Lg display co., ltd. (20240224664). DISPLAY DEVICE simplified abstract

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DISPLAY DEVICE

Organization Name

lg display co., ltd.

Inventor(s)

MinJee Kim of Seoul (KR)

KwanSoo Kim of Seoul (KR)

JongWoo Park of Gyeonggi-do (KR)

SeokHyun Kim of Seoul (KR)

DISPLAY DEVICE - A simplified explanation of the abstract

This abstract first appeared for US patent application 20240224664 titled 'DISPLAY DEVICE

Simplified Explanation: The patent application relates to a display device with a light emitting layer overlapping a cathode hole in a specific shape to maximize light transmission without using a laser.

Key Features and Innovation:

  • Display device with a light emitting layer overlapping a cathode hole
  • Cathode hole in an inverted triangle or rhombus shape for increased aperture ratio and transmittance
  • No need for a laser to achieve high light transmission in the first optical area

Potential Applications: This technology could be used in various display devices such as TVs, monitors, smartphones, and tablets.

Problems Solved: This technology addresses the challenge of maximizing light transmission in display devices without the use of a laser.

Benefits:

  • Improved light transmission
  • Enhanced display quality
  • Cost-effective solution

Commercial Applications: The technology could be applied in the consumer electronics industry for manufacturing high-quality display devices with improved performance.

Questions about Display Devices: 1. How does the shape of the cathode hole impact light transmission in the display device? 2. What are the advantages of using a light emitting layer overlapping a cathode hole in display technology?

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Original Abstract Submitted

embodiments relate to a display device, and more particularly, to a display device including a light emitting layer overlapping a cathode hole positioned in a first optical area, which may have a light transmission structure without using a laser, and may have a cathode hole in an inverted triangle shape or a rhombus shape to maximize the aperture ratio and transmittance in the first optical area.