Patents by Inventor Gregory J. Galvin

Gregory J. Galvin 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: 6394942
    Abstract: An electrospray device, a liquid chromatography device and an electrosprayliquid chromatography system are disclosed. The electrospray device comprises a substrate defining a channel between an entrance orifice on an injection surface and an exit orifice on an ejection surface, a nozzle defined by a portion recessed from the ejection surface surrounding the exit orifice, and an electrode for application of an electric potential to the substrate to optimize and generate an electrospray; and, optionally, additional electrode(s) to further modify the electrospray.
    Type: Grant
    Filed: December 21, 2000
    Date of Patent: May 28, 2002
    Assignee: Kionix, Inc.
    Inventors: James E. Moon, Timothy J. Davis, Gregory J. Galvin
  • Publication number: 20010037979
    Abstract: An electrospraydevice, a liquid chromatography device and an electrospray-liquid chromatography system are disclosed. The electrospray device comprises a substrate defining a channel between an entrance orifice on an injection surface and an exit orifice on an ejection surface, a nozzle defined by a portion recessed from the ejection surface surrounding the exit orifice, and an electrode for application of an electric potential to the substrate to optimize and generate an electrospray; and, optionally, additional electrode(s) to further modify the electrospray.
    Type: Application
    Filed: December 21, 2000
    Publication date: November 8, 2001
    Inventors: James E. Moon, Timothy J. Davis, Gregory J. Galvin
  • Publication number: 20010016424
    Abstract: An electrospray device, a liquid chromatography device and an electrosprayliquid chromatography system are disclosed. The electrospray device comprises a substrate defining a channel between an entrance orifice on an injection surface and an exit orifice on an ejection surface, a nozzle defined by a portion recessed from the ejection surface surrounding the exit orifice, and an electrode for application of an electric potential to the substrate to optimize and generate an electrospray; and, optionally, additional electrode(s) to further modify the electrospray.
    Type: Application
    Filed: December 21, 2000
    Publication date: August 23, 2001
    Inventors: James E. Moon, Timothy J. Davis, Gregory J. Galvin
  • Publication number: 20010013490
    Abstract: An electrospray device, a liquid chromatography device and an electrospray liquid chromatography system are disclosed. The electrospray device comprises a substrate defining a channel between an entrance orifice on an injection surface and an exit orifice on an ejection surface, a nozzle defined by a portion recessed from the ejection surface surrounding the exit orifice, and an electrode for application of an electric potential to the substrate to optimize and generate an electrospray; and, optionally, additional electrode(s) to further modify the electrospray.
    Type: Application
    Filed: December 21, 2000
    Publication date: August 16, 2001
    Inventors: James E. Moon, Timothy J. Davis, Gregory J. Galvin
  • Publication number: 20010007350
    Abstract: An electrospray device, a liquid chromatography device and an electrosprayliquid chromatography system are disclosed. The electrospray device comprises a substrate defining a channel between an entrance orifice on an injection surface and an exit orifice on an ejection surface, a nozzle defined by a portion recessed from the ejection surface surrounding the exit orifice, and an electrode for application of an electric potential to the substrate to optimize and generate an electrospray; and, optionally, additional electrode(s) to further modify the electrospray.
    Type: Application
    Filed: December 21, 2000
    Publication date: July 12, 2001
    Inventors: James E. Moon, Timothy J. Davis, Gregory J. Galvin
  • Patent number: 6245227
    Abstract: An electrospray device, a liquid chromatography device and an electrospray-liquid chromatography system are disclosed. The electrospray device comprises a substrate defining a channel between an entrance orifice on an injection surface and an exit orifice on an ejection surface, a nozzle defined by a portion recessed from the ejection surface surrounding the exit orifice, and an electrode for application of an electric potential to the substrate to optimize and generate an electrospray; and, optionally, additional electrode(s) to further modify the electrospray.
    Type: Grant
    Filed: September 17, 1998
    Date of Patent: June 12, 2001
    Assignee: Kionix, Inc.
    Inventors: James E. Moon, Timothy J. Davis, Gregory J. Galvin
  • Publication number: 20010001456
    Abstract: An electrospray device, a liquid chromatography device and an electrosprayliquid chromatography system are disclosed. The electrospray device comprises a substrate defining a channel between an entrance orifice on an injection surface and an exit orifice on an ejection surface, a nozzle defined by a portion recessed from the ejection surface surrounding the exit orifice, and an electrode for application of an electric potential to the substrate to optimize and generate an electrospray; and, optionally, additional electrode(s) to further modify the electrospray.
    Type: Application
    Filed: December 21, 2000
    Publication date: May 24, 2001
    Inventors: James E. Moon, Timothy J. Davis, Gregory J. Galvin
  • Publication number: 20010001460
    Abstract: An electrospray device, a liquid chromatography device and an electrosprayliquid chromatography system are disclosed. The electrospray device comprises a substrate defining a channel between an entrance orifice on an injection surface and an exit orifice on an ejection surface, a nozzle defined by a portion recessed from the ejection surface surrounding the exit orifice, and an electrode for application of an electric potential to the substrate to optimize and generate an electrospray; and, optionally, additional electrode(s) to further modify the electrospray.
    Type: Application
    Filed: December 21, 2000
    Publication date: May 24, 2001
    Inventors: James E. Moon, Timothy J. Davis, Gregory J. Galvin
  • Publication number: 20010001455
    Abstract: An electrospray device, a liquid chromatography device and an electrosprayliquid chromatography system are disclosed. The electrospray device comprises a substrate defining a channel between an entrance orifice on an injection surface and an exit orifice on an ejection surface, a nozzle defined by a portion recessed from the ejection surface surrounding the exit orifice, and an electrode for application of an electric potential to the substrate to optimize and generate an electrospray; and, optionally, additional electrode(s) to further modify the electrospray.
    Type: Application
    Filed: December 21, 2000
    Publication date: May 24, 2001
    Inventors: James E. Moon, Timothy J. Davis, Gregory J. Galvin
  • Publication number: 20010001452
    Abstract: An electrospray device, a liquid chromatography device and an electrosprayliquid chromatography system are disclosed. The electrospray device comprises a substrate defining a channel between an entrance orifice on an injection surface and an exit orifice on an ejection surface, a nozzle defined by a portion recessed from the ejection surface surrounding the exit orifice, and an electrode for application of an electric potential to the substrate to optimize and generate an electrospray; and, optionally, additional electrode(s) to further modify the electrospray.
    Type: Application
    Filed: December 21, 2000
    Publication date: May 24, 2001
    Inventors: James E. Moon, Timothy J. Davis, Gregory J. Galvin
  • Publication number: 20010001474
    Abstract: An electrospray device, a liquid chromatography device and an electrosprayliquid chromatography system are disclosed. The electrospray device comprises a substrate defining a channel between an entrance orifice on an injection surface and an exit orifice on an ejection surface, a nozzle defined by a portion recessed from the ejection surface surrounding the exit orifice, and an electrode for application of an electric potential to the substrate to optimize and generate an electrospray; and, optionally, additional electrode(s) to further modify the electrospray.
    Type: Application
    Filed: December 21, 2000
    Publication date: May 24, 2001
    Inventors: James E. Moon, Timothy J. Davis, Gregory J. Galvin
  • Patent number: 6199874
    Abstract: A micromechanical capacitive accelerometer is provided from a single silicon wafer. The basic structure of the micromechanical accelerometer is etched in the wafer to form a released portion in the substrate, and the released and remaining portions of the substrate are coated with metal under conditions sufficient to form a micromechanical capacitive accelerometer. The substrate is preferably etched using reactive-ion etching for at least the first etch step in the process that forms the basic structure, although in another preferred embodiment, all etching is reactive-ion etching. The accelerometer also may comprise a signal-conditioned accelerometer wherein signal-conditioning circuitry is provided on the same wafer from which the accelerometer is formed, and VLSI electronics may be integrated on the same wafer from which the accelerometer is formed.
    Type: Grant
    Filed: December 7, 1995
    Date of Patent: March 13, 2001
    Assignees: Cornell Research Foundation Inc., Kionix, Inc.
    Inventors: Gregory J. Galvin, Timothy J. Davis, Noel C. MacDonald
  • Patent number: 6149190
    Abstract: A micromechanical capacitive accelerometer is provided from a single silicon wafer. The basic structure of the micromechanical accelerometer is etched in the wafer to form a released portion in the substrate, and the released and remaining portions of the substrate are coated with metal under conditions sufficient to form a micromechanical capacitive accelerometer. The substrate is preferably etched using reactive-ion etching for at least the first etch step in the process that forms the basic structure, although in another preferred embodiment, all etching is reactive-ion etching. The accelerometer also may comprise a signal-conditioned accelerometer wherein signal-conditioning circuitry is provided on the same wafer from which the accelerometer is formed, and VLSI electronics may be integrated on the same wafer from which the accelerometer is formed.
    Type: Grant
    Filed: April 3, 1998
    Date of Patent: November 21, 2000
    Assignee: Kionix, Inc.
    Inventors: Gregory J. Galvin, Timothy J. Davis, Noel C. MacDonald
  • Patent number: 6066265
    Abstract: A microprobe having a mounting block and a silicon cantilever with an integral silicon tip is produced from a SOI wafer having a bottom layer of silicon substrate, a middle layer of insulating material, and a top layer of silicon substrate. The top layer is coated with a first layer of masking material. The bottom layer is masked and etched to form a bottom section of the mounting block. The middle layer provides an etch stop for precise control of the bottom layer etch. A tip mask is formed by partially etching the first layer of masking material. A front side mask is formed by further etching of the first layer. The front side mask defines a cantilever pattern and a top mounting block pattern. The cantilever pattern and the top mounting block pattern are transferred into the top layer by etching the top layer to a depth corresponding to a desired cantilever thickness. Further etching of the top layer forms a tip column and releases the cantilever and a top section of the mounting block from the top layer.
    Type: Grant
    Filed: June 19, 1996
    Date of Patent: May 23, 2000
    Assignee: Kionix, Inc.
    Inventors: Gregory J. Galvin, Timothy J. Davis
  • Patent number: 4757030
    Abstract: Solid phase epitaxial growth of single crystal layers on single crystal semiconductor substrates at temperatures low enough to preserve the integrity of other entities on the substrates. Contaminants are removed by low energy ion sputtering at a pressure low enough to delay their reformation before the layer can be deposited on the surface followed by annealing for one hour at 400.degree. C. A method of solid phase epitaxially growing a single crystal layer on a single crystal semiconductor substrate is also disclosed.
    Type: Grant
    Filed: November 26, 1986
    Date of Patent: July 12, 1988
    Assignee: Cornell Research Foundation, Inc.
    Inventors: Gregory J. Galvin, Christopher J. Palmstrom