Patents by Inventor Bruce E. Adams

Bruce E. Adams 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: 20170330776
    Abstract: Embodiments of the invention generally relate to pyrometry during thermal processing of semiconductor substrates. More specifically, embodiments of the invention relate to a pyrometry filter for a thermal process chamber. In certain embodiments, the pyrometry filter selectively filters selected wavelengths of energy to improve a pyrometer measurement. The pyrometry filter may have various geometries which may affect the functionality of the pyrometry filter.
    Type: Application
    Filed: August 3, 2017
    Publication date: November 16, 2017
    Inventors: Joseph M. RANISH, Bruce E. ADAMS
  • Patent number: 9786529
    Abstract: Embodiments of the invention generally relate to pyrometry during thermal processing of semiconductor substrates. More specifically, embodiments of the invention relate to a pyrometry filter for a thermal process chamber. In certain embodiments, the pyrometry filter selectively filters selected wavelengths of energy to improve a pyrometer measurement. The pyrometry filter may have various geometries which may affect the functionality of the pyrometry filter.
    Type: Grant
    Filed: January 24, 2014
    Date of Patent: October 10, 2017
    Assignee: APPLIED MATERIALS, INC.
    Inventors: Joseph M. Ranish, Bruce E. Adams
  • Publication number: 20170148726
    Abstract: A semiconductor processing method and semiconductor device are described. The processing method includes forming a p-doped germanium structure on a substrate, annealing the p-doped germanium structure using pulses of laser radiation, and forming a titanium structure in direct contact with the p-doped germanium structure.
    Type: Application
    Filed: November 2, 2016
    Publication date: May 25, 2017
    Inventors: Stephen MOFFATT, Abhilash J. MAYUR, Theodore P. MOFFITT, Aaron Muir HUNTER, Shashank SHARMA, Bruce E. ADAMS, Samuel C. HOWELLS, Douglas E. HOLMGREN, Wolfgang R. ADERHOLD
  • Publication number: 20170097576
    Abstract: A calibration curve for a wafer comprising a layer on a substrate is determined. The calibration curve represents a local parameter change as a function of a treatment parameter associated with a wafer exposure to a light. The local parameter of the wafer is measured. An overlay error is determined based on the local parameter of the wafer. A treatment map is computed based on the calibration curve to correct the overlay error for the wafer. The treatment map represents the treatment parameter as a function of a location on the wafer.
    Type: Application
    Filed: October 2, 2015
    Publication date: April 6, 2017
    Inventors: Mangesh Bangar, Bruce E. Adams, Kelly E. Hollar, Abhilash J. Mayur, Huixiong Dai, Jaujiun Chen
  • Patent number: 9579750
    Abstract: The present invention generally relates to a laser processing systems for thermally processing substrates. The laser processing systems include a shield disposed between an energy source of the laser processing system and a substrate which is to be thermally processed. The shield includes an optically transparent window disposed adjacent to a cavity within the shield. The optically transparent window allows annealing energy to pass therethrough and to illuminate the substrate. The shield also includes one or more gas inlets and one or more gas outlets for introducing and removing a purge gas from the cavity within the shield. The purge gas is utilized to remove volatized or ablated components during thermal processing, and to provide a gas of predetermined composition, such as oxygen-free, to the thermally processed area.
    Type: Grant
    Filed: September 14, 2012
    Date of Patent: February 28, 2017
    Assignee: Applied Materials, Inc.
    Inventors: Aaron Muir Hunter, Mehran Behdjat, Bruce E. Adams
  • Publication number: 20170040194
    Abstract: Embodiments described herein relate to apparatus and methods of thermal processing. More specifically, apparatus and methods described herein relate to laser thermal treatment of semiconductor substrates by increasing the uniformity of energy distribution in an image at a surface of a substrate.
    Type: Application
    Filed: July 11, 2016
    Publication date: February 9, 2017
    Inventors: Jiping LI, Aaron Muir HUNTER, Bruce E. ADAMS, Kim VELLORE, Samuel C. HOWELLS, Stephen MOFFATT
  • Publication number: 20160293414
    Abstract: Apparatus and methods of treating a substrate with an amorphous semiconductor layer, or a semiconductor layer having small crystals, to form large crystals in the substrate are described. A treatment area of the substrate is identified and melted using a progressive melting process of delivering pulsed energy to the treatment area. The treatment area is then recrystallized using a progressive crystallization process of delivering pulsed energy to the area. The pulsed energy delivered during the progressive crystallization process is selected to convert the small crystals into large crystals as the melted material freezes.
    Type: Application
    Filed: June 19, 2016
    Publication date: October 6, 2016
    Inventors: Bruce E. ADAMS, Aaron Muir HUNTER, Stephen MOFFATT
  • Publication number: 20160208415
    Abstract: A magnetic field guided crystal orientation system, and a method of operation of a magnetic field guided crystal orientation system thereof, including: a work platform; a heating element above the work platform for selectively heating a base layer having grains on a wafer substrate where the wafer substrate is a part of a wafer on the work platform; and a magnetic assembly fixed relative to the heating element for aligning the grains of the base layer using a magnetic field of 10 Tesla or greater for formation of an interconnect having a crystal orientation of grains in the interconnect matching the crystal orientation of the grains of the base layer.
    Type: Application
    Filed: August 19, 2014
    Publication date: July 21, 2016
    Inventors: Christopher Dennis Bencher, Peng Xie, Stephen Moffatt, Bruce E. Adams, Majeed A. Foad
  • Patent number: 9390926
    Abstract: Embodiments described herein relate to apparatus and methods of thermal processing. More specifically, apparatus and methods described herein relate to laser thermal treatment of semiconductor substrates by increasing the uniformity of energy distribution in an image at a surface of a substrate.
    Type: Grant
    Filed: January 20, 2014
    Date of Patent: July 12, 2016
    Assignee: APPLIED MATERIALS, INC.
    Inventors: Jiping Li, Aaron Muir Hunter, Bruce E. Adams, Kim Vellore, Samuel C. Howells, Stephen Moffatt
  • Patent number: 9373511
    Abstract: Apparatus and methods of treating a substrate with an amorphous semiconductor layer, or a semiconductor layer having small crystals, to form large crystals in the substrate are described. A treatment area of the substrate is identified and melted using a progressive melting process of delivering pulsed energy to the treatment area. The treatment area is then recrystallized using a progressive crystallization process of delivering pulsed energy to the area. The pulsed energy delivered during the progressive crystallization process is selected to convert the small crystals into large crystals as the melted material freezes.
    Type: Grant
    Filed: August 31, 2012
    Date of Patent: June 21, 2016
    Assignee: Applied Materials, Inc.
    Inventors: Bruce E. Adams, Aaron Muir Hunter, Stephen Moffatt
  • Publication number: 20160139417
    Abstract: Apparatus and methods for combining beams of amplified radiation are disclosed. A beam combiner has a collimating optic positioned to receive a plurality of coherent radiation beams at a constant angle of incidence with respect to an optical axis of the collimating optic. The respective angles of incidence may also be different in some embodiments. The collimating optic has an optical property that collimates the beams. The optical property may be refractive or reflective, or a combination thereof. A collecting optic may also be provided to direct the plurality of beams to the collimating optic. The beam combiner may be used in a thermal processing apparatus to combine more than two beams of coherent amplified radiation, such as lasers, into a single beam.
    Type: Application
    Filed: January 22, 2016
    Publication date: May 19, 2016
    Inventors: Stephen Moffatt, Douglas E. Holmgren, Samuel C. Howells, Edric Tong, Bruce E. Adams, Jiping Li, Aaron Muir Hunter
  • Patent number: 9285595
    Abstract: Apparatus and methods for combining beams of amplified radiation are disclosed. A beam combiner has a collimating optic positioned to receive a plurality of coherent radiation beams at a constant angle of incidence with respect to an optical axis of the collimating optic. The respective angles of incidence may also be different in some embodiments. The collimating optic has an optical property that collimates the beams. The optical property may be refractive or reflective, or a combination thereof. A collecting optic may also be provided to direct the plurality of beams to the collimating optic. The beam combiner may be used in a thermal processing apparatus to combine more than two beams of coherent amplified radiation, such as lasers, into a single beam.
    Type: Grant
    Filed: January 12, 2015
    Date of Patent: March 15, 2016
    Assignee: APPLIED MATERIALS, INC.
    Inventors: Stephen Moffatt, Douglas E. Holmgren, Samuel C. Howells, Edric Tong, Bruce E. Adams, Jiping Li, Aaron Muir Hunter
  • Publication number: 20160020117
    Abstract: Apparatus, system, and method for thermally treating a substrate. A source of pulsed electromagnetic energy can produce pulses at a rate of at least 100 Hz. A movable substrate support can move a substrate relative to the pulses of electromagnetic energy. An optical system can be disposed between the energy source and the movable substrate support, and can include components to shape the pulses of electromagnetic energy toward a rectangular profile. A controller can command the source of electromagnetic energy to produce pulses of energy at a selected pulse rate. The controller can also command the movable substrate support to scan in a direction parallel to a selected edge of the rectangular profile at a selected speed such that every point along a line parallel to the selected edge receives a predetermined number of pulses of electromagnetic energy.
    Type: Application
    Filed: July 21, 2015
    Publication date: January 21, 2016
    Inventors: Aaron Muir HUNTER, Amikam SADE, Samuel C. HOWELLS, Douglas E. HOLMGREN, Bruce E. ADAMS, Theodore P. MOFFITT, Stephen MOFFATT
  • Publication number: 20150293371
    Abstract: A method of fabricating an electrochemical device, comprising: depositing device layers, including electrodes and corresponding current collectors, and an electrolyte layer, on a substrate; and directly patterning at least one of said device layers by a laser light pattern generated by a laser beam incident on a diffractive optical element, the laser light pattern directly patterning at least an entire device in a single laser shot. The laser direct patterning may include, among others: die patterning of thin film electrochemical devices after all active layers have been deposited; selective ablation of cathode/anode material from corresponding current collectors; and selective ablation of electrolyte material from current collectors, Furthermore, directly patterning of the electrochemical device may be by a shaped beam generated by a laser beam incident on a diffractive optical element, and the shaped beam may be moved across the working surface of the device.
    Type: Application
    Filed: October 25, 2013
    Publication date: October 15, 2015
    Inventors: Daoying Song, Leo B. Kwak, Bruce E. Adams, Theodore P. Moffitt
  • Patent number: 9146337
    Abstract: Embodiments described herein relate to thermal processing of semiconductor substrates. More specifically, embodiments described herein relate to laser thermal processing of semiconductor substrates. In certain embodiments, a uniformizer is provided to spatially and temporally decorrelate a coherent light image.
    Type: Grant
    Filed: December 20, 2013
    Date of Patent: September 29, 2015
    Assignee: APPLIED MATERIALS, INC.
    Inventors: Jiping Li, Aaron Muir Hunter, Bruce E. Adams, Douglas E. Holmgren, Samuel C. Howells, Theodore P. Moffitt, Stephen Moffatt
  • Publication number: 20150124329
    Abstract: Apparatus and methods for combining beams of amplified radiation are disclosed. A beam combiner has a collimating optic positioned to receive a plurality of coherent radiation beams at a constant angle of incidence with respect to an optical axis of the collimating optic. The respective angles of incidence may also be different in some embodiments. The collimating optic has an optical property that collimates the beams. The optical property may be refractive or reflective, or a combination thereof. A collecting optic may also be provided to direct the plurality of beams to the collimating optic. The beam combiner may be used in a thermal processing apparatus to combine more than two beams of coherent amplified radiation, such as lasers, into a single beam.
    Type: Application
    Filed: January 12, 2015
    Publication date: May 7, 2015
    Inventors: Stephen MOFFATT, Douglas E. HOLMGREN, Samuel C. HOWELLS, Edric TONG, Bruce E. ADAMS, Jiping LI, Aaron Muir HUNTER
  • Publication number: 20150069028
    Abstract: A thermal processing apparatus and method in which a first laser source, for example, a CO2 emitting at 10.6 ?m is focused onto a silicon wafer as a line beam and a second laser source, for example, a GaAs laser bar emitting at 808 nm is focused onto the wafer as a larger beam surrounding the line beam. The two beams are scanned in synchronism in the direction of the narrow dimension of the line beam to create a narrow heating pulse from the line beam when activated by the larger beam. The energy of GaAs radiation is greater than the silicon bandgap energy and creates free carriers. The energy of the CO2 radiation is less than the silicon bandgap energy so silicon is otherwise transparent to it, but the long wavelength radiation is absorbed by the free carriers.
    Type: Application
    Filed: November 5, 2014
    Publication date: March 12, 2015
    Inventors: Dean JENNINGS, Haifan LIANG, Mark YAM, Vijay PARIHAR, Abhilash J. MAYUR, Aaron Muir HUNTER, Bruce E. ADAMS, Joseph Michael RANISH
  • Patent number: 8970963
    Abstract: Apparatus and methods for combining beams of amplified radiation are disclosed. A beam combiner has a collimating optic positioned to receive a plurality of coherent radiation beams at a constant angle of incidence with respect to an optical axis of the collimating optic. The respective angles of incidence may also be different in some embodiments. The collimating optic has an optical property that collimates the beams. The optical property may be refractive or reflective, or a combination thereof. A collecting optic may also be provided to direct the plurality of beams to the collimating optic. The beam combiner may be used in a thermal processing apparatus to combine more than two beams of coherent amplified radiation, such as lasers, into a single beam.
    Type: Grant
    Filed: December 14, 2012
    Date of Patent: March 3, 2015
    Assignee: Applied Materials, Inc.
    Inventors: Stephen Moffatt, Douglas E. Holmgren, Samuel C. Howells, Edric Tong, Bruce E. Adams, Jiping Li, Aaron Muir Hunter
  • Publication number: 20150053658
    Abstract: The present invention generally relates to an optical system that is able to reliably deliver a uniform amount of energy across an anneal region contained on a surface of a substrate. The optical system is adapted to deliver, or project, a uniform amount of energy having a desired two-dimensional shape on a desired region on the surface of the substrate. Typically, the anneal regions may be square or rectangular in shape. Generally, the optical system and methods of the present invention are used to preferentially anneal one or more regions found within the anneal regions by delivering enough energy to cause the one or more regions to re-melt and solidify.
    Type: Application
    Filed: September 8, 2014
    Publication date: February 26, 2015
    Applicant: APPLIED MATERIALS, INC.
    Inventors: Bruce E. ADAMS, Samuel C. HOWELLS, Dean JENNINGS, Jiping LI, Timothy N. THOMAS, Stephen MOFFATT
  • Publication number: 20150048062
    Abstract: Embodiments of the present invention generally relate to an optical valve that modifies a laser beam to allow more energy to be irradiated onto less absorbing areas on a substrate and less energy to be irradiated onto more absorbing areas on the substrate, thus creating a more uniform heating field. The optical valve is a layered structure comprising a reflective switch layer, an absorbing layer, a thermal resistor and a thermal bath.
    Type: Application
    Filed: August 13, 2014
    Publication date: February 19, 2015
    Inventor: Bruce E. ADAMS