Patents by Inventor Cheng-Ying Huang

Cheng-Ying Huang 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: 20230090092
    Abstract: An integrated circuit having a transistor architecture includes a first semiconductor body and a second semiconductor body. The first and second semiconductor bodies are arranged vertically (e.g., stacked configuration) or horizontally (e.g., forksheet configuration) with respect to each other, and separated from one another by insulator material, and each can be configured for planar or non-planar transistor topology. A first gate structure is on the first semiconductor body, and includes a first gate electrode and a first high-k gate dielectric. A second gate structure is on the second semiconductor body, and includes a second gate electrode and a second high-k gate dielectric. In an example, the first gate electrode includes a layer comprising a compound of silicon and one or more metals; the second gate structure may include a silicide workfunction layer, or not. In one example, the first gate electrode is n-type, and the second gate electrode is p-type.
    Type: Application
    Filed: September 22, 2021
    Publication date: March 23, 2023
    Inventors: Aaron D. Lilak, Orb Acton, Cheng-Ying Huang, Gilbert Dewey, Ehren Mannebach, Anh Phan, Willy Rachmady, Jack T. Kavalieros
  • Publication number: 20230087444
    Abstract: Integrated circuits including lateral diodes. In an example, diodes are formed with laterally neighboring source and drain regions (diffusion regions) configured with different polarity epitaxial growths (e.g., p-type and n-type), to provide an anode and cathode of the diode. In some such cases, dopants may be used in the channel region to create or otherwise enhance a PN or PIN junction between the diffusion regions and the semiconductor material of a channel region. The channel region can be, for instance, one or more nanoribbons or other such semiconductor bodies that extend between the oppositely-doped diffusion regions. In some cases, nanoribbons making up the channel region are left unreleased, thereby preserving greater volume through which diode current can flow. Other features include skipped epitaxial regions, elongated gate structures, using isolation structures in place of gate structures, and/or sub-fin conduction paths that are supplemental or alternative to a channel-based conduction path.
    Type: Application
    Filed: September 22, 2021
    Publication date: March 23, 2023
    Applicant: INTEL CORPORATION
    Inventors: Nicholas A. Thomson, Ayan Kar, Benjamin Orr, Kalyan C. Kolluru, Nathan D. Jack, Patrick Morrow, Cheng-Ying Huang, Charles C. Kuo
  • Patent number: 11605565
    Abstract: Embodiments herein describe techniques for a semiconductor device including a first transistor stacked above and self-aligned with a second transistor, where a shadow of the first transistor substantially overlaps with the second transistor. The first transistor includes a first gate electrode, a first channel layer including a first channel material and separated from the first gate electrode by a first gate dielectric layer, and a first source electrode coupled to the first channel layer. The second transistor includes a second gate electrode, a second channel layer including a second channel material and separated from the second gate electrode by a second gate dielectric layer, and a second source electrode coupled to the second channel layer. The second source electrode is self-aligned with the first source electrode, and separated from the first source electrode by an isolation layer. Other embodiments may be described and/or claimed.
    Type: Grant
    Filed: December 28, 2018
    Date of Patent: March 14, 2023
    Assignee: Intel Corporation
    Inventors: Cheng-Ying Huang, Willy Rachmady, Gilbert Dewey, Aaron Lilak, Kimin Jun, Brennen Mueller, Ehren Mannebach, Anh Phan, Patrick Morrow, Hui Jae Yoo, Jack T. Kavalieros
  • Publication number: 20230073078
    Abstract: An integrated circuit structure having a stacked transistor architecture includes a first semiconductor body (e.g., set of one or more nanoribbons) and a second semiconductor body (e.g., set of one or more nanoribbons) above the first semiconductor body. The first and second semiconductor bodies are part of the same fin structure. The distance between an upper surface of the first semiconductor body and a lower surface of the second semiconductor body is 60 nm or less. A first gate structure is on the first semiconductor body, and a second gate structure is on the second semiconductor body. An isolation structure that includes a dielectric material is between the first and second gate structures, and is on and conformal to a top surface of the first gate structure. In addition, a bottom surface of the second gate structure is on a top surface of the isolation structure, which is relatively flat.
    Type: Application
    Filed: August 25, 2021
    Publication date: March 9, 2023
    Applicant: Intel Corporation
    Inventors: Willy Rachmady, Sudipto Naskar, Cheng-Ying Huang, Gilbert Dewey, Marko Radosavljevic, Nicole K. Thomas, Patrick Morrow, Urusa Alaan
  • Patent number: 11594533
    Abstract: A device is disclosed. The device includes a first semiconductor fin, a first source-drain epitaxial region adjacent a first portion of the first semiconductor fin, a second source-drain epitaxial region adjacent a second portion of the first semiconductor fin, a first gate conductor above the first semiconductor fin, a gate spacer covering the sides of the gate conductor, a second semiconductor fin below the first semiconductor fin, a second gate conductor on a first side of the second semiconductor fin and a third gate conductor on a second side of the second semiconductor fin, a third source-drain epitaxial region adjacent a first portion of the second semiconductor fin, and a fourth source-drain epitaxial region adjacent a second portion of the second semiconductor fin. The device also includes a dielectric isolation structure below the first semiconductor fin and above the second semiconductor fin that separates the first semiconductor fin and the second semiconductor fin.
    Type: Grant
    Filed: June 27, 2019
    Date of Patent: February 28, 2023
    Assignee: Intel Corporation
    Inventors: Willy Rachmady, Cheng-Ying Huang, Gilbert Dewey, Aaron Lilak, Patrick Morrow, Anh Phan, Ehren Mannebach, Jack T. Kavalieros
  • Patent number: 11573798
    Abstract: Disclosed herein are stacked transistors with different gate lengths in different device strata, as well as related methods and devices. In some embodiments, an integrated circuit structure may include stacked strata of transistors, with two different device strata having different gate lengths.
    Type: Grant
    Filed: March 1, 2019
    Date of Patent: February 7, 2023
    Assignee: Intel Corporation
    Inventors: Aaron D. Lilak, Gilbert W. Dewey, Willy Rachmady, Rishabh Mehandru, Ehren Mannebach, Cheng-Ying Huang, Anh Phan, Patrick Morrow
  • Patent number: 11569238
    Abstract: Embodiments herein describe techniques for a semiconductor device including a memory cell vertically above a substrate. The memory cell includes a metal-insulator-metal (MIM) capacitor at a lower device portion, and a transistor at an upper device portion above the lower device portion. The MIM capacitor includes a first plate, and a second plate separated from the first plate by a capacitor dielectric layer. The first plate includes a first group of metal contacts coupled to a metal electrode vertically above the substrate. The first group of metal contacts are within one or more metal layers above the substrate in a horizontal direction in parallel to a surface of the substrate. Furthermore, the metal electrode of the first plate of the MIM capacitor is also a source electrode of the transistor. Other embodiments may be described and/or claimed.
    Type: Grant
    Filed: December 17, 2018
    Date of Patent: January 31, 2023
    Assignee: Intel Corporation
    Inventors: Aaron Lilak, Willy Rachmady, Gilbert Dewey, Kimin Jun, Hui Jae Yoo, Patrick Morrow, Sean T. Ma, Ahn Phan, Abhishek Sharma, Cheng-Ying Huang, Ehren Mannebach
  • Patent number: 11563119
    Abstract: Disclosed are etchstop regions in fins of semiconductor devices, and related methods. A semiconductor device includes a buried region, a fin on the buried region, and a gate formed at least partially around the fin. At least a portion of the fin that borders the buried region includes an etchstop material. The etchstop material includes a doped semiconductor material that has a slower etch rate than that of an intrinsic form of the semiconductor material. A method of manufacturing a semiconductor device includes forming a gate on a fin, implanting part of the fin with dopants configured to decrease an etch rate of the part of the fin, removing at least part of the fin, and forming an epitaxial semiconductor material on a remaining proximal portion of the fin.
    Type: Grant
    Filed: December 27, 2017
    Date of Patent: January 24, 2023
    Assignee: Intel Corporation
    Inventors: Cheng-Ying Huang, Willy Rachmady, Gilbert Dewey, Erica J. Thompson, Aaron D. Lilak, Jack T. Kavalieros
  • Patent number: 11557658
    Abstract: Transistors having a plurality of channel semiconductor structures, such as fins, over a dielectric material. A source and drain are coupled to opposite ends of the structures and a gate stack intersects the plurality of structures between the source and drain. Lateral epitaxial overgrowth (LEO) may be employed to form a super-lattice of a desired periodicity from a sidewall of a fin template structure that is within a trench and extends from the dielectric material. Following LEO, the super-lattice structure may be planarized with surrounding dielectric material to expose a top of the super-lattice layers. Alternating ones of the super-lattice layers may then be selectively etched away, with the retained layers of the super-lattice then laterally separated from each other by a distance that is a function of the super-lattice periodicity. A gate dielectric and a gate electrode may be formed over the retained super-lattice layers for a channel of a transistor.
    Type: Grant
    Filed: December 27, 2017
    Date of Patent: January 17, 2023
    Assignee: Intel Corporation
    Inventors: Gilbert Dewey, Sean T. Ma, Tahir Ghani, Willy Rachmady, Cheng-Ying Huang, Anand S. Murthy, Harold W. Kennel, Nicholas G. Minutillo, Matthew V. Metz
  • Patent number: 11552104
    Abstract: Disclosed herein are stacked transistors with dielectric between channel materials, as well as related methods and devices. In some embodiments, an integrated circuit structure may include stacked strata of transistors, wherein a dielectric material is between channel materials of adjacent strata, and the dielectric material is surrounded by a gate dielectric.
    Type: Grant
    Filed: February 19, 2019
    Date of Patent: January 10, 2023
    Assignee: Intel Corporation
    Inventors: Aaron D. Lilak, Gilbert W. Dewey, Willy Rachmady, Rishabh Mehandru, Ehren Mannebach, Cheng-Ying Huang, Anh Phan, Patrick Morrow, Kimin Jun
  • Publication number: 20230006065
    Abstract: Techniques are disclosed for an integrated circuit including a ferroelectric gate stack including a ferroelectric layer, an interfacial oxide layer, and a gate electrode. The ferroelectric layer can be voltage activated to switch between two ferroelectric states. Employing such a ferroelectric layer provides a reduction in leakage current in an off-state and provides an increase in charge in an on-state. The interfacial oxide layer can be formed between the ferroelectric layer and the gate electrode. Alternatively, the ferroelectric layer can be formed between the interfacial oxide layer and the gate electrode.
    Type: Application
    Filed: August 30, 2022
    Publication date: January 5, 2023
    Applicant: Intel Corporation
    Inventors: Gilbert DEWEY, Willy RACHMADY, Jack T. KAVALIEROS, Cheng-Ying HUANG, Matthew V. METZ, Sean T. MA, Harold KENNEL, Tahir GHANI
  • Patent number: 11532619
    Abstract: Transistor structures including a non-planar body that has an active portion comprising a semiconductor material of a first height that is variable, and an inactive portion comprising an oxide of the semiconductor material of a second variable height, complementary to the first height. Gate electrodes and source/drain terminals may be coupled through a transistor channel having any width that varies according to the first height. Oxidation of a semiconductor material may be selectively catalyzed to convert a desired portion of a non-planar body into the oxide of the semiconductor material. Oxidation may be enhanced through the application of a catalyst, such as one comprising metal and oxygen, for example.
    Type: Grant
    Filed: March 27, 2019
    Date of Patent: December 20, 2022
    Assignee: Intel Corporation
    Inventors: Willy Rachmady, Cheng-Ying Huang, Gilbert Dewey, Jack Kavalieros, Caleb Barrett, Jay P. Gupta, Nishant Gupta, Kaiwen Hsu, Byungki Jung, Aravind S. Killampalli, Justin Railsback, Supanee Sukrittanon, Prashant Wadhwa
  • Patent number: 11532719
    Abstract: Embodiments herein describe techniques for a semiconductor device over a semiconductor substrate. A first bonding layer is above the semiconductor substrate. One or more nanowires are formed above the first bonding layer to be a channel layer. A gate electrode is around a nanowire, where the gate electrode is in contact with the first bonding layer and separated from the nanowire by a gate dielectric layer. A source electrode or a drain electrode is in contact with the nanowire, above a bonding area of a second bonding layer, and separated from the gate electrode by a spacer, where the second bonding layer is above and in direct contact with the first bonding layer.
    Type: Grant
    Filed: December 17, 2018
    Date of Patent: December 20, 2022
    Assignee: Intel Corporation
    Inventors: Kimin Jun, Jack T. Kavalieros, Gilbert Dewey, Willy Rachmady, Aaron Lilak, Brennen Mueller, Hui Jae Yoo, Patrick Morrow, Anh Phan, Cheng-Ying Huang, Ehren Mannebach
  • Publication number: 20220375916
    Abstract: Described herein are IC devices that include multilayer memory structures bonded to compute logic using low-temperature oxide bonding to realize high-density three-dimensional (3D) dynamic random-access memory (DRAM). An example device includes a compute die, a multilayer memory structure, and an oxide bonding interface coupling the compute die to the multilayer memory structure. The oxide bonding interface includes metal interconnects and an oxide material surrounding the metal interconnects and bonding the compute die to the memory structure.
    Type: Application
    Filed: May 18, 2021
    Publication date: November 24, 2022
    Applicant: Intel Corporation
    Inventors: Wilfred Gomes, Cheng-Ying Huang, Ashish Agrawal, Gilbert W. Dewey, Jack T. Kavalieros, Abhishek A. Sharma, Willy Rachmady
  • Patent number: 11508577
    Abstract: Embodiments herein describe techniques, systems, and method for a semiconductor device. Embodiments herein may present a semiconductor device including a substrate and an insulator layer above the substrate. A channel area may include an III-V material relaxed grown on the insulator layer. A source area may be above the insulator layer, in contact with the insulator layer, and adjacent to a first end of the channel area. A drain area may be above the insulator layer, in contact with the insulator layer, and adjacent to a second end of the channel area that is opposite to the first end of the channel area. The source area or the drain area may include one or more seed components including a seed material with free surface. Other embodiments may be described and/or claimed.
    Type: Grant
    Filed: June 29, 2018
    Date of Patent: November 22, 2022
    Assignee: Intel Corporation
    Inventors: Gilbert Dewey, Matthew Metz, Willy Rachmady, Sean Ma, Nicholas Minutillo, Cheng-Ying Huang, Tahir Ghani, Jack Kavalieros, Anand Murthy, Harold Kennel
  • Patent number: 11482621
    Abstract: Embodiments include transistor devices and a method of forming the transistor devices. A transistor device includes a first dielectric over a substrate, and vias on a first metal layer, where the first metal layer is on an etch stop layer that is on the first dielectric. The transistor device also includes a second dielectric over the first metal layer, vias, and etch stop layer, where the vias include sidewalls, top surfaces, and bottom surfaces, and stacked transistors on the second dielectric and the top surfaces of the vias, where the sidewalls and top surfaces of the vias are positioned within a footprint of the stacked transistors. The stacked transistors include gate electrodes and first and second transistor layers. The first metal layer includes conductive materials including tungsten or cobalt. The footprint may include a bottom surface of the first transistor layer and a bottom surface of the gate electrodes.
    Type: Grant
    Filed: September 26, 2018
    Date of Patent: October 25, 2022
    Assignee: Intel Corporation
    Inventors: Willy Rachmady, Patrick Morrow, Aaron Lilak, Rishabh Mehandru, Cheng-Ying Huang, Gilbert Dewey, Kimin Jun, Ryan Keech, Anh Phan, Ehren Mannebach
  • Publication number: 20220328663
    Abstract: Disclosed herein are tunneling field effect transistors (TFETs), and related methods and computing devices. In some embodiments, a TFET may include: a first source/drain material having a p-type conductivity; a second source/drain material having an n-type conductivity; a channel material at least partially between the first source/drain material and the second source/drain material, wherein the channel material has a first side face and a second side face opposite the first side face; and a gate above the channel material, on the first side face, and on the second side face.
    Type: Application
    Filed: June 29, 2022
    Publication date: October 13, 2022
    Applicant: Intel Corporation
    Inventors: Cheng-Ying Huang, Willy Rachmady, Matthew V. Metz, Ashish Agrawal, Benjamin Chu-Kung, Uygar E. Avci, Jack T. Kavalieros, Ian A. Young
  • Patent number: 11469323
    Abstract: Techniques are disclosed for an integrated circuit including a ferroelectric gate stack including a ferroelectric layer, an interfacial oxide layer, and a gate electrode. The ferroelectric layer can be voltage activated to switch between two ferroelectric states. Employing such a ferroelectric layer provides a reduction in leakage current in an off-state and provides an increase in charge in an on-state. The interfacial oxide layer can be formed between the ferroelectric layer and the gate electrode. Alternatively, the ferroelectric layer can be formed between the interfacial oxide layer and the gate electrode.
    Type: Grant
    Filed: September 25, 2018
    Date of Patent: October 11, 2022
    Assignee: Intel Corporation
    Inventors: Gilbert Dewey, Willy Rachmady, Jack T. Kavalieros, Cheng-Ying Huang, Matthew V. Metz, Sean T. Ma, Harold Kennel, Tahir Ghani
  • Publication number: 20220310610
    Abstract: Thin-film transistors and MIM capacitors in exclusion zones are described. In an example, an integrated circuit structure includes a semiconductor substrate having a zone with metal oxide semiconductor (MOS) transistors therein, and having a zone that excludes MOS transistors. A back-end-of-line (BEOL) structure is above the semiconductor substrate. A thin-film transistor (TFT) and/or a metal-insulator-metal (MIM) capacitor is in the BEOL structure. The TFT and/or MIM capacitor is vertically over the zone that excludes MOS transistors.
    Type: Application
    Filed: March 25, 2021
    Publication date: September 29, 2022
    Inventors: Abhishek A. SHARMA, Willy RACHMADY, Cheng-Ying HUANG, Gilbert DEWEY, Rajat PAUL
  • Publication number: 20220310605
    Abstract: Multiple non-silicon semiconductor material layers may be stacked within a fin structure. The multiple non-silicon semiconductor material layers may include one or more layers that are suitable for P-type transistors. The multiple non-silicon semiconductor material layers may further include one or more one or more layers that are suited for N-type transistors. The multiple non-silicon semiconductor material layers may further include one or more intervening layers separating the N-type from the P-type layers. The intervening layers may be at least partially sacrificial, for example to allow one or more of a gate, source, or drain to wrap completely around a channel region of one or more of the N-type and P-type transistors.
    Type: Application
    Filed: June 13, 2022
    Publication date: September 29, 2022
    Applicant: Intel Corporation
    Inventors: Gilbert Dewey, Patrick Morrow, Ravi Pillarisetty, Rishabh Mehandru, Cheng-ying Huang, Willy Rachmady, Aaron Lilak