NetAirus Technologies

AR/MR and Smart Glasses Designs

 NetAirus’ Augmented/Mixed Reality and SG Designs Include:

1.  VAC Elimination Solutions

2.  Retinal Eye Tracking

3.  Foveated Display Systems

4.  Hard Edge Occlusion  

5. Etendue/Lagrange Invariant  circumvention:
          Foveated Design with Eye Tracking
          Wide Image scanning
          Intermediate Aerial Image Diffuser
          Optical Tiling
          Image Stitching
          Binocular Overlapping 

6.    High Definition Displays       

7.    Large Eye Box

8.    Wide Field of View (FOV)

9.    Compact and Light Weight Design

10.   Metasurfaces   

11.  Low Electrical Power  Design

12.  High Efficiency (Lumens/Watt)

   Overall Design Considerations:

  • New AR/MR Use Cases
  • Software/Application Content
  • Smartphone Eco Systems
  • Human Vision- Centric Designs
  • Etendue/Lagrange Invariant Laws
  • Human- Centric Physical Designs
  • Vestibular and Fashion Considerations  

    Specific NetAirus’ Designs:

  • Metasurfaces   Combined with    _______ 
  • Methods to Circumvent the Invariants 
  • Display Tiling  Designs by means of  ______
  • Image Stitching with  _______ Designs
  •  Micro Lens Arrays applied to  _______
  • _______  Combined with Aerial Images  
  • _______  applied to Binocular Overlap Designs
  • Optimum   _______  Designs for AR/MR/SG
  • AR/MR/SG  Headsets configured to  __________
  • __________  type Smart Glasses Designs
  • Free-space Combiners  adapted to  _______
  • Light Guide Combiner System modified for ______
  • EPE Waveguide Combiners
  • Dynamic   __________  Lens Technologies
  • Proprietary Light Engines  
  • Adaptive Lens Systems adapted to ________
  • Proprietary  ________  Lenses
  • Combined   _______    Lens  with  ________
  • ________ Patterned _______ Electrodes
  • Floating ________Electrodes Designs
  • ________   type Electrode Structures
  • Proprietary  Lens  System Designs
  • Cell  Structures adapted to ________
  • Integrated AR/MR/SG  Systems 
  • Waveguide  Combiners Adapted to ________
  •  Diffraction Waveguides
  • HOE Waveguide Optical Combiners
  • Waveguides System  modified for  _______
  • LOE Optical Combiner Systems 
  • Laser Based Light Engines combined with _______
  • Mutual Occlusion Methods using   _________
  • Proprietary __________   Occlusion  Designs
  • Light Weight Headset Designs having _____
  • Human Eye/Vision Centric Designs
  • Gaze-contingent __________ System
  • Foveated Displays with_______ Sensor Arrays
  • Front End Data Fusion Algorithms
  • Distributed ­­­­________Programs
  • _________ Interpolation Methods
  • Foveated Displays  combined with _________

    Specific NetAirus’ Designs (continued):

  • Monocular Headset Designs adapted to  _________
  • Binocular  Headsets   for _______  
  •  New type Micro-displays and  Systems 
  • Multiple Display Channels for __________ 
  •  Optical Systems configured  to _______
  • Catadioptric Lens Solutions
  • New Nanocomposite Materials Applied to   _______
  • Multipath Birefringent  Lens Systems
  • Metasurfaces  adapted to  ________
  • Proprietary AR/MR/SG  Designs
  • Foveated Display Designed for  _______
  • ET Gaze _______Systems 
  • Pupil Glint-based ET Systems
  • Image ET Systems Designed to ________
  • Proprietary Retinal  ET Systems
  •  LOS Gaze Angle Determination by _________
  • Mitigation of  Headset Slippage Errors
  • Reducing  Perceptional  Instabilities by means of  _______
  • Integrated  5G  Interface Designs
  • Unique _______ Design and ______ Systems
  • Software Content for AR/MR/SG HMDs
  • Integration of ______   Algorithms
  • Proprietary  _______  UI Designs
  • AR/SG Frame Designs configured to _________

   AR/MR/SG  Artificial Intelligence Program Designs: 

  • AI and ML Factors for  AR/MR/SG HMDs
  • Supervised ML Algorithms adapted to ________
  • Unsupervised ML Algorithms adapted to ________
  • Specific _______ ML and AI Program Functions
  • AI/ML Algorithms Programs modified for _____
  • AI Training Programs by means of _______

   Vision Correction and AR Designs:

  • Adaptive Correction Lenses
  • Lens Displacement Designs
  • Pancake Lens Systems applied to _______
  • Piezoelectric Bi-morph Configurations
  • Micro-lens Arrays adapted to ________
  • Freeform Rx Lens Systems
  • Alvarez Lens  _______ Designs
  • Proprietary Focal Tuning Lens Designs
  • Integrated  _________  with  Rx Lenses
  • Integrating Optics Design to Smart Glasses

(Trade secret matters in the above headings are redacted with underline markings) 

Related Content/Links:

         Over the last decade or so, several of the well-known large technology corporations have spent billions of dollars, each, in attempts to develop consumer or enterprise based AR/VR headsets.  For example, Microsoft introduced its HoloLens 2 for the enterprise, Facebook introduced series of Oculus headsets, and Apple is rumored to introduce an Apple Glass AR headset.  Also, many small to medium sized companies have designed and developed various components and systems.  Descriptions of AR/VR systems can be found in SPIE Conferences, and in an AR/VR Technology blog.  NetAirus distinguishes its AR/MR designs from the others by building on the existing technology and introducing several breakthrough component/system designs.  In addition, NetAirus includes special AI /ML algorithms targeted for specifically for AR smart glasses products .