Patents by Inventor Brian Smyth

Brian Smyth 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: 20240118330
    Abstract: A method and a system are used to analyze incremental quantities. The electrical measurements associated with a loop in a multiple-phase electric power delivery system are obtained before a fault occurred on the loop and after the fault occurred on the loop, and differences between the electrical measurements are used to determine incremental quantities. The incremental quantities are used to determine a location of the fault on the loop. Multiple loops in the multiple-phase electric power delivery system may be monitored to determine corresponding fault locations on each loop.
    Type: Application
    Filed: October 4, 2022
    Publication date: April 11, 2024
    Applicant: Schweitzer Engineering Laboratories, Inc.
    Inventors: Arun Shrestha, Sathish Kumar Mutha, Brian A. Smyth
  • Patent number: 11714220
    Abstract: A method of making an optical article having a gradient tint and a gradient polarization. The method includes providing an optical element including a coating having at least one alignment zone. A dye composition is contacted with the coating. The dye composition includes at least one of: a dichroic dye, a photochromic-dichroic dye, or a combination thereof to diffuse at least a portion of the dye composition into the coating at a predetermined concentration gradient along at least a portion of the coating to provide the gradient tint and the gradient polarization. A kit for making an optical article having a gradient tint and a gradient polarization. An optical article prepared from a method for making an optical article having a gradient tint and a gradient polarization.
    Type: Grant
    Filed: November 10, 2021
    Date of Patent: August 1, 2023
    Assignee: Transitions Optical, Inc.
    Inventors: Philip Miller, Delwin S. Jackson, Anil Kumar, John S. Ligas, David John Park, Brian Smyth
  • Patent number: 11673355
    Abstract: A method of producing an optical article includes applying an imbibition composition having at least one dye onto at least a portion of at least one imbibable surface (45) of a substrate (20) to form a coated substrate (10). The method further includes irradiating at least a portion of the coated substrate with heat from a heat source (80) to form a heat gradient across the coated substrate (10) to diffuse the at least one dye into the imbibable surface to form an at least partially imbibed substrate having a dye concentration gradient corresponding to the heat gradient. The method further includes removing a residual component of the imbibition composition from the at least partially imbibed substrate. The dye concentration gradient forms a gradient pattern upon exposure to actinic radiation.
    Type: Grant
    Filed: December 23, 2016
    Date of Patent: June 13, 2023
    Assignee: Transitions Optical, Ltd.
    Inventors: Anil Kumar, Brian Smyth, David John Park
  • Patent number: 11609442
    Abstract: A system for customization of a photochromic article (14) includes a container (12) having an interior (28). At least one actinic radiation source (34) is located in the interior (28) of the container (12). At least one deactivation radiation source (36) is located in the interior (28) of the container (12). A method of customizing a photochromic article (14) includes inserting a photochromic article (14) having at least one non-thermally reversible photochromic material into a container (12) having at least one actinic radiation source (34) and actuating the at least one actinic radiation source (34) to activate the at least one non-thermally reversible photochromic material.
    Type: Grant
    Filed: December 27, 2017
    Date of Patent: March 21, 2023
    Assignee: Transitions Optical, Ltd.
    Inventors: David J. Park, Anil Kumar, Brian Smyth
  • Publication number: 20220326548
    Abstract: Provided is a photochromic film laminate including (a) a first polymeric film layer having a first surface and an opposing second surface; and (b) an adhesive layer over at least a portion of and in direct contact with the first surface of the first polymeric film layer (a). The adhesive layer is formed from a composition of a thermoplastic polyol having a number average molecular weight greater than or equal to 30,000 g/mol; a poly(anhydride); and a photochromic material. The thermoplastic polyol (i) is present in the composition in an amount greater than or equal to 60 percent by weight based on total combined weight of solids present in the thermoplastic polyol (i) and the poly(anhydride) (ii). Also provided is an optical article prepared with the photochromic film laminate.
    Type: Application
    Filed: August 30, 2019
    Publication date: October 13, 2022
    Inventors: Brad S. Veldkamp, Ramaiahgari Reddy, Anil Kumar, David J. Park, Brian Smyth
  • Patent number: 11446697
    Abstract: A method for imparting an optical element with at least one light influencing property in a gradient pattern. The method includes (a) providing an optical substrate having first and second surfaces; (b) depositing a first composition over the first surface of the optical substrate so as to provide a first treated surface region and an untreated surface region, the first composition including a material which provides a light influencing property; (c) depositing a second composition over the optical substrate of (b) to provide a second treated surface region over the untreated surface region and over a portion of the first treated surface region to form a first overlap region; and (d) spinning the optical substrate of (c) thereby providing the optical element having a light influencing property in a gradient pattern.
    Type: Grant
    Filed: December 28, 2016
    Date of Patent: September 20, 2022
    Assignee: Transitions Optical, Ltd.
    Inventors: Anil Kumar, David Park, Brian Smyth
  • Publication number: 20220171110
    Abstract: An optical article that includes an optical element and an anisotropic coating layer formed over at least a portion of the optical element. The anisotropic coating layer can include a first light-influencing zone comprising at least one first anisotropic material and a second light-influencing zone comprising at least one second anisotropic material. The at least one of the first light-influencing zone and the second light-influencing zone further include at least one dichroic material and/or at least one photochromic-dichroic material such that the first light-influencing zone and the second light-influencing zone exhibit a different color property, a different photochromic-dichroic reversible change, a different amount of polarization, or a combination thereof.
    Type: Application
    Filed: February 16, 2022
    Publication date: June 2, 2022
    Inventors: Anil Kumar, David John Park, Brian Smyth, Delwin S. Jackson, Henry Nguyen, John S. Ligas, Linda K. Anderson
  • Patent number: 11346878
    Abstract: The present disclosure illustrates the errors that are encountered when using both single-ended and double-ended normal-mode fault location calculations when a fault occurs in a pole-open condition. The disclosure provides systems and methods for accurately calculating the location of faults that occur during pole-open conditions, including single-ended approaches and double-ended approaches.
    Type: Grant
    Filed: December 26, 2018
    Date of Patent: May 31, 2022
    Assignee: Schweitzer Engineering Laboratories, Inc.
    Inventors: Gabriel Benmouyal, Brian A. Smyth
  • Publication number: 20220066081
    Abstract: A method of making an optical article having a gradient tint and a gradient polarization. The method includes providing an optical element including a coating having at least one alignment zone. A dye composition is contacted with the coating. The dye composition includes at least one of: a dichroic dye, a photochromic-dichroic dye, or a combination thereof to diffuse at least a portion of the dye composition into the coating at a predetermined concentration gradient along at least a portion of the coating to provide the gradient tint and the gradient polarization. A kit for making an optical article having a gradient tint and a gradient polarization. An optical article prepared from a method for making an optical article having a gradient tint and a gradient polarization.
    Type: Application
    Filed: November 10, 2021
    Publication date: March 3, 2022
    Inventors: Philip Miller, Delwin S. Jackson, Anil Kumar, John S. Ligas, David John Park, Brian Smyth
  • Patent number: 11256014
    Abstract: An optical article that includes an optical element and an anisotropic coating layer formed over at least a portion of the optical element. The anisotropic coating layer can include a first light-influencing zone comprising at least one first anisotropic material and a second light-influencing zone comprising at least one second anisotropic material. The at least one of the first light-influencing zone and the second light-influencing zone further include at least one dichroic material and/or at least one photochromic-dichroic material such that the first light-influencing zone and the second light-influencing zone exhibit a different color property, a different photochromic-dichroic reversible change, a different amount of polarization, or a combination thereof.
    Type: Grant
    Filed: October 30, 2015
    Date of Patent: February 22, 2022
    Assignee: Transitions Optical, Inc.
    Inventors: Anil Kumar, David John Park, Brian Smyth, Delwin S. Jackson, Henry Nguyen, John S. Ligas, Linda K. Anderson
  • Patent number: 11199653
    Abstract: A method of making an optical article having a gradient tint and a gradient polarization. The method includes providing an optical element including a coating having at least one alignment zone. A dye composition is contacted with the coating. The dye composition includes at least one of: a dichroic dye, a photochromic-dichroic dye, or a combination thereof to diffuse at least a portion of the dye composition into the coating at a predetermined concentration gradient along at least a portion of the coating to provide the gradient tint and the gradient polarization. A kit for making an optical article having a gradient tint and a gradient polarization. An optical article prepared from a method for making an optical article having a gradient tint and a gradient polarization.
    Type: Grant
    Filed: October 30, 2015
    Date of Patent: December 14, 2021
    Assignee: Transitions Optical, Inc.
    Inventors: Philip Miller, Delwin S. Jackson, Anil Kumar, John S. Ligas, David John Park, Brian Smyth
  • Publication number: 20210055575
    Abstract: A system for customization of a photochromic article (14) includes a container (12) having an interior (28). At least one actinic radiation source (34) is located in the interior (28) of the container (12). At least one deactivation radiation source (36) is located in the interior (28) of the container (12). A method of customizing a photochromic article (14) includes inserting a photochromic article (14) having at least one non-thermally reversible photochromic material into a container (12) having at least one actinic radiation source (34) and actuating the at least one actinic radiation source (34) to activate the at least one non-thermally reversible photochromic material.
    Type: Application
    Filed: December 27, 2017
    Publication date: February 25, 2021
    Inventors: David J. Park, Anil Kumar, Brian Smyth
  • Publication number: 20200009605
    Abstract: A method for imparting an optical element with at least one light influencing property in a gradient pattern. The method includes (a) providing an optical substrate having first and second surfaces; (b) depositing a first composition over the first surface of the optical substrate so as to provide a first treated surface region and an untreated surface region, the first composition including a material which provides a light influencing property; (c) depositing a second composition over the optical substrate of (b) to provide a second treated surface region over the untreated surface region and over a portion of the first treated surface region to form a first overlap region; and (d) spinning the optical substrate of (c) thereby providing the optical element having a light influencing property in a gradient pattern.
    Type: Application
    Filed: December 28, 2016
    Publication date: January 9, 2020
    Inventors: Anil Kumar, David Park, Brian Smyth
  • Publication number: 20190358919
    Abstract: A method of producing an optical article includes applying an imbibition composition having at least one dye onto at least a portion of at least one imbibable surface (45) of a substrate (20) to form a coated substrate (10). The method further includes irradiating at least a portion of the coated substrate with heat from a heat source (80) to form a heat gradient across the coated substrate (10) to diffuse the at least one dye into the imbibable surface to form an at least partially imbibed substrate having a dye concentration gradient corresponding to the heat gradient. The method further includes removing a residual component of the imbibition composition from the at least partially imbibed substrate. The dye concentration gradient forms a gradient pattern upon exposure to actinic radiation.
    Type: Application
    Filed: December 23, 2016
    Publication date: November 28, 2019
    Inventors: Anil Kumar, Brian Smyth, David John Park
  • Publication number: 20190291128
    Abstract: A method of manufacturing an optical article (10) includes supplying a first coating composition (A) and supplying one or more additional coating compositions (B) to an ultrasonic discharge nozzle (102) of a coating apparatus (100). At least one of the first coating composition (A) and the one or more additional coating compositions (B) is a photochromic coating composition. The method includes mixing the first coating composition and the one or more additional coating compositions at the ultrasonic discharge nozzle (102) of the coating apparatus (100), and applying the mixture (C) of the first coating composition (A) and the one or more additional coating compositions (B) to at least a portion of the optical article (10) so as to provide a pattern (24) on the optical article upon exposure to actinic radiation.
    Type: Application
    Filed: July 15, 2016
    Publication date: September 26, 2019
    Inventors: Elizabeth Ann Zezinka, Cathy Ann Taylor, Michael Frank Haley, Brian Smyth, Anil Kumar, David J. Park, David B. Knowles
  • Publication number: 20190146024
    Abstract: The present disclosure illustrates the errors that are encountered when using both single-ended and double-ended normal-mode fault location calculations when a fault occurs in a pole-open condition. The disclosure provides systems and methods for accurately calculating the location of faults that occur during pole-open conditions, including single-ended approaches and double-ended approaches.
    Type: Application
    Filed: December 26, 2018
    Publication date: May 16, 2019
    Applicant: Schweitzer Engineering Laboratories, Inc.
    Inventors: Gabriel Benmouyal, Brian A. Smyth
  • Patent number: 10204337
    Abstract: The invention is directed to a wallet vault in communication with a financial payment network and a wallet in a customer device. Token information is generated and stored and corresponds to customer information and a payment product of the customer. The token information is output in an encrypted format from the wallet to a merchant website loaded on the customer device or a merchant application installed on the customer device, and then routed to the wallet vault. The token information may ultimately be routed to a financial entity to process the transaction. In such manner, a transaction may be authorized but the merchant does not receive the customer's unencrypted payment product information for such authorization.
    Type: Grant
    Filed: February 29, 2016
    Date of Patent: February 12, 2019
    Assignee: JPMORGAN CHASE BANK, N.A.
    Inventors: Howard Spector, Hugh Tamassia, Brian Smyth, Joseph William Stanish, Reetika Grewal, Vincent R. D'Agostino, Russ Mahy, Scott Hollis Ouellette, Sherry Ann Allen, Dan Poswolsky
  • Patent number: 10197614
    Abstract: The present disclosure illustrates the errors that are encountered when using both single-ended and double-ended normal-mode fault location calculations when a fault occurs in a pole-open condition. The disclosure provides systems and methods for accurately calculating the location of faults that occur during pole-open conditions, including single-ended approaches and double-ended approaches.
    Type: Grant
    Filed: May 2, 2016
    Date of Patent: February 5, 2019
    Assignee: Schweitzer Engineering Laboratories, Inc.
    Inventors: Gabriel Benmouyal, Brian A. Smyth
  • Publication number: 20180299600
    Abstract: A method of making an optical article having a gradient tint and a gradient polarization. The method includes providing an optical element including a coating having at least one alignment zone. A dye composition is contacted with the coating. The dye composition includes at least one of: a dichroic dye, a photochromic-dichroic dye, or a combination thereof to diffuse at least a portion of the dye composition into the coating at a predetermined concentration gradient along at least a portion of the coating to provide the gradient tint and the gradient polarization. A kit for making an optical article having a gradient tint and a gradient polarization. An optical article prepared from a method for making an optical article having a gradient tint and a gradient polarization.
    Type: Application
    Filed: October 30, 2015
    Publication date: October 18, 2018
    Inventors: Philip Miller, Delwin S. Jackson, Anil Kumar, John S. Ligas, David John Park, Brian Smyth
  • Publication number: 20180299599
    Abstract: An optical article that includes an optical element and an anisotropic coating layer formed over at least a portion of the optical element. The anisotropic coating layer can include a first light-influencing zone comprising at least one first anisotropic material and a second light-influencing zone comprising at least one second anisotropic material. The at least one of the first light-influencing zone and the second light-influencing zone further include at least one dichroic material and/or at least one photochromic-dichroic material such that the first light-influencing zone and the second light-influencing zone exhibit a different color property, a different photochromic-dichroic reversible change, a different amount of polarization, or a combination thereof.
    Type: Application
    Filed: October 30, 2015
    Publication date: October 18, 2018
    Inventors: Anil Kumar, David John Park, Brian Smyth, Delwin S. Jackson, Henry Nguyen, John S. Ligas, Linda K. Anderson