Patents by Inventor Gene A. Smith

Gene A. Smith 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: 20170336720
    Abstract: An extreme ultraviolet lithography system (10) that creates a pattern (230) having a plurality of densely packed parallel lines (232) on a workpiece (22) includes a patterning element (16); an EUV illumination system (12) that directs an extreme ultraviolet beam (13A) at the patterning element (16); a projection optical assembly (18) that directs the extreme ultraviolet beam diffracted off of the patterning element (16) at the workpiece (22); and a pattern blind assembly (26) positioned in a beam path (55) of the extreme ultraviolet beam (13A). The pattern blind assembly (26) shapes the extreme ultraviolet beam (13A) so that an exposure field (28) on the workpiece (22) has a polygonal shape.
    Type: Application
    Filed: June 21, 2017
    Publication date: November 23, 2017
    Inventors: Michael B. Binnard, Daniel Gene Smith, David M. Williamson
  • Publication number: 20170336715
    Abstract: Extreme ultra-violet (EUV) lithography ruling engine specifically configured to print one-dimensional lines on a target workpiece includes source of EUV radiation; a pattern-source defining 1D pattern; an illumination unit (IU) configured to irradiate the pattern-source; and projection optics (PO) configured to optically image, with a reduction factor N>1, the 1D pattern on image surface that is optically-conjugate to the 1D pattern. Irradiation of the pattern-source can be on-axis or off-axis. While 1D pattern has first spatial frequency, its optical image has second spatial frequency that is at least twice the first spatial frequency. The pattern-source can be flat or curved. The IU may include a relay reflector. A PO's reflector may include multiple spatially-distinct reflecting elements aggregately forming such reflector. The engine is configured to not allow formation of optical image of any 2D pattern that has spatial resolution substantially equal to a pitch of the 1D pattern of the pattern-source.
    Type: Application
    Filed: May 18, 2017
    Publication date: November 23, 2017
    Inventors: Donis G. Flagello, David M. Williamson, Stephen P. Renwick, Daniel Gene Smith, Michael B. Binnard
  • Publication number: 20170336716
    Abstract: Extreme ultra-violet (EUV) lithography ruling engine specifically configured to print one-dimensional lines on a target workpiece includes source of EUV radiation; a pattern-source defining 1D pattern: an illumination unit (IU) configured to irradiate the pattern-source; and projection optics (PO) configured to optically image, with a reduction factor N>1, the 1D pattern on image surface that is optically-conjugate to the 1D pattern. Irradiation of the pattern-source can be on-axis or off-axis. While 1D pattern has first spatial frequency, its optical image has second spatial frequency that is at least twice the first spatial frequency. The pattern-source can be flat or curved. The IU may include a relay reflector. A PO's reflector may include multiple spatially-distinct reflecting elements aggregately forming such reflector. The engine is configured to not allow formation of optical image of any 2D pattern that has spatial resolution substantially equal to a pitch of the 1D pattern of the pattern-source.
    Type: Application
    Filed: May 18, 2017
    Publication date: November 23, 2017
    Inventors: Donis G. Flagello, David M. Williamson, Stephen P. Renwick, Daniel Gene Smith, Michael B. Binnard
  • Publication number: 20170328538
    Abstract: A new and useful illumination device, e.g. for a lithographic optical imaging system, is provided, and comprises a mirror array located between a radiation source and an illumination pupil. Each mirror element of the mirror array is individually steerable (controllable), and the polarization state of light from each mirror element of the mirror array can be selectively controlled, so that the illumination pupil can be filled with a distribution of light that is selectively controlled.
    Type: Application
    Filed: August 1, 2017
    Publication date: November 16, 2017
    Inventors: Daniel Gene Smith, Michael Sogard
  • Patent number: 9816805
    Abstract: Method of predicting a distribution of light in an illumination pupil of an illumination system includes identifying component(s) of the illumination system the adjustment of which affects this distribution and simulating the distribution based on a point spread function defined in part by the identified components. The point spread function has functional relationship with configurable setting of the illumination settings.
    Type: Grant
    Filed: June 11, 2014
    Date of Patent: November 14, 2017
    Assignee: NIKON CORPORATION
    Inventors: Daniel Gene Smith, Eric Peter Goodwin
  • Patent number: 9810530
    Abstract: Autofocus system (AF) employing, in addition to specified optical units, fringe projection and fringe detection systems (FPS, FDS) and specifically-configured data processing system. AFS is configured to project with FPS a sinusoidal fringe pattern, formed by a pattern source, on a substrate and to image the so projected pattern from substrate onto optical detector with FDS to form optical image from which topology of the substrate is defined as substrate moves relative to the projected pattern. Pattern source may include diffraction grating oriented that the projected pattern is inclined relative to direction of substrate scanning Topology profile is corrected for tilt of substrate, Goos-Hanchen errors, and for fringe-pattern-induced errors outside a chosen spatial-frequency range. To reduce errors of topology profile, at least five values of phase difference are used. AFS is configured to define temporal phase shifting in optical image without using any moving parts in the AFS.
    Type: Grant
    Filed: January 9, 2015
    Date of Patent: November 7, 2017
    Assignee: NIKON CORPORATION
    Inventors: Daniel Gene Smith, Eric Peter Goodwin
  • Patent number: 9732934
    Abstract: A new and useful illumination device, e.g. for a lithographic optical imaging system, is provided, and comprises a mirror array located between a radiation source and an illumination pupil. Each mirror element of the mirror array is individually steerable (controllable), and the polarization state of light from each mirror element of the mirror array can be selectively controlled, so that the illumination pupil can be filled with a distribution of light that is selectively controlled.
    Type: Grant
    Filed: October 26, 2012
    Date of Patent: August 15, 2017
    Assignee: Nikon Corporation
    Inventors: Daniel Gene Smith, Michael Sogard
  • Patent number: 9625368
    Abstract: An optical assembly for a system for inspecting or measuring of an object is provided that is configured to move as a unit with a system, as the system is pointed at a target, and eliminates the need for a large scanning (pointing) mirror that is moveable relative to other parts of the system. The optical assembly comprises catadioptric optics configured to fold the optical path of the pointing beam and measurement beam that are being directed through the outlet of the system, to compress the size of the optical assembly.
    Type: Grant
    Filed: October 25, 2011
    Date of Patent: April 18, 2017
    Assignee: Nikon Corporation
    Inventors: Eric Peter Goodwin, David Michael Williamson, Daniel Gene Smith, Michel Pharand, Alexander Cooper, Alec Robertson, Brian L. Stamper
  • Patent number: 9573833
    Abstract: Disclosed herein are systems for shaping a glass sheet comprising a roll conveyor comprising a plurality of rollers for conveying the glass sheet along a plane; a lift jet array comprising a plurality of nozzles, one or more of the plurality of nozzles comprising a tip having a plurality of orifices; and a shaping mold located above the roll conveyor, wherein the lift jet array is positioned below the roll conveyor such that each nozzle tip is located above the centerline of the plurality of rollers. Also disclosed herein are methods for shaping a glass sheet comprising heating the glass sheet and conveying the glass sheet on a roll conveyor to a position between the lift jet array and the shaping mold, wherein gas flows from the lift jet array with a force sufficient to lift the glass sheet from the roll conveyor.
    Type: Grant
    Filed: March 25, 2015
    Date of Patent: February 21, 2017
    Assignee: Corning Incorporated
    Inventors: Michael Timothy Brennan, Anurag Jain, William Edward Lock, Michael John Moore, Larry Gene Smith, Kevin Lee Wasson
  • Publication number: 20160246063
    Abstract: Interrogation optical beams are focused or otherwise shaped for delivery to a target that includes one or more tooling balls so as to have a beam radius of curvature corresponding to a tooling ball radius. Focus values can be stored in a look-up table and can include two beam focus conditions that produce a selected beam focus. The two beam focus conditions are associated with a common beam curvature. The focus conditions are associated with beam curvatures within and without a Rayleigh range from a beam waist.
    Type: Application
    Filed: February 19, 2016
    Publication date: August 25, 2016
    Applicant: Nikon Corporation
    Inventor: Daniel Gene Smith
  • Publication number: 20160209496
    Abstract: Laser radar systems include focusing optical systems having a retroreflector such as a corner cube that is translatable with respect to an objective lens. The retroreflector provides a selected retardance to an interrogation optical beam that is directed to a target as well as to a returned portion of the interrogation optical beam that is directed to a detection system. Typically, an input linearly polarized interrogation beam is returned by the retroreflector as a circularly polarized beam that is directed to the target. Returned beam portions from the target are coupled by the retroreflector to a detection system in a linear polarization that is orthogonal to that of the input linearly polarized optical beam. The retroreflector produces state of polarization changes based on retardance associated with total internal reflection from coated or uncoated optical surfaces. Retroreflector surfaces that are not to introduce retardance are coated with suitable zero or low retardance coatings.
    Type: Application
    Filed: August 29, 2014
    Publication date: July 21, 2016
    Applicant: Nikon Corporation
    Inventor: Daniel Gene Smith
  • Patent number: 9360347
    Abstract: Two dimensional encoder system and method designed to improve accuracy, compactness, stability, resolution, and/or light efficiency of metrology carried out with such system and method. Embodiments employ a novel retroreflector which while particularly useful in present invention, is believed to have more general utility in optical imaging systems and methods.
    Type: Grant
    Filed: August 1, 2014
    Date of Patent: June 7, 2016
    Assignee: Nikon Corporation
    Inventors: Eric Peter Goodwin, Daniel Gene Smith
  • Publication number: 20160145139
    Abstract: A system and method for bending one or more thin glass structures. The system includes heating, bending and cooling zones, each having a plurality of modules aligned and connected to each other to define elongated tunnels, wherein adjacent heating modules are separated from each other by a furnace door. A conveyance mechanism carries the one or more thin glass structures through the modules via the elongated tunnels. Each of the modules include one or more heating elements, each heating element being independently controllable by element or set of elements as a function of a temperature profile for the one or more thin glass structures. The temperature profile can be determined as a function of temperature on the one or more thin glass structures.
    Type: Application
    Filed: July 9, 2014
    Publication date: May 26, 2016
    Inventors: Michele Fredholm, Anurag Jain, Michael John Moore, Stephane Poissy, Larry Gene Smith, John Christopher Thomas
  • Publication number: 20160025480
    Abstract: Interferometer system and method for use in a level sensor of an exposure apparatus and autofocus system employing same. Operating either at a single or multiple wavelengths, the interferometric system employs two diffraction orders, formed by diffraction grating of the system, as reference and sample beams and is structured to ensure that only light contained in one of the two orders interacts with a wafer under test, thereby ensuring that no interference fringes are projected onto the sample. The diffraction grating is positioned such that its grooves are nominally perpendicular to the direction of wafer scan. Based on measurement data representing interference between reference and sample beams at the detector, a determination of change in position of the wafer in the sample arm is made with increased sensitivity and/or resolution.
    Type: Application
    Filed: July 24, 2015
    Publication date: January 28, 2016
    Inventors: Eric Peter Goodwin, Daniel Gene Smith
  • Patent number: 9213227
    Abstract: An autofocus (AF) system and method is provided that maps the topography of a substrate such as a semiconductor wafer, in a manner that corrects for Goos Hanchen (GH) effect. In addition, a new and useful detector is provided that is particularly useful in an AF system and method. The detector preferably has both color and polarization filtering integrally associated with the detector, so that polarization and color filtering is provided at the detector, on a pixel by pixel basis.
    Type: Grant
    Filed: August 17, 2012
    Date of Patent: December 15, 2015
    Assignee: NIKON CORPORATION
    Inventors: Eric Peter Goodwin, Daniel Gene Smith
  • Publication number: 20150274571
    Abstract: Disclosed herein are systems for shaping a glass sheet comprising a roll conveyor comprising a plurality of rollers for conveying the glass sheet along a plane; a lift jet array comprising a plurality of nozzles, one or more of the plurality of nozzles comprising a tip having a plurality of orifices; and a shaping mold located above the roll conveyor, wherein the lift jet array is positioned below the roll conveyor such that each nozzle tip is located above the centerline of the plurality of rollers. Also disclosed herein are methods for shaping a glass sheet comprising heating the glass sheet and conveying the glass sheet on a roll conveyor to a position between the lift jet array and the shaping mold, wherein gas flows from the lift jet array with a force sufficient to lift the glass sheet from the roll conveyor.
    Type: Application
    Filed: March 26, 2015
    Publication date: October 1, 2015
    Inventors: Michael Timothy Brennan, Anurag Jain, William Edward Lock, Michael John Moore, Larry Gene Smith, Kevin Lee Wasson
  • Publication number: 20150274575
    Abstract: Disclosed herein are systems for shaping a glass sheet comprising a roll conveyor comprising a plurality of rollers for conveying the glass sheet along a plane; a lift jet array comprising a plurality of nozzles, one or more of the plurality of nozzles comprising a tip having a plurality of orifices; and a shaping mold located above the roll conveyor, wherein the lift jet array is positioned below the roll conveyor such that each nozzle tip is located above the centerline of the plurality of rollers. Also disclosed herein are methods for shaping a glass sheet comprising heating the glass sheet and conveying the glass sheet on a roll conveyor to a position between the lift jet array and the shaping mold, wherein gas flows from the lift jet array with a force sufficient to lift the glass sheet from the roll conveyor.
    Type: Application
    Filed: March 25, 2015
    Publication date: October 1, 2015
    Inventors: Michael Timothy Brennan, Anurag Jain, William Edward Lock, Michael John Moore, Larry Gene Smith, Kevin Lee Wasson
  • Patent number: 9097851
    Abstract: An autofocus system and method designed to account for instabilities in the system, e.g. due to instabilities of system components (e.g. vibrating mirrors, optics, etc) and/or environmental effects such as refractive index changes of air due to temperature, atmospheric pressure, or humidity gradients, is provided. An autofocus beam is split into a reference beam component (the split off reference channel) and a measurement beam component, by a beam splitting optic located a predetermined distance from (and in predetermined orientation relative to) the substrate, to create a first space between the beam splitting optic and the substrate. A reflector is provided that is spaced from the beam splitting optic by the predetermined distance, to create a second space between the reflector and the beam splitting optic.
    Type: Grant
    Filed: February 18, 2014
    Date of Patent: August 4, 2015
    Assignee: NIKON CORPORATION
    Inventors: Eric Peter Goodwin, Daniel Gene Smith, Michael Sogard
  • Patent number: 9091941
    Abstract: Method of predicting a distribution of light in an illumination pupil of an illumination system includes identifying component(s) of the illumination system the adjustment of which affects this distribution and simulating the distribution based on a point spread function defined in part by the identified components. The point spread function has functional relationship with configurable setting of the illumination settings.
    Type: Grant
    Filed: April 1, 2014
    Date of Patent: July 28, 2015
    Assignee: NIKON CORPORATION
    Inventors: Daniel Gene Smith, Donis G. Flagello
  • Patent number: 9074911
    Abstract: A measurement system (22) for measuring the position of a work piece (28) includes a measurement grating (34) and an encoder head (36). The encoder head (36) directs a measurement beam (252) at the measurement grating (34), the measurement beam (252) having an oval shaped cross-section. The encoder head (36) includes a beam shape adjuster (256) positioned in the path of an input measurement beam (240) having a substantially circular cross-sectional shape that transforms the input measurement beam (240) to provide the measurement beam (252) having the oval shaped cross-section.
    Type: Grant
    Filed: August 24, 2012
    Date of Patent: July 7, 2015
    Assignee: NIKON CORPORATION
    Inventors: Eric Peter Goodwin, Daniel Gene Smith