Patents by Inventor Viatcheslav V. Kovtoun

Viatcheslav V. Kovtoun 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: 9831076
    Abstract: A device and associated method are disclosed for interfacing an ion trap to a pulsed mass analyzer (such as a time-of-flight analyzer) in a mass spectrometer. The device includes a plurality of separate confinement cells and structures for directing ions into a selected one of the confinement cells. Ions are ejected from the ion trap in a series of temporally successive ion packets. Each ion packet (which may consist of ions of like mass-to-charge ratio), is received by the ion interface device, fragmented to form product ions, and then stored and cooled in the selected confinement cell. Storage and cooling of the ion packet occurs concurrently with the receipt and storage of at least one later-ejected ion packet. After a predetermined cooling period, the ion packet is released to the mass analyzer for acquisition of a mass spectrum.
    Type: Grant
    Filed: November 2, 2011
    Date of Patent: November 28, 2017
    Assignee: Thermo Finnigan LLC
    Inventor: Viatcheslav V. Kovtoun
  • Patent number: 9812310
    Abstract: Ions provided from an ion source are separated ions into a plurality of different ion groups according to at least one ion property. At least some of the different ion groups are stored in an ion storage array, which comprises a plurality of independently operable storage cells, each storage cell being arranged to receive and store a different ion group. A controller is programmed to cause selective switching of each of the storage cells between an ion receiving mode and an ion storage mode, and between the ion storage mode and an ion release mode. In particular, the switching of each storage cell is controllable independently of the switching of any of the other storage cells. Upon release from a respective storage cell of the array, ions are provided to one or more mass analyzers for subsequent analysis.
    Type: Grant
    Filed: April 17, 2017
    Date of Patent: November 7, 2017
    Assignee: Thermo Finnigan LLC
    Inventors: Viatcheslav V. Kovtoun, Alexander A. Makarov
  • Publication number: 20170256389
    Abstract: An apparatus for separating ions includes an electrode arrangement having a length extending between first and second ends. The first end is configured to introduce a beam of ions into an ion transmission space of the arrangement. An electronic controller applies an RF potential and a DC potential to an electrode of the electrode arrangement, for generating a ponderomotive RF electric field and a mass-independent DC electric field. The application of the potentials is controlled such that a ratio of the strength of the ponderomotive RF electric field to the strength of the mass-independent DC electric field varies along the length of the electrode arrangement. The generated electric field supports extraction of ions having different m/z values at respective different positions along the length of the electrode arrangement. Ions are extracted in one of increasing and decreasing sequential order of m/z ratio with increasing distance from the first end.
    Type: Application
    Filed: March 3, 2016
    Publication date: September 7, 2017
    Inventors: Dmitry E. GRINFELD, Mikhail V. UGAROV, Viatcheslav V. KOVTOUN, Alexander A. MAKAROV
  • Publication number: 20170221689
    Abstract: Ions provided from an ion source are separated ions into a plurality of different ion groups according to at least one ion property. At least some of the different ion groups are stored in an ion storage array, which comprises a plurality of independently operable storage cells, each storage cell being arranged to receive and store a different ion group. A controller is programmed to cause selective switching of each of the storage cells between an ion receiving mode and an ion storage mode, and between the ion storage mode and an ion release mode. In particular, the switching of each storage cell is controllable independently of the switching of any of the other storage cells. Upon release from a respective storage cell of the array, ions are provided to one or more mass analyzers for subsequent analysis.
    Type: Application
    Filed: April 17, 2017
    Publication date: August 3, 2017
    Inventors: Viatcheslav V. KOVTOUN, Alexander A. MAKAROV
  • Patent number: 9543136
    Abstract: A method of making an ion optics component includes providing an electrically isolating substrate and machining away material of the substrate from at least one major surface thereof to form features of a first electrode sub-assembly. The formed features include a first surface for supporting integration of a first electrode body and a second surface for supporting integration of a second electrode body. Subsequent plating and masking steps result in the formation of a first electrode body on the first surface and a second electrode body on the second surface. A bridge is integrally formed in the electrically isolating material, so as to electrically isolate the first electrode body from the second electrode body.
    Type: Grant
    Filed: May 13, 2013
    Date of Patent: January 10, 2017
    Assignee: Thermo Finnigan LLC
    Inventors: Viatcheslav V. Kovtoun, Andrew W. Schirmer, Syed F. Rizvi, Philip M. Remes
  • Patent number: 9524857
    Abstract: A method of making an ion optics component includes providing an electrically isolating substrate and machining away material of the substrate from at least one major surface thereof to form features of a first electrode sub-assembly. The formed features include a first surface for supporting integration of a first electrode body and a second surface for supporting integration of a second electrode body. Subsequent plating and masking steps result in the formation of a first electrode body on the first surface and a second electrode body on the second surface. A bridge is integrally formed in the electrically isolating material, so as to electrically isolate the first electrode body from the second electrode body.
    Type: Grant
    Filed: April 7, 2016
    Date of Patent: December 20, 2016
    Assignee: Thermo Finnigan LLC
    Inventors: Viatcheslav V. Kovtoun, Andrew W. Schirmer, Syed F. Rizvi, Philip M. Remes
  • Patent number: 9508538
    Abstract: An ion transport device can include a plurality of pole rod pairs arranged in parallel, and a controller. The controller configured to can be configured to apply voltages in a repeating voltage pattern of to the pole rod pairs thereby creating a plurality of potential wells capable of capturing ions, and move the repeating voltage pattern along the pole rod pairs to move captured ions along the ion transport device. The ion transport device can be incorporated into a mass spectrometer.
    Type: Grant
    Filed: April 18, 2016
    Date of Patent: November 29, 2016
    Assignee: Thermo Finnigan LLC
    Inventor: Viatcheslav V. Kovtoun
  • Publication number: 20160233066
    Abstract: An ion transport device can include a plurality of pole rod pairs arranged in parallel, and a controller. The controller configured to can be configured to apply voltages in a repeating voltage pattern of to the pole rod pairs thereby creating a plurality of potential wells capable of capturing ions, and move the repeating voltage pattern along the pole rod pairs to move captured ions along the ion transport device. The ion transport device can be incorporated into a mass spectrometer.
    Type: Application
    Filed: April 18, 2016
    Publication date: August 11, 2016
    Inventor: Viatcheslav V. KOVTOUN
  • Publication number: 20160225599
    Abstract: A method of making an ion optics component includes providing an electrically isolating substrate and machining away material of the substrate from at least one major surface thereof to form features of a first electrode sub-assembly. The formed features include a first surface for supporting integration of a first electrode body and a second surface for supporting integration of a second electrode body. Subsequent plating and masking steps result in the formation of a first electrode body on the first surface and a second electrode body on the second surface. A bridge is integrally formed in the electrically isolating material, so as to electrically isolate the first electrode body from the second electrode body.
    Type: Application
    Filed: April 7, 2016
    Publication date: August 4, 2016
    Inventors: Viatcheslav V. KOVTOUN, Andrew W. SCHIRMER, Syed F. RIZVI, Philip M. REMES
  • Publication number: 20160203969
    Abstract: Ions provided from an ion source are separated ions into a plurality of different ion groups according to at least one ion property. At least some of the different ion groups are stored in an ion storage array, which comprises a plurality of independently operable storage cells, each storage cell being arranged to receive and store a different ion group. A controller is programmed to cause selective switching of each of the storage cells between an ion receiving mode and an ion storage mode, and between the ion storage mode and an ion release mode. In particular, the switching of each storage cell is controllable independently of the switching of any of the other storage cells. Upon release from a respective storage cell of the array, ions are provided to one or more mass analyzers for subsequent analysis.
    Type: Application
    Filed: March 18, 2016
    Publication date: July 14, 2016
    Inventors: Viatcheslav V. KOVTOUN, Alexander A. MAKAROV
  • Patent number: 9330894
    Abstract: An ion transport device can include a plurality of pole rod pairs arranged in parallel, and a controller. The controller can be configured to apply voltages in a repeating voltage pattern to the pole rod pairs thereby creating a plurality of potential wells capable of capturing ions, and move the repeating voltage pattern along the pole rod pairs to move captured ions along the ion transport device. The ion transport device can be incorporated into a mass spectrometer.
    Type: Grant
    Filed: February 3, 2015
    Date of Patent: May 3, 2016
    Assignee: Thermo Finnigan LLC
    Inventor: Viatcheslav V. Kovtoun
  • Patent number: 9293316
    Abstract: Ions provided from an ion source are separated ions into a plurality of different ion groups according to at least one ion property. At least some of the different ion groups are stored in an ion storage array, which comprises a plurality of independently operable storage cells, each storage cell being arranged to receive and store a different ion group. A controller is programmed to cause selective switching of each of the storage cells between an ion receiving mode and an ion storage mode, and between the ion storage mode and an ion release mode. In particular, the switching of each storage cell is controllable independently of the switching of any of the other storage cells. Upon release from a respective storage cell of the array, ions are provided to one or more mass analyzers for subsequent analysis.
    Type: Grant
    Filed: March 27, 2015
    Date of Patent: March 22, 2016
    Assignee: Thermo Finnigan LLC
    Inventors: Viatcheslav V. Kovtoun, Alexander A. Makarov
  • Publication number: 20150287585
    Abstract: Ions provided from an ion source are separated ions into a plurality of different ion groups according to at least one ion property. At least some of the different ion groups are stored in an ion storage array, which comprises a plurality of independently operable storage cells, each storage cell being arranged to receive and store a different ion group. A controller is programmed to cause selective switching of each of the storage cells between an ion receiving mode and an ion storage mode, and between the ion storage mode and an ion release mode. In particular, the switching of each storage cell is controllable independently of the switching of any of the other storage cells. Upon release from a respective storage cell of the array, ions are provided to one or more mass analyzers for subsequent analysis.
    Type: Application
    Filed: March 27, 2015
    Publication date: October 8, 2015
    Inventors: Viatcheslav V. KOVTOUN, Alexander A. MAKAROV
  • Publication number: 20140332694
    Abstract: A method of making an ion optics component includes providing an electrically isolating substrate and machining away material of the substrate from at least one major surface thereof to form features of a first electrode sub-assembly. The formed features include a first surface for supporting integration of a first electrode body and a second surface for supporting integration of a second electrode body. Subsequent plating and masking steps result in the formation of a first electrode body on the first surface and a second electrode body on the second surface. A bridge is integrally formed in the electrically isolating material, so as to electrically isolate the first electrode body from the second electrode body.
    Type: Application
    Filed: May 13, 2013
    Publication date: November 13, 2014
    Inventors: Viatcheslav V. KOVTOUN, Andrew W. SCHIRMER, Syed F. RIZVI, Philip M. REMES
  • Patent number: 8785847
    Abstract: A mass spectrometer having an ion guide with an axial field is described. The ion guide includes electrodes with longitudinally extending gaps and inserts configured to be proximate to the gaps.
    Type: Grant
    Filed: February 15, 2012
    Date of Patent: July 22, 2014
    Assignee: Thermo Finnigan LLC
    Inventors: Viatcheslav V. Kovtoun, Philip M. Remes, Yevgeniy N. Zhuk
  • Patent number: 8735818
    Abstract: A novel electron multiplier that regulates in real time the gain of downstream dynodes as the instrument receives input signals is introduced. In particular, the methods, electron multiplier structures, and coupled control circuits of the present invention enable a resultant on the fly control signal to be generated upon receiving a predetermined threshold detection signal so as to enable the voltage regulation of one or more downstream dynodes near the output of the device. Accordingly, such a novel design, as presented herein, prevents the dynodes near the output of the instrument from being exposed to deleterious current pulses that can accelerate the aging process of the dynode structures that are essential to the device.
    Type: Grant
    Filed: March 31, 2010
    Date of Patent: May 27, 2014
    Assignee: Thermo Finnigan LLC
    Inventors: Viatcheslav V. Kovtoun, Raman Mathur
  • Patent number: 8629409
    Abstract: A device and associated methods of operations are disclosed for interfacing on ion trap to a mass analyzer, such as a TOF mass analyzer. The device includes a plurality of sequentially arranged confinement cells having fixed locations. A group of ions, e.g., ions within a relatively narrow window of mass-to-charge ratio, is received by the device from the ion trap, undergoes fragmentation, and is transported through the device from a first to final confinement cell by a series of transfers between adjacent cells. The ion group is confined in each cell for a prescribed cooling period. By providing a suitable aggregate ion confinement time and by enabling concurrent transport and cooling of successively ejected ion groups, the ions are cooled sufficiently to enable the acquisition of mass spectra at high resolution, without having to substantially delay the ejection of a subsequent group of ions from the ion trap until cooling of the previous group is completed.
    Type: Grant
    Filed: January 31, 2012
    Date of Patent: January 14, 2014
    Assignee: Thermo Finnigan LLC
    Inventor: Viatcheslav V. Kovtoun
  • Patent number: 8581177
    Abstract: A novel high ion storage/ion mobility separation mass spectrometer that provides for a high duty cycle of operation is presented herein. In particular, the example embodiments, as disclosed herein, provides for a high ion storage/ion mobility instrument that beneficially includes a two-dimensional (2D) plurality of adjacently arranged ion confinement channels to provide a high storage bank of a desired mass range of ions. Such ions, via ion mobility transport, are separated into smaller fractions of an overall mass window into desired confinement regions of the disclosed 2D confinement channels and thereafter transferred out in a manner so as to enable the aforementioned novel high-duty cycle of sequential operation.
    Type: Grant
    Filed: April 11, 2011
    Date of Patent: November 12, 2013
    Assignee: Thermo Finnigan LLC
    Inventor: Viatcheslav V. Kovtoun
  • Patent number: 8546753
    Abstract: An electrospray ion source apparatus comprises: a plurality of emitter capillaries, each comprising an internal bore for transporting a portion of a liquid sample from a source, an electrode portion for providing a first applied electric potential and an emitter tip for emitting a cloud of charged particles generated from the liquid sample portion; a counter electrode for providing a second applied electric potential different from the first applied electric potential; and at least one shield electrode disposed at least partially between the counter electrode and the emitter tip of at least one of the emitter capillaries for providing a third applied electric potential intermediate to the first and second applied electric potentials, wherein the at least one shield electrode is configured such that provision of the third applied electric potential to the at least one shield electrode minimizes electric field interference effects between the plurality of emitter capillaries.
    Type: Grant
    Filed: July 16, 2012
    Date of Patent: October 1, 2013
    Assignee: Thermo Finnigan LLC
    Inventors: Viatcheslav V. Kovtoun, Eloy R. Wouters, R. Paul Atherton
  • Publication number: 20130206973
    Abstract: A mass spectrometer having an ion guide with an axial field is described. The ion guide includes electrodes with longitudinally extending gaps and inserts configured to be proximate to the gaps.
    Type: Application
    Filed: February 15, 2012
    Publication date: August 15, 2013
    Inventors: Viatcheslav V. KOVTOUN, Philip M. Remes, Yevgeniy N. Zhuk