Patents by Inventor E. King

E. King 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: 20250236103
    Abstract: A formulation and method for producing a multilayer film and a coated multilayer film comprising a barrier layer including a polar polymer resin, such as EVOH, as described.
    Type: Application
    Filed: January 23, 2025
    Publication date: July 24, 2025
    Inventors: Paul Z. WOLAK, Bryan S. GILLESPIE, Christopher E. KING
  • Patent number: 12286163
    Abstract: A steering rack includes an elongate member, a plurality of steering rack teeth, and a ramp function. The elongate member has a first portion disposed opposite a second portion. The plurality of steering rack teeth are cut and formed into the first portion. Each tooth of the plurality of steering rack teeth have a substantially constant height across a length of the elongate member. The ramp function is formed into the second portion of the elongate member.
    Type: Grant
    Filed: August 9, 2016
    Date of Patent: April 29, 2025
    Assignee: Steering Solutions IP Holding Corporation
    Inventors: William S. Anders, David E. King, Kevin H. Marseilles, Paul T. Duvendack
  • Patent number: 12264501
    Abstract: Mechanically or electromechanically positioning a deadbolt used to lock or unlock a door is disclosed. An electromechanical lock can include a deadbolt to be positioned to lock or unlock a door. The deadbolt can be mechanically positioned based on the rotation of a paddle of the electromechanical lock or electromechanically positioned via a motor being turned on to position the deadbolt. A disengagement mechanism can disengage an engagement cog from a worm gear hub of a gear train of the motor upon the mechanical positioning, but remain engaged upon the electromechanical positioning.
    Type: Grant
    Filed: February 19, 2021
    Date of Patent: April 1, 2025
    Assignee: ASSA ABLOY Level LLC
    Inventors: John H. Martin, Kenneth D. Goto, Thomas E. King, Jordan R. Fountain
  • Publication number: 20250008951
    Abstract: Composite materials that are palatable to a wood-destroying pest species and also pesticidal to the pest species can be used in pest control devices and can be used as wood substitutes for structural components, which are resistant to destruction by wood-destroying pest. The composite materials include a thermoplastic polymer, a food material for the pest and a pesticide. The composite material is formed by mixing a thermoplastic polymer, wood fragments or other cellulosic materials and a quantity of pesticide, and thereafter creating a molten material within a mixer, compounder, extruder or the like. The molten material is extruded or molded to form the desired shape.
    Type: Application
    Filed: September 23, 2024
    Publication date: January 9, 2025
    Inventors: Robert L. HILL, James E. KING, Joseph J. DeMARK, Anton ARNOLDY, Mike P. TOLLEY, Donald E. WILLIAMS, III, Joseph E. EGER, JR.
  • Patent number: 12168233
    Abstract: A microtiter plate mixing control system is disclosed. The system includes a frame, a suspension system attached to the frame, and a magnetically responsive horizontal platform supported on the frame by the suspension system. A solenoid is adjacent the platform for moving the platform on the suspension system. A proximity sensor is adjacent the platform for determining the position of the platform with respect to the frame. A controller is in communication with the proximity sensor and the solenoid for driving the solenoid and moving the platform in response to the proximity sensor.
    Type: Grant
    Filed: April 11, 2022
    Date of Patent: December 17, 2024
    Assignee: King Instrumentation Technologies
    Inventor: Edward E. King
  • Patent number: 12092703
    Abstract: Magnetic field components are measured at multiple longitudinal positions and used to calculate estimated longitudinal position and length of a transversely localized electric current segment flowing across a gap between conductive bodies. The apparatus can be used with a remelting furnace. The electrode and ingot act as the conductive bodies, and arcs, discharges, or slag currents are the current segments spanning the gap. Actuators for movable sensors can be coupled to the sensors in a servomechanism arrangement to move the sensors along with the moving gap. An actuator for moving one of the conductive bodies can be coupled to sensors in a servomechanism arrangement to maintain the gap distance within a selected range as the gap moves.
    Type: Grant
    Filed: September 11, 2022
    Date of Patent: September 17, 2024
    Assignee: KW Associates LLC
    Inventors: Matthew A. Cibula, Paul E. King, Joshua R. Motley, Nathan L. Pettinger
  • Publication number: 20240252825
    Abstract: In some embodiments, the disclosure describes a virtual sports interactive simulation media that displays a simulation of competitive events the results of which correspond to actual real-world live events. In some embodiments, simulated avatars represent live event competitors, and the results of the simulated event correspond to the live event results. In some embodiments, the system displays a simulated competition that is different from the live competition. In some embodiments, the system simulates action and/or drama to hide the outcome of the live event until at least a portion of the simulation is complete. In some embodiments, the system selects live events based on when a user decides to play. In some embodiments, the system provides the user with wagering options for different games. In some embodiments, the outcomes of actual events are displayed in a variety of game packages.
    Type: Application
    Filed: April 15, 2024
    Publication date: August 1, 2024
    Inventors: John J. Ford, Jason E. King
  • Publication number: 20240138425
    Abstract: A method to identify a desired portion of a food block to be pressed is provided. The method includes preparing an image of a food block, the food block provided within a system that is adapted to cut the food block into a size that is desired for sale, and in some embodiments for cutting into multiple smaller salable pieces. A rectangle is identified for cutting a block of meat within a projection of the food block within the image, wherein the rectangle includes a possible front end cut, a possible right side cut, a possible left side cut, and a possible rear side cut. Various adjustments to the positioning and the size of the rectangle are considered based upon one or more identifiable aspects of the food block from the image, and establishing a final cutting geometry with a final front end cut, final right side cut, final left side cut, and final rear side cut.
    Type: Application
    Filed: September 28, 2023
    Publication date: May 2, 2024
    Inventors: Edwin E. KING, Ernest MERRILL
  • Patent number: 11961371
    Abstract: In some embodiments, the disclosure describes a virtual sports interactive simulation media that displays a simulation of competitive events the results of which correspond to actual real-world live events. In some embodiments, simulated avatars represent live event competitors, and the results of the simulated event correspond to the live event results. In some embodiments, the system displays a simulated competition that is different from the live competition. In some embodiments, the system simulates action and/or drama to hide the outcome of the live event until at least a portion of the simulation is complete. In some embodiments, the system selects live events based on when a user decides to play. In some embodiments, the system provides the user with wagering options for different games. In some embodiments, the outcomes of actual events are displayed in a variety of game packages.
    Type: Grant
    Filed: September 10, 2021
    Date of Patent: April 16, 2024
    Assignee: Potent Systems, Inc.
    Inventors: John J. Ford, Jason E. King
  • Patent number: 11898976
    Abstract: A method for determining the pore types of a core sample can include: determining a porosity of a core sample, wherein the core sample has a permeability of 10 mD or less; saturating the core sample with a NMR saturation fluid to achieve a saturated core sample; taking a NMR measurement of fluids in the saturated core sample; and deriving a volume for a pore type based on the porosity based on a correlation between the NMR measurement and a NMR signal to fluid volume calibration, wherein the pore type is selected from the group consisting of a nanopore, a micropore, a macropore, and any combination thereof.
    Type: Grant
    Filed: March 19, 2020
    Date of Patent: February 13, 2024
    Assignee: ExxonMobil Technology and Engineering Company
    Inventors: Pavel Kortunov, Hubert E. King, Harry W. Deckman
  • Publication number: 20230397829
    Abstract: Embodiments of a method, system and/or device assist in dynamically optimizing preterm infants' oxygen saturation target range in a manner that is individualized to the infants' physiological state. In exemplary embodiments, oxygen saturation is dynamically targeted by monitoring the heart rate to determine a heart rate variability measurement and/or determining a pulmonary resilience measurement (PRM) in a preterm infant and adjusting an oxygen saturation target range for the preterm infant. In various embodiments, the heart rate variability measurement and/or PRM is evaluated against a pre-established threshold, and if the heart rate variability measurement and/or PRM meets or exceeds the pre-established threshold, the oxygen saturation target range is adjusted. Embodiments of the present disclosure can further optionally re-adjust the oxygen saturation target range at regular time intervals based on the heart rate variability measurement and/or PRM.
    Type: Application
    Filed: April 28, 2023
    Publication date: December 14, 2023
    Inventors: William E. King, IV, Urvi Jhaveri Sanghvi
  • Patent number: 11815481
    Abstract: A method for determining the porosity of a core sample can include: saturating a core sample with a nuclear magnetic resonance (NMR) saturation fluid, wherein the core sample has a permeability of 100 milliDarcy (mD) or less, to achieve a saturated core sample; taking a NMR measurement of fluids in the saturated core sample; determining a porosity of the core sample based on a correlation between the NMR measurement and a NMR signal to fluid volume calibration.
    Type: Grant
    Filed: March 19, 2020
    Date of Patent: November 14, 2023
    Assignee: ExxonMobil Technology and Engineering Company
    Inventors: Hubert E. King, Pavel Kortunov, Harry W. Deckman, Shreerang S. Chhatre, Hemantkumar R. Sahoo, Antonio S. Buono
  • Publication number: 20230349024
    Abstract: Magnetic field components measured around and along a remelting furnace and other measured furnace parameters are used to estimate concentricity of the electrode within the crucible of the furnace, to estimate a distribution of drip shorts across a gap between the electrode and the melt pool, or to detect, locate, and categorize anomalous events during the remelting process. Those can be used to control the operation of the furnace during the remelting process, or incorporated into a longitudinal or three-dimensional map of the resulting ingot. Artificial intelligence, machine learning, or a neural network can be employed.
    Type: Application
    Filed: March 31, 2023
    Publication date: November 2, 2023
    Inventors: Matthew A. Cibula, Joshua R. Motley, Nathan L. Pettinger, Daniel R. McCulley, Paul E. King
  • Patent number: 11802003
    Abstract: The conveyor belt cleaning system is an add-on apparatus for a grocery store checkout conveyor. The device automatically dispenses a disinfectant liquid on the underside of the belt in a continuous manner. The disinfectant is pumped from an open rectangular reservoir that is the same width as the belt. An electric pump dispenses the disinfectant from at least one spray nozzle at the leading edge of the reservoir. A squeegee is secured at the trailing edge of reservoir removes excess disinfectant which in turn falls back into the reservoir for reuse.
    Type: Grant
    Filed: May 23, 2022
    Date of Patent: October 31, 2023
    Inventor: Jim E. King
  • Patent number: 11767338
    Abstract: The invention relates to a composition comprising an organic material susceptible to oxidative, thermal or light-induced degradation and a compound of formula I-P, I-O or I-M. Further embodiments are a compound of formula I-P, I-O or I-M, a process for protection of the organic material by the compound, the use of the compound against degradation of the organic material, an additive composition comprising the compound, processes for manufacturing the compound and an intermediate involved therein.
    Type: Grant
    Filed: June 17, 2019
    Date of Patent: September 26, 2023
    Assignee: BASF SE
    Inventors: Werner Hoelzl, Roswell E. King, III, Jean-Roch Pauquet
  • Publication number: 20230183300
    Abstract: The subject invention concerns Bacillus thuringiensis modified Cry1Ca insecticidal toxins and the polynucleotide sequences which encode these toxins. Uses in transgenic plants are described as are methods for protecting crops from insect pest damage.
    Type: Application
    Filed: September 19, 2022
    Publication date: June 15, 2023
    Applicant: CORTEVA AGRISCIENCE LLC
    Inventors: JOEL J. SHEETS, JANNA MAI ARMSTRONG, TRISTAN E. CORAM, AUDREY JANE ETTER, TODD P. GLANCY, TIMOTHY D. HEY, JAMES E. KING, RYAN M. LEE, JIANQUAN LI, GAOFENG LIN, KRISHNA M. MADDURI, THOMAS MEADE, KENNETH NARVA, SEK YEE TAN
  • Patent number: 11674191
    Abstract: Sensors measure magnetic field components, and the measured fields are used to calculate and estimated transverse position of a longitudinal electric current flowing as an electric discharge across a discharge gap. Based on the estimated position, and according to a selected transverse trajectory or distribution of the estimated discharge position, magnetic fields are applied transversely across the discharge gap so as to control or alter the estimated discharge position. Inventive apparatus and methods can be employed, inter alia, during operation of a vacuum arc furnace.
    Type: Grant
    Filed: January 31, 2022
    Date of Patent: June 13, 2023
    Assignee: KW ASSOCIATES LLC
    Inventors: Matthew A. Cibula, Joshua R. Motley, C. Rigel Woodside, Paul E. King
  • Patent number: 11655654
    Abstract: Disclosed are embodiments of a tapered bolt receiver for a door lock to accommodate misalignment, between a deadbolt mounted to a door, and an opposing jamb. The tapered bolt receiver can be configured to accommodate misalignment for a deadbolt having a non-tapered bolt, such as for an electromechanical smart lock having a battery stored within a battery compartment that is integrated with an enhanced bolt. Also disclosed are embodiments of a deadbolt plate pivot assembly that is pivotably mountable to a corresponding deadbolt assembly to define a plate pivot system, to accommodate a beveled door edge. An illustrative embodiment of the deadbolt plate pivot assembly includes opposing plate that captures a hinge assembly, which can include plastic plate hinges, which serve to locate the deadbolt plate pivot assembly with respect to a corresponding bolt housing, and can provide a spring force and/or constant torque when mounted to a beveled door.
    Type: Grant
    Filed: May 5, 2020
    Date of Patent: May 23, 2023
    Assignee: Level Home, Inc.
    Inventors: John H. Martin, Kenneth D. Goto, Thomas E. King, Jordan R. Fountain
  • Publication number: 20230141555
    Abstract: Magnetic field components are measured at multiple longitudinal positions and used to calculate estimated longitudinal position and length of a transversely localized electric current segment flowing across a gap between conductive bodies. The apparatus can be used with a remelting furnace. The electrode and ingot act as the conductive bodies, and arcs, discharges, or slag currents are the current segments spanning the gap. Actuators for movable sensors can be coupled to the sensors in a servomechanism arrangement to move the sensors along with the moving gap. An actuator for moving one of the conductive bodies can be coupled to sensors in a servomechanism arrangement to maintain the gap distance within a selected range as the gap moves.
    Type: Application
    Filed: September 11, 2022
    Publication date: May 11, 2023
    Applicant: KW Associates LLC
    Inventors: Matthew A. Cibula, Paul E. King, Joshua R. Motley, Nathan L. Pettinger
  • Patent number: D984777
    Type: Grant
    Filed: April 29, 2021
    Date of Patent: April 25, 2023
    Assignee: Wildfire Enterprise LLC
    Inventor: Glenn E. King