Patents by Inventor Sebastianus Adrianus Goorden

Sebastianus Adrianus Goorden 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: 20220283428
    Abstract: A micromirror array comprises a substrate, a plurality of minors for reflecting incident light and, for each mirror (20) of the plurality of minors, at least one piezoelectric actuator (21) for displacing the minor, wherein the at least one piezoelectric actuator is connected to the substrate. The micromirror array further comprises one or more pillars (24) connecting the minor to the at least one piezoelectric actuator. Also disclosed is a method of forming such a micromirror array. The micromirror array may be used in a programmable illuminator. The programmable illuminator may be used in a lithographic apparatus and/or in an inspection apparatus.
    Type: Application
    Filed: August 5, 2020
    Publication date: September 8, 2022
    Applicants: ASML Netherlands B.V., IMEC v.z.w.
    Inventors: Luc Roger Simonne HASPESLAGH, Veronique ROCHUS, Guilherme BRONODANI TORRI, Nitesh PANDEY, Sebastianus Adrianus GOORDEN
  • Publication number: 20220283515
    Abstract: A method of determining an overlay measurement associated with a substrate and a system to obtain an overlay measurement associated with a patterning process. A method for determining an overlay measurement may be used in a lithography patterning process. The method includes generating a diffraction signal by illuminating a first overlay pattern and a second overlay pattern using a coherent beam. The method also includes obtaining an interference pattern based on the diffraction signal. The method further includes determining an overlay measurement between the first overlay pattern and the second overlay pattern based on the interference pattern.
    Type: Application
    Filed: August 25, 2020
    Publication date: September 8, 2022
    Applicants: ASML HOLDING N.V., ASML NETHERLANDS B.V.
    Inventors: Tamer Mohamed Tawfik Ahmed Mohamed ELAZHARY, Simon Reinald HUISMAN, Justin Lloyd KREUZER, Sebastianus Adrianus GOORDEN
  • Patent number: 11409206
    Abstract: A method of determining a position of a feature (for example an alignment mark) on an object (for example a silicon wafer) is disclosed. The method comprises determining an offset parameter, determining the second position; and determining a first position from the second position and the offset parameter, the position of the mark being the first position. The offset parameter is a measure of a difference in: a first position that is indicative of the position of the feature; and a second position that is indicative of the position of the feature. The offset parameter may be determined using a first measurement apparatus and the second position may be determined using a second, different measurement apparatus.
    Type: Grant
    Filed: April 2, 2019
    Date of Patent: August 9, 2022
    Assignee: ASML Netherlands B.V.
    Inventors: Sebastianus Adrianus Goorden, Simon Reinald Huisman
  • Publication number: 20220229278
    Abstract: A dark field metrology device includes an objective lens arrangement and a zeroth order block to block zeroth order radiation. The objective lens arrangement directs illumination onto a specimen to be measured and collects scattered radiation from the specimen, the scattered radiation including zeroth order radiation and higher order diffracted radiation. The dark field metrology device is operable to perform an illumination scan to scan illumination over at least two different subsets of the maximum range of illumination angles; and simultaneously perform a detection scan which scans the zeroth order block and/or the scattered radiation with respect to each other over a corresponding subset of the maximum range of detection angles during at least part of the illumination scan.
    Type: Application
    Filed: April 2, 2020
    Publication date: July 21, 2022
    Applicant: ASML NETHERLANDS B.V.
    Inventor: Sebastianus Adrianus GOORDEN
  • Patent number: 11360399
    Abstract: Disclosed is a metrology device (1600) configured to produce measurement illumination comprising a plurality of illumination beams, each of said illumination beams being spatially incoherent or pseudo-spatially incoherent and comprising multiple pupil points in an illumination pupil of the metrology device. Each pupil point in each one of said plurality of illumination beams has a corresponding pupil point in at least one of the other illumination beams of said plurality of illumination beams thereby defining multiple sets of corresponding pupil points, and the pupil points of each set of corresponding pupil points are spatially coherent with respect to each other.
    Type: Grant
    Filed: August 27, 2019
    Date of Patent: June 14, 2022
    Assignee: ASML Netherlands B.V.
    Inventors: Sebastianus Adrianus Goorden, Simon Reinald Huisman, Simon Gijsbert Josephus Mathijssen, Henricus Petrus Maria Pellemans
  • Patent number: 11333985
    Abstract: The invention provides a position sensor (300) which comprises an optical system (305,306) configured to provide measurement radiation (304) to a substrate (307). The optical system is arranged to receive at least a portion of radiation (309) diffracted by a mark (308) provided on the substrate. A processor (313) is applied to derive at least one position-sensitive signal (312) from the received radiation. The measurement radiation comprises at least a first and a second selected radiation wavelength. The selection of the at least first and second radiation wavelengths is based on a position error swing-curve model.
    Type: Grant
    Filed: June 5, 2019
    Date of Patent: May 17, 2022
    Assignee: ASML Netherlands B.V.
    Inventors: Sebastianus Adrianus Goorden, Simon Reinald Huisman, Duygu Akbulut, Alessandro Polo, Johannes Antonius Gerardus Akkermans, Arie Jeffrey Den Boef
  • Publication number: 20220121128
    Abstract: Disclosed is a method of metrology comprising using measurement illumination to measure a target, said measurement illumination comprising a plurality of illumination conditions. The method comprises performing a first measurement capture with a first subset of said plurality of illumination conditions, e.g., each comprising a positive weighting, to obtain a first parameter value and performing a second measurement capture with a second subset of said plurality of illumination conditions, e.g., each comprising a negative weighting, to obtain a second parameter value. An optimized parameter value is determined as a weighted combination of at least the first parameter value and the second parameter value.
    Type: Application
    Filed: December 29, 2021
    Publication date: April 21, 2022
    Applicant: ASML Netherlands B.V.
    Inventors: Sebastianus Adrianus GOORDEN, Simon Reinald HUISMAN, Arjan Johannes Anton BEUKMAN
  • Publication number: 20220057718
    Abstract: Disclosed is an illumination system for delivering incoherent radiation to a metrology sensor system. Also disclosed is an associated metrology system and method. The illumination system comprises a spatial filter system for selective spatial filtering of a beam of said incoherent radiation outside of a module housing of the metrology sensor system. At least one optical guide is provided for guiding the spatially filtered beam of incoherent radiation to the metrology sensor system, the at least one optical guide being such that the radiation guided has a substantially similar output angle as input angle.
    Type: Application
    Filed: November 19, 2019
    Publication date: February 24, 2022
    Applicant: ASML Netherlands B.V.
    Inventors: Sebastianus Adrianus GOORDEN, Simon Reinald HUISMAN, Sergei SOKOLOV
  • Publication number: 20220035257
    Abstract: Disclosed is a metrology device (1600) configured to produce measurement illumination comprising a plurality of illumination beams, each of said illumination beams being spatially incoherent or pseudo-spatially incoherent and comprising multiple pupil points in an illumination pupil of the metrology device. Each pupil point in each one of said plurality of illumination beams has a corresponding pupil point in at least one of the other illumination beams of said plurality of illumination beams thereby defining multiple sets of corresponding pupil points, and the pupil points of each set of corresponding pupil points are spatially coherent with respect to each other.
    Type: Application
    Filed: August 27, 2019
    Publication date: February 3, 2022
    Applicant: ASML Netherlands B.V.
    Inventors: Sebastianus Adrianus GOORDEN, Simon Reinald HUISMAN, Simon Gijsbert Josephus MATHIJSSEN, Henricus Petrus Maria PELLEMANS
  • Publication number: 20210382403
    Abstract: An apparatus for measuring a position of a mark on a substrate, the apparatus comprising: an illumination system configured to condition at least one radiation beam to form a plurality of illumination spots spatially distributed in series such that during scanning of the substrate the plurality of illumination spots are incident on the mark sequentially, and a projection system configured to project radiation diffracted by the mark from the substrate, the diffracted radiation being produced by diffraction of the plurality of illumination spots by the mark; wherein the projection system is further configured to modulate the diffracted radiation and project the modulated radiation onto a detecting system configured to produce signals corresponding to each of the plurality of illumination spots, the signals being combined to determine the position of the mark.
    Type: Application
    Filed: September 5, 2019
    Publication date: December 9, 2021
    Applicant: ASML Netherlands B.V.
    Inventor: Sebastianus Adrianus GOORDEN
  • Publication number: 20210364936
    Abstract: A sensor is disclosed, wherein a transducer generates acoustic waves, which are received by a lens assembly. The lens assembly transmits and directs at least a part of the acoustic waves to a target. The lens assembly then receives at least a part of acoustic waves, after interaction with the target. The sensor further comprises an optical detector that comprises at least one optically reflective member located at a surface of the lens assembly, which surface is arranged opposite to a surface of the lens assembly which faces a focal plane of the lens assembly, wherein the at least one optically reflective member is mechanically displaced in response to the acoustic waves, which are received and transmitted by the lens assembly.
    Type: Application
    Filed: December 20, 2018
    Publication date: November 25, 2021
    Applicant: ASML Netherlands B.V.
    Inventors: Nitesh PANDEY, Duygu AKBULUT, Alessandro POLO, Sebastianus Adrianus GOORDEN
  • Patent number: 11181835
    Abstract: Disclosed is a metrology sensor apparatus comprising: an illumination system operable to illuminate a metrology mark in on a substrate with illumination radiation; an optical collection system configured to collect scattered radiation, following scattering of the illumination radiation by the metrology mark; and a wavelength dependent spatial filter for spatially filtering the scattered radiation, the wavelength dependent spatial filter having a spatial profile dependent on the wavelength of the scattered radiation. The wavelength dependent spatial filter may comprise a dichroic filter operable to substantially transmit scattered radiation within a first wavelength range and substantially block scattered radiation within a second wavelength range and at least one second filter operable to substantially block scattered radiation at least within the first wavelength range and the second wavelength range.
    Type: Grant
    Filed: April 13, 2018
    Date of Patent: November 23, 2021
    Assignees: ASML Netherlands B.V., ASML Holding N.V.
    Inventors: Sebastianus Adrianus Goorden, Johannes Antonius Gerardus Akkermans, Simon Reinald Huisman, Tamer Mohamed Tawfik Ahmed Mohamed Elazhary
  • Patent number: 11175593
    Abstract: An alignment sensor apparatus includes an illumination system, a first optical system, a second optical system, a detector system, and a processor. The illumination system is configured to transmit an illumination beam along an illumination path. The first optical system is configured to transmit the illumination beam toward a diffraction target on a substrate. The second optical system includes a first polarizing optic configured to separate and transmit an irradiance distribution. The detector system is configured to measure a center of gravity of the diffraction target based on the irradiance distribution outputted from a first polarization branch and a second polarization branch. The processor is configured to measure a shift in the center of gravity of the diffraction target caused by an asymmetry variation in the diffraction target and determine a sensor response function of the alignment sensor apparatus based on the center of gravity shift.
    Type: Grant
    Filed: April 3, 2019
    Date of Patent: November 16, 2021
    Assignees: ASML Netherlands B.V., ASML Holding N.V.
    Inventors: Simon Reinald Huisman, Tamer Mohamed Tawfik Ahmed Mohamed Elazhary, Yuxiang Lin, Vu Quang Tran, Sebastianus Adrianus Goorden, Justin Lloyd Kreuzer, Christopher John Mason, Igor Matheus Petronella Aarts, Krishanu Shome, Irit Tzemah
  • Patent number: 11086240
    Abstract: Disclosed is a metrology sensor system, such as a position sensor. The system comprises an optical collection system configured to collect diffracted or scattered radiation from a metrology mark on a substrate, said collected radiation comprising at least one parameter-sensitive signal and noise signal which is not parameter-sensitive, a processing system operable to process the collected radiation; and a module housing. An optical guide is provided for guiding the at least one parameter-sensitive signal, separated from the noise signal, from the processing system to a detection system outside of the housing. A detector detects the separated at least one parameter-sensitive signal. An obscuration for blocking zeroth order radiation and/or a demagnifying optical system may be provided between the optical guide and the detector.
    Type: Grant
    Filed: November 15, 2017
    Date of Patent: August 10, 2021
    Assignee: ASML Netherlands B.V.
    Inventors: Sebastianus Adrianus Goorden, Nitesh Pandey, Duygu Akbulut, Alessandro Polo, Simon Reinaid Huisman
  • Publication number: 20210240091
    Abstract: A method of determining a position of a feature (for example an alignment mark) on an object (for example a silicon wafer) is disclosed. The method comprises determining an offset parameter, determining the second position; and determining a first position from the second position and the offset parameter, the position of the mark being the first position. The offset parameter is a measure of a difference in: a first position that is indicative of the position of the feature; and a second position that is indicative of the position of the feature. The offset parameter may be determined using a first measurement apparatus and the second position may be determined using a second, different measurement apparatus.
    Type: Application
    Filed: April 2, 2019
    Publication date: August 5, 2021
    Applicant: ASML Netherlands B.V.
    Inventors: Sebastianus Adrianus GOORDEN, Simon Reinald HUISMAN
  • Patent number: 11042096
    Abstract: A method for determining a characteristic of a feature in an object, the feature being disposed below a surface of the object is disclosed. The surface of the object is irradiated with a pulsed pump radiation beam so as to produce an acoustic wave in the object. The surface of the object is then irradiated with a measurement radiation beam. A portion of the measurement radiation beam scattered from the surface is received and a characteristic of the feature in the object is determined from at least a portion of the measurement radiation beam scattered from the surface within a measurement time period. A temporal intensity distribution of the pulsed pump radiation beam is selected such that in the measurement time period a signal to background ratio is greater than a signal to background ratio achieved using a single pulse of the pulsed pump radiation beam.
    Type: Grant
    Filed: May 15, 2018
    Date of Patent: June 22, 2021
    Assignee: ASML Netherlands B.V.
    Inventors: Stefan Michiel Witte, Alessandro Antoncecchi, Hao Zhang, Stephen Edward, Paulus Clemens Maria Planken, Sebastianus Adrianus Goorden, Simon Reinald Huisman, Irwan Dani Setija, David Ferdinand Vles
  • Patent number: 11022902
    Abstract: The invention relates to a sensor comprising: a radiation source to emit radiation having a coherence length towards a sensor target; and a polarizing beam splitter to split radiation diffracted by the sensor target into radiation with a first polarization state and radiation with a second polarization state, wherein the first polarization state is orthogonal to the second polarization state, and wherein the sensor is configured such that after passing the polarizing beam splitter radiation with the first polarization state has an optical path difference relative to radiation with the second polarization state that is larger than the coherence length.
    Type: Grant
    Filed: May 14, 2018
    Date of Patent: June 1, 2021
    Assignee: ASML Netherlands B.V
    Inventors: Arie Jeffrey Den Boef, Patricius Aloysius Jacobus Tinnemans, Haico Victor Kok, William Peter Van Drent, Sebastianus Adrianus Goorden
  • Publication number: 20210157248
    Abstract: Disclosed is a metrology sensor apparatus comprising: an illumination system operable to illuminate a metrology mark in on a substrate with illumination radiation; an optical collection system configured to collect scattered radiation, following scattering of the illumination radiation by the metrology mark; and a wavelength dependent spatial filter for spatially filtering the scattered radiation, the wavelength dependent spatial filter having a spatial profile dependent on the wavelength of the scattered radiation. The wavelength dependent spatial filter may comprise a dichroic filter operable to substantially transmit scattered radiation within a first wavelength range and substantially block scattered radiation within a second wavelength range and at least one second filter operable to substantially block scattered radiation at least within the first wavelength range and the second wavelength range.
    Type: Application
    Filed: April 13, 2018
    Publication date: May 27, 2021
    Applicants: ASML Netherlands B.V., ASML Holding N.V.
    Inventors: Sebastianus Adrianus GOORDEN, Johannes Antonius Gerardus AKKERMANS, Simon Reinald HUISMAN, Tamer Mohamed Tawfik Ahmed Mohamed ELAZHARY
  • Publication number: 20210132509
    Abstract: An alignment sensor apparatus includes an illumination system, a first optical system, a second optical system, a detector system, and a processor. The illumination system is configured to transmit an illumination beam along an illumination path. The first optical system is configured to transmit the illumination beam toward a diffraction target on a substrate. The second optical system includes a first polarizing optic configured to separate and transmit an irradiance distribution. The detector system is configured to measure a center of gravity of the diffraction target based on the irradiance distribution outputted from a first polarization branch and a second polarization branch. The processor is configured to measure a shift in the center of gravity of the diffraction target caused by an asymmetry variation in the diffraction target and determine a sensor response function of the alignment sensor apparatus based on the center of gravity shift.
    Type: Application
    Filed: April 3, 2019
    Publication date: May 6, 2021
    Applicants: ASML Netherlands B.V., ASML Holding N.V.
    Inventors: Simon Reinald HUISMAN, Tamer Mohamed Tawfik Ahmed Mohamed ELAZHARY, Yuxiang LIN, Vu Quang TRAN, Sebastianus Adrianus GOORDEN, Justin Lloyd KREUZER, Christopher John MASON, Igor Matheus Petronella AARTS, Krishanu SHOME, Irit TZEMAH
  • Publication number: 20210124276
    Abstract: The invention provides a position sensor (300) which comprises an optical system (305, 306) configured to provide measurement radiation (304) to a substrate (307). The optical system is arranged to receive at least a portion of radiation (309) diffracted by a mark (308) provided on the substrate. A processor (313) is applied to derive at least one position-sensitive signal (312) from the received radiation. The measurement radiation comprises at least a first and a second selected radiation wavelength. The selection of the at least first and second radiation wavelengths is based on a position error swing-curve model.
    Type: Application
    Filed: June 5, 2019
    Publication date: April 29, 2021
    Inventors: Sebastianus Adrianus Goorden, Simon Reinald Huisman, Duygu Akbulut, Alessandro Polo, Johannes Antonius Gerardus Akkermans, Arie Jeffrey Den Boef