Magnetic Head Patents (Class 428/810)
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Patent number: 12080325Abstract: According to one embodiment, a magnetic head includes first and second magnetic poles, and a stacked body provided between the first and second magnetic poles. The stacked body includes a first magnetic layer, a second magnetic layer provided between the first magnetic layer and the second magnetic pole, a first nonmagnetic layer provided between the first and second magnetic layers, a second nonmagnetic layer provided between the second magnetic layer and the second magnetic pole, and a third nonmagnetic layer provided between the first magnetic pole and the first magnetic layer. The first magnetic layer includes a first element including at least one of Fe, Co, or Ni. The second magnetic layer includes (Fe100-xCox)100-yEy. A second element E includes at least one selected from the group consisting of Cr, V, Mn, Yi, and Sc. The first magnetic layer does not include the second element.Type: GrantFiled: June 16, 2023Date of Patent: September 3, 2024Assignees: KABUSHIKI KAISHA TOSHIBA, TOSHIBA ELECTRONIC DEVICES & STORAGE CORPORATIONInventors: Yuji Nakagawa, Naoyuki Narita, Masayuki Takagishi, Tomoyuki Maeda, Tazumi Nagasawa
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Patent number: 11869556Abstract: A heat-assisted magnetic recording (HAMR) disk has a magnetic recording layer (typically a FePt chemically-ordered alloy), a seed-thermal barrier layer (typically MgO) below the recording layer, a heat-sink layer, and an optical-coupling multilayer of alternating plasmonic and non-plasmonic materials between the heat-sink layer and the seed-thermal barrier layer. Unlike a heat sink layer, the multilayer has very low in-plane and out-of-plane thermal conductivity and thus does not function as a heat sink layer. The multilayer's low thermal conductivity allows the multilayer to also function as a thermal barrier. Due to the plasmonic materials in the multilayer it provides excellent optical coupling with the near-field transducer (NFT) of the HAMR disk drive.Type: GrantFiled: August 29, 2022Date of Patent: January 9, 2024Assignee: Western Digital Technologies, Inc.Inventors: Pierre-Olivier Jubert, Paul Christopher Dorsey, Hoan Cong Ho
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Patent number: 11646058Abstract: A heat-assisted magnetic recording head includes a near-field transducer, a heat sink, a diffuser, and a diffusion barrier. The near-field transducer is configured to produce a hot spot on a proximate magnetic disk. The heat sink is configured to draw heat away from the near-field transducer. The heat sink is disposed in a down-track direction relative to and coupled to the near-field transducer. The diffuser is configured to draw heat away from the heat sink. The diffuser is disposed in a down-track direction relative to the heat sink. The diffusion barrier includes a metal. The diffusion barrier is disposed between and coupled to the heat sink and the diffuser.Type: GrantFiled: March 30, 2022Date of Patent: May 9, 2023Assignee: SEAGATE TECHNOLOGY LLCInventors: Martin Giles Blaber, Michael Allen Siegler, James G Wessel, YuHang Cheng, Scott M Franzen
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Patent number: 11437064Abstract: A heat-assisted magnetic recording (HAMR) disk has a magnetic recording layer (typically a FePt chemically-ordered alloy), a seed-thermal barrier layer (typically MgO) below the recording layer, a heat-sink layer, and an optical-coupling multilayer of alternating plasmonic and non-plasmonic materials between the heat-sink layer and the seed-thermal barrier layer. Unlike a heat sink layer, the multilayer has very low in-plane and out-of-plane thermal conductivity and thus does not function as a heat sink layer. The multilayer's low thermal conductivity allows the multilayer to also function as a thermal barrier. Due to the plasmonic materials in the multilayer it provides excellent optical coupling with the near-field transducer (NFT) of the HAMR disk drive.Type: GrantFiled: August 6, 2021Date of Patent: September 6, 2022Assignee: Western Digital Technologies, Inc.Inventors: Pierre-Olivier Jubert, Paul Christopher Dorsey, Hoan Cong Ho
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Patent number: 11170809Abstract: The present disclosure generally related to read heads having dual free layer (DFL) sensors. The DFL sensor and has a surface at the media facing surface (MFS). Behind the DFL sensor away from the MFS, is a rear hard bias (RHB) structure. The RHB structure is disposed between the shields as well. In between the DFL sensor and the RHB structure is insulating material. The insulating material is a multilayer structure. A first layer of the multilayer structure is composed of the same material as the tunnel magnetoresistive barrier layer, such as MgO, and is disposed adjacent the DFL sensor, yet spaced from the RHB structure. A second layer of the multilayer structure is a different insulating layer that is disposed adjacent the RHB structure, yet spaced from the DFL sensor. The multilayer structure helps improve areal density without degrading head stability and performance reliability by maintaining RHB coercivity.Type: GrantFiled: June 19, 2020Date of Patent: November 9, 2021Assignee: WESTERN DIGITAL TECHNOLOGIES, INC.Inventors: Ming Mao, Chen-Jung Chien
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Patent number: 11065862Abstract: Methods of making sintered articles from powder metal carbide compositions by additive manufacturing techniques are described herein. Sintered carbide articles fabricated by such additive manufacturing techniques, in some embodiments, exhibit densities equaling articles formed according to conventional techniques employed in powder metallurgy. For example, a method of manufacturing an article comprises providing sintered cemented carbide powder comprising a hard particle phase including tungsten carbide and a metallic binder phase and forming the sintered cemented carbide powder into a green article by one or more additive manufacturing techniques. The green article is sintered to provide a sintered article having density greater than 90% theoretical full density, wherein the green article has a density less than 50% theoretical full density prior to sintering.Type: GrantFiled: November 20, 2018Date of Patent: July 20, 2021Assignee: KENNAMETAL INC.Inventors: Pantcho Stoyanov, Paul Prichard
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Patent number: 10418545Abstract: This spin current magnetization reversal element includes a magnetoresistance effect element having a first ferromagnetic metal layer having a fixed magnetization direction, a second ferromagnetic metal layer having a variable magnetization direction, and a non-magnetic layer sandwiched between the first ferromagnetic metal layer and the second ferromagnetic metal layer, and spin-orbit torque wiring which extends in a first direction that intersects the stacking direction of the magnetoresistance effect element, and contacts the surface of the magnetoresistance effect element on the side facing the second ferromagnetic metal layer, wherein at least one surface of the second ferromagnetic metal layer in the stacking direction has an inclined surface that is inclined in the first direction, and the direction of magnetization of the second ferromagnetic metal layer is inclined due to the inclined surface.Type: GrantFiled: July 5, 2017Date of Patent: September 17, 2019Assignee: TDK CORPORATIONInventors: Tomoyuki Sasaki, Tatsuo Shibata, Tohru Oikawa
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Patent number: 10144065Abstract: Methods of making sintered articles from powder metal carbide compositions by additive manufacturing techniques are described herein. Sintered carbide articles fabricated by such additive manufacturing techniques, in some embodiments, exhibit densities equaling articles formed according to conventional techniques employed in powder metallurgy. For example, a method of manufacturing an article comprises providing sintered cemented carbide powder comprising a hard particle phase including tungsten carbide and a metallic binder phase and forming the sintered cemented carbide powder into a green article by one or more additive manufacturing techniques. The green article is sintered to provide a sintered article having density greater than 90% theoretical full density, wherein the green article has a density less than 50% theoretical full density prior to sintering.Type: GrantFiled: January 7, 2015Date of Patent: December 4, 2018Assignee: KENNAMETAL INC.Inventors: Pantcho Stoyanov, Paul Prichard
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Patent number: 9449625Abstract: A heat assisted magnetic recording (HAMR) writer is described. The HAMR writer is coupled with a laser and has an air-bearing surface (ABS) that resides near a media during use. The HAMR writer includes a waveguide, a near-field transducer (NFT), a main pole, coil(s) and at least one of a first and a second diffusion barrier layer. The waveguide is optically coupled with the laser and directs energy from the laser toward the ABS. The NFT is optically coupled with the waveguide and focuses the energy onto a region of the media. The main pole writes to the region of the media. The main pole has a top, a bottom, and a plurality of sides. The first diffusion barrier layer is between at least the NFT and the bottom of the pole. The second diffusion barrier layer is adjacent to the plurality of sides of the main pole.Type: GrantFiled: December 24, 2014Date of Patent: September 20, 2016Assignee: WESTERN DIGITAL (FREMONT), LLCInventors: Kris Vossough, Marc A. Finot, John Love, Matthew R. Gibbons, Ge Yi, Yufeng Hu
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Patent number: 9324355Abstract: According to one embodiment, a pattern formation method includes steps of forming a layer to be processed on a substrate, forming a metal microparticle layer by coating the layer to be processed with a metal microparticle coating solution containing metal microparticles and a solvent, reducing a protective group amount around the metal microparticles by first etching, forming a protective layer by exposing the substrate to a gas containing C and F and adsorbing the gas around the metal microparticles to obtain a projection pattern, and transferring the projection pattern to the layer to be processed by second etching.Type: GrantFiled: March 12, 2014Date of Patent: April 26, 2016Assignee: KABUSHIKI KAISHA TOSHIBAInventors: Kazutaka Takizawa, Takeshi Iwasaki, Akihiko Takeo
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Patent number: 9190091Abstract: The present disclosure relates to a planarized bit-patterned magnetic medium that has a magnetic layer, including island regions and trench regions, a first carbon layer applied over the magnetic layer, and a second carbon layer applied over the first carbon layer, wherein the second carbon layer has been removed in the island regions. The first carbon layer may have a lower material removal rate when exposed to chemical-mechanical polishing than the second carbon layer. The present disclosure also relates to a method for planarizing a bit-patterned magnetic medium and a slurry composition for the chemical-mechanical polishing of carbon layers, the slurry composition including an oxidizer component, a catalyst component, a particulate component, and a reaction control component.Type: GrantFiled: August 2, 2013Date of Patent: November 17, 2015Assignee: HGST NETHERLANDS, B.V.Inventors: Kurt A. Rubin, Richard L. White, Xiaoping Bian
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Patent number: 9087984Abstract: A semiconductor device includes a pinned layer having a magnetic direction permanently set to a first direction, a tunnel insulating layer arranged on the pinned layer, a free layer arranged on the tunnel insulating layer and having a changeable magnetic direction, and a magnetic induction layer formed to surround the pinned layer and have a magnetic direction permanently set to a second direction different from the first direction.Type: GrantFiled: July 10, 2014Date of Patent: July 21, 2015Assignee: SK Hynix Inc.Inventor: Ji-Ho Park
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Publication number: 20150147592Abstract: An apparatus that includes a storage layer and a heating assistance element. The heating assistance element is adjacent to the storage layer or doped into the storage layer. The heating assistance element is configured to enhance spatial confinement of energy from a field to an area of the storage layer to which the field is applied.Type: ApplicationFiled: November 22, 2013Publication date: May 28, 2015Inventors: Michael Seigler, Weibin Chen, Werner Scholz, Jan Ulrich Thiele, Lihong Zhang, Xiong Liu, Shashwat Shukla
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Publication number: 20150062751Abstract: A magnetic sensor having a novel pinning structure resulting in a greatly reduced gap spacing. The sensor has a magnetic free layer structure that extends to a first stripe height and a magnetic pinned layer structure that extends to a second stripe height that is longer than the first stripe high. A layer of anti-ferromagnetic material is formed over the pinned layer structure in the region beyond the first stripe height location. In this way, the antiferromagnetic layer is between the pinned layer and the second or upper shield and does not contribute to gap spacing.Type: ApplicationFiled: August 27, 2013Publication date: March 5, 2015Applicant: HGST Netherlands B.V.Inventors: Quang Le, Simon H. Liao, Guangli Liu, Kochan Ju, Youfeng Zheng
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Publication number: 20140377589Abstract: The embodiments of the present invention relate to a magnetic read head with pinned layers extending to the ABS of the read head and in contact with an antiferromagnetic layer that is recessed in relation to the ABS of the read head. The recessed antiferromagnetic layer may be disposed above or below the pinned layer structure and provides a pinning field to prevent amplitude flipping in head operation. In these embodiments of the present invention, the read gap of the sensor, that is the distance between the highly permeable, magnetically soft upper and lower shield layers at the ABS, is reduced by the thickness of the antiferromagnetic layer.Type: ApplicationFiled: June 21, 2013Publication date: December 25, 2014Applicant: HGST Netherlands B.V.Inventors: James Mac FREITAG, Zheng GAO
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Publication number: 20140293472Abstract: In one embodiment, a method includes masking a sensor stack with a first mask, milling exposed regions of the sensor stack for defining a back edge of the sensor stack, forming a tantalum oxide layer along the back edge, removing the first mask, masking the sensor stack with a second mask, and milling exposed regions of the sensor stack for defining side edges of the sensor stack, a width of the sensor stack in a track width direction being defined between the side edges. In another embodiment a system includes a sensor stack of thin films having a back edge, and a tantalum oxide layer extending along the back edge.Type: ApplicationFiled: March 26, 2013Publication date: October 2, 2014Applicant: HGST Netherlands B.V.Inventors: Hamid Balamane, Jordan A. Katine, Jui-Lung Li, Neil L. Robertson
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Publication number: 20140218823Abstract: A magnetic element is generally provided that can be implemented as a data reader. Various embodiments may connect a magnetic stack to a top shield and separate the magnetic stack from a bi-layer side shield. The bi-layer side shield may have a fixed magnetization layer and a soft magnetic layer each magnetically isolated from the top shield.Type: ApplicationFiled: February 7, 2013Publication date: August 7, 2014Applicant: SEAGATE TECHNOLOGY LLCInventors: Shaun Eric McKinlay, Zhiguo Ge, Eric Walter Singleton, Mohammed Shariat Ullah Patwari, Victor Boris Sapozhnikov
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Publication number: 20140178713Abstract: A magnetic read sensor having reduced hard bias free layer spacing and improved insulation robustness between the hard bias layers and the shield and sensor. The read sensor has a novel bi-layer insulation layer that can be made very thin while also providing good electrical insulation to prevent sense current shunting. The bi-layer insulation layer can be made by a process that provides improved sensor performance.Type: ApplicationFiled: December 21, 2012Publication date: June 26, 2014Applicant: HGST Netherlands B.V.Inventors: Quang Le, Simon H. Liao, Guangli Liu
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Publication number: 20140168816Abstract: Various methods for attaching a crystalline write pole onto an amorphous substrate and the resulting structures are described in detail herein. Further, the resulting structure may have a magnetic moment exceeding 2.4 Tesla. Still further, methods for depositing an epitaxial crystalline write pole on a crystalline seed or template material to ensure that the phase of the write pole is consistent with the high moment phase of the template material are also described in detail herein.Type: ApplicationFiled: December 18, 2012Publication date: June 19, 2014Applicant: SEAGATE TECHNOLOGY LLCInventors: Mark Anthony Gubbins, Marcus Benedict Mooney
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Patent number: 8743586Abstract: A electrometric access head includes a supporting substrate and a plurality of read elements mounted on the supporting substrate. Each read element includes an electrometric sensor for detection of a sign of polarization of domains within a ferroelectric data layer of a ferroelectric storage medium. The ferroelectric data layer serves as a layer for storing information as bits defined by the signs of polarization of domains within the ferroelectric data layer, each polarized domain including a volume dipole polarization within the ferroelectric data layer and including an area of bound charge on and adjacent to a surface of the ferroelectric data layer.Type: GrantFiled: February 2, 2012Date of Patent: June 3, 2014Assignee: International Business Machines CorporationInventor: Dennis M. Newns
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Patent number: 8711662Abstract: An apparatus includes a waveguide shaped to direct light to a focal point, and a near-field transducer positioned adjacent to the focal point, wherein the near-field transducer includes a dielectric component and a metallic component positioned adjacent to at least a portion of the dielectric component. An apparatus includes a waveguide shaped to direct light to a focal point, and a near-field transducer positioned adjacent to the focal point, wherein the near-field transducer includes a first metallic component, a first dielectric layer positioned adjacent to at least a portion of the first metallic component, and a second metallic component positioned adjacent to at least a portion of the first dielectric component.Type: GrantFiled: August 21, 2012Date of Patent: April 29, 2014Assignee: Seagate Technology LLCInventors: Lien Lee, Xuhui Jin, Kaizhong Gao, Amit Itagi, William A. Challener
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Publication number: 20140087210Abstract: There is disclosed a method of making a metallic or ceramic component, such as a cutting or forming tool, from at least two distinct powder precursors. In one embodiment, the method comprising forming a first mixture comprised of a plurality of coated particles, such as Tough-Coated Hard Powder (TCHP) composite particles created by encapsulating extremely hard core particles with very tough binder and structural materials, and at least one support powder, such as a carbide, typically WC—Co. The mixture is formed into a green body and sintered to form a functionally graded or multicomponent article. Non-limiting examples of the articles made from the disclosed methods are also disclosed and include drills, mills, cutting tools, forming tools, wires dies and mechanical components.Type: ApplicationFiled: September 27, 2013Publication date: March 27, 2014Applicant: ALLOMET CORPORATIONInventors: John M. KEANE, Richard E. TOTH
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Publication number: 20140063647Abstract: In one embodiment, a magnetic head includes a sensor stack of thin films including a free layer; a hard bias structure comprising a first foundation layer, a second foundation layer formed on the first foundation layer and a hard bias layer formed above the second foundation layer, wherein portions of the first and second foundation layers positioned along a side wall of the sensor stack have a discrete island structure. Additional embodiments are also disclosed.Type: ApplicationFiled: September 6, 2012Publication date: March 6, 2014Applicant: HGST NETHERLANDS B.VInventors: Norihiro Okawa, Koji Sakamoto, Koji Okazaki
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Publication number: 20140057133Abstract: Various apparatus and associated method embodiments are generally directed to a magnetic stack positioned on an air bearing surface (ABS) and biased to a predetermined magnetization by a bias magnet. The bias magnet can be separated from the magnetic stack and at least one magnetic shield by a self-aligned magnetic insulating feature that is comprised of first and second insulating layers.Type: ApplicationFiled: August 21, 2012Publication date: February 27, 2014Applicant: SEAGATE TECHNOLOGY LLCInventor: Thomas Roy Boonstra
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Patent number: 8621910Abstract: In one embodiment, a system comprises a magnetic head, a protective coating on a media-facing side of the head, and an indentation in the protective coating having a dimension that, when the protective coating wears, is indicative of an amount of wear of the protective coating. A method, in another embodiment, comprises creating an indentation in a protective coating of a magnetic head, the indentation having a dimension that, when the protective coating wears, is indicative of an amount of wear of the protective coating. In another embodiment, a method comprises visually inspecting indentations in a protective coating of a magnetic head, wherein at least two of the indentations have differing dimensions that, when the protective coating wears, are indicative of the amount of wear of the protective coating. The method also includes estimating an amount of wear of the protective coating based on the visual inspection.Type: GrantFiled: April 28, 2009Date of Patent: January 7, 2014Assignee: International Business Machines CorporationInventors: Robert Glenn Biskeborn, W. Stanley Czarnecki, Jason Liang, Calvin Shyhjong Lo
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Publication number: 20130321954Abstract: A magnetic layered structure is presently disclosed comprising a pinned layer, a first anti-ferromagnetic layer that defines a magnetic orientation of the pinned layer, a free layer, a second anti-ferromagnetic layer that biases the free layer to a magnetic orientation approximately perpendicular to the magnetic orientation of the pinned layer, and a tuning layer positioned between and in contact with the second anti-ferromagnetic layer and the free layer that tunes free layer bias to a desired level.Type: ApplicationFiled: August 7, 2013Publication date: December 5, 2013Applicant: Seagate Technology LLCInventors: Antonia Tsoukatos, Eric Walter Singleton
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Publication number: 20130286500Abstract: A module according to one embodiment includes a plurality of transducers; a tape bearing surface having a transducer region aligned with the transducers in a tape travel direction, and outer regions flanking the transducer region in a direction perpendicular to the tape travel direction; a first coating on the transducer region of the tape bearing surface; and a second coating on at least one of the outer regions of the tape bearing surface, the second coating being different than the first coating.Type: ApplicationFiled: April 27, 2012Publication date: October 31, 2013Applicant: INTERNATIONAL BUSINESS MACHINES CORPORATIONInventors: Robert G. Biskeborn, Calvin S. Lo
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Patent number: 8563146Abstract: A method for fabricating a magnetic transducer having an air-bearing surface (ABS). An underlayer having a first and second regions and a bevel connecting these regions is provided. The first region is thicker and closer to the ABS than the second region. An intermediate layer conformal with the underlayer is provided. A hard mask layer having a top surface perpendicular to the ABS is formed on the intermediate layer. Part of the hard mask and intermediate layers are removed to provide a trench. The trench has a bottom surface and sidewalls having a first angle between the bottom surface and the intermediate layer and a second angle corresponding to the hard mask layer. A pole is provided in the trench. The pole has a pole tip, a yoke distal, and a bottom bevel. At least the yoke includes sidewalls having sidewall angles corresponding to the first and second angles.Type: GrantFiled: June 27, 2011Date of Patent: October 22, 2013Assignee: Western Digital (Fremont), LLCInventors: Jinqiu Zhang, Ying Hong, Hai Sun, Hongping Yuan, Guanghong Luo, Xiaoyu Yang, Hongmei Han, Lingyun Miao
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Publication number: 20130244057Abstract: A magnetic storage and retrieval system and a manufacturing technique thereof are disclosed herein. A chemical reaction is triggered upon a surface of each Metallic layer of a plurality of metallic layers disposed on a substrate. It is also determined whether a metallic material of the surface has transformed to a new metallic material that is more chemically resistant than the metallic material.Type: ApplicationFiled: March 19, 2012Publication date: September 19, 2013Inventor: Darin D. Lindig
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Publication number: 20130235707Abstract: A near field transducer includes gold and at least one dopant. The dopant can include at least one of: Cu, Rh, Ru, Ag, Ta, Cr, Al, Zr, V, Pd, Ir, Co, W, Ti, Mg, Fe, or Mo. The dopant concentration may be in a range from 0.5% and 30%. The dopant can be a nanoparticle oxide of V, Zr, Mg, Ca, Al, Ti, Si, Ce, Y, Ta, W, or Th, or a nitride of Ta, Al, Ti, Si, In, Fe, Zr, Cu, W or B.Type: ApplicationFiled: April 22, 2013Publication date: September 12, 2013Applicant: SEAGATE TECHNOLOGY LLCInventors: Tong Zhao, Michael Christopher Kautzky, William Albert Challener, Michael Allen Seigler
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Publication number: 20130229730Abstract: A thermally-assisted magnetic recording head includes a magnetic pole and a heating element. The magnetic pole has a front end face located in a medium facing surface. The magnetic pole forms on a track a distribution of write magnetic field strength that peaks at a first position on the track. The heating element forms on the track a distribution of temperature that peaks at a second position on the track. The first position is located on the trailing side relative to the second position. The front end face of the magnetic pole has a main portion and first and second extended portions. The first and second extended portions are extended in the track width direction from the main portion at positions on the leading side relative to the center of the main portion in the direction of travel of a magnetic recording medium.Type: ApplicationFiled: March 5, 2012Publication date: September 5, 2013Applicant: TDK CORPORATIONInventors: Kei HIRATA, Kosuke TANAKA, Tetsuya ROPPONGI
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Publication number: 20130107395Abstract: A magnetic head according to an embodiment includes: a spin-torque oscillator comprising a first ferromagnetic layer, a second ferromagnetic layer, a third ferromagnetic layer provided on the opposite side of the second ferromagnetic layer from the first ferromagnetic layer, a first nonmagnetic layer provided between the first ferromagnetic layer and the second ferromagnetic layer, a second nonmagnetic layer provided between the second ferromagnetic layer and the third ferromagnetic layer, a first electrode provided on a surface on the opposite side of the first ferromagnetic layer from the first nonmagnetic layer, and a second electrode provided on a surface on the opposite side of the third ferromagnetic layer from the second nonmagnetic layer. Magnetization precession is induced in each of the first through third ferromagnetic layers when current is applied between the first and second electrodes.Type: ApplicationFiled: October 19, 2012Publication date: May 2, 2013Inventors: Tazumi Nagasawa, Hirofumi Suto, Kiwamu Kudo, Rie Sato, Koichi Mizushima, Tao Yang
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Patent number: 8419952Abstract: According to one embodiment, a method of manufacturing a patterned medium includes forming an implantation depth-adjusting layer above a magnetic recording layer, the magnetic recording layer being made of a material that is deactivated when implanted with a chemical species, and the implantation depth-adjusting layer being made of a material that is etched when irradiated with an ion beam of the chemical species and irradiating the implantation depth-adjusting layer with the ion beam to implant the chemical species into a part of the magnetic recording layer through the implantation depth-adjusting layer while etching the implantation depth-adjusting layer by an action of the ion beam to decrease a thickness of the implantation depth-adjusting layer.Type: GrantFiled: June 22, 2011Date of Patent: April 16, 2013Assignee: Kabushiki Kaisha ToshibaInventors: Masatoshi Sakurai, Kaori Kimura, Hiroyuki Hyodo, Takeshi Iwasaki
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Publication number: 20130089752Abstract: An elongated, chromeless, bridging feature is formed on a photolithography mask with an etching depth that causes a nominal phase difference of more than 180 degrees to energy passing through the photolithography mask. A corresponding photoresist feature is formed using the bridging feature. The phase difference may be chosen to minimize dimensional variation of the corresponding photoresist feature.Type: ApplicationFiled: October 7, 2011Publication date: April 11, 2013Applicant: SEAGATE TECHNOLOGY LLCInventors: Daniel B. Sullivan, Sangho Kim
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Publication number: 20130078483Abstract: A write head for use in a magnetic disk drive and methods of manufacturing the same. When a non-magnetic reactive ion etching (RIE) stop layer is used in a damascene main pole fabrication process, the leading edge shield and the side shield have a magnetic separation. By replacing a non-magnetic RIE stop layer with a magnetic RIE stop layer, no removal of the RIE stop layer around the main pole is necessary. Additionally, the leading edge shield and the side shield will magnetically join together without extra processing as there will be no magnetic separation between the leading edge shield and the side shield.Type: ApplicationFiled: September 28, 2011Publication date: March 28, 2013Inventors: Yingjian CHEN, Shiwen HUANG, Edward Hin Pong LEE, Mun Hyoun PARK, Kyusik SHIN, Yuming ZHOU
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Publication number: 20130070366Abstract: According to one embodiment, a method for manufacturing a magnetic device includes forming a protective film above a structure, wherein at least one of hydrogen and water vapor are introduced into a formation chamber during formation of the protective film. In-another embodiment, a magnetic head includes at least one of: a read element, a write element, a heater element, and a resistance detector element above a substrate, conductive terminals for each of the at least one of: the read element, the write element, and the heater element, and a protective film above the at least one of: the read element, the write element, and the heater element, wherein the protective film comprises at least one of hydrogen and water vapor.Type: ApplicationFiled: September 21, 2011Publication date: March 21, 2013Applicant: Hitachi Global Storage Technologies Netherlands B.V.Inventors: Mineaki Kodama, Kazuhito Miyata, Hiroshi Ishizaki, Atsuko Okawa
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Publication number: 20130071692Abstract: Various embodiments may be generally directed to a magnetic sensor constructed with a decoupling layer that has a predetermined first morphology. A magnetic free layer can be deposited contactingly adjacent to the decoupling layer with the magnetic free layer configured to have at least a first sub-layer having a predetermined second morphology.Type: ApplicationFiled: September 21, 2011Publication date: March 21, 2013Applicant: SEAGATE TECHNOLOGY LLCInventors: Mark William Covington, Mark Thomas Kief, Wonjoon Jung
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Publication number: 20130065084Abstract: Various embodiments can have a data read stack positioned on an air bearing surface (ABS). The data read stack may be disposed between first and second buffer layers, where at least one of the buffer layers can be configured to provide a predetermined shunt ratio for the data read stack.Type: ApplicationFiled: September 13, 2011Publication date: March 14, 2013Applicant: SEAGATE TECHNOLOGY LLCInventors: Dimitar Velikov Dimitrov, Dian Song, Mark William Covington
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Publication number: 20130065085Abstract: Various embodiments may be constructed with a trilayer stack that is positioned on an air bearing surface (ABS). The trilayer stack can be configured with a stripe height along an axis orthogonal to the ABS and with first and second magnetic free layers that each has an angled uniaxial anisotropy with respect to the ABS.Type: ApplicationFiled: September 13, 2011Publication date: March 14, 2013Applicant: SEAGATE TECHNOLOGY LLCInventors: Dimitar Velikov Dimitrov, Mark William Covington, Wonjoon Jung
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Patent number: 8379429Abstract: A domain wall motion element has a magnetic recording layer 10 that is formed of a ferromagnetic film and has a domain wall DW. The magnetic recording layer 10 has: a pair of end regions 11-1 and 11-2 whose magnetization directions are fixed; and a center region 12 sandwiched between the pair of end regions 11-1 and 11-2, in which the domain wall. DW moves. A first trapping site TS1 by which the domain wall DW is trapped is formed at a boundary between the end region 11-1, 11-2 and the center region 12. Furthermore, at least one second trapping site TS2 by which the domain wall DW is trapped is formed within the center region 12.Type: GrantFiled: January 13, 2009Date of Patent: February 19, 2013Assignee: NEC CorporationInventors: Nobuyuki Ishiwata, Tetsuhiro Suzuki, Norikazu Ohshima, Kiyokazu Nagahara, Shunsuke Fukami
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Publication number: 20120307396Abstract: A magnetic head according to one embodiment includes a substrate; an array of transducers formed on the substrate, wherein the transducers and substrate form portions of a magnetic media facing surface; and an at least partially polycrystalline dielectric layer on the media facing surface, wherein the at least partially polycrystalline dielectric layer is on a magnetic film of at least one of the transducers in the array. A method for forming an at least partially polycrystalline dielectric layer on a media facing surface of a magnetic head according to one embodiment includes forming an at least partially polycrystalline dielectric layer on an array of transducers of a magnetic head, wherein an oxide layer is formed above at least some of the magnetic layers before and/or during the forming of the at least partially polycrystalline dielectric layer.Type: ApplicationFiled: June 2, 2011Publication date: December 6, 2012Applicant: INTERNATIONAL BUSINESS MACHINES CORPORATIONInventors: Robert G. Biskeborn, Calvin S. Lo, Teya Topuria
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Publication number: 20120301746Abstract: An apparatus for cooling a nanowire in a wire assisted magnetic recording head using a radiator in close proximity to a shield of the write pole. The radiator may further contain current restraints (e.g., slits, cuts, or resistive materials) that maximize current density in the nanowire at a location that corresponds to the current restraints. These current restraints may be further arranged to align with a write pole such that the current is forced to flow primarily through the nanowire when the nanowire is closest to the write pole. The nanowire may then be used either as main or auxiliary writing element for recording signals to a high coercivity media. Moreover, the nanowire and radiator may be combined into a single nanofoil which has a least two portions that perform a similar function as both the nanowire and radiator.Type: ApplicationFiled: May 24, 2011Publication date: November 29, 2012Inventors: Luiz M. Franca-Neto, Bruce A. Gurney, Lidu Huang, Petrus A. Van Der Heijden
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Publication number: 20120270072Abstract: An apparatus and associated method are generally directed to a magnetic shield capable of screening magnetic flux with in-plane anisotropy. Various embodiments of the present invention may have at least one magnetic shield. The shield may be constructed of a Cobalt-Iridium compound capable of providing in-plane anisotropy along a longitudinal plane of the shield.Type: ApplicationFiled: April 22, 2011Publication date: October 25, 2012Applicant: SEAGATE TECHNOLOGY LLC.Inventors: James Gary Wessel, Bin Lu, Werner Scholz
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Publication number: 20120270073Abstract: An apparatus and associated method may be used to provide a data sensing element capable of detecting changes in magnetic states. Various embodiments of the present invention are generally directed to a magnetically responsive lamination of layers and [a] means for generating a high magnetic moment region proximal to an air bearing surface (ABS) and a low magnetic moment region proximal to a hard magnet.Type: ApplicationFiled: April 25, 2011Publication date: October 25, 2012Applicant: SEAGATE TECHNOLOGY LLCInventors: Mark William Covington, Qing He, Thomas Roy Boonstra
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Publication number: 20120243127Abstract: According to one embodiment, a magnetic head includes a reproducing section. The reproducing section detects a medium magnetic field recorded in a magnetic recording medium. The reproducing section includes a stacked film and a magnetic field application unit. The stacked film includes a first magnetization layer and a second magnetization layer. The first magnetization layer has a perpendicular magnetic anisotropy. A magnetization of the first magnetization layer being is fixed. The second magnetization layer is stacked with the first magnetization layer and oscillates. The magnetic field application unit is stacked with the stacked film and applies a bias magnetic field having a component along the first axis to the stacked film. A resistance of the stacked film changes in accordance with the medium magnetic field when a current not less than a value at which the second magnetization layer oscillates is passed.Type: ApplicationFiled: September 22, 2011Publication date: September 27, 2012Applicant: Kabushiki Kaisha ToshibaInventors: Hitoshi IWASAKI, Masayuki Takagishi, Kenichiro Yamada, Susumu Hashimoto, Yusuke Tomoda
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Patent number: 8274811Abstract: A spin transfer oscillator (STO) structure is disclosed that includes two assist layers with perpendicular magnetic anisotropy (PMA) to enable a field generation layer (FGL) to achieve an oscillation state at lower current density for MAMR applications. In one embodiment, the STO is formed between a main pole and write shield and the FGL has a synthetic anti-ferromagnetic structure. The STO configuration may be represented by seed layer/spin injection layer (SIL)/spacer/PMA layer 1/FGL/spacer/PMA layer 2/capping layer. The spacer may be Cu for giant magnetoresistive (GMR) devices or a metal oxide for tunneling magnetoresistive (TMR) devices. Alternatively, the FGL is a single ferromagnetic layer and the second PMA assist layer has a synthetic structure including two PMA layers with magnetic moment in opposite directions in a seed layer/SIL/spacer/PMA assist 1/FGL/spacer/PMA assist 2/capping layer configuration. SIL and PMA assist layers are laminates of (CoFe/Ni)x or the like.Type: GrantFiled: November 22, 2010Date of Patent: September 25, 2012Assignee: Headway Technologies, Inc.Inventors: Kunliang Zhang, Min Li, Yuchen Zhou
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Publication number: 20120231297Abstract: Disclosed is a lubricant composition comprising at least one kind of compound represented by following formula (1): where X represents a cyclic group that may be substituted; Y represents a divalent or higher-valent linking group having at least one polar group and having no aromatic cyclic group; p1 represents an integer of 1 to 4; p2, p3, and p4 each represent an integer of 0 to 4; q represents an integer of 0 to 30; n represents an integer of 1 to 10; s represents an integer of 1 to 4; and t represents an integer of 2 to 10.Type: ApplicationFiled: March 7, 2012Publication date: September 13, 2012Applicant: FUJIFILM CORPORATIONInventors: Hiroki SUGIURA, Masayuki HARADA, Ken KAWATA, Akiko HATTORI, Atsushi TATSUGAWA
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Patent number: 8211322Abstract: A method of patterning a metal layer includes forming a first mask on a surface of the metal layer, the first mask having an opening through the first mask that exposes the metal layer, and forming a nanogap in the exposed metal layer using an ion beam directed through the opening. The first mask limits a lateral extent of the ion beam, and the nanogap has a width that is less than a width of the opening.Type: GrantFiled: April 30, 2008Date of Patent: July 3, 2012Assignee: Samsung Electronics Co., Ltd.Inventors: Dong-Gun Park, Dong-Won Kim, Sung-Young Lee, Yang-Kyu Choi, Chang-Hoon Kim, Ju-Hyun Kim
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Publication number: 20120154955Abstract: A magnetic layered structure is presently disclosed comprising a pinned layer, a first anti-ferromagnetic layer that defines a magnetic orientation of the pinned layer, a free layer, a second anti-ferromagnetic layer that biases the free layer to a magnetic orientation approximately perpendicular to the magnetic orientation of the pinned layer, and a tuning layer positioned between and in contact with the second anti-ferromagnetic layer and the free layer that tunes free layer bias to a desired level.Type: ApplicationFiled: December 17, 2010Publication date: June 21, 2012Applicant: SEAGATE TECHNOLOGY LLCInventors: Antonia Tsoukatos, Eric Walter Singleton
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Patent number: 8185968Abstract: A magnetic head inspection method is provided with the step that an area smaller than a half of a scanning and measurement area of a magnetic probe in a cantilever unit of the MFM is set as a scanning and measurement area on a surface of a recording portion of the magnetic head that is scanned by the AFM, so as to greatly reduce the inspection time (tact time) of the AFM.Type: GrantFiled: February 10, 2011Date of Patent: May 22, 2012Assignee: Hitachi High-Technologies CorporationInventors: Tsuneo Nakagomi, Norimitsu Matsusita