Patents by Inventor David Sell

David Sell 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: 20240065846
    Abstract: The present disclosure provides an additively manufactured resurfacing implant (100) configured for use in a resurfacing surgery in which one or more porous regions (130) are provided at an internal fixation surface of a resurfacing head (110) of the resurfacing implant. In various embodiments, the additively manufactured resurfacing implant comprises one or more substantially nonporous regions that correspond to the resurfacing head and a stem (120) of the resurfacing implant and one or more porous regions that are positioned on an internal surface of the resurfacing head. The present disclosure also provides an intermediate constructions and an additive manufacturing process for forming such a resurfacing implant.
    Type: Application
    Filed: January 12, 2022
    Publication date: February 29, 2024
    Applicants: Smith & Nephew, Inc., Smith & Nephew Orthopaedics AG, Smith & Nephew Asia Pacific Pte. Limited
    Inventors: Mouhsin Ahmed El-Chafei, David W. Rister, Jason Sells, Dongyu Zang
  • Patent number: 11886111
    Abstract: Embodiments of the present disclosure generally relate to methods of forming a substrate having a target thickness distribution at one or more eyepiece areas across a substrate. The substrate includes eyepiece areas corresponding to areas where optical device eyepieces are to be formed on the substrate. Each eyepiece area includes a target thickness distribution. A base substrate thickness distribution of a base substrate is measured such that a target thickness change can be determined. The methods described herein are utilized along with the target thickness change to form a substrate with the target thickness distribution.
    Type: Grant
    Filed: March 21, 2022
    Date of Patent: January 30, 2024
    Assignee: Applied Materials, Inc.
    Inventors: David Sell, Samarth Bhargava
  • Patent number: 11841518
    Abstract: Certain examples are directed to optical elements or devices that pass or process the light based on a set of connectable metasurface elements having been topology optimized. The connectable metasurface elements are independently optimized or designed to have each section having its own metasurface phase profile corresponding to a desired phase profile. In this way, such devices need not be designed or manufactured by importing a large number of results into simulation efforts, thereby realizing significant saving in terms of optimization time and computational power.
    Type: Grant
    Filed: April 29, 2020
    Date of Patent: December 12, 2023
    Assignee: The Board of Trustees of the Leland Stanford Junior University
    Inventors: David Sell, Jonathan A. Fan, Thaibao Phan, Jianji Yang
  • Patent number: 11720016
    Abstract: Embodiments of the present disclosure generally relate to methods of forming a substrate having a target thickness distribution at one or more eyepiece areas across a substrate. The substrate includes eyepiece areas corresponding to areas where optical device eyepieces are to be formed on the substrate. Each eyepiece area includes a target thickness distribution. A base substrate thickness distribution of a base substrate is measured such that a target thickness change can be determined. The methods described herein are utilized along with the target thickness change to form a substrate with the target thickness distribution.
    Type: Grant
    Filed: May 10, 2021
    Date of Patent: August 8, 2023
    Assignee: Applied Materials, Inc.
    Inventors: David Sell, Samarth Bhargava
  • Publication number: 20230120539
    Abstract: A method of forming a plurality of gratings for an optical device structure are provided. The method utilizes a high refractive index material and a metallic coating.
    Type: Application
    Filed: September 21, 2022
    Publication date: April 20, 2023
    Inventors: Jianji YANG, Samarth BHARGAVA, David SELL
  • Publication number: 20230117647
    Abstract: A rainbow-free waveguide display, a near-eye display incorporating the rainbow-free waveguide, and methods of manufacturing the rainbow-free waveguide are provided. The display includes a waveguide display configured to direct image light to an eyebox plane having a length (LEyebox) and to a user's eye. The waveguide display includes a waveguide combiner and an out-coupler grating, wherein the out-coupler grating has a grating period ?OC such that all angles of incidence ?in of light from an external light source, result in diffracted angles ?out, that miss the user's eye.
    Type: Application
    Filed: September 21, 2022
    Publication date: April 20, 2023
    Inventors: Kevin MESSER, David SELL, Samarth BHARGAVA
  • Publication number: 20230121211
    Abstract: Embodiments of the present disclosure generally relate to metasurface devices and methods of forming metasurfaces. The metasurface devices include a plurality of device structures. Each of the device structures are formed from multiple layers, at least one of which is an impedance matching layer. The impedance matching layer may be formed as either an inner impedance matching layer between the substrate and the device layer or as a separate outer impedance matching layer on top of the device layer. The refractive indices of the impedance matching layers are chosen to be between the refractive index of the mediums on either side of the impedance matching layer.
    Type: Application
    Filed: September 28, 2022
    Publication date: April 20, 2023
    Applicant: Applied Materials, Inc.
    Inventors: Jianji YANG, David SELL, Samarth BHARGAVA, Guannan CHEN
  • Patent number: 11543653
    Abstract: Various embodiments are directed to an apparatus and methods of forming and/or using an apparatus comprising a plurality of device components. An example method includes geometrically optimizing a periodic or aperiodic device comprising a plurality of device components by optimizing a topology, for each device component, from a starting point to have particular optical properties for a particular optical response. Each device component includes a plurality of geometric structures. The optimization includes selecting the starting point for a continuous profile to have the particular optical properties for the particular optical response, iteratively converging the continuous profile to a discrete profile, and, while iteratively converging to the discrete profile, adjusting edges between boundaries of the device components by accounting for fabrication constraints.
    Type: Grant
    Filed: July 23, 2020
    Date of Patent: January 3, 2023
    Assignee: The Board of Trustees of the Leland Stanford Junior University
    Inventors: Jonathan A. Fan, David Sell, Jianji Yang
  • Publication number: 20220357655
    Abstract: Embodiments of the present disclosure generally relate to methods of forming a substrate having a target thickness distribution at one or more eyepiece areas across a substrate. The substrate includes eyepiece areas corresponding to areas where optical device eyepieces are to be formed on the substrate. Each eyepiece area includes a target thickness distribution. A base substrate thickness distribution of a base substrate is measured such that a target thickness change can be determined. The methods described herein are utilized along with the target thickness change to form a substrate with the target thickness distribution.
    Type: Application
    Filed: March 21, 2022
    Publication date: November 10, 2022
    Inventors: David SELL, Samarth BHARGAVA
  • Publication number: 20220357654
    Abstract: Embodiments of the present disclosure generally relate to methods of forming a substrate having a target thickness distribution at one or more eyepiece areas across a substrate. The substrate includes eyepiece areas corresponding to areas where optical device eyepieces are to be formed on the substrate. Each eyepiece area includes a target thickness distribution. A base substrate thickness distribution of a base substrate is measured such that a target thickness change can be determined. The methods described herein are utilized along with the target thickness change to form a substrate with the target thickness distribution.
    Type: Application
    Filed: May 10, 2021
    Publication date: November 10, 2022
    Inventors: David SELL, Samarth BHARGAVA
  • Publication number: 20220308460
    Abstract: Methods of fabricating large-scale optical devices having sub-micron dimensions are provided. A method is provided that includes projecting a beam to a mask, the mask corresponding to a section of an optical device pattern, the optical device pattern divided into four or more equal portions, each portion corresponding to a section of a substrate. The method further includes scanning the mask over a first section of the substrate to pattern a first portion of the optical device pattern, the substrate is positioned at a first rotation angle relative to the mask. The method further includes rotating the substrate to a second rotation angle, the second rotation angle corresponding to 360° divided by a total number of portions of the optical device pattern, scanning the mask over a second section of the substrate from the initial position to the final position to pattern a second portion of the optical device pattern.
    Type: Application
    Filed: March 22, 2022
    Publication date: September 29, 2022
    Inventors: Yongan XU, Naamah ARGAMAN, David SELL, Ludovic GODET
  • Publication number: 20220299760
    Abstract: Various embodiments are directed to an apparatus and methods of forming and/or using an apparatus comprising a plurality of device components. An example method includes geometrically optimizing a periodic or aperiodic device comprising a plurality of device components by optimizing a topology, for each device component, from a starting point to have particular optical properties for a particular optical response. Each device component includes a plurality of geometric structures. The optimization includes selecting the starting point for a continuous profile to have the particular optical properties for the particular optical response, iteratively converging the continuous profile to a discrete profile, and, while iteratively converging to the discrete profile, adjusting edges between boundaries of the device components by accounting for fabrication constraints.
    Type: Application
    Filed: July 23, 2020
    Publication date: September 22, 2022
    Inventors: Jonathan A. Fan, David Sell, Jianji Yang
  • Publication number: 20220214479
    Abstract: Certain examples are directed to optical elements or devices that pass or process the light based on a set of connectable metasurface elements having been topology optimized. The connectable metasurface elements are independently optimized or designed to have each section having its own metasurface phase profile corresponding to a desired phase profile. In this way, such devices need not be designed or manufactured by importing a large number of results into simulation efforts, thereby realizing significant saving in terms of optimization time and computational power.
    Type: Application
    Filed: April 29, 2020
    Publication date: July 7, 2022
    Inventors: David Sell, Jonathan A. Fan, Thaibao Phan, Jianji Yang
  • Publication number: 20210382212
    Abstract: Embodiments described herein relate to gradient encapsulation of waveguide outcoupler gratings for control of diffraction efficiency and directionality. A device includes a first grating formed over a substrate, the first grating having a plurality of first structures extending away from the substrate, the first grating corresponding to an outcoupler. The device includes a first encapsulant disposed in one or more gaps formed between adjacent first structures, where a fill ratio of the first encapsulant decreases along the first grating. Also described herein are methods for fabricating the device.
    Type: Application
    Filed: May 25, 2021
    Publication date: December 9, 2021
    Inventors: David Sell, Brian Alexander Cohen
  • Patent number: 10725290
    Abstract: Various embodiments are directed to an apparatus and methods of forming and/or using an apparatus comprising a plurality of device components. An example method includes geometrically optimizing a periodic or aperiodic device comprising a plurality of device components by optimizing a topology, for each device component, from a starting point to have particular optical properties for a particular optical response. Each device component includes a plurality of geometric structures. The optimization includes selecting the starting point for a continuous profile to have the particular optical properties for the particular optical response, iteratively converging the continuous profile to a discrete profile, and, while iteratively converging to the discrete profile, adjusting edges between boundaries of the device components by accounting for fabrication constraints.
    Type: Grant
    Filed: May 1, 2017
    Date of Patent: July 28, 2020
    Assignee: The Board of Trustees of the Leland Stanford Junior University
    Inventors: Jonathan A. Fan, David Sell, Jianji Yang
  • Publication number: 20180045953
    Abstract: Various embodiments are directed to an apparatus and methods of forming and/or using an apparatus comprising a plurality of device components. An example method includes geometrically optimizing a periodic or aperiodic device comprising a plurality of device components by optimizing a topology, for each device component, from a starting point to have particular optical properties for a particular optical response. Each device component includes a plurality of geometric structures. The optimization includes selecting the starting point for a continuous profile to have the particular optical properties for the particular optical response, iteratively converging the continuous profile to a discrete profile, and, while iteratively converging to the discrete profile, adjusting edges between boundaries of the device components by accounting for fabrication constraints.
    Type: Application
    Filed: May 1, 2017
    Publication date: February 15, 2018
    Inventors: Jonathan A. Fan, David Sell, Jianji Yang
  • Publication number: 20140295054
    Abstract: Compositions are disclosed containing a polymeric mixture diluted into an aqueous solution, which can be usefully applied to any surface mat is hydbcphoixc to act, for example, as an aotifoggiag coating with minimal optical distortion and excellent transparency. The compositions can also be used as lubricious agents on medical implants, shunts, and surgical supplies to minimize tissue trauma, to maximize bio-compatibility, and to increase healing by enhancing better irrigation and flow in adjacent tissue.
    Type: Application
    Filed: October 26, 2012
    Publication date: October 2, 2014
    Inventors: Nicole Herbots, Ashlee Murphy, David Sell, Robert Culbertson, Angelica S. Benitez, Tyler Kutz, Ross Bennett-Kennett, Matthew Bade, Brance P. Hudzeitz
  • Publication number: 20060245580
    Abstract: A customer-agent routing system (102) has a routing element (102C) for accepting customer calls and for routing said calls to an agent (108), a memory (102B) for storage of processor instructions and for storage of customer and agent activity, and a processor (102A) for controlling operations of the routing element and memory. The processor is programmed to monitor (202) operational metrics for each of a plurality of agents while serving customers, record (206) in the memory the operational metrics of each agent, and cause the routing element to route (220) a customer to an agent according to the recorded operational metrics of said agent.
    Type: Application
    Filed: April 27, 2005
    Publication date: November 2, 2006
    Applicant: SBC Knowledge Ventures LP
    Inventors: Julia Hein, David Sells, Debbie Martincich, Linda Steco, Karen Mrachek