Coil Structure Or Material Patents (Class 335/299)
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Patent number: 12224109Abstract: A coil component includes a core, a conductive wire, and a solder portion. The core includes a mounting surface extending from one end to the other end along a one-axis direction, a recessed portion connected to the one end of the mounting surface in the one-axis direction and recessed from the mounting surface, and an end surface connected to the recessed portion. The conductive wire has one end disposed at the recessed portion. The solder portion is provided at the recessed portion to be electrically connected to one end of the conductive wire. The solder portion includes a peak projecting from the mounting surface, an inner region located farther from the end surface than the peak in the one-axis direction, and an outer region located closer to the end surface than the peak in the one-axis direction and having a larger volume than the inner region.Type: GrantFiled: October 11, 2021Date of Patent: February 11, 2025Assignee: TAIYO YUDEN CO., LTD.Inventors: Takanori Yoshizawa, Masanori Okawara, Hideharu Suzuki
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Patent number: 11972846Abstract: A healthcare worker smart visor. The smart visor comprises a radio transceiver, a non-transitory memory, a camera, a processor communicatively coupled to the radio transceiver, the non-transitory memory, and the camera, an optical visor, a head-up display projector that is communicatively coupled to the processor and that is operable to project an image on an inside surface of the optical visor, a headband retaining the radio transceiver, the non-transitory memory, the camera, the processor, the optical visor, and the head-up display projector, and a smart visor application stored in the non-transitory memory that, when executed by the processor performs two-factor authentication of a healthcare worker, transmits a request for current indications of healthcare equipment via the radio transceiver to the healthcare equipment based on the identity of the healthcare equipment, and presents the current indications on the inside surface of the optical visor via the head-up display.Type: GrantFiled: March 23, 2021Date of Patent: April 30, 2024Assignee: T-Mobile Innovations LLCInventors: Matthew Berkshire, Zhisheng Chen, Griffin Cruz Garbutt, Joao Teixeira, Shant Thomas
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Patent number: 11830663Abstract: A coil component includes a body having one surface and the other surface, opposing each other, and wall surfaces, and including a metal magnetic powder particle and an insulating resin; a coil portion disposed in the body and including first and second lead-out portions exposed from the one surface of the body to be spaced apart from each other; first and second external electrodes arranged on the one surface of the body to be spaced apart from each other and respectively connected to the first and second lead-out portions; a cover insulating layer covering the other surface of the body and extending to at least portion of each of the wall surfaces of the body; and an oxide insulating film disposed on a surface of the metal magnetic powder particle exposed from the one surface of the body and including metal ions of the metal magnetic powder particle.Type: GrantFiled: August 10, 2020Date of Patent: November 28, 2023Assignee: SAMSUNG ELECTRO-MECHANICS CO., LTD.Inventors: Byung Soo Kang, Byeong Cheol Moon, Ju Hwan Yang, Yoon Mi Cha, Tai Yon Cho, Tae Jun Choi
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Patent number: 11664153Abstract: A coil component includes a body having one surface and the other surface opposing each other and including a magnetic metal powder particle and an insulating resin; a coil portion embedded in the body and having end portions respectively exposed from end surfaces of the body; first and second external electrodes arranged to be spaced apart from each other on the one surface and extending to the end surfaces to be connected to the end portions, respectively; and an external insulating layer disposed between each of the first and second external electrodes and the one surface of the body. A magnetic metal powder particle exposed on the wall surface of the body, among the magnetic metal powder particle, has a plating prevention film disposed on at least a portion of a surface of the exposed magnetic metal powder particle and including metal ions of the magnetic metal powder particle.Type: GrantFiled: September 10, 2019Date of Patent: May 30, 2023Assignee: SAMSUNG ELECTRO-MECHANICS CO., LTD.Inventors: Ju Hwan Yang, Byeong Cheol Moon, Byung Soo Kang, Yoon Mi Cha
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Patent number: 11592510Abstract: The present invention relates to a medical apparatus which includes a motion mechanism which has at least one degree of freedom, an actuator configured to drive the motion mechanism and a control unit configured to control the actuator, and which operates in a magnetic field environment of an MRI, the medical apparatus including: a data storage unit in which data related to magnetic susceptibility of the actuator is stored; a calculating unit configured to calculate information related to an influence which the actuator exerts upon the magnetic field environment by calculation based on the magnetic susceptibility; and a communication unit configured to output the information to the MRI. An influence which an apparatus which operates in a strong magnetic field environment exerts upon an MR image can be reduced.Type: GrantFiled: July 29, 2019Date of Patent: February 28, 2023Assignee: Canon Kabushiki KaishaInventor: Takeshi Iwasa
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Patent number: 11491343Abstract: A coil apparatus for use in a transcranial magnetic stimulation apparatus is provided to further increase an electric field intensity on a head surface. The coil apparatus includes a wound-wire coil disposed on or near a head surface so as to generate a current by an induced electric field through electromagnetic induction in a magnetic stimulation-target region of a brain for stimulating neurons. The wound-wire coil includes a near-head-surface conductive wire portion disposed on or near the head surface, and a far-head-surface conductive wire portion disposed farther from the head surface than the near-head-surface conductive wire portion. A distance between the near-head-surface conductive wire portion and the far-head-surface conductive wire portion is set to be changed so that an intensity of the induced electric field becomes larger than that of a surrounding region of the magnetic stimulation-target region.Type: GrantFiled: April 7, 2020Date of Patent: November 8, 2022Assignees: THE UNIVERSITY OF TOKYO, OSAKA UNIVERSITYInventors: Youichi Saitoh, Masaki Sekino, Keita Yamamoto
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Patent number: 11287485Abstract: A linear or angular position sensor system comprising a magnetic structure for generating a magnetic field, and a sensor device movable relative to the magnetic structure. The sensor device comprises a plurality of sensor elements for measuring at least two characteristics of said magnetic field, and a processing circuit for determining a linear or angular position of the sensor device relative to the magnetic structure in accordance with a predefined function of these characteristics (e.g. components or gradients). The magnetic structure comprises one or more grooves, having a shape and size which can be described by a limited set of parameters, having values optimized to reduce a maximum error between the actual position of the sensor device, and the calculated position based on said predefined function, by at least a factor of 2.Type: GrantFiled: September 17, 2020Date of Patent: March 29, 2022Assignee: MELEXIS TECHNOLOGIES SAInventors: Yves Bidaux, Jean-Claude Depoorter
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Patent number: 11261110Abstract: A system for reducing evaporative cooling water losses using an electric and magnetic field inducing device is disclosed. The device influences a liquid's properties including evaporation rate, diffusion, vapor, heat transfer rate, and/or fluid properties. The device comprises a malleable core with notches and electrically conductive windings wrapped around the flexible core around the notches. An insulative coating isolates the windings from the core. The device is pliable and is wrapped and/or attached around a conduit (e.g., a makeup line or pipe or a recirculating line or pipe of an evaporative cooling tower) with flowing fluid and current is passed through the windings to treat the fluid.Type: GrantFiled: August 3, 2018Date of Patent: March 1, 2022Inventor: Gary D. Wilson
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Patent number: 11264834Abstract: A coil apparatus includes a base having a front surface and a rear surface, a magnetic portion provided on a side of the front surface of the base, and a coil portion which is provided on an opposite side from the base with respect to the magnetic portion and includes a conductive wire. The magnetic portion includes a first passing region, the base includes a second passing region, and the conductive wire is drawn out from the rear surface of the base through the first passing region and the second passing region.Type: GrantFiled: February 13, 2017Date of Patent: March 1, 2022Assignee: IHI CORPORATIONInventors: Kentaro Furiya, Kenji Nishimura
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Patent number: 11167740Abstract: A coil assembly includes: a bobbin; a coil including a winding around the bobbin; a yoke attached to the bobbin; and a connection terminal electrically connected to the winding. The connection terminal is a press-fit terminal that includes a terminal portion projecting perpendicularly from the bobbin outward in an axial direction of the bobbin. The yoke is arranged on a side of the bobbin that is opposite to the terminal portion in an axial direction of the terminal portion, and supports the press-fit terminal.Type: GrantFiled: February 16, 2018Date of Patent: November 9, 2021Assignees: Veoneer Nissin Brake Systems Japan Co., Ltd., Nissin Kogyo Co., Ltd.Inventors: Takaaki Komaba, Kyosuke Ishiai, Kentaro Chiba
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Patent number: 11133125Abstract: A coil component includes a body, and a coil portion embedded in the body and including a coil pattern having a plurality of coil turns and a support member supporting the coil pattern. A height of an internal coil turn of the plurality of coil turns is lower than a height of an external coil turn of the plurality of coil turns connected to the internal coil pattern and wound outwardly of the internal coil turn. A method of manufacturing the coil component includes forming a spiral-shaped plating seed pattern on a support member, forming a cutting portion cutting the spiral-shaped plating pattern, and forming a coil pattern extending across the cutting portion by performing plating on the spiral-shaped plating seed pattern.Type: GrantFiled: June 18, 2018Date of Patent: September 28, 2021Assignee: SAMSUNG ELECTRO-MECHANICS CO., LTD.Inventors: Eo Jin Choi, Jae Hun Kim
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Patent number: 10932052Abstract: The present disclosure relates to a voice coil, a method for winding the voice coil, and a speaker having the voice coil. The voice-coil winding is wound from an inner side to an outer side of the voice coil to form an N-layer structure. Each layer is wound to form a multi-coil structure. A winding switching portion is disposed between at least one group of neighboring two layers. Two terminals of the winding switching portion are respectively located at the top and the bottom of the voice coil. One terminal of the winding switching portion is connected to a winding ending terminal of an inner side one of the neighboring two layers, and the other terminal of the winding switching portion is connected to a winding starting terminal of the outer side one of the neighboring two layers.Type: GrantFiled: August 1, 2019Date of Patent: February 23, 2021Assignee: AAC Technologies Pte. Ltd.Inventors: Hongjian Hu, Min Su, Shuai Li
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Patent number: 10748700Abstract: A coil structure has a coil 150 including conductors, and insulating sheets 100 provided between the conductors included in the coil 150. Two or more insulating sheets 100 are provided. The two or more insulating sheets 100 have two or more types of insulating sheets 100 having at least different thermal conductivity or different permittivity.Type: GrantFiled: May 31, 2016Date of Patent: August 18, 2020Assignee: SHINDENGEN ELECTRIC MANUFACTURING CO., LTD.Inventors: Kosuke Ikeda, Yoshiaki Hiruma
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Patent number: 10744336Abstract: A coil has 1st to Nth turns. The 1st to Nth turns respectively provided with actuation parts for current in one direction to flow, and connection parts for current in the opposite direction to the one direction to flow. The plurality of actuation parts are arranged substantially parallel to each other, and are arranged along a surface of an object or a surface that approximates to the surface of the object. A plurality of connection parts are arranged within a space in which the connection parts do not face the surface of the object over the actuation parts of the 1st to Nth turns, and the connection parts are positioned at the sides with respect to the extension direction of the actuation parts.Type: GrantFiled: February 28, 2017Date of Patent: August 18, 2020Assignee: THE UNIVERSITY OF TOKYOInventors: Masaki Sekino, Keita Yamamoto, Yuta Kawasaki
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Patent number: 10627462Abstract: An antenna of a cable arrangement is provided for use in an MR local coil. An MR local coil with such a cable arrangement and a method for producing such a cable arrangement are provided. The cable arrangement includes an electrical conductor, which may have a material with a high electrical conductivity, such as copper for instance. The cable arrangement, in particular the electrical conductor, is embodied in a wavelike manner (e.g., the cable arrangement has a waveform).Type: GrantFiled: July 3, 2017Date of Patent: April 21, 2020Assignee: Siemens Healthcare GmbHInventors: Wolfgang Kraus, Thomas Kundner, Martin Zigann, Stephan Zink
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Patent number: 10600542Abstract: A polarity-switching magnetic diode provides a method of gating or “rectifying” N and S polarized flux contained within the closed-loop flux circuit of a magnetic flux element. Gaps separate the opposing magnetic polarities, and strategically placed control coils are disposed to break the magnetic circuit in at least two places upon electrical activation of the device—forming high density flux zones of opposite polarity. Switching the control coil's magnetic flux flow allows for the high density flux zones to alternate N and S polarity.Type: GrantFiled: December 27, 2016Date of Patent: March 24, 2020Inventor: Chad Ashley VandenBerg
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Patent number: 10589118Abstract: Methods of stimulating a target deep brain region using multiple Transcranial Magnetic Stimulation (TMS) electromagnets positioned over a predetermined cortical regions each having a first-order connection to a target deep brain region and applying TMS so that the applied TMS induces spatial summation and thereby modulation of the target deep brain region.Type: GrantFiled: January 18, 2018Date of Patent: March 17, 2020Assignees: BRAINSWAY LTD., THE BOARD OF TRUSTEES OF THE LELAND STANFORD JUNIOR UNIVERSITY, THE UNITED STATES GOVERNMENT AS REPRESENTED BY THE DEPARTMENT OF VETERANS AFFAIRSInventor: M. Bret Schneider
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Patent number: 10424427Abstract: A superconducting coil includes a superconducting wire wound around an axis, a release material layer between the superconducting wires adjacent in a radial direction and at both ends in an axial direction of the superconducting coil, and a resin layer between the superconducting wires adjacent in the radial direction and in a region other than a region where the release material layer is formed.Type: GrantFiled: August 4, 2016Date of Patent: September 24, 2019Assignee: FURUKAWA ELECTRIC CO., LTD.Inventor: Makoto Furukawa
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Patent number: 10381142Abstract: Provided are a cryogen recondensing system and a superconducting magnet apparatus including the same. The cryogen recondensing system includes a primary reservoir that stores cryogen for cooling a superconducting coil; a refrigerator that recondenses gas cryogen of cryogen stored in the primary reservoir; a secondary reservoir that stores gas cryogen; and a secondary reservoir tube that connects the primary reservoir to the secondary reservoir, through which the gas cryogen flows.Type: GrantFiled: September 17, 2014Date of Patent: August 13, 2019Assignee: SAMSUNG ELECTRONICS CO., LTD.Inventors: Oh-soo Kwon, Do-woon Kim, Jae-hyun Shin
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Patent number: 10102955Abstract: An electrical system including multiple bodies having an underlying structure resembling a double helix may be arranged and used, to produce useful electromagnetic effects for various applications, including therapy and the promotion of growth in organisms and organic matter.Type: GrantFiled: February 3, 2016Date of Patent: October 16, 2018Assignee: MEDICAL ENERGETICS LTD.Inventors: David G. Schmidt, Terrence S. McGrath
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Patent number: 10083786Abstract: An electrical system including multiple bodies having an underlying structure resembling a double helix may be arranged and used, to produce useful electromagnetic effects for various applications, including therapy and the promotion of growth in organisms and organic matter.Type: GrantFiled: February 3, 2016Date of Patent: September 25, 2018Assignee: MEDICAL ENERGETICS LTD.Inventors: David G. Schmidt, Terrence S. McGrath
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Patent number: 9977764Abstract: The present invention introduces a method, apparatus and computer program for magnetic resonance imaging or magnetoencephalography applications in order to control currents of a coil assembly (20), and thus achieving desired magnetic fields precisely in the measuring volume (21). The approach is an algebraic method where a field vector is generated for the test currents of each coil (20). Vector and matrix algebra is applied and a linear set of equations is formed. Field components and their derivatives up to the desired order can be taken into account. Principal component analysis or independent component analysis can be applied for determination of the dominant external interference components. By checking the condition value for the matrix (33, 45), it is possible to investigate whether a reasonable solution of currents for desired magnetic fields is possible to achieve. Finally, solved currents can be installed into a current supply unit (29) feeding the coils of the assembly (20).Type: GrantFiled: March 24, 2011Date of Patent: May 22, 2018Assignee: Elekta AB (publ).Inventors: Juha Simola, Samu Taulu
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Patent number: 9923442Abstract: A breathing assistance device includes a gas regulating valve (1300). The gas regulating valve is operated by a linear actuator (1330). The linear actuator may include a movable member that moves an obstruction member between an open position and a closed position. The linear actuator is isolated from a gas flow path through the valve.Type: GrantFiled: June 9, 2010Date of Patent: March 20, 2018Assignee: RESMED LIMITEDInventors: Philippe Auguste Chalvignac, Nan Hai Wu, Ken Taylor, Daniel Robert Judson, Paul Jan Klasek, Christopher Kingsley Blunsden
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Patent number: 9883878Abstract: Some embodiments provide a system for external manipulation of magnetic nanoparticles in vasculature using a remotely placed magnetic field-generating stator. In one embodiment, the systems and methods relate to the control of magnetic nanoparticles in a fluid medium using permanent magnet-based or electromagnetic field-generating stator sources. Such a system can be useful for increasing the diffusion of therapeutic agents in a fluid medium, such as a human circulatory system, which can result in substantial clearance of fluid obstructions, such as vascular occlusions, in a circulatory system resulting in increased blood flow. Magnetic nanoparticles are provided having a non-specialized chemical coating facilitating association with a chemical composition by a user before infusion. Systems are provided for delivering a consistent infusion mass of magnetic nanoparticles to a patient.Type: GrantFiled: May 13, 2013Date of Patent: February 6, 2018Assignee: Pulse Therapeutics, Inc.Inventors: Francis M. Creighton, Michael Sabo, Christopher Null, Gerard Epplin, James Christopher Wachtman
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Patent number: 9872631Abstract: The present invention relates to an arrangement (10) for influencing and/or detecting magnetic particles (100) in a region of action (300), which comprises selection means (210) for generating a magnetic selection field (211) having a pattern in space of its magnetic field strength such that a first sub-zone (301) having a low magnetic field strength and a second sub-zone (302) having a higher magnetic field strength are formed in the region of action (300). The arrangement further comprises drive means (220) for changing the position in space of the two sub-zones (301, 302) in the region of action (300) by means of a magnetic drive field (221) so that the magnetization of the magnetic material changes locally. The arrangement further comprises receiving means (230) for acquiring detection signals, which detection signals depend on the magnetization in the region of action (300), which magnetization is influenced by the change in the position in space of the first and second sub-zone (301, 302).Type: GrantFiled: November 27, 2009Date of Patent: January 23, 2018Assignee: Koninklijke Philips N.V.Inventor: Holger Timinger
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Patent number: 9744373Abstract: An improved apparatus is provided for transcranial magnetic stimulation in a brain of a subject. The apparatus is comprised of: a plurality of coils electrically connected in series to each other; and a single source of current electrically coupled to one of the plurality of coils. Each coil may include one or more windings of similar dimensions although the size of the windings varies between coils. Each of the coils is further dimensioned to stimulate brain tissue at a given distance while minimizing volume of the brain tissue excited by the magnetic field. During operation, the current source injects time varying current into the coils to create a magnetic field which in turn induces electric fields and eddy-currents inside the brain tissue of the subject.Type: GrantFiled: July 5, 2012Date of Patent: August 29, 2017Assignee: THE REGENTS OF THE UNIVERSITY OF MICHIGANInventors: Luis Hernandez-Garcia, Anthony Grbic, Eric Michielssen, Luis Gomez
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Patent number: 9728331Abstract: A method to form a choke is disclosed, wherein the method comprises: encapsulating a hollow coil by a molding body; forming a first core, wherein the first core comprises a pillar; and disposing at least one first portion of the pillar inside the encapsulated hollow coil. The method avoids the overflow or vertical flow issue during a molding process for encapsulating a coil that has been wound on a core already.Type: GrantFiled: December 10, 2014Date of Patent: August 8, 2017Assignee: CYNTEC CO., LTD.Inventors: Lan-Chin Hsieh, Roger Hsieh, Yu-Ching Kuo, Chun-Tiao Liu
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Patent number: 9704951Abstract: A magnetic field-guided method of metal-assisted chemical etching comprises immersing a structure that comprises a two-dimensional magnetic pattern layer on a surface thereof in an etchant solution. The magnetic pattern layer sinks into the structure as portions of the structure directly under the magnetic pattern layer are etched. A programmable magnetic field H(t) is applied to the structure during etching to guide the sinking of the magnetic pattern layer, thereby controlling the etching of the structure in three dimensions.Type: GrantFiled: November 14, 2014Date of Patent: July 11, 2017Assignees: The Board of Trustees of the University of Illinois, Board of Regents, The University of Texas SystemInventors: Xiuling Li, Weidong Zhou, Wen Huang
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Patent number: 9261151Abstract: An electromagnetic brake and a method for manufacturing an electromagnetic brake are disclosed. The electromagnetic brake includes a coil former, a coil, which is fitted on the coil former, and also an electrically connecting part, which is equipped to make an electrically conductive contact between the coil and the power supply cable supplying current to the electromagnetic brake.Type: GrantFiled: September 11, 2013Date of Patent: February 16, 2016Assignee: KONE CORPORATIONInventors: Antti Saarelainen, Asmo Tenhunen
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Patent number: 9095261Abstract: A system for guiding a capsule medical device comprising a magnet from a state in which surface tension of a liquid surface acts on the capsule medical device, the system having: a magnetic guidance device that generates: a reciprocally rotating magnetic field to the magnet at a predetermined frequency around a horizontal axis parallel to the liquid surface; and a guidance magnetic field to the magnet; and a control device that controls the magnetic guidance device to: in a first step, generate the reciprocally rotating magnetic field to the magnet to rotate the capsule medical device to eliminate the effect of the surface tension on the capsule medical device, and in a second step after the first step, generate the guidance magnetic field to the magnet in a direction away from the liquid surface to move the capsule medical device away from the liquid surface.Type: GrantFiled: July 3, 2012Date of Patent: August 4, 2015Assignee: OLYMPUS MEDICAL SYSTEMS CORP.Inventor: Hironao Kawano
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Patent number: 9075118Abstract: A magnetic resonance antenna arrangement having a plurality of antenna elements disposed around a measurement chamber and a plurality of switching elements is provided. The antenna elements and the switching elements are disposed and interconnected such that in a first switching configuration of the switching elements, the antenna elements form a first antenna architecture, and in a second switching configuration of the switching elements, the antenna elements form a second antenna architecture.Type: GrantFiled: August 3, 2011Date of Patent: July 7, 2015Assignee: Siemens AktiengesellschaftInventor: Razvan Lazar
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Publication number: 20150145625Abstract: A magnetic field generating device includes a triaxial Helmholtz coil 3, amounting table 4 on which a portable device 2 is mounted, a current supplying part 5 and a controlling part 6. The current supplying part 5 supplies current I to individual three monoaxial Helmholtz coils 30 which construct the triaxial Helmholtz coil 3. The controlling part 6 changes the current flowing through the individual monoaxial Helmholtz coils 30 in such a manner that a synthetic magnetic field of a magnetic field generated within the triaxial Helmholtz coil 3 by the current I and an external magnetic field which acts from the outside into the triaxial Helmholtz coil 3 acts on a triaxial magnetic sensor 20 within the portable device 2 mounted on the mounting table 4 from a plurality of predetermined directions.Type: ApplicationFiled: November 12, 2014Publication date: May 28, 2015Applicant: AICHI STEEL CORPORATIONInventors: Masahiko FUKASAWA, Masaaki Nakada, Ryuji Kambara
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Publication number: 20150137921Abstract: A conductor assembly and method for constructing an assembly of the type which, when conducting current, generates a magnetic field or which, in the presence of a changing magnetic field, induces a voltage. In one embodiment the method provides a first insulative layer tubular in shape and including a surface along which a conductor segment may be positioned. A channel formed in the surface of the insulative layer defines a first conductor path and includes a surface of first contour in cross section along a first plane transverse to the conductor path. A segment of conductor having a surface of second contour in cross section is positioned at least partly in the channel and extends along the conductor path. Along the first plane, contact between the conductor surface of second contour and the channel surface of first contour includes at least two separate regions of contact.Type: ApplicationFiled: November 26, 2014Publication date: May 21, 2015Inventors: Gerald Stelzer, Rainer Meinke, Mark Senti
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Publication number: 20150137920Abstract: A conductor assembly and method for constructing an assembly of the type which, when conducting current, generates a magnetic field or which, in the presence of a changing magnetic field, induces a voltage. In one embodiment the method provides a first insulative layer tubular in shape and including a surface along which a conductor segment may be positioned. A channel formed in the surface of the insulative layer defines a first conductor path and includes a surface of first contour in cross section along a first plane transverse to the conductor path. A segment of conductor having a surface of second contour in cross section is positioned at least partly in the channel and extends along the conductor path. Along the first plane, contact between the conductor surface of second contour and the channel surface of first contour includes at least two separate regions of contact.Type: ApplicationFiled: November 26, 2014Publication date: May 21, 2015Inventors: Gerald Stelzer, Rainer Meinke, Mark Senti
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Publication number: 20150123490Abstract: An electromagnetic connector is disclosed that is configured to form a first magnetic circuit portion comprising a first core member and a first coil disposed of the first core member. The electromagnetic connector is configured to mate with a second electromagnetic connector, where the second electromagnetic connector is configured to form a second magnetic circuit portion comprising a second core member and a second coil disposed of the second core member. The first core member and the second core member are configured to couple the first coil to the second coil with a magnetic circuit formed from the first magnetic circuit portion and the second magnetic circuit portion when the electromagnetic connector is mated with the second electromagnetic connector. The magnetic circuit is configured to induce a signal in the first coil when the second coil is energized.Type: ApplicationFiled: January 15, 2015Publication date: May 7, 2015Inventors: Albert Rooyakkers, James G. Calvin
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Publication number: 20150116063Abstract: A conductive structure for an electromagnetic device includes a conductive sheet and a plurality of protrusions. The conductive sheet includes two electrical connection terminals. The protrusions are arranged between the electrical connection terminals. The protrusions include a support. The support is connected to the conductive sheet. Adjacent two of the protrusions define a first heat dissipation passage.Type: ApplicationFiled: July 31, 2014Publication date: April 30, 2015Inventors: Teng LIU, Ai-Xing TONG
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Patent number: 8965468Abstract: A persistent-mode High Temperature Superconductor (HTS) shim coil is provided having at least one rectangular shaped thin sheet of HTS, wherein the thin sheet of HTS contains a first long portion, a second long portion parallel to first long portion, a first end, and a second end parallel to the first end. The rectangular shaped thin sheet of high-temperature superconductor has a hollow center and forms a continuous loop. In addition, the first end and the second end are folded toward each other forming two rings, and the thin sheet of high-temperature superconductor has a radial build that is less than 5 millimeters (mm) and able to withstand very strong magnetic field ranges of greater than approximately 12 Tesla (T) within a center-portion of a superconducting magnet of a superconducting magnet assembly.Type: GrantFiled: October 25, 2012Date of Patent: February 24, 2015Assignee: Massachusetts Institute of TechnologyInventor: Yukikazu Iwasa
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Publication number: 20150042429Abstract: A magnetic field distribution control apparatus includes a rod portion, a coil disposed at one side of an upper surface of the rod portion, and a ferrite movably disposed within the coil and configured to produce a magnetic field.Type: ApplicationFiled: December 18, 2013Publication date: February 12, 2015Applicant: HYUNDAI MOTOR COMPANYInventor: Heejin LEE
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Patent number: 8951364Abstract: The invention relates to an Fe—Co alloy, the composition of which comprises in % by weight: 6?Co+Ni?22 Si?0.2 0.5?Cr?8 Ni?4 0.10?Mn?0.90 Al?4 Ti?1 C?1 Mo?3 V+W?3 Nb+Ta?1 Si+Al?6 O+N+S+P+B?0.1 the balance of the composition consisting of iron and inevitable impurities due to the smelting, it being furthermore understood that the contents thereof satisfy the following relationships: Co+Si?Cr?27 Si+Al+Cr+V+Mo+Ti?3.5 1.23(Al+Mo)+0.84(Si+Cr+V)?1.3 14.5(Al+Cr)+12(V+Mo)+25 Si?50.Type: GrantFiled: January 14, 2009Date of Patent: February 10, 2015Assignee: Aperam Alloys ImphyInventors: Thierry Waeckerle, Herve Fraisse
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Patent number: 8952775Abstract: A superconductive magnet includes a superconductive coil that is an air-core coil; a pair of bobbin bodies that support the superconductive coil while interposing the superconductive coil therebetween on both sides of a center axial line direction of the superconductive coil; an outer circumference-side binding portion that extends in the center axial line direction on an outer circumferential side of the superconductive coil to bind the pair of bobbin bodies; and a belt-shaped or a wire-shaped inner circumference-side tension imparted portion which extends in the center axial line direction on an inner circumferential side of the superconductive coil to connect the pair of bobbin bodies, and on which tension is imparted in the center axial line direction.Type: GrantFiled: April 18, 2014Date of Patent: February 10, 2015Assignee: Sumitomo Heavy Industries, Ltd.Inventor: Hitoshi Mitsubori
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Patent number: 8952773Abstract: A device for the creation of propulsive force comprising a magnet, such as a permanent magnet or a superconductive solenoid, fixedly mounted at the narrow end of a converging nozzle made of a superconductor, such as a type II superconductor, e.g. like the rare earth Ba—Cu—O superconductors Sm—Ba—Cu—O or Y—Ba—Cu—O. The magnetic field generated by the interaction of the magnet with the superconducting nozzle due to Meissner effect, acts in the form of pressure on nozzle thereby producing a propulsive force directed toward the nozzle's converging end. The propulsive force being developed may be used for propelling or actuating any machine or vehicle, as well as in the production of energy.Type: GrantFiled: November 14, 2011Date of Patent: February 10, 2015Inventor: Athanassios A. Nassikas
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Patent number: 8932517Abstract: A process for production of a packed soft magnetic component, comprises the steps of:—preparing a rotational mold, consisting of at least one mold cavity connected to a driven rotational axle, arranging a coil in the mold, filling the at least one mold cavity with a binder and a soft magnetic, metallic material in the form of a powder,—driving the axle for rotation of said at least one mold, whereby the soft magnetic, metallic material is packed by centrifugal forces to one side of said at least one mold cavity, mixed with the binder, thus forming a component comprising a soft magnetic composite with a coil embedded therein.Type: GrantFiled: October 16, 2008Date of Patent: January 13, 2015Assignee: Magnetic Components Sweden ABInventor: Mats Alaküla
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Patent number: 8902030Abstract: Device for generating an orientable and locally uniform magnetic field, including N?3 identical assemblies of cylindrical coils, each assemblies having a first and a second coil, the coils being coaxial with an axis oriented along a direction z and arranged symmetrically on either side of the plane, with a gap in the axial direction, the assemblies arranged such that their outlines in a plane xy perpendicular to the z-axis are regularly spaced along a circle of center O and of radius a0>0, so to leave a central free space. A supply system supplies the coils with a current set to obtain, at the center of the device, a magnetic field having the desired orientation. The device may include two pairs of cylindrical coils having a common axis oriented in said z-direction and passing through the center of the circle, these coils being arranged symmetrically on either side of said xy-plane.Type: GrantFiled: December 13, 2013Date of Patent: December 2, 2014Assignee: Commissariat a l'energie Atomique et aux Energies AlternativesInventor: Guy Aubert
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Patent number: 8886266Abstract: A superconducting coil and a rotating device, the performances of which are improved, and a superconducting coil manufacturing method are provided. A superconducting coil 10 is a saddle-shaped superconducting coil formed by winding a superconducting wire so as to form a race-track-like shape. The superconducting coil includes a curved portion 10b and a straight portion 10a connected to the curved portion 10b. In the curved portion 10b, an upper edge 10c is positioned closer to an inner peripheral side than a lower edge 10d is, and in the straight portion 10a, the upper edge 10c is positioned closer to an outer peripheral side than the lower edge 10d is.Type: GrantFiled: June 21, 2010Date of Patent: November 11, 2014Assignee: Sumitomo Electric Industries, Ltd.Inventors: Tsuyoshi Shinzato, Hitoshi Oyama, Yutaka Komatsu, Takeshi Baba, Takeshi Ariyoshi
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Patent number: 8857044Abstract: An system for manufacturing a field emission structure is provided that involves a magnet supplying device and a magnet placement device for placing each of a plurality of magnets at a corresponding location of a plurality of locations of the field emission structure. The corresponding location and a corresponding orientation of each of the magnets relative to each other are defined in accordance with a code that specifies at least one magnet of the plurality of magnets having a first polarity orientation and at least one other magnet of the plurality of magnets having a second polarity orientation that is opposite from the first polarity orientation.Type: GrantFiled: December 18, 2012Date of Patent: October 14, 2014Assignee: Correlated Magnetics Research LLCInventors: Larry W. Fullerton, Mark D. Roberts
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Patent number: 8838202Abstract: Particle radiation therapy equipment arranged to apply a charged particle beam to a region of application in a predetermined direction, comprising a charged particle beam source arranged to direct a charged particle beam in the predetermined direction, further comprising magnetic field generation means for generating a magnetic field in an imaging volume which includes the region of application at the same time that the charged particle beam is applied, wherein the magnetic field generation means is arranged to provide access to the region of application for the charged particle beam, and to provide a homogeneous magnetic field in the region of application of the charged particle beam, said magnetic field being directed substantially in the predetermined direction.Type: GrantFiled: June 16, 2006Date of Patent: September 16, 2014Assignee: Siemens PlcInventor: Marcel Jan Marie Kruip
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Publication number: 20140225695Abstract: According to one embodiment, a coil terminal is electrically connected to a coil being wound around an electromagnetic block and connected to a coated wire. The coil terminal includes a connection portion electrically connected to the coil, and a terminal body portion extending from the connection portion and connected to the coated wire. The terminal body portion includes a slit formed in the longitudinal direction of the coated wire from one end to the other end of the terminal body portion, a base portion formed on the other end of the coil terminal, and a pair of parallel beam portions extending toward one end of the coil terminal from the base portion with the slit interposed between the pair of beam portions. The pair of beam portions may protrude in a thickness direction of the terminal body portion. The coated wire may be disposed within the slit and a core wire at the tip end of the coated wire may be soldered to the base portion.Type: ApplicationFiled: April 16, 2014Publication date: August 14, 2014Applicant: PANASONIC CORPORATIONInventor: Tsukasa NISHIMURA
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Publication number: 20140218145Abstract: An electromagnet comprising a ferromagnetic yoke which comprises a yoke. Mutually opposing first and second pole pieces are provided. The first pole piece is provided with a planar coil having a first side facing the yoke and a second side facing the yoke. A balancing member is arranged on the second side of the planar coil to counterbalance the attractive force between the planar coil and the yoke. The other pole piece may also be provided with a corresponding balancing member.Type: ApplicationFiled: April 10, 2014Publication date: August 7, 2014Applicant: Emscan LimitedInventors: John Vincent Mario McGinley, Mihailo Ristic, Colin Bowden Besant, Ian Robert Young
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Patent number: 8797134Abstract: Disclosed is a field coil assembly of an electromagnetic clutch including a bobbin from which lead wires, which are both ends of a coil made of an aluminum-based material, protrude outward, a core that surrounds the bobbin such that the lead wires are exposed, a bobbin terminal installed at the bobbin while being adjacent to the lead wire of the coil, and a connector coupled to the core and including a lead wire terminal. The lead wires of the coil are connected to the bobbin terminal through heating and pressing.Type: GrantFiled: December 20, 2010Date of Patent: August 5, 2014Assignee: Halla Visteon Climate Control CorporationInventors: Sung-Taeg Oh, Seong-Gyu Gong, Suk-Jae Chung, Seung-Kil Kim, Chung-Han Shin, Jong-Myung Seok, Dae-Yong Park
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Publication number: 20140203899Abstract: An electromagnet includes a core and a wire wound on the core. The wire includes an electric conductor and a magnetic layer provided on a surface of the electric conductor.Type: ApplicationFiled: March 27, 2014Publication date: July 24, 2014Applicants: Furukawa Magnet Wire Co., Ltd., Furukawa Electric Co., Ltd.Inventors: Kengo TANAKA, Noriyoshi FUSHIMI