18626983. ARRAY SUBSTRATE, DISPLAY APPARATUS AND CONTROL METHOD THEREOF simplified abstract (BEIJING BOE DISPLAY TECHNOLOGY CO., LTD.)

From WikiPatents
Revision as of 05:16, 26 July 2024 by Wikipatents (talk | contribs) (Creating a new page)
(diff) ← Older revision | Latest revision (diff) | Newer revision → (diff)
Jump to navigation Jump to search

ARRAY SUBSTRATE, DISPLAY APPARATUS AND CONTROL METHOD THEREOF

Organization Name

BEIJING BOE DISPLAY TECHNOLOGY CO., LTD.

Inventor(s)

Xiao Wang of Beijing (CN)

Yan Yan of Beijing (CN)

Yu Ma of Beijing (CN)

ARRAY SUBSTRATE, DISPLAY APPARATUS AND CONTROL METHOD THEREOF - A simplified explanation of the abstract

This abstract first appeared for US patent application 18626983 titled 'ARRAY SUBSTRATE, DISPLAY APPARATUS AND CONTROL METHOD THEREOF

The abstract describes an array substrate with a display area and a bonding region. The display area is divided into a distal region, a proximal region, and a middle region. The substrate includes a base, a common electrode in the display area, connecting leads, a conductive frame surrounding the display area, and common signal lines connected to different regions of the common electrode.

  • The array substrate has a display area divided into distal, proximal, and middle regions.
  • It includes a common electrode, connecting leads, a conductive frame, and common signal lines.
  • The common signal lines are connected to different portions of the common electrode in the various regions.
  • The connecting lead is coupled to the first common signal line.
  • The connecting lead and the common electrode in the distal region are connected to the conductive frame.

Potential Applications: - This technology can be used in the manufacturing of display panels for electronic devices. - It can enhance the performance and functionality of LCD screens and touchscreens.

Problems Solved: - Improved connectivity and signal distribution within the array substrate. - Enhanced structural integrity and durability of the display area.

Benefits: - Increased reliability and efficiency of electronic displays. - Better overall performance and longevity of the array substrate.

Commercial Applications: Title: Enhanced Array Substrate Technology for Display Panels This technology can be utilized in the production of smartphones, tablets, monitors, and other electronic devices with display screens. It can lead to more advanced and reliable display panels, attracting manufacturers looking to improve the quality of their products.

Prior Art: Readers can explore prior patents related to array substrates, common electrodes, and display panel technologies to gain a deeper understanding of the evolution of this field.

Frequently Updated Research: Researchers are constantly exploring new materials and manufacturing techniques to further enhance the performance and efficiency of array substrates in display technology.

Questions about Array Substrate Technology: 1. How does this technology improve the functionality of electronic displays? - This technology enhances signal distribution and structural integrity within the array substrate, leading to better overall performance of electronic displays. 2. What are the potential applications of this technology beyond display panels? - This technology can also be applied in other electronic devices requiring reliable signal distribution and connectivity.


Original Abstract Submitted

An array substrate has a display area and a bonding region. The display area includes a distal region, a proximal region, and a middle region therebetween. The array substrate includes a base, a common electrode located in the display area, a connecting lead disposed outside the distal region, a conductive frame at least partially surrounding the display area, and at least one first common signal line, at least one second common signal line and at least one third common signal line. The first common signal line, the second common signal line and the third common signal line are respectively coupled to portions of the common electrode located in the distal region, the proximal region and the middle region. The first common signal line is coupled to the connecting lead. The connecting lead and the portion of the common electrode located in the distal region are coupled to the conductive frame.