Patents Examined by Kevin M. Bernatz
  • Patent number: 11326900
    Abstract: A positioning device for a machine tool includes a substrate upon which a printing medium is deposited. The substrate has a longitudinal dimension that is longer than the transverse direction of the substrate. The printing medium includes magnetic or magnetizable particles, and the substrate is nonmagnetic. A scale is formed by first regions of the printing medium on the substrate and by second regions without the printing medium between adjacent first regions. The first regions are spaced apart in the longitudinal direction on the substrate. The printing medium is printed within the first regions on the substrate such that the printing medium is thinner in the interior of the first regions and thicker at the edges of the first regions. The location of the positioning device is determined by applying a measuring magnetic field and by detecting a resulting magnetic field emanating from a particular first region on the scale.
    Type: Grant
    Filed: June 14, 2018
    Date of Patent: May 10, 2022
    Assignee: Bogen Magnetics GmbH
    Inventor: Torsten Becker
  • Patent number: 11328850
    Abstract: A magnetic film includes one or more magnetically conductive layers. Each magnetically conductive layer is cracked to form a plurality of first through-cracks defining a plurality of magnetically conductive segments. The first through-cracks extend along a first direction and form a first regular pattern along an orthogonal second direction at a first pitch P1, such that a Fourier transform of the first regular pattern has a first peak along the second direction at a first spatial frequency corresponding to the first pitch P1. The first through-cracks have an average length L1 along the first direction. L1/P1 is greater than or equal to 5.
    Type: Grant
    Filed: June 18, 2020
    Date of Patent: May 10, 2022
    Assignee: 3M INNOVATIVE PROPERTIES COMPANY
    Inventors: Jinwook Kim, Seong-Woo Woo, Jung Ju Suh, Matthew R.C. Atkinson
  • Patent number: 11315594
    Abstract: A magnetic recording medium is provided and includes a layer structure including a magnetic layer, a non-magnetic layer, and a base layer in this order, in which an average thickness tT of the magnetic recording medium is 3.5 ?m?tT?5.3 ?m, a dimensional variation ?w in a width direction of the magnetic recording medium to tension change in a longitudinal direction of the magnetic recording medium is 700 ppm/N??w?2000 ppm/N, and an average thickness tn of the non-magnetic layer is tn?1.0 ?m.
    Type: Grant
    Filed: September 25, 2020
    Date of Patent: April 26, 2022
    Assignee: Sony Corporation
    Inventors: Masaru Terakawa, Minoru Yamaga
  • Patent number: 11312631
    Abstract: An aligned film having first and second faces opposed to each other, the aligned film having (a) a plurality of layers aligned non-parallel to the first and second faces between the faces of the aligned film, each layer having a crystal lattice represented by: Mn+1Xn (wherein M is at least one metal of Group 3, 4, 5, 6, or 7; X is a carbon atom, a nitrogen atom, or a combination thereof; and n is 1, 2, or 3), each X is positioned within an octahedral array of M, and at least one of two opposing surfaces of each said layer have at least one modifier or terminal T selected from a hydroxy group, a fluorine atom, an oxygen atom, and a hydrogen atom; and (b) magnetic nanoparticles carried on a layer surface and/or between two adjacent layers of the plurality of layers.
    Type: Grant
    Filed: September 25, 2018
    Date of Patent: April 26, 2022
    Assignees: MURATA MANUFACTURING CO., LTD., DREXEL UNIVERSITY
    Inventors: Yoshito Soda, Takeshi Torita, Yury Gogotsi, Babak Anasori, Christine B. Hatter
  • Patent number: 11309115
    Abstract: A magnetoresistance effect element includes a first ferromagnetic layer, a second ferromagnetic layer, and a nonmagnetic spacer layer between the first ferromagnetic layer and the second ferromagnetic layer, in which at least one of the first ferromagnetic layer and the second ferromagnetic layer contains a metal compound having a half-Heusler type crystal structure, the metal compound contains a functional material, and X atoms, Y atoms, and Z atoms which form a unit lattice of the half-Heusler type crystal structure, and the functional material has an atomic number lower than an atomic number of any of the X atoms, the Y atoms, and the Z atoms.
    Type: Grant
    Filed: January 30, 2020
    Date of Patent: April 19, 2022
    Assignee: TDK CORPORATION
    Inventor: Katsuyuki Nakada
  • Patent number: 11309107
    Abstract: Disclosed herein is a permanent magnet comprising: a plurality of aligned iron nitride nanoparticles wherein the iron nitride nanoparticles include ??-Fe16N2 phase domains; wherein a ratio of integrated intensities of an ??-Fe16N2 (004) x-ray diffraction peak to an ??-??-Fe16N2 (202) x-ray diffraction peak for the aligned iron nitride nanoparticles is greater than at least 7%, wherein the diffraction vector is parallel to alignment direction, and wherein the iron nitride nanoparticles exhibit a squareness measured parallel to the alignment direction that is greater than a squareness measured perpendicular to the alignment direction.
    Type: Grant
    Filed: February 22, 2021
    Date of Patent: April 19, 2022
    Assignee: NIRON MAGNETICS, INC.
    Inventors: Francis Johnson, Richard W. Greger, John M. Larson, Yiming Wu, Fan Zhang, Kathryn Sara Damien
  • Patent number: 11302353
    Abstract: In a magnetic recording medium, an average thickness tT is tT?5.5 ?m, a dimensional variation ?w in a width direction to tension change in a longitudinal direction is 650 ppm/N??w, and a rate of shrinkage in the longitudinal direction is 0.08% or less.
    Type: Grant
    Filed: September 11, 2020
    Date of Patent: April 12, 2022
    Assignee: Sony Corporation
    Inventors: Minoru Yamaga, Noboru Sekiguchi
  • Patent number: 11302355
    Abstract: A magnetic recording medium is provided and includes a substrate; and a magnetic layer provided over the substrate, wherein (wmax?wmin)/wmin?400 [ppm] . . . (1) where wmax and wmin are respectively maximum and minimum of average values of width corresponding to samples of magnetic recording medium measured after the samples are stored for two hours under storage conditions (a loading tension in the longitudinal direction of the magnetic recording medium, a temperature and a relative humidity) for each of the samples, and a width of a sample of the magnetic recording medium at 25° C. and 50% relative humidity and without loading is ½ inch, magnetic recording medium has Young's modulus of less than 8.0 GPa in a longitudinal direction, and 4.0?TB/(TA?TB) . . . (2) where TA is average thickness of magnetic recording medium and TB is average thickness of substrate.
    Type: Grant
    Filed: January 22, 2021
    Date of Patent: April 12, 2022
    Assignee: Sony Corporation
    Inventors: Minoru Yamaga, Noboru Sekiguchi
  • Patent number: 11302357
    Abstract: The magnetic recording medium includes: a non-magnetic support; a magnetic layer that includes ferromagnetic powder on one surface side of the non-magnetic support; and a back coating layer that includes non-magnetic powder on the other surface side of the non-magnetic support, in which a difference between a spacing measured on a surface of the back coating layer by optical interferometry under a pressure of 0.5 atm after n-hexane cleaning and a spacing measured on the surface of the back coating layer by optical interferometry under a pressure of 13.5 atm after n-hexane cleaning is 12 nm or more.
    Type: Grant
    Filed: September 18, 2020
    Date of Patent: April 12, 2022
    Assignee: FUJIFILM Corporation
    Inventors: Naoki Sano, Takuto Kurokawa, Eiki Ozawa, Norihito Kasada, Megumi Nakano
  • Patent number: 11302466
    Abstract: A multilayer coil electronic component having improved inductance L, Q, and strength, and which has an element in which a coil conductor and a magnetic element body are stacked. The magnetic element body includes soft magnetic metal particles and a resin. The resin fills a space between the soft magnetic metal particles. Each of soft magnetic metal particles has a soft magnetic metal particle core and an oxide film covering the soft magnetic metal particle core. A layer of the oxide film contacting the soft magnetic metal particle core is made of an oxide including Si.
    Type: Grant
    Filed: November 23, 2018
    Date of Patent: April 12, 2022
    Assignee: TDK CORPORATION
    Inventors: Takashi Suzuki, Hidekazu Sato, Yusuke Nagai, Kouichi Kakuda, Kunihiko Kawasaki, Shinichi Kondo, Yuya Ishima, Shinichi Sato, Masaki Takahashi, Takashi Endo
  • Patent number: 11302354
    Abstract: The average thickness tT of a magnetic recording medium meets the requirement that tT?5.5 [?m], and the dimensional change amount ?w in the width direction of the magnetic recording medium with respect to the tension change in the longitudinal direction of the magnetic recording medium meets the requirement that 700 ppm/N??w.
    Type: Grant
    Filed: September 25, 2020
    Date of Patent: April 12, 2022
    Assignee: Sony Corporation
    Inventors: Noboru Sekiguchi, Minoru Yamaga
  • Patent number: 11295882
    Abstract: Some variations provide a magnetically anisotropic structure comprising a hexaferrite film disposed on a substrate, wherein the hexaferrite film contains a plurality of discrete and aligned magnetic hexaferrite particles, wherein the hexaferrite film is characterized by an average film thickness from about 1 micron to about 500 microns, and wherein the hexaferrite film contains less than 2 wt % organic matter. The hexaferrite film does not require a binder. Discrete particles are not sintered or annealed together because the maximum processing temperature to fabricate the structure is 500° C. or less, such as 250° C. or less. The magnetic hexaferrite particles may contain barium hexaferrite (BaFe12O19) and/or strontium hexaferrite (SrFe12O19). The hexaferrite film may be characterized by a remanence-to-saturation magnetization ratio of at least 0.7. Methods of making and using the magnetically anisotropic structure are also described.
    Type: Grant
    Filed: October 3, 2019
    Date of Patent: April 5, 2022
    Assignee: HRL Laboratories, LLC
    Inventors: Shanying Cui, Xin N. Guan, Adam F. Gross, Florian G. Herrault
  • Patent number: 11295775
    Abstract: A magnetic recording medium includes a nonmagnetic substrate, a soft magnetic underlayer, an orientation control layer, a perpendicular magnetic layer, and a protection layer that are arranged in this order. The perpendicular magnetic layer includes a first magnetic layer and a second magnetic layer that are arranged in this order on the orientation control layer. The first magnetic layer has a granular structure including an oxide at grain boundary parts of magnetic grains, and the second magnetic layer is closest to the protection layer among layers within the perpendicular magnetic layer, and includes magnetic grains made of a CoCrPt alloy, and a nitride of carbon or a hydride of carbon.
    Type: Grant
    Filed: November 20, 2020
    Date of Patent: April 5, 2022
    Assignee: SHOWA DENKO K.K.
    Inventors: Kota Hasegawa, Katsuaki To
  • Patent number: 11295776
    Abstract: The magnetic tape satisfies TDSage+TDSenv?TC?0.30 ?m. TDSage is a maximum absolute value of a difference between the servo band interval obtained before a predetermined storage and the servo band interval obtained after the storage, TDSenv is a value calculated by multiplying a difference between a maximum value and a minimum value of the servo band interval respectively obtained under five predetermined environments by ½, TC is a value calculated by multiplying TDStens by 0.5 N, and TDStens is a ratio of a change in the servo band interval to a change in tension calculated from the servo band interval respectively obtained under five predetermined environments by applying a plurality of different tensions in the longitudinal direction of the magnetic tape.
    Type: Grant
    Filed: January 28, 2021
    Date of Patent: April 5, 2022
    Assignee: FUJIFILM Corporation
    Inventors: Yuto Murata, Yusuke Kaneko, Norihito Kasada
  • Patent number: 11276429
    Abstract: The magnetic recording medium includes: a non-magnetic support; and a magnetic layer including ferromagnetic powder, in which the magnetic layer includes a compound having a salt structure, and the salt structure is an ammonium salt structure of an alkyl ester anion represented by the following Formula 1. In Formula 1, R represents an alkyl group having 7 or more carbon atoms or a fluorinated alkyl group having 7 or more carbon atoms, Z+ represents an ammonium cation, and a water contact angle on a surface of the magnetic layer is 80° or more and less than 100°. A magnetic recording and reproducing apparatus includes the magnetic recording medium.
    Type: Grant
    Filed: March 26, 2020
    Date of Patent: March 15, 2022
    Assignee: FUJIFILM Corporation
    Inventors: Wataru Kikuchi, So Matsuyama
  • Patent number: 11270728
    Abstract: The magnetic recording medium includes a non-magnetic support; a magnetic layer that includes ferromagnetic powder on one surface side of the non-magnetic support; and a back coating layer that includes non-magnetic powder on the other surface side of the non-magnetic support, in which a difference between a spacing measured on a surface of the back coating layer by optical interferometry under a pressure of 0.5 atm after n-hexane cleaning and a spacing measured on the surface of the back coating layer by optical interferometry under a pressure of 13.5 atm after n-hexane cleaning is 3 nm or less.
    Type: Grant
    Filed: September 16, 2020
    Date of Patent: March 8, 2022
    Assignee: FUJIFILM Corporation
    Inventors: Takuto Kurokawa, Naoki Sano, Norihito Kasada, Eiki Ozawa, Megumi Nakano
  • Patent number: 11270725
    Abstract: The magnetic recording medium includes: a non-magnetic support; and a magnetic layer including ferromagnetic powder, in which a difference (S0.5?S13.5) between a spacing S0.5 measured on a surface of the magnetic layer by optical interferometry after n-hexane cleaning under a pressure of 0.5 atm and a spacing S13.5 measured on the surface of the magnetic layer by optical interferometry after n-hexane cleaning under a pressure of 13.5 atm is 9.0 nm or more.
    Type: Grant
    Filed: February 27, 2020
    Date of Patent: March 8, 2022
    Assignee: FUJIFILM Corporation
    Inventors: Naoki Sano, Eiki Ozawa, Norihito Kasada, Takuto Kurokawa
  • Patent number: 11270822
    Abstract: The magnetic tape includes a non-magnetic support, a magnetic layer that includes ferromagnetic powder having an average particle volume of 2,500 nm3 or less on one surface side of the non-magnetic support, and a back coating layer that includes non-magnetic powder on the other surface side of the non-magnetic support, in which the ferromagnetic powder is ferromagnetic powder selected from the group consisting of hexagonal ferrite powder and ?-iron oxide powder, and a ratio (PSD5 ?m-PSDmag/PSD10 ?m-PSDbc) of the magnetic layer and the back coating layer is in a range of 0.0050 to 0.20. A magnetic tape cartridge and a magnetic recording and reproducing apparatus include the magnetic tape.
    Type: Grant
    Filed: February 27, 2020
    Date of Patent: March 8, 2022
    Assignee: FUJIFILM Corporation
    Inventor: Shinji Tsujimoto
  • Patent number: 11250880
    Abstract: A magnetic recording medium includes: a substrate that is long in shape; and a magnetic layer containing magnetic powder and a binder. The glass transition point of the binder is not lower than 75° C. In a case where atomic force microscope observation images in a 10 ?m×10 ?m rectangular shape are acquired at five locations randomly selected from the surface on the side of the magnetic layer, any linear protrusion that is 3 nm to 20 nm in height, is 0.3 ?m to 1.0 ?m in width, and extends across two sides of the observation image does not exist in the observation images of four locations among the acquired observation images of the five locations.
    Type: Grant
    Filed: April 13, 2018
    Date of Patent: February 15, 2022
    Assignee: Sony Corporation
    Inventors: Toshiaki Miura, Satoru Abe, Yuuko Kamoshita, Riku Yoshida
  • Patent number: 11233199
    Abstract: A method for manufacturing a vapor deposition mask including a resin layer, and a magnetic metal layer formed on the resin layer, the method including the steps of: providing a substrate; forming a resin layer by applying a solution including a resin material or a precursor solution of a resin material on a surface of the substrate, and then performing a heat treatment thereon; forming a magnetic metal layer on the resin layer, mask portion including a solid portion where a metal film is present and a hollow portion where the metal film is absent; forming a plurality of openings in a region of the resin layer that is located in the hollow portion of the mask portion; and removing the resin layer from the substrate after forming a plurality of openings in a region of the resin layer.
    Type: Grant
    Filed: July 25, 2016
    Date of Patent: January 25, 2022
    Assignee: HON HAI PRECISION INDUSTRY CO., LTD.
    Inventors: Koshi Nishida, Kozo Yano, Katsuhiko Kishimoto, Susumu Sakio, Hideo Takei