Samsung display co., ltd. (20240099095). TOUCH SENSING UNIT INTEGRATED DISPLAY DEVICE INCLUDING OUTGASSING HOLES simplified abstract

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TOUCH SENSING UNIT INTEGRATED DISPLAY DEVICE INCLUDING OUTGASSING HOLES

Organization Name

samsung display co., ltd.

Inventor(s)

Se-ho Kim of Cheonan-si (KR)

Wonkyu Kwak of Seongnam-si (KR)

Ji-eun Lee of Seoul (KR)

Yohan Kim of Seoul (KR)

Dong-Seop Park of Pyeongtaek-si (KR)

Kwangsik Lee of Cheonan-si (KR)

Jaesun Lee of Cheonan-si (KR)

Sungho Cho of Yongin-si (KR)

TOUCH SENSING UNIT INTEGRATED DISPLAY DEVICE INCLUDING OUTGASSING HOLES - A simplified explanation of the abstract

This abstract first appeared for US patent application 20240099095 titled 'TOUCH SENSING UNIT INTEGRATED DISPLAY DEVICE INCLUDING OUTGASSING HOLES

Simplified Explanation

The patent application describes a display device with multiple layers including a base layer, a circuit layer, a light emitting device layer, an organic layer, and a touch sensing unit. The layers are arranged in a specific manner to optimize the functionality of the display device.

  • The base layer of the display device includes both a display area and a non-display area, with insulation patterns overlapping the non-display area.
  • The organic layer is positioned on top of the light emitting device and overlaps the insulation patterns and the organic light emitting diode.
  • A portion of the touch signal lines also overlap the insulation patterns, enhancing the touch sensing capabilities of the device.

Potential Applications

The technology described in this patent application could be applied in various electronic devices such as smartphones, tablets, smartwatches, and other display screens that require touch sensitivity and high-quality visual output.

Problems Solved

This technology solves the problem of integrating touch sensing capabilities into display devices without compromising the quality of the display or the overall functionality of the device. By optimizing the arrangement of layers and components, the device can provide a seamless user experience.

Benefits

The benefits of this technology include improved touch sensitivity, enhanced display quality, and a more efficient design for electronic devices. Users can enjoy a more responsive touch interface without sacrificing the visual performance of the display.

Potential Commercial Applications

With the increasing demand for touch-enabled display devices, this technology has potential applications in the consumer electronics industry. Manufacturers of smartphones, tablets, and other electronic devices could benefit from incorporating this innovative display technology into their products.

Possible Prior Art

One possible prior art for this technology could be the development of touch-sensitive display devices with organic light emitting diodes (OLEDs). Companies like Samsung and LG have been at the forefront of OLED display technology, which could have influenced the design of this patented display device.

Unanswered Questions

How does this technology compare to existing touch-sensitive display devices on the market?

This article does not provide a direct comparison between this patented technology and other touch-sensitive display devices currently available. It would be helpful to understand the specific advantages and differences between this technology and existing products.

What are the potential challenges or limitations of implementing this technology in mass-produced electronic devices?

The article does not address any potential challenges or limitations that may arise when scaling up production of electronic devices using this patented display technology. It would be important to consider factors such as cost, manufacturing processes, and compatibility with existing technologies.


Original Abstract Submitted

a display device including a base layer, a circuit layer, a light emitting device layer, an organic layer, and a touch sensing unit. the base layer includes a display area and a non-display area. a plurality of insulation patterns overlaps the non-display area. the organic layer is disposed on the light emitting device and overlaps the plurality of insulation patterns and the organic light emitting diode. at least a portion of the plurality of touch signal lines overlaps the plurality of insulation patterns.