18518608. DISPLAY DEVICE AND METHOD OF DRIVING THE SAME simplified abstract (Samsung Display Co., Ltd.)

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DISPLAY DEVICE AND METHOD OF DRIVING THE SAME

Organization Name

Samsung Display Co., Ltd.

Inventor(s)

Sung Hwan Kim of Yongin-si (KR)

DISPLAY DEVICE AND METHOD OF DRIVING THE SAME - A simplified explanation of the abstract

This abstract first appeared for US patent application 18518608 titled 'DISPLAY DEVICE AND METHOD OF DRIVING THE SAME

Simplified Explanation

The abstract describes a display device with multiple pixels, each connected to scan lines, data lines, and sensing lines. Each pixel has a corresponding sensing channel with a sampling capacitor. During a specific period, each sensing channel stores a sampling signal in its capacitor.

  • Each pixel in the display device is connected to scan lines, data lines, and sensing lines.
  • Each pixel has a corresponding sensing channel with a sampling capacitor.
  • During a specific period, the sensing channels store sampling signals in their capacitors.

Potential Applications

The technology described in this patent application could be used in various display devices such as smartphones, tablets, monitors, and televisions.

Problems Solved

This technology helps in improving the efficiency and accuracy of sensing signals in display devices, leading to better image quality and performance.

Benefits

The benefits of this technology include enhanced display quality, improved touch sensitivity, and overall better user experience with electronic devices.

Potential Commercial Applications

The technology could be applied in the manufacturing of consumer electronics, medical devices, automotive displays, and other industries where high-quality display technology is required.

Possible Prior Art

One possible prior art could be the use of sampling capacitors in display devices to improve signal sensing and processing.

Unanswered Questions

How does this technology impact power consumption in display devices?

This article does not address the potential impact of this technology on the power consumption of display devices. Implementing additional sensing channels and capacitors may increase power requirements, but the efficiency gains in signal processing could potentially offset this.

Are there any limitations to the scalability of this technology in larger display screens?

The article does not discuss any limitations or challenges that may arise when implementing this technology in larger display screens. It would be important to consider how the increased number of pixels and sensing channels could affect the overall performance and functionality of the display device.


Original Abstract Submitted

A display device may include: a first pixel coupled to a first scan line, a first data line, and a first sensing line; a second pixel coupled to the first scan line, a second data line, and a second sensing line; a first sensing channel corresponding to the first pixel and including a first sampling capacitor; and a second sensing channel corresponding to the second pixel and including a second sampling capacitor. During a first period, the first sensing channel may store a first sampling signal in the first sampling capacitor while the first sensing line is coupled to the first sensing channel, and the second sensing channel may store a second sampling signal in the second sampling capacitor while the second sensing line is disconnected from the second sensing channel.