Patents Assigned to Seagate Technologies
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Patent number: 9368141Abstract: Accurately formed critical tolerance fit components are provided for fluid dynamic bearing motors, including disc drive memory systems. In an aspect, critical tolerance fit components are molded to a metal insert and include a portion of a hub, a disc seating surface, and a disc locating surface. The insert includes another portion of a hub, a sleeve, or a disc clamp retainer for a novel disc clamp. In an aspect, the plastic component is situated to cause the thermal expansion of the plastic to be restricted by the thermal expansion of a metal insert. Expensive machining of a stamped metal hub is minimized or eliminated by using the molded component portions. Strict component tolerances are provided as needed for perpendicularity relative to motor rotation for seating a disc with accurate flatness, a circumferential surface for centering the disc, and tight parallelism between a disc mounting surface and a center shaft.Type: GrantFiled: September 14, 2012Date of Patent: June 14, 2016Assignee: Seagate Technology LLCInventor: Stephen R. Martin
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Patent number: 9366289Abstract: An apparatus includes a stationary shaft and a sleeve rotatable with respect to the shaft. A fluid dynamic bearing is defined by the stationary shaft and the sleeve. A fluid channel includes a first axially extending portion in the fluid dynamic bearing, and a radially extending portion extending radially outward from the first axially extending portion. In addition the fluid channel includes a second axially extending portion extending axially downward from the radially extending portion. The apparatus further includes a pump seal including grooves formed in the second axially extending portion.Type: GrantFiled: January 17, 2014Date of Patent: June 14, 2016Assignee: Seagate Technology LLCInventors: Lynn B Le, Alan Lyndon Grantz
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Patent number: 9361909Abstract: The embodiments disclose an alternating current (AC) erase process configured to cancel out existing polarity of stack magnetic features on both sides of the stack and an AC reset process configured to initialize the polarity of the device stack magnetic features of both sides of a stack configured to create a uniform polarity.Type: GrantFiled: October 16, 2013Date of Patent: June 7, 2016Assignee: Seagate Technology LLCInventor: Stephen Keith McLaurin
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Patent number: 9362954Abstract: Encoding and decoding schemes are presented with various configurations for error correcting code (ECC) encoders and decoders. Bits from encoders can be interleaved before they are transmitted to the communications medium. During receiving, or read back, stronger, converged ECC decoders can help with weaker decoders through detector iterations. Variations of iterative detector-decoders are described.Type: GrantFiled: September 13, 2013Date of Patent: June 7, 2016Assignee: Seagate Technology LLCInventors: Deepak Sridhara, Ara Patapoutian
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Patent number: 9357892Abstract: A vacuum suction nozzle comprises a nozzle body comprising a first end and a second end, a nozzle passage extending through the nozzle body from the first end to the second end, and a plurality of channels traversing the first end. The channels enter the nozzle passage tangentially. Each channel may be wider proximate an outer surface of the nozzle body than proximate the nozzle passage. A vacuum system comprises the nozzle and a vacuum generator coupled to the nozzle. A method for vacuum cleaning comprises inducing a vortex flow proximate the nozzle with a vacuum generator, and translating the nozzle generally parallel to a surface to remove particulates from the surface.Type: GrantFiled: March 16, 2007Date of Patent: June 7, 2016Assignee: Seagate Technology LLCInventors: Henry Pang Kim Pong, Ronnie Tan Kwang Liang, Siantar Tanioes
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Patent number: 9361925Abstract: An enlarged substrate for a magnetic recording medium used in a data storage device such as a hard disc drive (HDD). In some embodiments, a data storage device has a housing member for a 3½ inch form factor storage device or a 2½ inch form factor storage device. A rotatable data recording disc is supported by the housing member. The disc has a plurality of tracks formed thereon. At least one track of the plurality of tracks has an average radius of greater than 47.5 mm for the 3½ inch form factor storage device or greater than 32.5 mm for the 2½ inch form factor storage device. A data read/write transducer is configured to be controllably advanced across a recording surface of the data recording disc and to record data to the plurality of tracks.Type: GrantFiled: January 4, 2016Date of Patent: June 7, 2016Assignee: Seagate Technology LLCInventors: Koji Adachi, Ian J. Beresford, Thomas Y Chang, Kuo Hsing Hwang, James Hennessy, David Perez
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Patent number: 9355679Abstract: The disclosure is related to apparatuses and methods for characterizing and compensating for curvature in a write field generated by a data storage device transducer. In some embodiments, the curvature of a write field generated by a data storage device transducer may be characterized. Some embodiments can include a circuit to apply a phase compensation value based on a deterministic phase offset value, which may correspond with the write field curvature characterization.Type: GrantFiled: November 8, 2013Date of Patent: May 31, 2016Assignee: Seagate Technology LLCInventors: Huaan Zhang, Barmeshwar Vikramaditya
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Patent number: 9355671Abstract: A method of controlling laser output in a heat assisted magnetic recording device can be performed by control circuitry in a data storage device. The method includes measuring a temperature, measuring laser output power of a laser, determining a power error by subtracting an optimal laser output power from the measured laser output power and comparing the power error to at least one threshold to determine whether an applied current to the laser needs to be adjusted. The at least one threshold is related to how great the power error can be while maintaining the integrity of data on a recording medium.Type: GrantFiled: May 15, 2014Date of Patent: May 31, 2016Assignee: Seagate Technology LLCInventors: Tim Rausch, Jon D. Trantham, John W. Dykes, Won Choul Yang
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Patent number: 9355674Abstract: Technologies are described herein for adaptive brownout detection and mitigation in a storage device having rotational storage media. A target position on the rotational storage media for a current write operation is received. A value for a brownout mitigation parameter is determined based on the target position. A brownout condition is then detected on the storage device, and upon detecting the brownout condition, the current write operation is completed before a power-on reset of the storage device.Type: GrantFiled: July 19, 2013Date of Patent: May 31, 2016Assignee: Seagate Technology LLCInventors: Byung Wook Kim, Jeffrey Kwak, In Su Lee, Jae Myung Pi, Dong Wook Lee, Dae Keun Ryoo
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Patent number: 9354816Abstract: An apparatus includes a plurality of memory dies and a controller. The controller may be communicatively coupled to the plurality of memory dies and configured to utilize multiple copies of a root record containing system data during a boot-up process. The multiple copies of the root record are stored using at least two of the plurality of memory dies.Type: GrantFiled: May 5, 2014Date of Patent: May 31, 2016Assignee: Seagate Technology LLCInventors: Zhengang Chen, Gordon J. Coleman, Earl T. Cohen, Ivana Djurdjevic, Erich F. Haratsch
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Patent number: 9348774Abstract: The disclosure is directed to a system and method for controlling a non-volatile memory (NVM) device with controller-opaque commands issued by a host. A device controller is configured to receive a command script from a host. The device controller executes one or more commands of the command script including sending one or more operations of the command script to a NVM device in communication with the device controller. The device controller is enabled to provide at least a portion of the one or more operations from the command script to be executed by the NVM device without any embedded knowledge by the device controller of the actions of and/or consequences of the operations, thereby allowing the host to access NVM commands that are not necessarily supported by the device controller.Type: GrantFiled: January 25, 2013Date of Patent: May 24, 2016Assignee: Seagate Technology LLCInventors: Leonid Baryudin, Earl T. Cohen, Gordon James Coleman
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Patent number: 9349388Abstract: A data storage device employing a data writer may configure the data writer with at least a write pole that is separated from a front shield on an air bearing surface. The front shield can be arranged to continuously extend from the air bearing surface a first throat height distal the write pole and a second throat height proximal the write pole with the first and second throat heights being different.Type: GrantFiled: February 27, 2015Date of Patent: May 24, 2016Assignee: Seagate Technology LLCInventors: Muhammad Asif Bashir, JianHua Xue, Beverley Rutherford McConnell, Shengzhou Liao, Wei Tian, Prim Gangmei, Swaraj Basu, Mark Anthony Gubbins
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Patent number: 9347129Abstract: A sputtering apparatus includes a template having cells. Removable inserts are disposed within the cells. The cells may be circular, triangular, square, diamond shaped, or hex shaped. The removable inserts may be magnetic or non-magnetic inserts. A cover is connected with a first side of the template. A yoke is connected with a second side of the template. The removable inserts are operable to customize or shape a magnetic field over a target. The yoke is operable to provide a return path for the magnetic field.Type: GrantFiled: December 9, 2011Date of Patent: May 24, 2016Assignee: Seagate Technology LLCInventor: Toon Hai Foo
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Patent number: 9348747Abstract: Systems and methods are disclosed for improving performance in of storage device latency. In an embodiment, an apparatus may comprise a controller configured to receive a first data access command at a device including a nonvolatile solid state memory and a disc memory, and when the first data access command is directed to the nonvolatile solid state memory, store the first data access command to a first command queue for the nonvolatile solid state memory. In another embodiment, a method may comprise receiving, at a data storage device, a first data access command, storing the first data access command in a first command queue, determining whether the data access command is directed to a Flash memory or a disc memory, and storing the first data access command in a second command queue when the first data access command is directed to the Flash memory.Type: GrantFiled: October 29, 2013Date of Patent: May 24, 2016Assignee: Seagate Technology LLCInventors: Stanton MacDonough Keeler, Margot Ann LaPanse
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Patent number: 9348219Abstract: Provided herein are methods for depositing a spin-on-glass composition over an imprinted resist; curing the spin-on-glass composition to form a cured spin-on-glass composition; and forming a patterned mask by etching the cured spin-on-glass composition, the resist, and an underlying mask composition, wherein the patterned mask comprises features of the cured spin-on-glass composition atop the mask composition, and wherein curing the spin-on-glass composition is configured to prevent shifting or toppling of the spin-on glass composition from atop the mask composition while forming the patterned mask.Type: GrantFiled: February 2, 2015Date of Patent: May 24, 2016Assignee: Seagate Technology LLCInventors: Zhaoning Yu, Nobuo Kurataka, Gennady Gauzner
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Patent number: 9349406Abstract: Provided herein is a method, including etching a first pattern into a mask, wherein the first pattern includes a first set of features corresponding to features of an imprint template; forming a second set of features over and in-between the first set of features by directed self-assembly of a block copolymer composition, wherein the first and second sets of features combine to form a second pattern; and etching the second pattern into a substrate.Type: GrantFiled: February 12, 2015Date of Patent: May 24, 2016Assignee: Seagate Technology LLCInventor: Rene Johannes Marinus Van de Veerdonk
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Patent number: 9349402Abstract: Provided herein is an apparatus comprising a substrate; a continuous layer over the substrate comprising a first heat sink layer; and a plurality of features over the continuous layer comprising a second heat sink layer, a first magnetic layer over the second heat sink layer, and a second magnetic layer, wherein the first and second magnetic layers are configured to provide a temperature-dependent, exchange spring mechanism.Type: GrantFiled: February 10, 2015Date of Patent: May 24, 2016Assignee: Seagate Technology LLCInventors: Xi Chen, Ganping Ju, Yingguo Peng, Timothy J. Klemmer, Yukiko Kubota, Jan-Ulrich Thiele, David S. Kuo, Kai-Chieh Chang, Kangkang Wang, Li Gao, Yinfeng Ding
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Patent number: 9349477Abstract: An apparatus comprising a memory and a controller. The memory may be configured to process a plurality of read/program operations. The memory may comprise a plurality of memory units each having a size less than a total size of the memory. The controller may be configured to perform a plurality of reads on a victim cell. The controller may be configured to store measured victim information from the plurality of reads on the victim cell. The controller may be configured to perform one or more reads on a plurality of aggressor cells. The controller may be configured to store measured aggressor information from the one or more reads on the plurality of aggressor cells. The controller may be configured to generate inter-cell interference parameters based on the measured victim information and the measured aggressor information. The controller may be configured to mitigate inter-cell interference based on the inter-cell interference parameters.Type: GrantFiled: June 16, 2014Date of Patent: May 24, 2016Assignee: Seagate Technology LLCInventors: Zhengang Chen, Yunxiang Wu, Erich F. Haratsch
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Patent number: 9343099Abstract: A device including a magnetic structure, the magnetic structure having a substrate adjacent surface and a second, opposing surface, the magnetic structure having a near field transducer (NFT), wherein the NFT includes gold or an alloy thereof, and is positioned at the second surface an overcoat structure; and a film structure, the film structure positioned between the magnetic structure and the overcoat structure, the film structure having a total thickness of not greater than about 100 ?, and the film structure including: a first interfacial structure having a first and a second opposing surface; a second interfacial structure having a first and a second opposing surface; and an intermediate structure wherein the first surface of the first interfacial structure is positioned adjacent the NFT of the magnetic structure, and the second surface of the second interfacial structure is positioned adjacent the overcoat structure, and the intermediate structure is positioned between the first interfacial structure anType: GrantFiled: July 28, 2015Date of Patent: May 17, 2016Assignee: Seagate Technology LLCInventors: Philip G. Pitcher, Sami C. Antrazi
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Patent number: 9343273Abstract: A substrate holder for a substrate including a frame body having an opening for the placement of the substrate. The frame body also includes a hollow portion therein. The substrate holder may be used in a sputtering apparatus for sputtering material onto the substrate. The substrate holder is particularly advantageous in the manufacturing of magnetic recording medium.Type: GrantFiled: September 25, 2008Date of Patent: May 17, 2016Assignee: Seagate Technology LLCInventor: Thomas Nolan