Patents by Inventor Gabriel Harley

Gabriel Harley 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: 20150349154
    Abstract: A solar cell can include a substrate and a semiconductor region disposed in or above the substrate. The solar cell can also include a contact finger coupled to the semiconductor region via a plurality of weld regions with at least one of the weld regions being a partial weld.
    Type: Application
    Filed: May 30, 2014
    Publication date: December 3, 2015
    Inventors: Gabriel Harley, Taeseok Kim, Benjamin Ian Hsia
  • Publication number: 20150349164
    Abstract: A solar cell can include a built-in bypass diode. In one embodiment, the solar cell can include an active region disposed in or above a first portion of a substrate and a bypass diode disposed in or above a second portion of the substrate. The first and second portions of the substrate can be physically separated with a groove. A metallization structure can couple the active region to the bypass diode.
    Type: Application
    Filed: August 28, 2014
    Publication date: December 3, 2015
    Inventors: Seung Bum Rim, Gabriel Harley
  • Publication number: 20150311357
    Abstract: The formation of solar cell contacts using a laser is described. A method of fabricating a back-contact solar cell includes forming a poly-crystalline material layer above a single-crystalline substrate. The method also includes forming a dielectric material stack above the poly-crystalline material layer. The method also includes forming, by laser ablation, a plurality of contacts holes in the dielectric material stack, each of the contact holes exposing a portion of the poly-crystalline material layer; and forming conductive contacts in the plurality of contact holes.
    Type: Application
    Filed: July 7, 2015
    Publication date: October 29, 2015
    Applicant: SunPower Corporation
    Inventors: Gabriel HARLEY, David D. SMITH, Peter John COUSINS
  • Publication number: 20150280028
    Abstract: Solar cells having a plurality of sub-cells coupled by metallization structures, and singulation approaches to forming solar cells having a plurality of sub-cells coupled by metallization structures, are described. In an example, a solar cell, includes a plurality of sub-cells, each of the sub-cells having a singulated and physically separated semiconductor substrate portion. Adjacent ones of the singulated and physically separated semiconductor substrate portions have a groove there between. The solar cell also includes a monolithic metallization structure. A portion of the monolithic metallization structure couples ones of the plurality of sub-cells. The groove between adjacent ones of the singulated and physically separated semiconductor substrate portions exposes a portion of the monolithic metallization structure.
    Type: Application
    Filed: March 28, 2014
    Publication date: October 1, 2015
    Inventors: Gabriel Harley, Michael Morse, Peter John Cousins
  • Publication number: 20150280021
    Abstract: Approaches for the foil-based metallization of solar cells and the resulting solar cells are described. In an example, a solar cell includes a substrate. A plurality of alternating N-type and P-type semiconductor regions is disposed in or above the substrate. A conductive contact structure is disposed above the plurality of alternating N-type and P-type semiconductor regions. The conductive contact structure includes a plurality of metal seed material regions providing a metal seed material region disposed on each of the alternating N-type and P-type semiconductor regions. A metal foil is disposed on the plurality of metal seed material regions, the metal foil having anodized portions isolating metal regions of the metal foil corresponding to the alternating N-type and P-type semiconductor regions.
    Type: Application
    Filed: March 28, 2014
    Publication date: October 1, 2015
    Inventors: Gabriel Harley, Taeseok Kim, Richard Hamilton Sewell, Michael Morse, David D. Smith, Matthieu Moors, Jens-Dirk Moschner
  • Publication number: 20150280029
    Abstract: Approaches for the metallization of solar cells and the resulting solar cells are described. In an example, a method of fabricating a solar cell involves forming a plurality of alternating N-type and P-type regions in or above a substrate. The method also involves forming a metal seed layer on the plurality of alternating N-type and P-type regions. The method also involves patterning at least a portion of the metal seed layer at regions in alignment with locations between the alternating N-type and P-type regions. The method also involves, subsequent to the patterning, etching to form trenches at the locations between the alternating N-type and P-type regions, isolating the alternating N-type and P-type regions from one another.
    Type: Application
    Filed: March 28, 2014
    Publication date: October 1, 2015
    Inventors: Gabriel Harley, Scott Harrington, David D. Smith
  • Patent number: 9087939
    Abstract: The formation of solar cell contacts using a laser is described. A method of fabricating a back-contact solar cell includes forming a poly-crystalline material layer above a single-crystalline substrate. The method also includes forming a dielectric material stack above the poly-crystalline material layer. The method also includes forming, by laser ablation, a plurality of contacts holes in the dielectric material stack, each of the contact holes exposing a portion of the poly-crystalline material layer; and forming conductive contacts in the plurality of contact holes.
    Type: Grant
    Filed: July 17, 2014
    Date of Patent: July 21, 2015
    Assignee: SunPower Corporation
    Inventors: Gabriel Harley, David D. Smith, Peter John Cousins
  • Publication number: 20150179870
    Abstract: A method of fabricating a solar cell is disclosed. The method can include forming a dielectric region on a surface of a solar cell structure and forming a metal layer on the dielectric layer. The method can also include configuring a laser beam with a particular shape and directing the laser beam with the particular shape on the metal layer, where the particular shape allows a contact to be formed between the metal layer and the solar cell structure.
    Type: Application
    Filed: December 20, 2013
    Publication date: June 25, 2015
    Inventors: Matthieu Moors, David D. Smith, Gabriel Harley, Taeseok Kim
  • Publication number: 20150108692
    Abstract: A solar cell is formed using a solar cell ablation system. The ablation system includes a single laser source and several laser scanners. The laser scanners include a master laser scanner, with the rest of the laser scanners being slaved to the master laser scanner. A laser beam from the laser source is split into several laser beams, with the laser beams being scanned onto corresponding wafers using the laser scanners in accordance with one or more patterns. The laser beams may be scanned on the wafers using the same or different power levels of the laser source.
    Type: Application
    Filed: September 19, 2014
    Publication date: April 23, 2015
    Inventors: Gabriel HARLEY, Thomas PASS, Peter John COUSINS, John VIATELLA
  • Publication number: 20150004737
    Abstract: A photovoltaic laminate is disclosed. Embodiments include placing a first encapsulant on a substantially transparent layer that includes a front side of a photovoltaic laminate. Embodiments also include placing a first solar cell on the first encapsulant. Embodiments include placing a metal foil on the first solar cell, where the metal foil uniformly contacts a back side of the first solar cell. Embodiments include forming a metal bond that couples the metal foil to the first solar cell. In some embodiments, forming the metal bond includes forming a metal contact region using a laser source, wherein the formed metal contact region electrically couples the metal foil to the first solar cell. Embodiments can also include placing a backing material on the metal foil. Embodiments can further include forming a back layer on the backing material layer and curing the substantially transparent layer, first encapsulant, first solar cell, metal foil, backing material and back layer to form a photovoltaic laminate.
    Type: Application
    Filed: June 28, 2013
    Publication date: January 1, 2015
    Applicant: SunPower Corporation
    Inventor: Gabriel HARLEY
  • Publication number: 20150000724
    Abstract: An adhesive may be applied to a surface of a reusable carrier. Metal foil may be attached to the adhesive to couple the metal foil to the surface of the reusable carrier. The metal foil may be patterned without damaging the reusable carrier. A semiconductor structure (e.g., a solar cell) may be attached to the patterned metal foil. The reusable carrier may then be removed. In some embodiments, the semiconductor structure may be encapsulated using an encapsulant, with the adhesive being compatible with the encapsulant.
    Type: Application
    Filed: June 28, 2013
    Publication date: January 1, 2015
    Inventors: Thomas PASS, Richard SEWELL, Taeseok KIM, Gabriel HARLEY, David F.J. KAVULAK, Xiuwen TU
  • Publication number: 20140326308
    Abstract: The formation of solar cell contacts using a laser is described. A method of fabricating a back-contact solar cell includes forming a poly-crystalline material layer above a single-crystalline substrate. The method also includes forming a dielectric material stack above the poly-crystalline material layer. The method also includes forming, by laser ablation, a plurality of contacts holes in the dielectric material stack, each of the contact holes exposing a portion of the poly-crystalline material layer; and forming conductive contacts in the plurality of contact holes.
    Type: Application
    Filed: July 17, 2014
    Publication date: November 6, 2014
    Applicant: SUNPOWER CORPORATION
    Inventors: Gabriel HARLEY, David D. SMITH, Peter John COUSINS
  • Patent number: 8859933
    Abstract: A solar cell is formed using a solar cell ablation system. The ablation system includes a single laser source and several laser scanners. The laser scanners include a master laser scanner, with the rest of the laser scanners being slaved to the master laser scanner. A laser beam from the laser source is split into several laser beams, with the laser beams being scanned onto corresponding wafers using the laser scanners in accordance with one or more patterns. The laser beams may be scanned on the wafers using the same or different power levels of the laser source.
    Type: Grant
    Filed: August 13, 2012
    Date of Patent: October 14, 2014
    Assignee: SunPower Corporation
    Inventors: Gabriel Harley, Thomas Pass, Peter John Cousins, John Viatella
  • Patent number: 8785236
    Abstract: The formation of solar cell contacts using a laser is described. A method of fabricating a back-contact solar cell includes forming a poly-crystalline material layer above a single-crystalline substrate. The method also includes forming a dielectric material stack above the poly-crystalline material layer. The method also includes forming, by laser ablation, a plurality of contacts holes in the dielectric material stack, each of the contact holes exposing a portion of the poly-crystalline materiat layer; and forming conductive contacts in the plurality of contact holes.
    Type: Grant
    Filed: November 5, 2012
    Date of Patent: July 22, 2014
    Assignee: SunPower Corporation
    Inventors: Gabriel Harley, David D. Smith, Peter John Cousins
  • Publication number: 20140174519
    Abstract: One embodiment relates to a method of fabricating a solar cell. A silicon lamina is cleaved from the silicon substrate. The backside of the silicon lamina includes the P-type and N-type doped regions. A metal foil is attached to the backside of the silicon lamina. The metal foil may be used advantageously as a built-in carrier for handling the silicon lamina during processing of a frontside of the silicon lamina. Another embodiment relates to a solar cell that includes a silicon lamina having P-type and N-type doped regions on the backside. A metal foil is adhered to the backside of the lamina, and there are contacts formed between the metal foil and the doped regions. Other embodiments, aspects and features are also disclosed.
    Type: Application
    Filed: December 21, 2012
    Publication date: June 26, 2014
    Inventors: Seung Bum RIM, Gabriel HARLEY
  • Publication number: 20140134787
    Abstract: The formation of solar cell contacts using a laser is described. A method of fabricating a back-contact solar cell includes forming a poly-crystalline material layer above a single-crystalline substrate. The method also includes forming a dielectric material stack above the poly-crystalline material layer. The method also includes forming, by laser ablation, a plurality of contacts holes in the dielectric material stack, each of the contact holes exposing a portion of the poly-crystalline material layer; and forming conductive contacts in the plurality of contact holes.
    Type: Application
    Filed: November 5, 2012
    Publication date: May 15, 2014
    Applicant: SUNPOWER CORPORATION
    Inventors: Gabriel Harley, David D. Smith, Peter John Cousins
  • Publication number: 20140096824
    Abstract: Contact holes of solar cells are formed by laser ablation to accommodate various solar cell designs. Use of a laser to form the contact holes is facilitated by replacing films formed on the diffusion regions with a film that has substantially uniform thickness. Contact holes may be formed to deep diffusion regions to increase the laser ablation process margins. The laser configuration may be tailored to form contact holes through dielectric films of varying thicknesses.
    Type: Application
    Filed: October 23, 2013
    Publication date: April 10, 2014
    Applicant: SUNPOWER CORPORATION
    Inventors: Gabriel HARLEY, David D. SMITH, Tim DENNIS, Ann WALDHAUER, Taeseok KIM, Peter John COUSINS
  • Patent number: 8692111
    Abstract: Contact holes of solar cells are formed by laser ablation to accommodate various solar cell designs. Throughput of the solar cell ablation process is improved by incorporating linear base diffusion regions with narrow width, for example as compared to an overlying metal contact. Throughput of the solar cell ablation process may also be improved by having contact holes to base diffusion regions that are perpendicular to contact holes to emitter diffusion regions. To allow for continuous laser scanning, a laser blocking layer may be located over an interlayer dielectric to prevent contact hole formation on certain regions, such as regions where a metal contact of one polarity may electrically shunt to a diffusion region of opposite polarity. In a hybrid design, a solar cell may have both linear and dotted base diffusion regions. An electro-optical modulator may be employed to allow for continuous laser scanning in dotted base diffusion designs.
    Type: Grant
    Filed: November 16, 2011
    Date of Patent: April 8, 2014
    Assignee: SunPower Corporation
    Inventors: Taeseok Kim, Gabriel Harley, David D. Smith, Peter John Cousins
  • Patent number: 8586403
    Abstract: Contact holes of solar cells are formed by laser ablation to accommodate various solar cell designs. Use of a laser to form the contact holes is facilitated by replacing films formed on the diffusion regions with a film that has substantially uniform thickness. Contact holes may be formed to deep diffusion regions to increase the laser ablation process margins. The laser configuration may be tailored to form contact holes through dielectric films of varying thicknesses.
    Type: Grant
    Filed: February 15, 2011
    Date of Patent: November 19, 2013
    Assignee: SunPower Corporation
    Inventors: Gabriel Harley, David D. Smith, Tim Dennis, Ann Waldhauer, Taeseok Kim, Peter John Cousins
  • Patent number: 8513045
    Abstract: A laser system with multiple laser pulses for removing material from a solar cell being fabricated. The laser system includes a single pulse laser source and a multi-pulse generator. The multi-pulse generator receives a single pulse laser beam from the single pulse laser source and converts the single pulse laser beam into a multi-pulse laser beam. A laser scanner scans the multi-pulse laser beam onto the solar cell to remove material from the solar cell.
    Type: Grant
    Filed: January 31, 2012
    Date of Patent: August 20, 2013
    Assignee: SunPower Corporation
    Inventors: John Viatella, Gabriel Harley, Thomas Pass