Patents by Inventor Viktor Kanarov

Viktor Kanarov 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: 11466360
    Abstract: An improved cathodic arc source and method of DLC film deposition with a carbon containing directional-jet plasma flow produced inside of cylindrical graphite cavity with depth of the cavity approximately equal to the cathode diameter. The generated carbon plasma expands through the orifice into ambient vacuum resulting in plasma flow strong self-constriction. The method represents a repetitive process that includes two steps: the described above plasma generation/deposition step that alternates with a recovery step. This step provides periodical removal of excessive amount of carbon accumulated on the cavity wall by motion of the cathode rod inside of the cavity in direction of the orifice. The cathode rod protrudes above the orifice, and moves back to the initial cathode tip position. The said steps periodically can be reproduced until the film with target thickness is deposited.
    Type: Grant
    Filed: August 19, 2020
    Date of Patent: October 11, 2022
    Assignee: Veeco Instruments Inc.
    Inventors: Boris L. Druz, Viktor Kanarov, Yuriy N. Yevtukhov, Sandeep Kohli, Xingjie Fang
  • Publication number: 20210172053
    Abstract: An improved cathodic arc source and method of DLC film deposition with a carbon containing directional-jet plasma flow produced inside of cylindrical graphite cavity with depth s of the cavity approximately equal to the cathode diameter. The generated carbon plasma expands through the orifice into ambient vacuum resulting in plasma flow strong self-constriction. The method represents a repetitive process that includes two steps: the described above plasma generation/ deposition step that alternates with a recovery step. This step provides periodical removal of excessive amount of carbon accumulated on the cavity wall by motion of l o the cathode rod inside of the cavity in direction of the orifice. The cathode rod protrudes above the orifice, and moves back to the initial cathode tip position. The said steps periodically can be reproduced until the film with target thickness is deposited.
    Type: Application
    Filed: August 19, 2020
    Publication date: June 10, 2021
    Inventors: Boris L. Druz, Viktor Kanarov, Yuriy N. Yevtukhov, Sandeep Kohli, Xingjie Fang
  • Publication number: 20170369984
    Abstract: An improved cathodic arc source and method of DLC film deposition with a carbon containing directional-jet plasma flow produced inside of cylindrical graphite cavity with depth of the cavity approximately equal to the cathode diameter. The generated carbon plasma expands through the orifice into ambient vacuum resulting in plasma flow strong self-constriction. The method represents a repetitive process that includes two steps: the described above plasma generation/deposition step that alternates with a recovery step. This step provides periodical removal of excessive amount of carbon accumulated on the cavity wall by motion of the cathode rod inside of the cavity in direction of the orifice. The cathode rod protrudes above the orifice, and moves back to the initial cathode tip position. The said steps periodically can be reproduced until the film with target thickness is deposited.
    Type: Application
    Filed: June 23, 2017
    Publication date: December 28, 2017
    Inventors: Boris L. Druz, Viktor Kanarov, Yuriy N. Yevtukhov, Sandeep Kohli, Xingjie Fang
  • Publication number: 20160071708
    Abstract: Method and apparatus for processing a substrate with an energetic particle beam. Features on the substrate are oriented relative to the energetic particle beam and the substrate is scanned through the energetic particle beam. The substrate is periodically indexed about its azimuthal axis of symmetry, while shielded from exposure to the energetic particle beam, to reorient the features relative to the major dimension of the beam.
    Type: Application
    Filed: November 16, 2015
    Publication date: March 10, 2016
    Applicant: Veeco Instruments, Inc.
    Inventors: Boris L. Druz, Piero Sferlazzo, Roger P. Fremgen, Alan V. Hayes, Viktor Kanarov, Robert Krause, Ira Reiss
  • Patent number: 9206500
    Abstract: Method and apparatus for processing a substrate with an energetic particle beam. Features on the substrate are oriented relative to the energetic particle beam and the substrate is scanned through the energetic particle beam. The substrate is periodically indexed about its azimuthal axis of symmetry, while shielded from exposure to the energetic particle beam, to reorient the features relative to the major dimension of the beam.
    Type: Grant
    Filed: September 18, 2008
    Date of Patent: December 8, 2015
    Inventors: Boris Druz, Roger P. Fremgen, Jr., Alan V. Hayes, Viktor Kanarov, Robert Krause, Ira Reiss, Piero Sferlazzo
  • Patent number: 8835869
    Abstract: Ion sources and methods for generating an ion bean with a controllable ion current density distribution. The ion source includes a discharge chamber having an optical grid position proximate at a first end and a re-entrant vessel positioned proximate a second end that opposes the first end. A plasma shaper extends from the re-entrant vessel and into the plasma discharge chamber. A position of the plasma shaper is adjustable relative to the grid-based ion optic such that the plasma shaper may operably change a plasma density distribution within the discharge chamber.
    Type: Grant
    Filed: April 16, 2012
    Date of Patent: September 16, 2014
    Assignee: Veeco Instruments, Inc.
    Inventors: Rustam Yevtukhov, Boris L. Druz, Viktor Kanarov, Alan V. Hayes
  • Publication number: 20120211166
    Abstract: Ion sources and methods for generating an ion bean with a controllable ion current density distribution. The ion source includes a discharge chamber having an optical grid position proximate at a first end and a re-entrant vessel positioned proximate a second end that opposes the first end. A plasma shaper extends from the re-entrant vessel and into the plasma discharge chamber. A position of the plasma shaper is adjustable relative to the grid-based ion optic such that the plasma shaper may operably change a plasma density distribution within the discharge chamber.
    Type: Application
    Filed: April 16, 2012
    Publication date: August 23, 2012
    Applicant: VEECO INSTRUMENTS INC.
    Inventors: Rustam Yevtukhov, Boris L. Druz, Viktor Kanarov, Alan V. Hayes
  • Patent number: 8158016
    Abstract: Methods of operating an electromagnet of an ion source for generating an ion beam with a controllable ion current density distribution. The methods may include generating plasma in a discharge space of the ion source, generating and shaping a magnetic field in the discharge space by applying a current to an electromagnet that is effective to define a plasma density distribution, extracting an ion beam from the plasma, measuring a distribution profile for the ion beam density, and comparing the actual distribution profile with a desired distribution profile for the ion beam density. Based upon the comparison, the current applied to the electromagnet may be adjusted either manually or automatically to modify the magnetic field in the discharge space and, thereby, alter the plasma density distribution.
    Type: Grant
    Filed: February 26, 2008
    Date of Patent: April 17, 2012
    Assignee: Veeco Instruments, Inc.
    Inventors: Alan V. Hayes, Rustam Yevtukhov, Viktor Kanarov, Boris L. Druz
  • Publication number: 20110089022
    Abstract: Method and apparatus for processing a substrate with a beam of energetic particles. The beam is directed from a source through a rectangular aperture in a shield positioned between the source and substrate to a treatment zone in a plane of substrate movement. Features on the substrate are aligned parallel to a major dimension of the rectangular aperture and the substrate is moved orthogonally to the aperture's major dimension. The beam impinges the substrate through the aperture during movement. The substrate may be periodically rotated by approximately 180° to reorient the features relative to the major dimension of the rectangular aperture. The resulting treatment profile is symmetrical about the sides of the features oriented toward the major dimension of the rectangular aperture.
    Type: Application
    Filed: December 23, 2010
    Publication date: April 21, 2011
    Applicant: VEECO INSTRUMENTS INC.
    Inventors: Boris Druz, Viktor Kanarov, Hariharakeshave S. Hegde, Alan V. Hayes, Emmanuel Lakios
  • Patent number: 7879201
    Abstract: Method and apparatus for processing a substrate with a beam of energetic particles. The beam is directed from a source through a rectangular aperture in a shield positioned between the source and substrate to a treatment zone in a plane of substrate movement. Features on the substrate are aligned parallel to a major dimension of the rectangular aperture and the substrate is moved orthogonally to the aperture's major dimension. The beam impinges the substrate through the aperture during movement. The substrate may be periodically rotated by approximately 180° to reorient the features relative to the major dimension of the rectangular aperture. The resulting treatment profile is symmetrical about the sides of the features oriented toward the major dimension of the rectangular aperture.
    Type: Grant
    Filed: August 11, 2004
    Date of Patent: February 1, 2011
    Assignee: Veeco Instruments Inc.
    Inventors: Boris Druz, Viktor Kanarov, Hariharakeshave S. Hegde, Alan V. Hayes, Emmanuel Lakios
  • Patent number: 7557362
    Abstract: Ion sources and methods for generating an ion beam with a controllable ion current density distribution. The ion source includes a discharge chamber and an electromagnet adapted to generate a magnetic field for changing a density distribution of the plasma inside the discharge chamber and, thereby, to change the ion current density distribution.
    Type: Grant
    Filed: February 26, 2007
    Date of Patent: July 7, 2009
    Assignee: Veeco Instruments Inc.
    Inventors: Rustam Yevtukhov, Alan V. Hayes, Viktor Kanarov, Boris L. Druz
  • Publication number: 20090098306
    Abstract: Method and apparatus for processing a substrate with an energetic particle beam. Features on the substrate are oriented relative to the energetic particle beam and the substrate is scanned through the energetic particle beam. The substrate is periodically indexed about its azimuthal axis of symmetry, while shielded from exposure to the energetic particle beam, to reorient the features relative to the major dimension of the beam.
    Type: Application
    Filed: September 18, 2008
    Publication date: April 16, 2009
    Applicant: Veeco Instruments Inc.
    Inventors: Boris Druz, Roger P. Fremgen, JR., Alan V. Hayes, Viktor Kanarov, Robert Krause, Ira Reiss, Piero Sferlazzo
  • Patent number: 7414355
    Abstract: A charged particle apparatus, with multiple electrically conducting semispheric grid electrodes, the grid electrodes mounted in a dielectric mounting ring, with hidden areas or regions to maintain electrical isolation between the grid electrodes as sputter deposits form on the grid electrodes and mounting ring. The grid electrodes are mounted to the mounting ring with slots and fastening pins that allow sliding thermal expansion and contraction between the grid electrodes and mounting ring while substantially maintaining alignment of grid openings and spacing between the grid electrodes. Asymmetric fastening pins facilitate the sliding thermal expansion while restraining the grid electrodes. Electrical contactors supply and maintain electrical potentials of the grid electrodes with spring loaded sliding contacts, without substantially affecting the thermal characteristics of the grid electrodes.
    Type: Grant
    Filed: August 18, 2005
    Date of Patent: August 19, 2008
    Assignee: Veeco Instruments, Inc.
    Inventors: Viktor Kanarov, Alan V. Hayes, Rustam Yevtukhov, Daniel Yakovlevitch
  • Publication number: 20080179284
    Abstract: Methods of operating an electromagnet of an ion source for generating an ion beam with a controllable ion current density distribution. The methods may include generating plasma in a discharge space of the ion source, generating and shaping a magnetic field in the discharge space by applying a current to an electromagnet that is effective to define a plasma density distribution, extracting an ion beam from the plasma, measuring a distribution profile for the ion beam density, and comparing the actual distribution profile with a desired distribution profile for the ion beam density. Based upon the comparison, the current applied to the electromagnet may be adjusted either manually or automatically to modify the magnetic field in the discharge space and, thereby, alter the plasma density distribution.
    Type: Application
    Filed: February 26, 2008
    Publication date: July 31, 2008
    Applicant: VEECO INSTRUMENTS INC.
    Inventors: Alan V. Hayes, Rustam Yevtukhov, Viktor Kanarov, Boris L. Druz
  • Publication number: 20070194245
    Abstract: Ion sources and methods for generating an ion beam with a controllable ion current density distribution. The ion source includes a discharge chamber and an electromagnet adapted to generate a magnetic field for changing a density distribution of the plasma inside the discharge chamber and, thereby, to change the ion current density distribution.
    Type: Application
    Filed: February 26, 2007
    Publication date: August 23, 2007
    Applicant: VEECO INSTRUMENTS INC.
    Inventors: Rustam Yevtukhov, Alan Hayes, Viktor Kanarov, Boris Druz
  • Patent number: 7183716
    Abstract: A charged particle source utilizes a novel plasma processing chamber, RF coil and ion optics, to achieve high uniformity. The plasma processing chamber has a re-entrant vessel which is movable, and which includes extensions of adjustable shape or position, to make more uniform the plasma contained within the chamber. One or more magnets, which may be static or moving, may be included within the re-entrant vessel. The ion optics include a grid with a number of apertures, and tuning features each surrounding an aperture. These tuning features either reduce the diameter of the associated aperture, or increase the length of that aperture, to create more uniform beamlets emerging from the grid. The RF coil includes a flux concentrator positioned adjacent to the winding in at least one angular region thereof to tune the magnetic field produced thereby.
    Type: Grant
    Filed: February 4, 2004
    Date of Patent: February 27, 2007
    Assignee: Veeco Instruments, Inc.
    Inventors: Viktor Kanarov, Alan V. Hayes, Rustam Yevtukhov, Ira Reiss, Roger P. Fremgen, Jr., Adrian Celaru, Kurt E. Williams, Carlos Fernando de Mello Borges, Boris L. Druz, Renga Rajan, Hari Hegde
  • Publication number: 20060192132
    Abstract: A charged particle apparatus, with multiple electrically conducting semispheric grid electrodes, the grid electrodes mounted in a dielectric mounting ring, with hidden areas or regions to maintain electrical isolation between the grid electrodes as sputter deposits form on the grid electrodes and mounting ring. The grid electrodes are mounted to the mounting ring with slots and fastening pins that allow sliding thermal expansion and contraction between the grid electrodes and mounting ring while substantially maintaining alignment of grid openings and spacing between the grid electrodes. Asymmetric fastening pins facilitate the sliding thermal expansion while restraining the grid electrodes. Electrical contactors supply and maintain electrical potentials of the grid electrodes with spring loaded sliding contacts, without substantially affecting the thermal characteristics of the grid electrodes.
    Type: Application
    Filed: August 18, 2005
    Publication date: August 31, 2006
    Inventors: Viktor Kanarov, Alan Hayes, Rustam Yevtukhov, Daniel Yakovlevitch
  • Patent number: 7005782
    Abstract: A charged particle apparatus, with multiple electrically conducting semispheric grid electrodes, the grid electrodes mounted in a dielectric mounting ring, with hidden areas or regions to maintain electrical isolation between the grid electrodes as sputter deposits form on the grid electrodes and mounting ring. The grid electrodes are mounted to the mounting ring with slots and fastening pins that allow sliding thermal expansion and contraction between the grid electrodes and mounting ring while substantially maintaining alignment of grid openings and spacing between the grid electrodes. Asymmetric fastening pins facilitate the sliding thermal expansion while restraining the grid electrodes. Electrical contactors supply and maintain electrical potentials of the grid electrodes with spring loaded sliding contacts, without substantially affecting the thermal characteristics of the grid electrodes.
    Type: Grant
    Filed: May 27, 2004
    Date of Patent: February 28, 2006
    Assignee: VEECO Instruments, Inc.
    Inventors: Viktor Kanarov, Alan V. Hayes, Rustam Yevtukhov, Daniel Yakovlevitch
  • Publication number: 20050034979
    Abstract: Method and apparatus for processing a substrate with a beam of energetic particles. The beam is directed from a source through a rectangular aperture in a shield positioned between the source and substrate to a treatment zone in a plane of substrate movement. Features on the substrate are aligned parallel to a major dimension of the rectangular aperture and the substrate is moved orthogonally to the aperture's major dimension. The beam impinges the substrate through the aperture during movement. The substrate may be periodically rotated by approximately 180° to reorient the features relative to the major dimension of the rectangular aperture. The resulting treatment profile is symmetrical about the sides of the features oriented toward the major dimension of the rectangular aperture.
    Type: Application
    Filed: August 11, 2004
    Publication date: February 17, 2005
    Inventors: Boris Druz, Viktor Kanarov, Hariharakeshave Hegde, Alan Hayes, Emmanuel Lakios
  • Publication number: 20040212288
    Abstract: A charged particle apparatus, with multiple electrically conducting semispheric grid electrodes, the grid electrodes mounted in a dielectric mounting ring, with hidden areas or regions to maintain electrical isolation between the grid electrodes as sputter deposits form on the grid electrodes and mounting ring. The grid electrodes are mounted to the mounting ring with slots and fastening pins that allow sliding thermal expansion and contraction between the grid electrodes and mounting ring while substantially maintaining alignment of grid openings and spacing between the grid electrodes. Asymmetric fastening pins facilitate the sliding thermal expansion while restraining the grid electrodes. Electrical contactors supply and maintain electrical potentials of the grid electrodes with spring loaded sliding contacts, without substantially affecting the thermal characteristics of the grid electrodes.
    Type: Application
    Filed: May 27, 2004
    Publication date: October 28, 2004
    Inventors: Viktor Kanarov, Alan V. Hayes, Rustam Yevtukhov, Daniel Yakovlevitch