Patents by Inventor Brandon M. Rawlings

Brandon M. Rawlings 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: 20250112077
    Abstract: An embodiment discloses an electronic device comprising an integrated circuit (IC) die, a stub extending from the IC die; and a mesa structure under the IC die, wherein the IC die and the stub are bonded to the mesa structure.
    Type: Application
    Filed: September 29, 2023
    Publication date: April 3, 2025
    Applicant: Intel Corporation
    Inventors: Feras Eid, Andrey Vyatskikh, Adel Elsherbini, Brandon M. Rawlings, Tushar Kanti Talukdar, Thomas L. Sounart, Kimin Jun, Johanna Swan, Grant M. Kloster, Carlos Bedoya Arroyave
  • Publication number: 20250112196
    Abstract: An embodiment discloses an electronic device, comprising an integrated circuit (IC) die, a mesa structure formed on the IC die, and a die bonded to the IC die through the mesa structure.
    Type: Application
    Filed: September 29, 2023
    Publication date: April 3, 2025
    Applicant: Intel Corporation
    Inventors: Feras Eid, Johanna Swan, Adel Elsherbini, Thomas L. Sounart, Tushar Kanti Talukdar, Brandon M. Rawlings, Kimin Jun, Andrey Vyatskikh, Shawna M. Liff
  • Publication number: 20250112218
    Abstract: In one embodiment, a selective layer transfer process includes forming a layer of integrated circuit (IC) components on a first substrate, forming first bonding structures on a second substrate, and partially bonding the first substrate to the second substrate, which includes bonding a first subset of IC components on the first substrate to respective bonding structures on the second substrate. The process also includes forming second bonding structures on a third substrate, where the second bonding structures are arranged in a layout that is offset from the layout of the second substrate. The process further includes partially bonding the first substrate to the third substrate, which includes bonding a second subset of IC components on the first substrate to respective bonding structures on the third substrate.
    Type: Application
    Filed: September 29, 2023
    Publication date: April 3, 2025
    Applicant: Intel Corporation
    Inventors: Brandon M. Rawlings, Adel Elsherbini, Thomas L. Sounart, Feras Eid, Tushar Kanti Talukdar, Kimin Jun, Johanna Swan, Richard F. Vreeland
  • Publication number: 20250105046
    Abstract: Methods of selectively transferring portions of layers between substrates, and devices and systems formed using the same, are disclosed herein. In one embodiment, a first substrate with a layer of integrated circuit (IC) components is received, and a second substrate with one or more adhesive areas is received. The first substrate is partially bonded to the second substrate, such that a subset of IC components on the first substrate are bonded to the adhesive areas on the second substrate. The first substrate is then separated from the second substrate, and the subset of IC components bonded to the second substrate are separated from the first substrate and remain on the second substrate.
    Type: Application
    Filed: September 25, 2023
    Publication date: March 27, 2025
    Applicant: Intel Corporation
    Inventors: Adel Elsherbini, Thomas L. Sounart, Feras Eid, Tushar Kanti Talukdar, Brandon M. Rawlings, Andrey Vyatskikh, Carlos Bedoya Arroyave, Kimin Jun, Shawna M. Liff, Grant M. Kloster, Richard F. Vreeland, William P. Brezinski, Johanna Swan
  • Publication number: 20250006695
    Abstract: Microelectronic assemblies, related devices and methods, are disclosed herein. In some embodiments, a microelectronic assembly may include a first layer with a first die having a first contact; a second die having a second contact; and a pad layer, on the first and second dies, including a first pad and a second pad, where the first pad is coupled to and offset from the first contact in a first direction, and the second pad is coupled to and is offset from the second contact in a second direction different than the first direction; and a second layer including a third die having third and fourth contacts, where the first layer is coupled to the second layer by metal-to-metal bonds and fusion bonds, the first contact is coupled to the third contact by the first pad, and the second contact is coupled to the fourth contact by the second pad.
    Type: Application
    Filed: June 29, 2023
    Publication date: January 2, 2025
    Applicant: Intel Corporation
    Inventors: Bhaskar Jyoti Krishnatreya, Adel A. Elsherbini, Brandon M. Rawlings, Kimin Jun, Omkar G. Karhade, Mohit Bhatia, Nitin A. Deshpande, Prashant Majhi, Johanna M. Swan
  • Patent number: 12183961
    Abstract: A method of forming a waveguide comprises forming an elongate waveguide core including a dielectric material; and arranging a conductive sheet around an outside surface of the dielectric core to produce a conductive layer around the waveguide core.
    Type: Grant
    Filed: August 16, 2021
    Date of Patent: December 31, 2024
    Assignee: Intel Corporation
    Inventors: Aleksandar Aleksov, Georgios C. Dogiamis, Telesphor Kamgaing, Sasha N. Oster, Adel A. Elsherbini, Shawna M. Liff, Johanna M. Swan, Brandon M. Rawlings, Richard J. Dischler
  • Patent number: 12002745
    Abstract: Embodiments of the invention include an electrical package and methods of forming the package. In one embodiment, a transformer may be formed in the electrical package. The transformer may include a first conductive loop that is formed over a first dielectric layer. A thin dielectric spacer material may be used to separate the first conductive loop from a second conductive loop that is formed in the package. Additional embodiments of the invention include forming a capacitor formed in the electrical package. For example, the capacitor may include a first capacitor plate that is formed over a first dielectric layer. A thin dielectric spacer material may be used to separate the first capacitor plate form a second capacitor plate that is formed in the package. The thin dielectric spacer material in the transformer and capacitor allow for increased coupling factors and capacitance density in electrical components.
    Type: Grant
    Filed: December 7, 2021
    Date of Patent: June 4, 2024
    Assignee: Intel Corporation
    Inventors: Adel A. Elsherbini, Mathew J. Manusharow, Krishna Bharath, William J. Lambert, Robert L. Sankman, Aleksandar Aleksov, Brandon M. Rawlings, Feras Eid, Javier Soto Gonzalez, Meizi Jiao, Suddhasattwa Nad, Telesphor Kamgaing
  • Patent number: 11749628
    Abstract: Microelectronic assemblies, related devices and methods, are disclosed herein. In some embodiments, a microelectronic assembly may include a first microelectronic component having a first direct bonding region, wherein the first direct bonding region includes first metal contacts and a first dielectric material between adjacent ones of the first metal contacts; a second microelectronic component having a second direct bonding region, wherein the second direct bonding region includes second metal contacts and a second dielectric material between adjacent ones of the second metal contacts, wherein the first microelectronic component is coupled to the second microelectronic component by interconnects, and wherein the interconnects include individual first metal contacts coupled to respective individual second metal contacts; and a void between an individual first metal contact that is not coupled to a respective individual second metal contact, wherein the void is in the first direct bonding region.
    Type: Grant
    Filed: November 9, 2022
    Date of Patent: September 5, 2023
    Assignee: Intel Corporation
    Inventors: Adel A. Elsherbini, Veronica Aleman Strong, Shawna M. Lift, Brandon M. Rawlings, Jagat Shakya, Johanna M. Swan, David M. Craig, Jeremy Alan Streifer, Brennen Karl Mueller
  • Publication number: 20230187362
    Abstract: A microelectronic assembly is provided, comprising: a first plurality of integrated circuit (IC) dies in a first layer; a second plurality of IC dies in a second layer; and a third plurality of IC dies in a third layer, in which: the second layer is between the first layer and the third layer, an interface between two adjacent layers comprises interconnects having a pitch of less than 10 micrometers between adjacent ones of the interconnects, and each of the first layer, the second layer, and the third layer comprises a dielectric material, and further comprises conductive traces in the dielectric material.
    Type: Application
    Filed: December 10, 2021
    Publication date: June 15, 2023
    Applicant: Intel Corporation
    Inventors: Adel A. Elsherbini, Christopher M. Pelto, Kimin Jun, Brandon M. Rawlings, Shawna M. Liff, Bradley A. Jackson, Robert J. Munoz, Johanna M. Swan
  • Publication number: 20230094979
    Abstract: Technologies for conformal power delivery structures near high-speed signal traces are disclosed. In one embodiment, a dielectric layer may be used to keep a power delivery structure spaced apart from high-speed signal traces, preventing deterioration of signals on the high-speed signal traces due to capacitive coupling to the power delivery structure.
    Type: Application
    Filed: September 24, 2021
    Publication date: March 30, 2023
    Applicant: Intel Corporation
    Inventors: Aleksandar Aleksov, Henning Braunisch, Feras Eid, Adel Elsherbini, Stephen Morein, Yoshihiro Tomita, Thomas L. Sounart, Johanna Swan, Brandon M. Rawlings
  • Publication number: 20230095654
    Abstract: In one embodiment, a conformal power delivery structure includes a first electrically conductive layer comprising metal. The first electrically conductive layer defines one or more recesses, and the conformal power delivery structure also includes a second electrically conductive layer comprising metal that is at least partially within the recesses of the first electrically conductive layer. The second electrically conductive layer has a lower surface that generally conforms with the upper surface of the first electrically conductive layer. The conformal power delivery structure further includes a dielectric material between the surfaces of the first electrically conductive layer and the second electrically conductive layer that conform with one another.
    Type: Application
    Filed: September 24, 2021
    Publication date: March 30, 2023
    Inventors: Adel Elsherbini, Feras Eid, Stephen Morein, Krishna Bharath, Henning Braunisch, Beomseok Choi, Brandon M. Rawlings, Thomas L. Sounart, Johanna Swan, Yoshihiro Tomita, Aleksandar Aleksov
  • Publication number: 20230074970
    Abstract: Microelectronic assemblies, related devices and methods, are disclosed herein. In some embodiments, a microelectronic assembly may include a first microelectronic component having a first direct bonding region, wherein the first direct bonding region includes first metal contacts and a first dielectric material between adjacent ones of the first metal contacts; a second microelectronic component having a second direct bonding region, wherein the second direct bonding region includes second metal contacts and a second dielectric material between adjacent ones of the second metal contacts, wherein the first microelectronic component is coupled to the second microelectronic component by interconnects, and wherein the interconnects include individual first metal contacts coupled to respective individual second metal contacts; and a void between an individual first metal contact that is not coupled to a respective individual second metal contact, wherein the void is in the first direct bonding region.
    Type: Application
    Filed: November 9, 2022
    Publication date: March 9, 2023
    Applicant: Intel Corporation
    Inventors: Adel A. Elsherbini, Veronica Aleman Strong, Shawna M. Liff, Brandon M. Rawlings, Jagat Shakya, Johanna M. Swan, David M. Craig, Jeremy Alan Streifer, Brennen Karl Mueller
  • Patent number: 11527501
    Abstract: Microelectronic assemblies, related devices and methods, are disclosed herein. In some embodiments, a microelectronic assembly may include a first microelectronic component having a first direct bonding region, wherein the first direct bonding region includes first metal contacts and a first dielectric material between adjacent ones of the first metal contacts; a second microelectronic component having a second direct bonding region and coupled to the first microelectronic component by the first and second direct bonding regions, wherein the second direct bonding region includes second metal contacts and a second dielectric material between adjacent ones of the second metal contacts, and wherein individual first metal contacts in the first direct bonding region are coupled to respective individual second metal contacts in the second direct bonding region; and a void between an individual first metal contact and a respective individual second metal contact.
    Type: Grant
    Filed: December 15, 2020
    Date of Patent: December 13, 2022
    Assignee: Intel Corporation
    Inventors: Adel A. Elsherbini, Veronica Aleman Strong, Shawna M. Liff, Brandon M. Rawlings, Jagat Shakya, Johanna M. Swan, David M. Craig, Jeremy Alan Streifer, Brennen Karl Mueller
  • Patent number: 11227825
    Abstract: Embodiments of the invention include an electrical package and methods of forming the package. In one embodiment, a transformer may be formed in the electrical package. The transformer may include a first conductive loop that is formed over a first dielectric layer. A thin dielectric spacer material may be used to separate the first conductive loop from a second conductive loop that is formed in the package. Additional embodiments of the invention include forming a capacitor formed in the electrical package. For example, the capacitor may include a first capacitor plate that is formed over a first dielectric layer. A thin dielectric spacer material may be used to separate the first capacitor plate form a second capacitor plate that is formed in the package. The thin dielectric spacer material in the transformer and capacitor allow for increased coupling factors and capacitance density in electrical components.
    Type: Grant
    Filed: December 21, 2015
    Date of Patent: January 18, 2022
    Assignee: Intel Corporation
    Inventors: Adel A. Elsherbini, Mathew J. Manusharow, Krishna Bharath, William J. Lambert, Robert L. Sankman, Aleksandar Aleksov, Brandon M. Rawlings, Feras Eid, Javier Soto Gonzalez, Meizi Jiao, Suddhasattwa Nad, Telesphor Kamgaing
  • Publication number: 20210376437
    Abstract: A method of forming a waveguide comprises forming an elongate waveguide core including a dielectric material; and arranging a conductive sheet around an outside surface of the dielectric core to produce a conductive layer around the waveguide core.
    Type: Application
    Filed: August 16, 2021
    Publication date: December 2, 2021
    Inventors: Aleksandar Aleksov, Georgios C. Dogiamis, Telesphor Kamgaing, Sasha N. Oster, Adel A. Elsherbini, Shawna M. Liff, Johanna M. Swan, Brandon M. Rawlings, Richard J. Dischler
  • Patent number: 11095012
    Abstract: A method of forming a waveguide comprises forming an elongate waveguide core including a dielectric material; and arranging a conductive sheet around an outside surface of the dielectric core to produce a conductive layer around the waveguide core.
    Type: Grant
    Filed: September 30, 2016
    Date of Patent: August 17, 2021
    Assignee: Intel Corporation
    Inventors: Aleksandar Aleksov, Georgios C. Dogiamis, Telesphor Kamgaing, Sasha N. Oster, Adel A. Elsherbini, Shawna M. Liff, Johanna M. Swan, Brandon M. Rawlings, Richard J. Dischler
  • Patent number: 11031666
    Abstract: An apparatus comprises a waveguide including: an elongate waveguide core including a dielectric material, wherein the waveguide core includes at least one space arranged lengthwise along the waveguide core that is void of the dielectric material; and a conductive layer arranged around the waveguide core.
    Type: Grant
    Filed: September 30, 2016
    Date of Patent: June 8, 2021
    Assignee: Intel Corporation
    Inventors: Adel A. Elsherbini, Sasha N. Oster, Georgios C. Dogiamis, Telesphor Kamgaing, Shawna M. Liff, Aleksandar Aleksov, Johanna M. Swan, Brandon M. Rawlings, Richard J. Dischler
  • Patent number: 11024933
    Abstract: A method of making a waveguide, comprises: extruding a first dielectric material as a waveguide core of the waveguide, wherein the waveguide core is elongate; and coextruding an outer layer with the waveguide core, wherein the outer layer is arranged around the waveguide core.
    Type: Grant
    Filed: September 30, 2016
    Date of Patent: June 1, 2021
    Assignee: Intel Corporation
    Inventors: Brandon M. Rawlings, Shawna M. Liff, Sasha N. Oster, Georgios C. Dogiamis, Telesphor Kamgaing, Adel A. Elsherbini, Aleksandar Aleksov, Johanna M. Swan, Richard J. Dischler
  • Patent number: 10950919
    Abstract: An apparatus comprises a waveguide section including an outer layer of conductive material tubular in shape and having multiple ends; and a joining feature on at least one of the ends of the waveguide section configured for joining to a second separate waveguide section.
    Type: Grant
    Filed: September 30, 2016
    Date of Patent: March 16, 2021
    Assignee: Intel Corporation
    Inventors: Telesphor Kamgaing, Georgios C. Dogiamis, Sasha N. Oster, Adel A. Elsherbini, Brandon M. Rawlings, Aleksandar Aleksov, Shawna M. Liff, Richard J. Dischler, Johanna M. Swan
  • Patent number: 10645813
    Abstract: A photoresist is deposited on a seed layer on a substrate. A first region of the photoresist is removed to expose a first portion of the seed layer to form a via-pad structure. A first conductive layer is deposited onto the first portion of the seed layer. A second region of the photoresist adjacent to the first region is removed to expose a second portion of the seed layer to form a line. A second conductive layer is deposited onto the first conductive layer and the second portion of the seed layer.
    Type: Grant
    Filed: December 21, 2018
    Date of Patent: May 5, 2020
    Assignee: Intel Corporation
    Inventors: Brandon M. Rawlings, Henning Braunisch