production and the specific requirements of the electronic devices. However, the benefits of improved display performance and energy efficiency could outweigh the initial investment in the technology.


Original Abstract Submitted

a light-emitting substrate, a display device, and an electronic apparatus are provided. the light-emitting substrate includes a base substrate, light-emitting units, and first driving signal line groups; the light-emitting unit includes light-emitting sub-units; the first driving signal line is configured to be connected to the first electrode terminal of the light-emitting sub-unit; a translation distance in the column direction is provided between a k-th light-emitting unit in the n-th column and a k-th light-emitting unit in the (n+1)-th column, and the translation distance is smaller than a spacing between two adjacent light-emitting units in a same column in the column direction; the first driving signal line group is between the n-th column of light-emitting units and the (n+1)-th column of light-emitting units and alternately passes through light-emitting units in the n-th column and the (n+1)-th column; and each light-emitting unit is passed by two adjacent first driving signal line groups.