Patents by Inventor Stanislaw Koziol

Stanislaw Koziol 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: 20240047187
    Abstract: A nebuliser outlet comprises an inlet end and an outlet end, a first channel and one or more second channels arranged between the inlet end and the outlet end. The first channel is configured to receive a capillary, and the one or more second channels are configured to pass gas to the outlet end. The nebuliser outlet is a single integrated component.
    Type: Application
    Filed: October 18, 2023
    Publication date: February 8, 2024
    Applicant: Micromass UK Limited
    Inventors: Ian Trivett, Anthony Hesse, Mark Walford, Daniel J. Kenny, David Gordon, Stanislaw Koziol, Steve D. Trudeau, Alastair M. Booth, Stephen Ayrton
  • Patent number: 11837453
    Abstract: A nebuliser outlet comprises an inlet end and an outlet end, a first channel and one or more second channels arranged between the inlet end and the outlet end. The first channel is configured to receive a capillary, and the one or more second channels are configured to pass gas to the outlet end. The nebuliser outlet is a single integrated component.
    Type: Grant
    Filed: June 23, 2021
    Date of Patent: December 5, 2023
    Assignee: Micromass UK Limited
    Inventors: Ian David Trivett, Anthony Hesse, Mark Walford, Daniel J. Kenny, David Gordon, Stanislaw Koziol, Steve D. Trudeau, Alastair M. Booth, Stephen Ayrton
  • Patent number: 11717770
    Abstract: A variable fluidic restrictor of a liquid chromatography system including a stator body, the stator body include a plurality of fluidic channels located within the stator body, wherein each fluidic channel of the plurality of fluidic channels includes a restrictor element, wherein a flow of a fluid through the variable fluidic restrictor is selectively restricted based on a position of an external element coupled to the stator body is provided. Furthermore, an associated method is also provided.
    Type: Grant
    Filed: April 8, 2022
    Date of Patent: August 8, 2023
    Assignee: Waters Technologies Corporation
    Inventors: Zongren Shang, Stanislaw Koziol, Joseph D. Michienzi, Michael Eggertson, Keith Fadgen
  • Publication number: 20220226750
    Abstract: A variable fluidic restrictor of a liquid chromatography system including a stator body, the stator body include a plurality of fluidic channels located within the stator body, wherein each fluidic channel of the plurality of fluidic channels includes a restrictor element, wherein a flow of a fluid through the variable fluidic restrictor is selectively restricted based on a position of an external element coupled to the stator body is provided. Furthermore, an associated method is also provided.
    Type: Application
    Filed: April 8, 2022
    Publication date: July 21, 2022
    Inventors: Zongren Shang, Stanislaw Koziol, Joseph D. Michienzi, Michael Eggertson, Keith Fadgen
  • Patent number: 11325055
    Abstract: A variable fluidic restrictor of a liquid chromatography system including a stator body, the stator body include a plurality of fluidic channels located within the stator body, wherein each fluidic channel of the plurality of fluidic channels includes a restrictor element, wherein a flow of a fluid through the variable fluidic restrictor is selectively restricted based on a position of an external element coupled to the stator body is provided. Furthermore, an associated method is also provided.
    Type: Grant
    Filed: August 20, 2019
    Date of Patent: May 10, 2022
    Assignee: WATERS TECHNOLOGIES CORPORATION
    Inventors: Zongren Shang, Stanislaw Koziol, Joseph D. Michienzi, Michael Eggertson, Keith Fadgen
  • Patent number: 11275061
    Abstract: Described is a fluidic manifold that includes a block formed of multiple layers each bonded to at least one adjacent layer at a layer interface. Bonding may be achieved using a diffusion bonding process. The block includes one or more attachment surfaces and at least two fluidic channels. Each fluidic channel is at least partially disposed at one of the layer interfaces and has a first end at one of the attachment surfaces. Each attachment surface includes an attachment feature at the first end of one of the fluidic channels to enable a fluidic coupling of the two fluidic channels through a fluidic component. Attachment features include, for example, a compression fitting coupling body adapted to receive a conventional seal, such as a ferrule and compression screw, and a fitting body that permits a face seal or gasket seal between the fluidic component and the block.
    Type: Grant
    Filed: August 20, 2019
    Date of Patent: March 15, 2022
    Assignee: WATERS TECHNOLOGIES CORPORATION
    Inventors: Jeffrey Musacchio, Keith Fadgen, Joseph D. Michienzi, Stanislaw Koziol
  • Publication number: 20210398789
    Abstract: A nebuliser outlet comprises an inlet end and an outlet end, a first channel and one or more second channels arranged between the inlet end and the outlet end. The first channel is configured to receive a capillary, and the one or more second channels are configured to pass gas to the outlet end. The nebuliser outlet is a single integrated component.
    Type: Application
    Filed: June 23, 2021
    Publication date: December 23, 2021
    Inventors: Ian David Trivett, Anthony Hesse, Mark Walford, Daniel J. Kenny, David Gordon, Stanislaw Koziol, Steve D. Trudeau, Alastair Booth, Stephen Aryton
  • Publication number: 20200064312
    Abstract: Described is a fluidic manifold that includes a block formed of multiple layers each bonded to at least one adjacent layer at a layer interface. Bonding may be achieved using a diffusion bonding process. The block includes one or more attachment surfaces and at least two fluidic channels. Each fluidic channel is at least partially disposed at one of the layer interfaces and has a first end at one of the attachment surfaces. Each attachment surface includes an attachment feature at the first end of one of the fluidic channels to enable a fluidic coupling of the two fluidic channels through a fluidic component. Attachment features include, for example, a compression fitting coupling body adapted to receive a conventional seal, such as a ferrule and compression screw, and a fitting body that permits a face seal or gasket seal between the fluidic component and the block.
    Type: Application
    Filed: August 20, 2019
    Publication date: February 27, 2020
    Inventors: Jeffrey Musacchio, Keith Fadgen, Joseph D. Michienzi, Stanislaw Koziol
  • Publication number: 20200064316
    Abstract: A variable fluidic restrictor of a liquid chromatography system including a stator body, the stator body include a plurality of fluidic channels located within the stator body, wherein each fluidic channel of the plurality of fluidic channels includes a restrictor element, wherein a flow of a fluid through the variable fluidic restrictor is selectively restricted based on a position of an external element coupled to the stator body is provided. Furthermore, an associated method is also provided.
    Type: Application
    Filed: August 20, 2019
    Publication date: February 27, 2020
    Inventors: Zongren Shang, Stanislaw Koziol, Joseph D. Michienzi, Michael Eggertson, Keith Fadgen
  • Patent number: 10155177
    Abstract: A liquid-chromatography module includes a microfluidic cartridge housing a microfluidic substrate with a channel for transporting fluid. The microfluidic substrate has fluidic apertures through which fluid is supplied to the channel. One side of the cartridge has nozzle openings, each aligning with a fluidic aperture in the microfluidic substrate and receiving a fluidic nozzle. A clamping assembly has a plunger that is movable into a clamped position and an end housing that defines a chamber. One wall of the end housing has a fluidic block with fluidic nozzles extending into the chamber. A second wall has a slot through which the cartridge enters the chamber. When moved into the clamped position while the cartridge is in the chamber, the plunger urges the cartridge against the fluidic block such that each fluidic nozzle enters one nozzle opening and establishes fluidic communication with one fluidic aperture in the microfluidic substrate.
    Type: Grant
    Filed: June 23, 2015
    Date of Patent: December 18, 2018
    Assignee: WATERS TECHNOLOGIES CORPORATION
    Inventors: David P. Prentice, Russell L. Keene, Stanislaw Koziol, Joseph D. Michienzi, Paul E. Linderson, Gary W. Bertone
  • Patent number: 9482650
    Abstract: Described are techniques for use with a sealing member forming a static seal or a dynamic seal at a surface thereof. The sealing member has at least the surface thereof formed from one of VESPELĀ® SCP 5000 material or VESPELĀ® SCP 50094 material.
    Type: Grant
    Filed: January 11, 2011
    Date of Patent: November 1, 2016
    Assignee: Waters Technologies Corporation
    Inventors: Marc E. Lemelin, Tony A. Lin, Mark W. Moeller, Stanislaw Koziol, James E. Usowicz
  • Patent number: 9242192
    Abstract: An apparatus for chemical separations includes a microfluidic substrate having an outlet aperture for outputting an eluent of a sample, a spray unit having an inlet to receive the eluent and an outlet to emit a spray of the eluent, and a force-applying unit. The spray unit has a deformable portion defining the inlet and having an elastic modulus that is lower than an elastic modulus of the microfluidic substrate. The force-applying unit, such as a spring, is disposed to urge the deformable portion in contact with the substrate to form a substantially fluid-tight seal.
    Type: Grant
    Filed: May 8, 2014
    Date of Patent: January 26, 2016
    Assignee: Waters Technologies Corporation
    Inventors: David P. Prentice, Russell L. Keene, Stanislaw Koziol, Joseph D. Michienzi, Paul E. Linderson
  • Publication number: 20150290644
    Abstract: A liquid-chromatography module includes a microfluidic cartridge housing a microfluidic substrate with a channel for transporting fluid. The microfluidic substrate has fluidic apertures through which fluid is supplied to the channel. One side of the cartridge has nozzle openings, each aligning with a fluidic aperture in the microfluidic substrate and receiving a fluidic nozzle. A clamping assembly has a plunger that is movable into a clamped position and an end housing that defines a chamber. One wall of the end housing has a fluidic block with fluidic nozzles extending into the chamber. A second wall has a slot through which the cartridge enters the chamber. When moved into the clamped position while the cartridge is in the chamber, the plunger urges the cartridge against the fluidic block such that each fluidic nozzle enters one nozzle opening and establishes fluidic communication with one fluidic aperture in the microfluidic substrate.
    Type: Application
    Filed: June 23, 2015
    Publication date: October 15, 2015
    Inventors: David P. Prentice, Russell L. Keene, Stanislaw Koziol, Joseph D. Michienzi, Paul E. Linderson, Gary W. Bertone
  • Patent number: 9095791
    Abstract: A liquid-chromatography module includes a microfluidic cartridge housing a microfluidic substrate with a channel for transporting fluid. The microfluidic substrate has fluidic apertures through which fluid is supplied to the channel. One side of the cartridge has nozzle openings, each aligning with a fluidic aperture in the microfluidic substrate and receiving a fluidic nozzle. A clamping assembly has a plunger that is movable into a clamped position and an end housing that defines a chamber. One wall of the end housing has a fluidic block with fluidic nozzles extending into the chamber. A second wall has a slot through which the cartridge enters the chamber. When moved into the clamped position while the cartridge is in the chamber, the plunger urges the cartridge against the fluidic block such that each fluidic nozzle enters one nozzle opening and establishes fluidic communication with one fluidic aperture in the microfluidic substrate.
    Type: Grant
    Filed: March 5, 2010
    Date of Patent: August 4, 2015
    Assignee: Waters Technologies Corporation
    Inventors: David P. Prentice, Russell L. Keene, Stanislaw Koziol, Joseph D. Michienzi, Paul E. Linderson, Gary W. Bertone
  • Publication number: 20140319042
    Abstract: An apparatus for chemical separations includes a microfluidic substrate having an outlet aperture for outputting an eluent of a sample, a spray unit having an inlet to receive the eluent and an outlet to emit a spray of the eluent, and a force-applying unit. The spray unit has a deformable portion defining the inlet and having an elastic modulus that is lower than an elastic modulus of the microfluidic substrate. The force-applying unit, such as a spring, is disposed to urge the deformable portion in contact with the substrate to form a substantially fluid-tight seal.
    Type: Application
    Filed: May 8, 2014
    Publication date: October 30, 2014
    Applicant: Waters Technologies Corporation
    Inventors: David P. Prentice, Russell L. Keene, Stanislaw Koziol, Joseph D. Michienzi, Paul E. Linderson
  • Publication number: 20120037724
    Abstract: An apparatus for chemical separations includes a microfluidic substrate having an outlet aperture for outputting an eluent of a sample, a spray unit having an inlet to receive the eluent and an outlet to emit a spray of the eluent, and a force-applying unit. The spray unit has a deformable portion defining the inlet and having an elastic modulus that is lower than an elastic modulus of the microfluidic substrate. The force-applying unit, such as a spring, is disposed to urge the deformable portion in contact with the substrate to form a substantially fluid-tight seal.
    Type: Application
    Filed: March 5, 2010
    Publication date: February 16, 2012
    Applicant: WATERS TECHNOLOGIES CORPORATION
    Inventors: David P. Prentice, Russell L. Keene, Stanislaw Koziol, Joseph D. Michienzi, Paul E. Linderson
  • Publication number: 20120024399
    Abstract: A liquid-chromatography module includes a microfluidic cartridge housing a microfluidic substrate with a channel for transporting fluid. The microfluidic substrate has fluidic apertures through which fluid is supplied to the channel. One side of the cartridge has nozzle openings, each aligning with a fluidic aperture in the microfluidic substrate and receiving a fluidic nozzle. A clamping assembly has a plunger that is movable into a clamped position and an end housing that defines a chamber. One wall of the end housing has a fluidic block with fluidic nozzles extending into the chamber. A second wall has a slot through which the cartridge enters the chamber. When moved into the clamped position while the cartridge is in the chamber, the plunger urges the cartridge against the fluidic block such that each fluidic nozzle enters one nozzle opening and establishes fluidic communication with one fluidic aperture in the microfluidic substrate.
    Type: Application
    Filed: March 5, 2010
    Publication date: February 2, 2012
    Applicant: WATERS TECHNOLOGIES CORPORATION
    Inventors: David P. Prentice, Russell L. Keene, Stanislaw Koziol, Joseph D. Michienzi, Paul E. Linderson, Gary W. Bertone
  • Patent number: 8035088
    Abstract: The invention comprises apparatus for use with atmospheric pressure ionization sources in which an aerosol is formed from a solution of a sample. The aerosol is received in a hollow member and discharged outside the chamber of the ionization source in order to reduce contamination of the ionization source itself by involatile material in the solution and by previously analysed samples. The hollow member is easily removable from the ionization source to facilitate cleaning and replacement. Ionization sources, mass spectrometers, and ion mobility spectrometers comprising the apparatus are also described.
    Type: Grant
    Filed: March 19, 2008
    Date of Patent: October 11, 2011
    Assignee: Waters Technologies Corporation
    Inventors: Michael J. Tomany, Joseph A. Jarrell, Stanislaw Koziol, Wade P. Leveille
  • Patent number: 7863561
    Abstract: An apparatus for performing chemical analyses includes a mass spectrometry module and an interface module that processes sample materials for delivery to the mass spectrometry module. The interface module includes a vessel having an opening to access a vessel chamber, a door to block the opening, a sealing member disposed between the door and the vessel, and an interlock. The interlock is actuated by the sealing member if the door is in the closed position and the sealing member is properly disposed between the door and the vessel to seal the vessel. The sealing member alternatively includes an indicator portion that is visible to an operator if the door is in the closed position and the sealing member is properly disposed.
    Type: Grant
    Filed: June 26, 2006
    Date of Patent: January 4, 2011
    Assignee: Waters Technologies Corporation
    Inventors: Joseph A. Jarrell, Stanislaw Koziol, Peter Pino, Theodore D. Ciolkosz
  • Publication number: 20100133431
    Abstract: The invention comprises apparatus for use with atmospheric pressure ionization sources in which an aerosol is formed from a solution of a sample. The aerosol is received in a hollow member and discharged outside the chamber of the ionization source in order to reduce contamination of the ionization source itself by involatile material in the solution and by previously analysed samples. The hollow member is easily removable from the ionization source to facilitate cleaning and replacement. Ionization sources, mass spectrometers, and ion mobility spectrometers comprising the apparatus are also described.
    Type: Application
    Filed: March 19, 2008
    Publication date: June 3, 2010
    Applicant: WATERS TECHNOLOGIES CORPORATION
    Inventors: Michael J. Tomany, Joseph A. Jarrell, Stanislaw Koziol, Wade P. Leveille