18279048. DISPLAY SUBSTRATE AND DISPLAY APPARATUS simplified abstract (BOE TECHNOLOGY GROUP CO., LTD.)

From WikiPatents
Jump to navigation Jump to search

DISPLAY SUBSTRATE AND DISPLAY APPARATUS

Organization Name

BOE TECHNOLOGY GROUP CO., LTD.

Inventor(s)

Xiaonan Liu of Beijing (CN)

Jun Li of Beijing (CN)

Changsoon Ji of Beijing (CN)

Tinghua Shang of Beijing (CN)

Qian Xu of Beijing (CN)

DISPLAY SUBSTRATE AND DISPLAY APPARATUS - A simplified explanation of the abstract

This abstract first appeared for US patent application 18279048 titled 'DISPLAY SUBSTRATE AND DISPLAY APPARATUS

The present disclosure introduces a display substrate and a display apparatus in the field of display technology, aiming to solve existing technical problems. The display substrate consists of a base substrate with sub-pixels arranged in an array at intervals. Adjacent sub-pixels are separated by a spacer region, which includes a functional first spacer region and a non-functional second spacer region. Some functional positions within the spacer region have functional parts. The width of the first spacer region between adjacent sub-pixels is greater than that of the second spacer region. The width of the spacer region is equal to the shortest distance between the boundaries of the two corresponding sub-pixels.

  • The display substrate includes a unique spacer region design with functional and non-functional parts.
  • The spacer region ensures proper spacing between sub-pixels to enhance display quality.
  • The width variation of the spacer regions contributes to improved performance of the display substrate.
  • Functional positions within the spacer region accommodate functional parts for enhanced functionality.
  • The design of the spacer region optimizes the arrangement of sub-pixels for better display output.

Potential Applications: - This technology can be applied in various display devices such as LCD screens, OLED panels, and LED displays. - It can be used in smartphones, tablets, televisions, monitors, and other electronic devices requiring high-quality displays.

Problems Solved: - Addresses issues related to spacing and arrangement of sub-pixels on display substrates. - Improves display quality and performance by optimizing the design of the spacer region.

Benefits: - Enhanced display quality and resolution. - Improved functionality and performance of display devices. - Optimal spacing and arrangement of sub-pixels for better visual output.

Commercial Applications: Title: Innovative Display Substrate Technology for Enhanced Visual Performance This technology can be utilized in the manufacturing of consumer electronics, medical devices, automotive displays, and industrial monitors to enhance visual performance and user experience.

Questions about Display Substrate Technology: 1. How does the unique spacer region design contribute to the improved performance of the display substrate? - The spacer region design ensures proper spacing between sub-pixels, enhancing display quality and resolution. 2. What are the potential applications of this technology beyond consumer electronics? - This technology can also be applied in medical devices, automotive displays, and industrial monitors for enhanced visual performance.


Original Abstract Submitted

The present disclosure provides a display substrate and a display apparatus, belongs to the field of display technology, and at least partially solves one existing technical problem. The display substrate includes a base substrate, and sub-pixels in an array at intervals on the base substrate; wherein the adjacent sub-pixels are provided with a spacer region therebetween; the spacer region includes a first spacer region having a functional position, and a second spacer region having no functional position; at least some functional positions are provided with functional parts; and a width of the first spacer region between two adjacent sub-pixels arranged along the first direction or the second direction is greater than that of the second spacer region between two adjacent sub-pixels arranged along the same direction; wherein a width of the spacer region is equal to a shortest distance between boundaries of the two sub-pixels corresponding to the spacer region.