Patents by Inventor Byron Taylor

Byron Taylor has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Publication number: 20190311232
    Abstract: Embodiments relate to tracking and determining a location of an object in an environment surrounding a user. A system includes one or more imaging devices and an object tracking unit. The system identifies an object in a search region, determines a tracking region that is smaller than the search region corresponding to the object, and scans the tracking region to determine a location associated with the object. The system may generate a ranking of objects, determine locations associated with the objects, and generate a model of the search region based on the locations associated with the objects.
    Type: Application
    Filed: April 10, 2018
    Publication date: October 10, 2019
    Inventors: Michael Hall, Byron Taylor
  • Publication number: 20190227322
    Abstract: A light projection system includes a light source configured to emit image light and an optical assembly configured to provide positive optical power to the image light and optically correct the image light. The optical assembly comprises a plurality of optical elements configured to correct differential distortion related to the image light across a field of view (FOV) within a threshold amount. The differential distortion is corrected based in part on asymmetry of the plurality of optical elements relative to an optical axis shared by the plurality of optical elements.
    Type: Application
    Filed: January 8, 2019
    Publication date: July 25, 2019
    Inventors: Michael Patrick Schaub, Byron Taylor, Yijing Fu
  • Publication number: 20190172868
    Abstract: Methods and systems for image sensing are provided. In one example, an apparatus comprises a semiconductor substrate comprising a light incident surface to receive light, a first pinned photodiode, and a second pinned photodiode, the first pinned photodiode and the second pinned photodiode forming a stack structure in the semiconductor substrate along an axis perpendicular to the light incident surface, the stack structure enabling the first pinned photodiode and the second pinned photodiode to, respectively, convert a first component of the light and a second component of the light to first charge and second charge. The apparatus further comprises one or more capacitors formed in the semiconductor substrate and configured to generate a first voltage and a second voltage based on, respectively, the first charge and the second charge.
    Type: Application
    Filed: December 5, 2018
    Publication date: June 6, 2019
    Inventors: Song CHEN, Xinqiao LIU, Byron TAYLOR
  • Publication number: 20190150317
    Abstract: Embodiments disclosed include a liquid-cooled cooling apparatus comprising a cooling structure comprising a first heat transfer element mounted to the electronics rack, and in operative communication with a thermally conductive material comprising at least one coolant-carrying channel extending there through in a closed loop. The liquid-cooled cooling apparatus further comprises a second heat transfer element coupled to the first heat transfer element and in operative communication with a thermally conductive material comprising at least one coolant-carrying channel extending there through in at least one of an open loop and a closed loop.
    Type: Application
    Filed: November 11, 2017
    Publication date: May 16, 2019
    Inventors: Arnold Magcale, Byron Taylor, Chase Abercrombie Ott, James L. Connaughton
  • Publication number: 20190075281
    Abstract: A depth camera assembly (DCA) for depth sensing of a local area. The DCA includes a transmitter, a receiver, and a controller. The transmitter illuminates a local area with outgoing light in accordance with emission instructions. The transmitter includes a fine steering element and a coarse steering element. The fine steering element deflects one or more optical beams at a first deflection angle to generate one or more first order deflected scanning beams. The coarse steering element deflects the one or more first order deflected scanning beams at a second deflection angle to generate the outgoing light projected into the local area. The receiver captures one or more images of the local area including portions of the outgoing light reflected from the local area. The controller determines depth information for one or more objects in the local area based in part on the captured one or more images.
    Type: Application
    Filed: September 6, 2017
    Publication date: March 7, 2019
    Inventors: Michael Hall, Qing Chao, Byron Taylor, Xinqiao Liu
  • Patent number: 10162254
    Abstract: A compact light projection system. The light projection system includes a light source, an anamorphic reflector assembly, and a correction element that is configured to mitigate aberration. The light source is configured to emit image light. The anamorphic reflector assembly includes a first surface and a second surface. The first surface is configured to reflect the image light toward the second surface which reflects the reflected image light to output it from the anamorphic reflector assembly. And the first surface and the second surface are both curved and non-rotationally symmetric such that the light output from the anamorphic reflector assembly is collimated image light. The collimated image light is optically corrected based in part on mitigation of aberration by the correction element.
    Type: Grant
    Filed: September 24, 2018
    Date of Patent: December 25, 2018
    Assignee: Facebook Technologies, LLC
    Inventors: Byron Taylor, Yijing Fu, Lu Lu, Wanli Chi
  • Patent number: 10133168
    Abstract: A compact light projection system. The light projection system includes a light source, an anamorphic reflector assembly, and a correction element that is configured to mitigate aberration. The light source is configured to emit image light. The anamorphic reflector assembly includes a first surface and a second surface. The first surface is configured to reflect the image light toward the second surface which reflects the reflected image light to output it from the anamorphic reflector assembly. And the first surface and the second surface are both curved and non-rotationally symmetric such that the light output from the anamorphic reflector assembly is collimated image light. The collimated image light is optically corrected based in part on mitigation of aberration by the correction element.
    Type: Grant
    Filed: February 1, 2018
    Date of Patent: November 20, 2018
    Assignee: Facebook Technologies, LLC
    Inventors: Byron Taylor, Yijing Fu, Lu Lu, Wanli Chi
  • Patent number: 8207481
    Abstract: A guidance system may include an optical system to focus incident radiation onto a detector configured to generate at least one guidance signal in response to the focused incident radiation. The optical system may include a first lens having a first side and a second side, the first side consisting of a Fresnel lens formed on a generally convex surface and the second side being generally planar.
    Type: Grant
    Filed: April 21, 2009
    Date of Patent: June 26, 2012
    Assignee: Raytheon Company
    Inventors: Byron Taylor, Michael Schaub, David Jenkins
  • Publication number: 20100264253
    Abstract: A guidance system may include an optical system to focus incident radiation onto a detector configured to generate at least one guidance signal in response to the focused incident radiation. The optical system may include a first lens having a first side and a second side, the first side consisting of a Fresnel lens formed on a generally convex surface and the second side being generally planar.
    Type: Application
    Filed: April 21, 2009
    Publication date: October 21, 2010
    Inventors: Byron Taylor, Michael Schaub, David Jenkins
  • Patent number: 7518712
    Abstract: The optical transfer function of imaging optics is carried out with a plurality of tilted edges with respect to the edge-response detection line. The effect of the tilt is to stretch out the edge response so that fine details can be detected even operating at a spatial frequency below the Nyquist limit of the detector. The use of multiple targets, each corresponding to a sub-region of the field of view of the optics being tested, enables the simultaneous characterization of the full field of view of the test optics with a single measurement without the use of a magnifying objective. The result is a rapid measurement and a simpler apparatus suitable for high-throughput testing. A pair of tilted edges can be used in a target to also determine the sagittal and tangential OTFs (as well as that of any other arbitrary cross-section). All of these data are acquired with a single measurement.
    Type: Grant
    Filed: October 18, 2004
    Date of Patent: April 14, 2009
    Assignee: Edmund Optics, Inc.
    Inventors: Samuel P. Sadoulet, Byron Taylor
  • Publication number: 20070290096
    Abstract: Methods and apparatus for guidance systems according to various aspects of the present invention operate in conjunction with a projectile including a guidance system having a guidance controller, a detector, and an optical system. The guidance controller controls the path of the projectile according to signals from the detector. The detector generates signals according to an angle of incident energy. The optical system transfers the energy to the detector via a spreader and a condenser. The spreader spreads the incident energy, and the condenser converges the spread energy onto the detector.
    Type: Application
    Filed: October 13, 2006
    Publication date: December 20, 2007
    Inventors: David Jenkins, Byron Taylor
  • Publication number: 20050254041
    Abstract: The optical transfer function of imaging optics is carried out with a plurality of tilted edges with respect to the edge-response detection line. The effect of the tilt is to stretch out the edge response so that fine details can be detected even operating at a spatial frequency below the Nyquist limit of the detector. The use of multiple targets, each corresponding to a sub-region of the field of view of the optics being tested, enables the simultaneous characterization of the full field of view of the test optics with a single measurement without the use of a magnifying objective. The result is a rapid measurement and a simpler apparatus suitable for high-throughput testing. A pair of tilted edges can be used in a target to also determine the sagittal and tangential OTFs (as well as that of any other arbitrary cross-section). All of these data are acquired with a single measurement.
    Type: Application
    Filed: October 18, 2004
    Publication date: November 17, 2005
    Inventors: Samuel Sadoulet, Byron Taylor
  • Patent number: 6234055
    Abstract: A tire cutter apparatus including a rotatable anvil wheel assembly and a cutter wheel assembly connected to a frame. The anvil wheel assembly has an anvil wheel with a smooth circumferential anvil surface. The cutter wheel assembly includes a cutter wheel having a peripheral edge. The cutter wheel assembly and the anvil wheel assembly are movable between a closed position in which the cutter wheel edge is adjacent the anvil surface to define a cutting site, and an open position in which the cutter wheel edge and the anvil surface are spaced apart. A gripping wheel having an articulated peripheral edge is connected to the cutter wheel assembly and/or to the anvil wheel assembly, so that the gripping wheel engages a portion of a tire to move the tire through the cutting site. The apparatus may be a compression cutter defining a nip, and multiple overlapping gripping wheels may be driven to drive the tire through the cutter.
    Type: Grant
    Filed: February 22, 1999
    Date of Patent: May 22, 2001
    Inventor: Byron Taylor