Patents by Inventor Kim Yang Lee

Kim Yang Lee 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).

  • Patent number: 11948614
    Abstract: The present disclosure relates to methods of manufacturing at least a portion of a magnetic layer of a magnetic recording disk. The methods include forming a plurality of sacrificial, discrete structures via imprint lithography. The sacrificial, discrete structures are used to form a plurality of three-dimensional segregant structures in a magnetic layer of the magnetic recording disk. The present disclosure also relates to corresponding magnetic recording disks.
    Type: Grant
    Filed: February 21, 2022
    Date of Patent: April 2, 2024
    Assignee: Seagate Technology LLC
    Inventors: Xiaomin Yang, Kim Yang Lee, Thomas Young Chang, ShuaiGang Xiao, Sha Zhu
  • Publication number: 20230340684
    Abstract: A method for depositing a material from a solution to a surface is provided. The method includes depositing, through a deposition channel of a material depositor, the solution in a rich state to the surface, wherein the solution in the rich state includes an initial concentration of the material, onto a surface, applying a predefined electrical output, by the material depositor, through the deposited solution to adhere the material to the surface, and to yield the solution in a depleted state wherein the solution in the depleted state contains a different concentration of the material from the rich solution, and removing, through a removal channel in the material depositor, the deposited solution in the depleted state. The material depositor includes a hydrophilic region defined by a hydrophilic surface through which the material depositor conducts the depositing and the removing and a hydrophobic barrier circumscribing the hydrophilic region.
    Type: Application
    Filed: April 24, 2023
    Publication date: October 26, 2023
    Inventors: Thomas Young CHANG, Kim Yang LEE, Mark T. KIEF, Riyan Alex MENDONSA, Brett R. HERDENDORF
  • Publication number: 20230267959
    Abstract: The present disclosure relates to methods of manufacturing at least a portion of a magnetic layer of a magnetic recording disk. The methods include forming a plurality of sacrificial, discrete structures via imprint lithography. The sacrificial, discrete structures are used to form a plurality of three-dimensional segregant structures in a magnetic layer of the magnetic recording disk. The present disclosure also relates to corresponding magnetic recording disks.
    Type: Application
    Filed: February 21, 2022
    Publication date: August 24, 2023
    Applicant: Seagate Technology LLC
    Inventors: Xiaomin Yang, Kim Yang Lee, Thomas Young Chang, ShuaiGang Xiao, Sha Zhu
  • Publication number: 20230267958
    Abstract: The present disclosure relates to magnetic recording disks having a magnetic recording layer that includes a plurality of three-dimensional segregant structures. Each three-dimensional segregant structure extends from a first radius of the recording disk to a second radius of the recording disk, and each three-dimensional segregant structure is made of a first segregant material. The magnetic recording layer also includes a plurality of magnetic grains between adjacent three-dimensional segregant structures, and a second segregant material between adjacent magnetic grains. The present disclosure also relates to corresponding methods of manufacturing such a magnetic recording layer.
    Type: Application
    Filed: February 21, 2022
    Publication date: August 24, 2023
    Inventors: ShuaiGang Xiao, Thomas Young Chang, Kim Yang Lee, Xiaomin Yang
  • Patent number: 11724233
    Abstract: A first wafer has a first stop layer deposited on a substrate, the substrate used to form a base support structure. A second wafer has a second stop layer deposited on a sacrificial substrate, and a filter layer deposited on the second stop layer. A rib layer is deposited on one of: the first stop layer of the first layer; or a third stop layer that is deposited over the filter layer. A rib pattern is formed in the rib layer. The first and second wafers are flip bonded such that the rib pattern is joined between the filter layer and the first stop layer. Elongated voids are formed within the filter layer. The base support structure is formed within the substrate of the first wafer such that there is a fluid flow path between the base support structure, the rib layer, and the elongated voids of the filter layer.
    Type: Grant
    Filed: July 9, 2020
    Date of Patent: August 15, 2023
    Assignee: Seagate Technology LLC
    Inventors: Thomas Young Chang, Kim Yang Lee, Tan G. Liu, Yautzong Hsu, Shuaigang Xiao
  • Patent number: 11714061
    Abstract: A DNA sequencing device, and related methods, include a nanopore or nanochannel structure, and a nanoelectrode. The nanoelectrode includes electrode members having free ends exposed within the nanopore or nanochannel structure, an electrode gap defined between of the free ends, and plated portions formed on the free ends to provide a reduced sized for the electrode gap.
    Type: Grant
    Filed: April 21, 2020
    Date of Patent: August 1, 2023
    Assignee: SEAGATE TECHNOLOGY LLC
    Inventors: David S. Kuo, Xiaomin Yang, ShuaiGang Xiao, Kim Yang Lee, Koichi R. Wago, Thomas Young Chang
  • Publication number: 20230194991
    Abstract: A method of manufacturing a synthetic nanopore device for DNA sequencing disclosed herein includes providing a base template, forming a guiding layer on top of the base template, and forming a photoresist layer on top of the guiding layer. The photoresist layer is patterned, and the guiding layer is etched for form a guiding pattern. The photoresist layer is removed to form a guiding template and a self-assembled monolayer is deposited on at least a portion of the guiding template to form a patterned template. The patterned template is exposed to one or more etch processes to form a nanoimprint lithography template. A membrane is imprinted with the nanoimprint lithography template to form an array of nanopores in the membrane.
    Type: Application
    Filed: December 6, 2022
    Publication date: June 22, 2023
    Applicant: Seagate Technology LLC
    Inventors: Thomas Chang, Kim Yang Lee
  • Patent number: 11644435
    Abstract: A DNA sequencing device and methods of making. The device includes a pair of electrodes having a spacing of no greater than about 2 nm, the electrodes being exposed within a nanopore to measure a DNA strand passing through the nanopore. The device can be made by depositing a conductive layer over a sacrificial channel and then removing the sacrificial channel to form the electrode gap.
    Type: Grant
    Filed: April 10, 2020
    Date of Patent: May 9, 2023
    Assignee: SEAGATE TECHNOLOGY LLC
    Inventors: ShuaiGang Xiao, David S. Kuo, Xiaomin Yang, Kim Yang Lee, Yautzong Hsu, Michael R. Feldbaum
  • Patent number: 11542552
    Abstract: A DNA sequencing device and related methods, wherein the device includes a substrate, a nanochannel formed in the substrate, a first electrode positioned on a first side of the nanochannel, and a second electrode. The second electrode is positioned on a second side of the nanochannel opposite the first electrode and is spaced apart from the first electrode to form an electrode gap that is exposed in the nanochannel. At least a portion of first electrode is movable relative to the second electrode to decrease a size of the electrode gap.
    Type: Grant
    Filed: June 23, 2020
    Date of Patent: January 3, 2023
    Assignee: SEAGATE TECHNOLOGY LLC
    Inventors: Kim Yang Lee, Thomas Young Chang, David S. Kuo, ShuaiGang Xiao, Xiaomin Yang, Koichi Wago
  • Patent number: 11396675
    Abstract: Apparatus and methods to identify nucleotides of a DNA strand. The method includes exposing the DNA strand to a first dye or peptide, attaching the first dye or peptide to a first type of nucleotide (A,T,C,G) of the DNA strand, the first dye or peptide changing a conductance of the first type of nucleotide to which the first dye or peptide is attached, and measuring a tunneling current signal for all nucleotides of the DNA strand, the changed conductance of the first type of nucleotide providing amplified tunneling current discrimination of the nucleotides of the DNA strand.
    Type: Grant
    Filed: August 24, 2020
    Date of Patent: July 26, 2022
    Assignee: SEAGATE TECHNOLOGY LLC
    Inventors: Thomas Young Chang, Philip L. Steiner, Kim Yang Lee, David S. Kuo
  • Patent number: 11320397
    Abstract: A DNA sequencing device, and related method, which include an electrode and a plurality of spaced apart alignment structures. The electrode defines an electrode gap, the electrode being operable to detect a change in tunneling current as a DNA strand passes through the electrode gap. The plurality of spaced apart alignment structures are arranged to position nucleotides of the DNA strand in a predetermined orientation as the DNA strand passes through the electrode gap.
    Type: Grant
    Filed: July 28, 2020
    Date of Patent: May 3, 2022
    Assignee: SEAGATE TECHNOLOGY LLC
    Inventors: Thomas Young Chang, David S. Kuo, Kim Yang Lee, Koichi Wago
  • Patent number: 11136624
    Abstract: A DNA sequencing device, and related methods, include a nanochannel sized to receive a DNA strand, a first electrode member exposed within the nanochannel, and a second electrode member exposed within the nanochannel and spaced apart from the first electrode to form an electrode gap. The second electrode member has a wedge shaped profile, and the first and second electrode members are operable to detect a change in electronic signal as the DNA strand passes through the electrode gap.
    Type: Grant
    Filed: April 29, 2020
    Date of Patent: October 5, 2021
    Assignee: SEAGATE TECHNOLOGY LLC
    Inventors: Kim Yang Lee, David S. Kuo, Thomas Young Chang, Xiaomin Yang, ShuaiGang Xiao, Koichi Wago
  • Publication number: 20210245109
    Abstract: A first wafer has a first stop layer deposited on a substrate, the substrate used to form a base support structure. A second wafer has a second stop layer deposited on a sacrificial substrate, and a filter layer deposited on the second stop layer. A rib layer is deposited on one of: the first stop layer of the first layer; or a third stop layer that is deposited over the filter layer. A rib pattern is formed in the rib layer. The first and second wafers are flip bonded such that the rib pattern is joined between the filter layer and the first stop layer. Elongated voids are formed within the filter layer. The base support structure is formed within the substrate of the first wafer such that there is a fluid flow path between the base support structure, the rib layer, and the elongated voids of the filter layer.
    Type: Application
    Filed: July 9, 2020
    Publication date: August 12, 2021
    Inventors: Thomas Young Chang, Kim Yang Lee, Tan G. Liu, Yautzong Hsu, Shuaigang Xiao
  • Publication number: 20200385799
    Abstract: Apparatus and methods to identify nucleotides of a DNA strand. The method includes exposing the DNA strand to a first dye or peptide, attaching the first dye or peptide to a first type of nucleotide (A,T,C,G) of the DNA strand, the first dye or peptide changing a conductance of the first type of nucleotide to which the first dye or peptide is attached, and measuring a tunneling current signal for all nucleotides of the DNA strand, the changed conductance of the first type of nucleotide providing amplified tunneling current discrimination of the nucleotides of the DNA strand.
    Type: Application
    Filed: August 24, 2020
    Publication date: December 10, 2020
    Inventors: Thomas Young CHANG, Philip L. STEINER, Kim Yang LEE, David S. KUO
  • Publication number: 20200377939
    Abstract: A DNA sequencing device and related methods, wherein the device includes a substrate, a nanochannel formed in the substrate, a first electrode positioned on a first side of the nanochannel, and a second electrode. The second electrode is positioned on a second side of the nanochannel opposite the first electrode and is spaced apart from the first electrode to form an electrode gap that is exposed in the nanochannel. At least a portion of first electrode is movable relative to the second electrode to decrease a size of the electrode gap.
    Type: Application
    Filed: June 23, 2020
    Publication date: December 3, 2020
    Inventors: Kim Yang Lee, Thomas Young Chang, David S. Kuo, ShuaiGang Xiao, Xiaomin Yang, Koichi Wago
  • Publication number: 20200371064
    Abstract: A DNA sequencing device, and related method, which include an electrode and a plurality of spaced apart alignment structures. The electrode defines an electrode gap, the electrode being operable to detect a change in tunneling current as a DNA strand passes through the electrode gap. The plurality of spaced apart alignment structures are arranged to position nucleotides of the DNA strand in a predetermined orientation as the DNA strand passes through the electrode gap.
    Type: Application
    Filed: July 28, 2020
    Publication date: November 26, 2020
    Inventors: Thomas Young CHANG, David S. KUO, Kim Yang LEE, Koichi WAGO
  • Patent number: 10844431
    Abstract: Apparatus and methods to a DNA sequencing device and related methods that includes a substrate, a nanochannel formed in the substrate, a first electrode, a second electrode arranged opposite the first electrode, a distance between the first and second electrodes defining an electrode gap that is exposed within the nanochannel, and at least one actuator operable to move at least one of the first and second electrodes to adjust a size of the electrode gap.
    Type: Grant
    Filed: February 1, 2018
    Date of Patent: November 24, 2020
    Assignee: SEAGATE TECHNOLOGY LLC
    Inventors: Thomas Young Chang, Kim Yang Lee, David S. Kuo, Erik J. Hutchinson
  • Patent number: 10761058
    Abstract: A DNA sequencing device, and related method, which include an electrode and a plurality of spaced apart alignment structures. The electrode defines an electrode gap, the electrode being operable to detect a change in tunneling current as a DNA strand passes through the electrode gap. The plurality of spaced apart alignment structures are arranged to position nucleotides of the DNA strand in a predetermined orientation as the DNA strand passes through the electrode gap.
    Type: Grant
    Filed: February 1, 2018
    Date of Patent: September 1, 2020
    Assignee: SEAGATE TECHNOLOGY LLC
    Inventors: Thomas Young Chang, David S. Kuo, Kim Yang Lee, Koichi Wago
  • Patent number: 10752947
    Abstract: Apparatus and methods to identify nucleotides of a DNA strand. The method includes exposing the DNA strand to a first dye or peptide, attaching the first dye or peptide to a first type of nucleotide (A,T,C,G) of the DNA strand, the first dye or peptide changing a conductance of the first type of nucleotide to which the first dye or peptide is attached, and measuring a tunneling current signal for all nucleotides of the DNA strand, the changed conductance of the first type of nucleotide providing amplified tunneling current discrimination of the nucleotides of the DNA strand.
    Type: Grant
    Filed: February 1, 2018
    Date of Patent: August 25, 2020
    Assignee: SEAGATE TECHNOLOGY LLC
    Inventors: Thomas Young Chang, Philip L. Steiner, Kim Yang Lee, David S. Kuo
  • Publication number: 20200255895
    Abstract: A DNA sequencing device, and related methods, include a nanochannel sized to receive a DNA strand, a first electrode member exposed within the nanochannel, and a second electrode member exposed within the nanochannel and spaced apart from the first electrode to form an electrode gap. The second electrode member has a wedge shaped profile, and the first and second electrode members are operable to detect a change in electronic signal as the DNA strand passes through the electrode gap.
    Type: Application
    Filed: April 29, 2020
    Publication date: August 13, 2020
    Inventors: Kim Yang LEE, David S. KUO, Thomas Young CHANG, Xiaomin YANG, ShuaiGang XIAO, Koichi WAGO