Patents by Inventor Tamara Druzhinina
Tamara Druzhinina 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).
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Publication number: 20240186107Abstract: An electron beam inspection apparatus, the apparatus including a plurality of electron beam columns, each electron beam column configured to provide an electron beam and detect scattered or secondary electrons from an object, and an actuator system configured to move one or more of the electron beam columns relative to another one or more of the electron beam columns, the actuator system including a plurality of first movable structures at least partly overlapping a plurality of second movable structures, the first and second movable structures supporting the plurality of electron beam columns.Type: ApplicationFiled: January 12, 2024Publication date: June 6, 2024Inventors: Bernardo KASTRUP, Johannes Catharinus Hubertus Mulkens, Marinus Aart Van Den Brink, Jozef Petrus Henricus Benschop, Erwin Paul Smakman, Tamara Druzhinina, Coen Adrianus Verschuren
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Patent number: 11875966Abstract: An electron beam inspection apparatus, the apparatus including a plurality of electron beam columns, each electron beam column configured to provide an electron beam and detect scattered or secondary electrons from an object, and an actuator system configured to move one or more of the electron beam columns relative to another one or more of the electron beam columns, the actuator system including a plurality of first movable structures at least partly overlapping a plurality of second movable structures, the first and second movable structures supporting the plurality of electron beam columns.Type: GrantFiled: August 16, 2021Date of Patent: January 16, 2024Assignee: ASML NETHERLANDS B.V.Inventors: Bernardo Kastrup, Johannes Catharinus Hubertus Mulkens, Marinus Aart Van Den Brink, Jozef Petrus Henricus Benschop, Erwin Paul Smakman, Tamara Druzhinina, Coen Adrianus Verschuren
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Publication number: 20230350301Abstract: Methods and apparatus for forming a patterned layer of material are disclosed. In one arrangement, a deposition-process material is provided in gaseous form. A layer of the deposition-process material is formed on the substrate by causing condensation or deposition of the gaseous deposition-process material. A selected portion of the layer of deposition-process material is irradiated to modify the deposition-process material in the selected portion.Type: ApplicationFiled: February 17, 2021Publication date: November 2, 2023Applicant: ASML NETHERLANDS B.V.Inventors: Evgenia KURGANOVA, Gosse Charles DE VRIES, Alexey Olegovich POLYAKOV, Jim Vincent OVERKAMP, Teis Johan COENEN, Tamara DRUZHININA, Sonia CASTELLANOS ORTEGA, Olivier Christian Maurice LUGIER
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Publication number: 20220213593Abstract: Methods and apparatus for forming a patterned layer of material are disclosed. In one arrangement, a selected portion of a surface of a substrate is irradiated during a deposition process, the irradiation being such as to locally drive the deposition process in the selected portion to form a layer of deposited material in a pattern defined by the selected portion. The deposited material is annealed to modify the deposited material.Type: ApplicationFiled: March 20, 2020Publication date: July 7, 2022Applicant: ASML NETHERLANDS B.V.Inventors: Tamara DRUZHININA, Jim Vincent OVERKAMP, Alexey Olegovich POLYAKOV, Teis Johan COENEN, Evgenia KURGANOVA, Ionel Mugurel CIOBICA, Alexander Ludwig KLEIN, Albertus Victor Gerardus MANGNUS, Marijke SCOTUZZI, Bastiaan Maurice VAN DEN BROEK
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Publication number: 20210375581Abstract: An electron beam inspection apparatus, the apparatus including a plurality of electron beam columns, each electron beam column configured to provide an electron beam and detect scattered or secondary electrons from an object, and an actuator system configured to move one or more of the electron beam columns relative to another one or more of the electron beam columns, the actuator system including a plurality of first movable structures at least partly overlapping a plurality of second movable structures, the first and second movable structures supporting the plurality of electron beam columns.Type: ApplicationFiled: August 16, 2021Publication date: December 2, 2021Applicant: ASML NETHERLANDS B.V.Inventors: Bernardo KASTRUP, Johannes Catharinus Hubertus MULKENS, Marinus Aart VAN DEN BRINK, Jozef Petrus Henricus BENSCHOP, Erwin Paul SMAKMAN, Tamara DRUZHININA, Coen Adrianus VERSCHUREN
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Patent number: 11094502Abstract: An electron beam inspection apparatus, the apparatus including a plurality of electron beam columns, each electron beam column configured to provide an electron beam and detect scattered or secondary electrons from an object, and an actuator system configured to move one or more of the electron beam columns relative to another one or more of the electron beam columns. The actuator system may include a plurality of first movable structures at least partly overlapping a plurality of second movable structures, the first and second movable structures supporting the plurality of electron beam columns.Type: GrantFiled: December 9, 2016Date of Patent: August 17, 2021Assignee: ASML Netherlands B.V.Inventors: Bernardo Kastrup, Johannes Catharinus Hubertus Mulkens, Marinus Aart Van Den Brink, Jozef Petrus Henricus Benschop, Erwin Paul Smakman, Tamara Druzhinina, Coen Adrianus Verschuren
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Patent number: 11092902Abstract: Disclosed is a method and associated inspection apparatus for detecting variations on a surface of a substrate. The method comprises providing patterned inspection radiation to a surface of a substrate. The inspection radiation is patterned such that an amplitude of a corresponding enhanced field is modulated in a manner corresponding to the patterned inspection radiation. The scattered radiation resultant from interaction between the enhanced field and the substrate surface is received and variations on the surface of the substrate are detected based on the interaction between the enhanced field and the substrate surface. Also disclosed is a method of detecting any changes to at least one characteristic of received radiation, the said changes being induced by the generation of a surface plasmon at said surface of the optical element.Type: GrantFiled: May 17, 2018Date of Patent: August 17, 2021Assignee: ASML Netherlands B.V.Inventors: Johannes Franciscus Martinus D'Achard Van Enschut, Tamara Druzhinina, Nitish Kumar, Sarathi Roy, Yang-Shan Huang, Arie Jeffrey Den Boef, Han-Kwang Nienhuys, Pieter-Jan Van Zwol, Sander Bas Roobol
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Publication number: 20210079519Abstract: Methods and apparatuses for forming a patterned layer of material are disclosed. In one arrangement, a selected portion of a surface of a substrate is irradiated with electromagnetic radiation having a wavelength of less than 100 nm during a deposition process. Furthermore, an electric field controller is configured to apply an electric field that is oriented so as to force secondary electrons away from the substrate. The irradiation locally drives the deposition process in the selected portion and thereby causes the deposition process to, for example, form a layer of material in a pattern defined by the selected portion.Type: ApplicationFiled: February 21, 2019Publication date: March 18, 2021Applicant: ASML NETHERLANDS B.V.Inventors: Pieter Willem Herman DE JAGER, Sander Frederik WUISTER, Marie-Claire VAN LARE, Ruben Cornelis MAAS, Alexey Olegovich POLYAKOV, Tamara DRUZHININA, Victoria VORONINA, Evgenia KURGANOVA, Jim Vincent OVERKAMP, Bernardo KASTRUP, Maarten VAN KAMPEN, Alexandr DOLGOV
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Patent number: 10712656Abstract: A method for manufacturing a membrane assembly for EUV lithography, the method comprising: providing a stack comprising a planar substrate and at least one membrane layer, wherein the planar substrate comprises an inner region and a border region around the inner region; positioning the stack on a support such that the inner region of the planar substrate is exposed; and selectively removing the inner region of the planar substrate using a non-liquid etchant, such that the membrane assembly comprises: a membrane formed from the at least one membrane layer; and a border holding the membrane, the border formed from the border region of the planar substrate.Type: GrantFiled: August 26, 2016Date of Patent: July 14, 2020Assignee: ASML Netherlands B.V.Inventors: Zomer Silvester Houweling, Eric Willem Felix Casimiri, Tamara Druzhinina, Paul Janssen, Michael Alfred Josephus Kuijken, Martinus Hendrikus Antonius Leenders, Sicco Oosterhoff, Mária Péter, Willem Joan Van Der Zande, Pieter-Jan Van Zwol, Beatrijs Louise Marie-Joseph Katrien Verbrugge, Johannes Petrus Martinus Bernardus Vermeulen, David Ferdinand Vles, Willem-Pieter Voorthuijzen
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Publication number: 20200152527Abstract: A method for revealing sensor targets on a substrate covered with a layer, the method including: obtaining locations of first areas on the substrate with yielding target portions and of second areas on the substrate with non-yielding target portions; at least partially removing feature regions of the layer covering sensor targets in the second areas to reveal sensor targets in the second areas; measuring a location of the revealed sensor targets in the second areas; determining a location of sensor targets in the first areas based on the measured location of the revealed sensor targets in the second areas; and at least partially removing sensor target regions of the layer covering the sensor targets in the first areas using the determined location of the sensor targets in the first areas.Type: ApplicationFiled: May 28, 2018Publication date: May 14, 2020Applicant: ASML NETHERLANDS B.V.Inventors: Andre Bernardus JEUNINK, Victoria VORONINA, Tamara DRUZHININA, Brennan PETERSON, Johannes Adrianus Cornelis Maria PIJNENBURG
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Publication number: 20200124977Abstract: Disclosed is a method and associated inspection apparatus for detecting variations on a surface of a substrate. The method comprises providing patterned inspection radiation to a surface of a substrate. The inspection radiation is patterned such that an amplitude of a corresponding enhanced field is modulated in a manner corresponding to the patterned inspection radiation. The scattered radiation resultant from interaction between the enhanced field and the substrate surface is received and variations on the surface of the substrate are detected based on the interaction between the enhanced field and the substrate surface. Also disclosed is a method of detecting any changes to at least one characteristic of received radiation, the said changes being induced by the generation of a surface plasmon at said surface of the optical element.Type: ApplicationFiled: May 17, 2018Publication date: April 23, 2020Applicant: ASML Netherlands B.V.Inventors: Johannes Franciscus Martinus D'ACHARD VAN ENSCHUT, Tamara DRUZHININA, Nitisb KUMAR, Sarathi ROY, Yang-Shan HUANG, Arie Jeffrey DEN BOEF, Han-Kwang NIENHUYS, Pieter-Jan VAN ZWOL, Sander Bas ROC-SOL
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Patent number: 10551736Abstract: A method of designing an epitaxy template to direct self-assembly of a block copolymer on a substrate into an ordered target pattern involves providing a primary epitaxy template design and then varying the design to optimize a pattern fidelity statistic, such as placement error, relative to the target pattern by modelling predicted self-assembled block copolymer patterns and optimizing pattern placement as a function of a varied design parameter. In addition to varying a design parameter to optimize the pattern fidelity statistic, a random error in the template design is included prior to modelling predicted patterns in order to compensate for expected template inaccuracy in practice. The inclusion of a realistic random error in the template design, in addition to systematic variation of a design parameter, may improve the template design optimization to render the result less sensitive to error which may be inevitable in practice.Type: GrantFiled: July 26, 2013Date of Patent: February 4, 2020Assignee: ASML Netherlands B.V.Inventors: Jozef Maria Finders, Tamara Druzhinina, Emiel Peeters, Sander Frederik Wuister, Christianus Martinus Van Heesch, Eddy Cornelis Antonius Van Der Heijden, Henri Marie Joseph Boots
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Patent number: 10240250Abstract: A graphoepitaxy template to align a self-assembled block polymer adapted to self-assemble into a 2-D array having parallel rows of discontinuous first domains extending parallel to a first axis, mutually spaced along an orthogonal second axis, and separated by a continuous second domain. The graphoepitaxy template has first and second substantially parallel side walls extending parallel to and defining the first axis and mutually spaced along the second axis to provide a compartment to hold at least one row of discontinuous first domains of the self-assembled block copolymer on the substrate between and parallel to the side walls, and separated therefrom by a continuous second domain. The compartment has a graphoepitaxial nucleation feature arranged to locate at least one of the discontinuous first domains at a specific position within the compartment. Methods for forming the graphoepitaxy template and its use for device lithography are also disclosed.Type: GrantFiled: October 2, 2012Date of Patent: March 26, 2019Assignee: ASML Netherlands B.V.Inventors: Thanh Trung Nguyen, Jozef Maria Finders, Wilhelmus Sebastianus Marcus Maria Ketelaars, Sander Frederik Wuister, Eddy Cornelis Antonius Van der Heijden, Hieronymus Johannus Christiaan Meessen, Roelof Koole, Emiel Peeters, Christianus Martinus Van Heesch, Aurelie Marie Andree Brizard, Henri Marie Joseph Boots, Tamara Druzhinina, Jessica Margaretha De Ruiter
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Publication number: 20190006147Abstract: An electron beam inspection apparatus, the apparatus including a plurality of electron beam columns, each electron beam column configured to provide an electron beam and detect scattered or secondary electrons from an object, and an actuator system configured to move one or more of the electron beam columns relative to another one or more of the electron beam columns. The actuator system may include a plurality of first movable structures at least partly overlapping a plurality of second movable structures, the first and second movable structures supporting the plurality of electron beam columns.Type: ApplicationFiled: December 9, 2016Publication date: January 3, 2019Applicant: ASML NETHERLANDS B.V.Inventors: Bernardo KASTRUP, Johannes Catharinus Hubertus MULKENS, Marinus Aart VAN DEN BRINK, Jozef Petrus Henricus BENSCHOP, Erwin Paul SMAKMAN, Tamara DRUZHININA, Coen Adrianus VERSCHUREN
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Patent number: 10127336Abstract: A method of determining an uncertainty in the position of a domain within a self-assembly block copolymer (BCP) feature. The method includes simulating a BCP feature, calculating a minimum energy position of a first domain within the simulated BCP feature, simulating the application of a potential that causes the position of the first domain to be displaced from the minimum energy position, simulating release of the potential back toward the minimum energy, recording a plurality of energies of the BCP feature during the release and recording at each of the plurality of energies a displacement of the first domain from the minimum energy position, calculating, from the recorded energies and recorded displacements, a probability distribution indicating a probability of the first domain being displaced from the minimum energy position, and, from the probability distribution, calculating an uncertainty in the position of the first domain within the BCP feature.Type: GrantFiled: May 5, 2014Date of Patent: November 13, 2018Assignee: ASML NETHERLANDS B.V.Inventors: Sander Frederik Wuister, Tamara Druzhinina, Jan Van Male, Joanne Klein-Wolterink, Davide Ambesi
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Publication number: 20180239240Abstract: A method for manufacturing a membrane assembly for EUV lithography, the method comprising: providing a stack comprising a planar substrate and at least one membrane layer, wherein the planar substrate comprises an inner region and a border region around the inner region; positioning the stack on a support such that the inner region of the planar substrate is exposed; and selectively removing the inner region of the planar substrate using a non-liquid etchant, such that the membrane assembly comprises: a membrane formed from the at least one membrane layer; and a border holding the membrane, the border formed from the border region of the planar substrate.Type: ApplicationFiled: August 26, 2016Publication date: August 23, 2018Inventors: Zomer Silvester HOUWELING, Eric Willem Felix CASIMIRI, Tamara DRUZHININA, JANSSEN Paul, Michael Alfred Josephus KUIJKEN, Martinus Hendrikus Antonius LEENDERS, Sicco OOSTERHOFF, Mária PÉTER, Willem Joan VAN DER ZANDE, Pieter-Jan VAN ZWOL, Beatrijs Louise Marie-Joseph Katrie VERBRUGGE, Johannes Petrus Martinus Bernardus VERMEULEN, David Ferdinand VLES, Willem-Pieter VOORTHUIJZEN
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Patent number: 9368366Abstract: A method of forming a plurality of regularly spaced lithography features, the method including providing a self-assemblable block copolymer having first and second blocks in a plurality of trenches on a substrate, each trench including opposing side-walls and a base, with the side-walls having a width therebetween, wherein a first trench has a greater width than a second trench; causing the self-assemblable block copolymer to self-assemble into an ordered layer in each trench, the layer having a first domain of the first block alternating with a second domain of the second block, wherein the first and second trenches have the same number of each respective domain; and selectively removing the first domain to form regularly spaced rows of lithography features having the second domain along each trench, wherein the pitch of the features in the first trench is greater than the pitch of the features in the second trench.Type: GrantFiled: January 24, 2014Date of Patent: June 14, 2016Assignee: ASML NETHERLANDS B.V.Inventors: Sander Frederik Wuister, Tamara Druzhinina, Mircea Dusa
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Publication number: 20160078160Abstract: A method of determining an uncertainty in the position of a domain within a self-assembly block copolymer (BCP) feature. The method includes simulating a BCP feature, calculating a minimum energy position of a first domain within the simulated BCP feature, simulating the application of a potential that causes the position of the first domain to be displaced from the minimum energy position, simulating release of the potential back toward the minimum energy, recording a plurality of energies of the BCP feature during the release and recording at each of the plurality of energies a displacement of the first domain from the minimum energy position, calculating, from the recorded energies and recorded displacements, a probability distribution indicating a probability of the first domain being displaced from the minimum energy position, and, from the probability distribution, calculating an uncertainty in the position of the first domain within the BCP feature.Type: ApplicationFiled: May 5, 2014Publication date: March 17, 2016Applicant: ASML Netherlands B.V.Inventors: Sander Frederik WUISTER, Tamara DRUZHININA, Jan VAN MALE, Joanne KLEIN-WOLTERINK, Davide AMBESI
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Publication number: 20150364335Abstract: A method of forming a plurality of regularly spaced lithography features, the method including providing a self-assemblable block copolymer having first and second blocks in a plurality of trenches on a substrate, each trench including opposing side-walls and a base, with the side-walls having a width therebetween, wherein a first trench has a greater width than a second trench; causing the self-assemblable block copolymer to self-assemble into an ordered layer in each trench, the layer having a first domain of the first block alternating with a second domain of the second block, wherein the first and second trenches have the same number of each respective domain; and selectively removing the first domain to form regularly spaced rows of lithography features having the second domain along each trench, wherein the pitch of the features in the first trench is greater than the pitch of the features in the second trench.Type: ApplicationFiled: January 24, 2014Publication date: December 17, 2015Applicant: ASML Netherlands B.V.Inventors: Sander Frederik WUISTER, Tamara DRUZHININA, Mircea DUSA
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Publication number: 20150205197Abstract: A method of designing an epitaxy template to direct self-assembly of a block copolymer on a substrate into an ordered target pattern involves providing a primary epitaxy template design and then varying the design to optimize a pattern fidelity statistic, such as placement error, relative to the target pattern by modelling predicted self-assembled block copolymer patterns and optimizing pattern placement as a function of a varied design parameter. In addition to varying a design parameter to optimize the pattern fidelity statistic, a random error in the template design is included prior to modelling predicted patterns in order to compensate for expected template inaccuracy in practice. The inclusion of a realistic random error in the template design, in addition to systematic variation of a design parameter, may improve the template design optimization to render the result less sensitive to error which may be inevitable in practice.Type: ApplicationFiled: July 26, 2013Publication date: July 23, 2015Applicant: ASML Netherlands B.V.Inventors: Jozef Maria Finders, Tamara Druzhinina, Emiel Peeters, Sander Frederik Wuister, Christianus Martinus Van Heesch, Eddy Cornelis Antonius Van Der Heijden, Henri Marie Joseph Boots