Cupertino, CA, United States of America

Brandon J Hui

USPTO Granted Patents = 1 

Average Co-Inventor Count = 7.0

ph-index = 1


Company Filing History:


Years Active: 2024

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1 patent (USPTO):

Title: Innovations of Brandon J Hui in Beam Deflector Metasurfaces

Introduction

Brandon J Hui is an innovative inventor based in Cupertino, CA. He is known for his contributions to the field of optics, particularly in the development of beam deflector metasurfaces. His work focuses on enhancing the efficiency of light direction at various angles of incidence.

Latest Patents

Brandon J Hui holds a patent for a "Beam Deflector Metasurface." This invention discloses configurations for a beam deflector metasurface that includes beam deflectors arranged in a repeating, radial pattern of concentric zones. The metasurface is designed to be a large area, high numerical aperture optic that efficiently directs light at non-normal angles of incidence. The concentric zones are capable of directing received light in varying directions with different steepness of angles. The beam deflectors consist of pillars that can vary in width, height, or shape, functioning as diffractive gratings. The cross-coupling between these pillars directs the output light effectively. This technology allows for diffusing hot spots and spreading light evenly over target areas, making it suitable for non-imaging applications.

Career Highlights

Brandon J Hui is currently employed at Apple Inc., where he continues to push the boundaries of optical technology. His innovative approach to beam deflector metasurfaces has the potential to revolutionize various applications in the field of optics.

Collaborations

Brandon has collaborated with notable coworkers such as Daryl I Vulis and Christian Ocier, contributing to the advancement of optical technologies within his team.

Conclusion

Brandon J Hui's work in beam deflector metasurfaces exemplifies the innovative spirit of modern inventors. His contributions to optical technology are paving the way for more efficient light manipulation in various applications.

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