18427719. INPUT SENSING UNIT AND DISPLAY DEVICE HAVING THE SAME simplified abstract (Samsung Display Co., LTD.)

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INPUT SENSING UNIT AND DISPLAY DEVICE HAVING THE SAME

Organization Name

Samsung Display Co., LTD.

Inventor(s)

Dongjin Moon of Cheonan-si (KR)

Yeri Jeong of Suwon-si (KR)

InYoung Han of Hwaseong-si (KR)

INPUT SENSING UNIT AND DISPLAY DEVICE HAVING THE SAME - A simplified explanation of the abstract

This abstract first appeared for US patent application 18427719 titled 'INPUT SENSING UNIT AND DISPLAY DEVICE HAVING THE SAME

The sensing unit described in the patent application consists of a first conductive layer with a first line portion containing a first auxiliary sensing line, a second auxiliary sensing line, and a connection line, an insulating layer, and a second conductive layer on top of the insulating layer. The second conductive layer includes an electrode portion with a first sensing pattern and a second sensing pattern, as well as a second line portion with a first sensing line overlapping the first auxiliary sensing line and connected to the first sensing pattern, and a second sensing line overlapping the second auxiliary sensing line. The first sensing line is positioned between the second sensing pattern and the second sensing line, and the connection line crosses the first sensing line in a plan view, connecting the second sensing line to the second sensing pattern through contact holes in the insulating layer.

  • The sensing unit includes a first conductive layer with auxiliary sensing lines and a connection line, an insulating layer, and a second conductive layer with sensing patterns and sensing lines.
  • The first sensing line overlaps the first auxiliary sensing line and connects to the first sensing pattern, while the second sensing line overlaps the second auxiliary sensing line.
  • The connection line crosses the first sensing line and connects the second sensing line to the second sensing pattern through contact holes in the insulating layer.
  • The design allows for precise sensing and connection between different components of the sensing unit.
  • This innovation enhances the functionality and accuracy of sensing technology in various applications.

Potential Applications

The technology described in the patent application could be applied in touchscreens, pressure sensors, and other devices requiring precise sensing capabilities.

Problems Solved

This technology addresses the need for accurate and reliable sensing in electronic devices, improving overall performance and user experience.

Benefits

The benefits of this technology include enhanced sensitivity, improved connectivity, and increased efficiency in sensing applications.

Commercial Applications

Title: Advanced Sensing Technology for Enhanced Device Performance This technology could be utilized in smartphones, tablets, wearable devices, and automotive electronics to improve touch sensitivity, pressure detection, and overall user interaction.

Prior Art

Further research can be conducted in the field of sensing technology, particularly in the development of advanced sensing units for electronic devices.

Frequently Updated Research

Researchers are continually exploring new methods to enhance sensing technology for various applications, including advancements in materials and design for improved performance.

Questions about Sensing Technology

How does this sensing unit improve accuracy in touchscreens and pressure sensors?

The sensing unit's design allows for precise sensing and connection between different components, leading to enhanced accuracy in touchscreens and pressure sensors.

What are the potential challenges in implementing this technology in commercial devices?

One potential challenge could be the integration of the sensing unit into existing device designs without compromising other functionalities.


Original Abstract Submitted

A sensing unit including a first conductive layer including a first line portion including a first auxiliary sensing line, a second auxiliary sensing line, and a connection line, an insulating layer and a second conductive layer disposed on the insulating layer. The second conductive layer includes an electrode portion including a first sensing pattern and a second sensing pattern and a second line portion including a first sensing line overlapping the first auxiliary sensing line and connected to the first sensing pattern and a second sensing line overlapping the second auxiliary sensing line. The first sensing line is disposed between the second sensing pattern and the second sensing line, the connection line does not overlap the first auxiliary sensing line, crosses the first sensing line in a plan view, and connects the second sensing line to the second sensing pattern through contact holes defined through the insulating layer.