Patents by Inventor Jason Hahl

Jason Hahl 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).

  • Patent number: 8313621
    Abstract: A method and apparatus for anodizing a porous valve metal pellet in a flowing liquid electrolyte is described. The apparatus comprises an insulative container comprised of a lower region, a central region including a cavity for holding the pellet, an upper region, and a continuous passageway extending through the lower, central, and upper regions. Lower and upper screens serving as lower and upper electrodes are disposed in the passageway in the lower and upper container regions, respectively. During anodizing, the electrolyte flows through the lower container region including the lower screen, the porous pellet and then the upper container region including the upper screen. The lower and upper screens are at an opposite electrical polarity as the pellet so that a dielectric oxide is formed on the exposed valve metal including interior portions of the pellet that are exposed to the flowing electrolyte.
    Type: Grant
    Filed: January 28, 2011
    Date of Patent: November 20, 2012
    Assignee: Greatbatch Ltd.
    Inventors: David Goad, Neal Nesselbeck, Jason Hahl
  • Patent number: 8027149
    Abstract: A capacitor comprising a cylindrical casing sidewall extending to closed first and second end walls and an anode assembly housed therein including a first, second and third anodes is described. Each anode comprises an anode sidewall extending to first and second anode end walls and a conductive lead extending therefrom. The anodes are in a side-by-side relationship within the casing with their respective sidewalls parallel to each other. The cathode of the capacitor may include a first conductive substrate supporting a cathode active material. The conductive substrate is wrapped around the anodes, and the cathode active material is disposed on the substrate at locations such that the respective sidewalls of the anodes are opposed by cathode active material. A separator is positioned between the side-by-side anodes and the cathode. The open volume within the casing is filled with an electrolyte, and the casing is hermetically sealed.
    Type: Grant
    Filed: July 22, 2008
    Date of Patent: September 27, 2011
    Assignee: Greatbatch Ltd.
    Inventors: J. Michael Druding, Jason Hahl, Anthony Perez, Ken Talamine
  • Publication number: 20110122543
    Abstract: A method and apparatus for anodizing a porous valve metal pellet in a flowing liquid electrolyte is described. The apparatus comprises an insulative container comprised of a lower region, a central region including a cavity for holding the pellet, an upper region, and a continuous passageway extending through the lower, central, and upper regions. Lower and upper screens serving as lower and upper electrodes are disposed in the passageway in the lower and upper container regions, respectively. During anodizing, the electrolyte flows through the lower container region including the lower screen, the porous pellet and then the upper container region including the upper screen. The lower and upper screens are at an opposite electrical polarity as the pellet so that a dielectric oxide is formed on the exposed valve metal including interior portions of the pellet that are exposed to the flowing electrolyte.
    Type: Application
    Filed: January 28, 2011
    Publication date: May 26, 2011
    Applicant: Greatbatch Ltd.
    Inventors: David Goad, Neal Nesselbeck, Jason Hahl
  • Patent number: 7879217
    Abstract: A method and apparatus for anodizing a porous valve metal pellet in a flowing liquid electrolyte is described. The apparatus comprises an insulative container comprised of a lower region, a central region including a cavity for holding the pellet, an upper region, and a continuous passageway extending through the lower, central, and upper regions. Lower and upper screens serving as lower and upper electrodes are disposed in the passageway in the lower and upper container regions, respectively. During anodizing, the electrolyte flows through the lower container region including the lower screen, the porous pellet and then the upper container region including the upper screen. The lower and upper screens are at an opposite electrical polarity as the pellet so that a dielectric oxide is formed on the exposed valve metal including interior portions of the pellet that are exposed to the flowing electrolyte.
    Type: Grant
    Filed: December 1, 2006
    Date of Patent: February 1, 2011
    Assignee: Greatbatch Ltd.
    Inventors: David Goad, Neal Nesselbeck, Jason Hahl
  • Patent number: 7813107
    Abstract: A capacitor assembly comprising a casing, an anode pack housed within the casing and comprising two or more anode pellets of anode active material electrically connected to each other by a bridge, and a cathode comprised of cathode current collectors including major faces with cathode active material provided thereupon is described. The bridge, which spans between sidewalls of the anode pellets, helps maintain them in a parallel alignment. The bridge is also a convenient location to connect the feedthrough wire that exits the casing through a glass-to-metal seal. The cathode current collectors are disposed between adjacent anode pellets and are electrically connected to each other and to the casing. A feedthrough wire electrically connected to the anode pack extends outside the casing in electrical isolation there from. An electrolyte is provided to activate the anode and the cathode.
    Type: Grant
    Filed: March 11, 2008
    Date of Patent: October 12, 2010
    Assignee: Greatbatch Ltd.
    Inventors: J. Michael Druding, Douglas P. Eberhard, Jason Hahl, Yanming Liu, Donald Monroe, Barry C. Muffoletto, Edward J. Gloss
  • Publication number: 20090279232
    Abstract: A capacitor comprising a cylindrical casing sidewall extending to closed first and second end walls and an anode assembly housed therein including a first, second and third anodes is described. Each anode comprises an anode sidewall extending to first and second anode end walls and a conductive lead extending therefrom. The anodes are in a side-by-side relationship within the casing with their respective sidewalls parallel to each other. The cathode of the capacitor may include a first conductive substrate supporting a cathode active material. The conductive substrate is wrapped around the anodes, and the cathode active material is disposed on the substrate at locations such that the respective sidewalls of the anodes are opposed by cathode active material. A separator is positioned between the side-by-side anodes and the cathode. The open volume within the casing is filled with an electrolyte, and the casing is hermetically sealed.
    Type: Application
    Filed: July 22, 2008
    Publication date: November 12, 2009
    Applicant: Greatbatch Ltd.
    Inventors: J. MICHAEL DRUDING, Jason Hahl, Anthony Perez, Ken Talamine
  • Publication number: 20070125658
    Abstract: A method and apparatus for anodizing a porous valve metal pellet in a flowing liquid electrolyte is described. The apparatus comprises an insulative container comprised of a lower region, a central region including a cavity for holding the pellet, an upper region, and a continuous passageway extending through the lower, central, and upper regions. Lower and upper screens serving as lower and upper electrodes are disposed in the passageway in the lower and upper container regions, respectively. During anodizing, the electrolyte flows through the lower container region including the lower screen, the porous pellet and then the upper container region including the upper screen. The lower and upper screens are at an opposite electrical polarity as the pellet so that a dielectric oxide is formed on the exposed valve metal including interior portions of the pellet that are exposed to the flowing electrolyte.
    Type: Application
    Filed: December 1, 2006
    Publication date: June 7, 2007
    Inventors: David Goad, Neal Nesselbeck, Jason Hahl
  • Publication number: 20060154416
    Abstract: Deposition of a metal-containing reagent solution or suspension or a carbon nanotube-containing suspension onto a conductive substrate by various pad-printing techniques is described. In the case of a metal-containing solution or suspension, a pseudocapacitive oxide coating, nitride coating, carbon nitride coating, carbide coating, or carbon nanotube coating results. In any event, the active coating has acceptable surface area for incorporation into an electrolytic capacitor, such as one having a tantalum anode.
    Type: Application
    Filed: March 3, 2006
    Publication date: July 13, 2006
    Inventors: Keith Seitz, Ashish Shah, Barry Muffoletto, Wolfram Neff, Douglas Eberhard, Jason Hahl
  • Patent number: 7072171
    Abstract: A capacitor having a cylindrical shape or configuration so that it is capable of being inserted directly into the vasculature of a patient is described. A typical diameter for the present capacitor is about 6 mm. A capacitor of this size would occupy about 9% of the total cross-sectional area of the inferior vena cava prior to the crossover to the heart, where the typical diameter of the vein is about 20 mm. The crossover section has a diameter of about 11 mm to about 12 mm.
    Type: Grant
    Filed: February 13, 2006
    Date of Patent: July 4, 2006
    Assignee: Wilson Greatbatch Technologies, Inc.
    Inventors: Barry Muffoletto, Rodney Stringham, Doug Eberhard, Joseph Spaulding, Yanming Liu, Don Monroe, Chris Ziarniac, Eric Ziarniac, Edward Gloss, Laurie O'Connor, William Elliott, Eric Stemen, Troy Lindke, Jason Hahl, Keith Seitz, Anthony Perez, Ken Talamine, J. Michael Druding