Patents by Inventor John Robert Smith

John Robert Smith 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: 20240115211
    Abstract: Disclosed are systems and methods for generating graphical displays of analyte data and/or health information. In some implementations, the graphical displays are generating based on a self-referential dataset that are modifiable based on identified portions of the data. The modified graphical displays can indicate features in the analyte data of a host.
    Type: Application
    Filed: December 19, 2023
    Publication date: April 11, 2024
    Inventors: Esteban CABRERA, JR., Lauren Danielle ARMENTA, Scott M. BELLIVEAU, Jennifer BLACKWELL, Leif N. BOWMAN, Rian DRAEGER, Arturo GARCIA, Timothy Joseph GOLDSMITH, John Michael GRAY, Andrea Jean JACKSON, Apurv Ullas KAMATH, Katherine Yerre KOEHLER, Paul KRAMER, Aditya Sagar MANDAPAKA, Michael Robert MENSINGER, Sumitaka MIKAMI, Gary A. MORRIS, Hemant Mahendra NIRMAL, Paul NOBLE-CAMPBELL, Philip Thomas PUPA, Eli REIHMAN, Peter C. SIMPSON, Brian Christopher SMITH, Atiim Joseph WILEY
  • Patent number: 11931188
    Abstract: Disclosed are systems and methods for generating graphical displays of analyte data and/or health information. In some implementations, the graphical displays are generating based on a self-referential dataset that are modifiable based on identified portions of the data. The modified graphical displays can indicate features in the analyte data of a host.
    Type: Grant
    Filed: September 21, 2021
    Date of Patent: March 19, 2024
    Assignee: Dexcom, Inc.
    Inventors: Esteban Cabrera, Jr., Lauren Danielle Armenta, Scott M. Belliveau, Jennifer Blackwell, Leif N. Bowman, Rian Draeger, Arturo Garcia, Timothy Joseph Goldsmith, John Michael Gray, Andrea Jean Jackson, Apurv Ullas Kamath, Katherine Yerre Koehler, Paul Kramer, Aditya Sagar Mandapaka, Michael Robert Mensinger, Sumitaka Mikami, Gary A Morris, Hemant Mahendra Nirmal, Paul Noble-Campbell, Philip Thomas Pupa, Eli Reihman, Peter C. Simpson, Brian Christopher Smith, Atiim Joseph Wiley
  • Publication number: 20190151048
    Abstract: A tool to insert an archwire into an archwire slot of an orthodontic bracket including a handle and a plunger mechanism. A plunger is movable relative to the handle along an operational axis from a retracted to an extended position. An alignment member holds the archwire in the slot. The alignment member includes a pair of tines, each tine including a forked end. The forked end is an open-ended cutout with flats. The plunger includes a tip portion that engages a portion of the orthodontic bracket when the plunger is moved toward the extended position. The plunger mechanism includes a return spring to bias the plunger toward the retracted position. A method of inserting an archwire into an archwire slot using a tool including forcing the archwire into the slot with the tool and moving a movable member with the tool to capture the archwire in the slot.
    Type: Application
    Filed: November 20, 2018
    Publication date: May 23, 2019
    Inventors: John Robert Smith, Dustin R. Tobey
  • Patent number: 6949300
    Abstract: The present invention is directed to a process for preparing aluminum and aluminum alloy surfaces in heat exchangers for brazing by depositing thereon a kinetic sprayed brazing composition. The process simultaneously deposits monolith or composite coatings that can include all braze materials and corrosion protection materials used in the brazing of aluminum fins to plates and tubes in a single stage.
    Type: Grant
    Filed: April 16, 2003
    Date of Patent: September 27, 2005
    Assignee: Delphi Technologies, Inc.
    Inventors: Bryan A. Gillispie, Zhibo Zhao, John Robert Smith, Thomas Hubert Van Steenkiste, Alaa A. Elmoursi, Yang Luo, Hartley F. Hutchins
  • Patent number: 6902768
    Abstract: The cylinder walls of light metal engine blocks are thermally spray coated with a ferrous-based coating including aluminum using an HVOF device. A ferrous-based wire is fed to the HVOF device to locate a tip end of the wire in a high temperature zone of the device. Jet flows of oxygen and gaseous fuel are fed to the high temperature zone and are combusted to generate heat to melt the tip end. The oxygen is oversupplied in relation to the gaseous fuel. The excess oxygen reacts with and burns a fraction of the ferrous-based feed wire in an exothermic reaction to generate substantial supplemental heat to the HVOF device. The molten/combusted metal is sprayed by the device onto the walls of the cylinder by the jet flow of gases.
    Type: Grant
    Filed: February 13, 2002
    Date of Patent: June 7, 2005
    Assignee: General Motors Corporation
    Inventors: John Robert Smith, David Rudolph Sigler, Richard Earl Teets, Larry Edward Byrnes, Martin Stephen Kramer
  • Publication number: 20030207148
    Abstract: The present invention is directed to a process for preparing aluminum and aluminum alloy surfaces in heat exchangers for brazing by depositing thereon a kinetic sprayed brazing composition. The process simultaneously deposits monolith or composite coatings that can include all braze materials and corrosion protection materials used in the brazing of aluminum fins to plates and tubes in a single stage.
    Type: Application
    Filed: April 16, 2003
    Publication date: November 6, 2003
    Applicant: DELPHI TECHNOLOGIES, INC.
    Inventors: Bryan A. Gillispie, Zhibo Zhao, John Robert Smith, Thomas Hubert Van Steenkiste, Alaa A. Elmoursi, Yang Luo, Hartley F. Hutchins
  • Publication number: 20030152698
    Abstract: The cylinder walls of light metal engine blocks are thermally spray coated with a ferrous-based coating including aluminum using an HVOF device. A ferrous-based wire is fed to the HVOF device to locate a tip end of the wire in a high temperature zone of the device. Jet flows of oxygen and gaseous fuel are fed to the high temperature zone and are combusted to generate heat to melt the tip end. The oxygen is oversupplied in relation to the gaseous fuel. The excess oxygen reacts with and burns a fraction of the ferrous-based feed wire in an exothermic reaction to generate substantial supplemental heat to the HVOF device. The molten/combusted metal is sprayed by the device onto the walls of the cylinder by the jet flow of gases.
    Type: Application
    Filed: February 13, 2002
    Publication date: August 14, 2003
    Inventors: John Robert Smith, David Rudolph Sigler, Richard Earl Teets, Larry Edward Byrnes, Martin Stephen Kramer
  • Patent number: 6189663
    Abstract: Electroplated chromium coatings on automobile suspension damper piston rods are replaced with thermal or kinetic spray coatings of: (a) suitable corrosion-resistant metal alloys such as iron and chromium containing nickel-based alloys or chromium containing steels, or (b) suitable ceramic coatings such as electrically insulative alumina ceramics. The spray coatings are porous, and the metal alloy coatings usually should be sealed for corrosion protection.
    Type: Grant
    Filed: June 8, 1998
    Date of Patent: February 20, 2001
    Assignee: General Motors Corporation
    Inventors: John Robert Smith, Wen-Jin Meng, Thomas Hubert Van Steenkiste
  • Patent number: 4038997
    Abstract: A tent support pole having adjacent one end a plurality of hooks spaced circumferentially around the pole on a fixed collar. A sleeve is slidable on the pole between the hook collar and a fixed stop collar spaced below the hook collar. The sleeve has a like plurality of slots to engage the free end of a tent support strut. The other end of the strut is pivotably connected to a tent support arm and intermediate the ends of the arm. One end of the arm has a bar to engage the hook and the other end a guy securing rope. In use, the bar on the arm is placed on the hook and the free end of the strut is engaged in the sleeve slot. The tent pole is then erected with the top of the pole (i.e., the end adjacent the hooks) projecting through a ring secured to the canvas. The guy ropes are secured to the arm. The sleeve is then moved downwardly toward the stop collar, causing the radially outer end of the arms to be raised and the guy ropes to be fully tensioned to support the canvas.
    Type: Grant
    Filed: September 4, 1975
    Date of Patent: August 2, 1977
    Inventor: John Robert Smith