18521914. SYSTEMS AND METHODS FOR IMPROVED OPTICAL SYSTEMS simplified abstract (Meta Platforms Technologies, LLC)

From WikiPatents
Jump to navigation Jump to search

SYSTEMS AND METHODS FOR IMPROVED OPTICAL SYSTEMS

Organization Name

Meta Platforms Technologies, LLC

Inventor(s)

Kiseung Bang of Bothell WA (US)

Murat A. Yokus of Kirkland WA (US)

Muhammed Talha Agcayazi of Bothell WA (US)

Ahmet Mesut Alpkilic of Seattle WA (US)

Sadhana Devulapalli of Foster City CA (US)

Bikash Mishra of San Mateo CA (US)

Suma Manoraj of Santa Clara CA (US)

Priyankha Bhalasubbramanian of Sunnyvale CA (US)

Vidya Srinivasan of Sunnyvale CA (US)

Benjamin Arthur Kevess Cohen of San Francisco CA (US)

Shyamal Jitendrakumar Shah of Wesley Chapel FL (US)

Ye Yin of Pleasanton CA (US)

Wei Huang of San Diego CA (US)

Yasuo Morimoto of Cupertino CA (US)

Boon Shiu of Palo Alto CA (US)

Jiang Zhu of Cupertino CA (US)

SYSTEMS AND METHODS FOR IMPROVED OPTICAL SYSTEMS - A simplified explanation of the abstract

This abstract first appeared for US patent application 18521914 titled 'SYSTEMS AND METHODS FOR IMPROVED OPTICAL SYSTEMS

Simplified Explanation

The abstract describes a display system with a waveguide coupler, a method for measuring skin hair coverage, a method for identifying harmful messages in public forums, and a system with a transparent conductive material forming an antenna.

  • The display system includes a light source and a waveguide coupler with multiplexed volumetric Bragg gratings for light coupling.
  • The method for measuring skin hair coverage involves using imaging techniques to analyze a user's skin surface region from different angles.
  • The method for identifying harmful messages in public forums aims to detect and address potentially harmful content.
  • The system with a transparent conductive material forms an antenna on a substrate for various applications.

Potential Applications

The technology described in the patent application could be applied in:

  • Augmented reality displays
  • Skin analysis and beauty industry
  • Social media content moderation
  • Wireless communication devices

Problems Solved

The technology addresses issues such as:

  • Efficient light coupling in display systems
  • Accurate skin analysis for personalized skincare
  • Ensuring online safety and reducing harmful content
  • Enhancing antenna performance in electronic devices

Benefits

The benefits of this technology include:

  • Improved display quality and efficiency
  • Enhanced skincare analysis and treatment recommendations
  • Safer online environments with reduced harmful content
  • Better wireless communication and connectivity

Potential Commercial Applications

A potential commercial application for this technology could be in:

  • Display technology manufacturing
  • Beauty and skincare industry
  • Social media platforms
  • Telecommunications and electronics industry

Possible Prior Art

One possible prior art for this technology could be:

  • Existing waveguide coupler designs in display systems
  • Previous methods for skin analysis and hair coverage measurement
  • Content moderation algorithms in online platforms
  • Antenna designs using transparent conductive materials

Unanswered Questions

How does the waveguide coupler in the display system improve light coupling efficiency compared to traditional methods?

The abstract mentions the use of multiplexed volumetric Bragg gratings in the waveguide coupler, but it does not elaborate on the specific advantages or mechanisms that make this design more efficient.

What imaging techniques are used in the method for measuring skin hair coverage, and how accurate are the results compared to traditional methods?

While the abstract mentions using imaging techniques to measure skin hair coverage, it does not specify the exact methods or technologies employed, nor does it provide information on the accuracy and reliability of the results obtained.


Original Abstract Submitted

A display system may include a light source and a waveguide coupler configured to couple light from the light source. A waveguide coupler may include an in-coupling region and an out-coupling region having a plurality of multiplexed volumetric Bragg gratings. A computer-implemented method may include measuring from different angles, by at least one processor and using an imaging technique, skin hair coverage in a skin surface region of a user. Another computer-implemented method may include identifying and mitigating potentially harmful messages in public forums. A further computer-implemented method may include receiving, by at least one processor, imaging results from at least one imaging device. A system may include a substrate and a transparent conductive material applied to the substrate in a specified pattern that forms an antenna. Various other devices, systems, and methods are also disclosed.