Meta platforms technologies, llc (20240196685). HYBRID EMISSIVE DISPLAYS simplified abstract

From WikiPatents
Revision as of 08:18, 13 June 2024 by Wikipatents (talk | contribs) (Creating a new page)
(diff) ← Older revision | Latest revision (diff) | Newer revision → (diff)
Jump to navigation Jump to search

HYBRID EMISSIVE DISPLAYS

Organization Name

meta platforms technologies, llc

Inventor(s)

Yun Wang of Bellevue WA (US)

HYBRID EMISSIVE DISPLAYS - A simplified explanation of the abstract

This abstract first appeared for US patent application 20240196685 titled 'HYBRID EMISSIVE DISPLAYS

Simplified Explanation: The patent application describes a hybrid emissive display that includes different types of subpixels and digital driving components to control them.

  • The hybrid emissive display may consist of a first LED subpixel, a second OLED subpixel, and a third OLED or LED subpixel.
  • At least one digital driving component is used to digitally drive these subpixels, potentially through pulse width modulation.
  • The digital driving component may be integrated into a common backplane, such as a CMOS backplane, to efficiently control the subpixels.
  • This technology allows for the fabrication of hybrid emissive displays with a combination of blue LEDs and red OLEDs.

Key Features and Innovation:

  • Hybrid emissive display with different types of subpixels.
  • Digital driving components for precise control of subpixels.
  • Integration of digital driving components into a common backplane.
  • Fabrication of displays with a mix of LED and OLED subpixels.

Potential Applications: This technology can be used in various display applications such as TVs, monitors, smartphones, and wearable devices.

Problems Solved:

  • Efficient control of different types of subpixels in a hybrid emissive display.
  • Fabrication of displays with improved color accuracy and brightness.

Benefits:

  • Enhanced display performance with a mix of LED and OLED subpixels.
  • Energy-efficient operation through digital driving components.
  • Improved color reproduction and brightness levels.

Commercial Applications: Potential commercial applications include consumer electronics, automotive displays, and signage industry.

Prior Art: Readers can explore prior patents related to hybrid emissive displays, LED/OLED technology, and display driving components.

Frequently Updated Research: Stay updated on advancements in LED, OLED, and display technology for potential improvements in hybrid emissive displays.

Questions about Hybrid Emissive Displays: 1. How does the integration of different subpixels improve display performance? 2. What are the advantages of using digital driving components in hybrid emissive displays?


Original Abstract Submitted

according to examples, a hybrid emissive display may include a first �led subpixel, a second �oled subpixel, and a third �oled or �led subpixel. the hybrid emissive display may also include at least one digital driving component to digitally drive the first �led subpixel, the second �oled subpixel, and the third �oled or �led subpixel. for instance, the subpixels may be driven through pulse width modulation. in this regard, the �led subpixels and the �oled subpixels in a hybrid emissive display may be driven through at least one digital driving component that may be provided in a common backplane, which may be a cmos backplane. as a result, for instance, hybrid emissive displays may be fabricated to include blue �leds and red �oleds.