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公开(公告)号:US2734478A
公开(公告)日:1956-02-14
申请号:US2734478D
IPC: H01B13/00
CPC classification number: H01B13/0026
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公开(公告)号:US12054626B2
公开(公告)日:2024-08-06
申请号:US16779847
申请日:2020-02-03
Inventor: Michael Grouchko , Shlomo Magdassi
CPC classification number: C09D11/52 , C08K5/098 , H01B1/22 , H01B13/0016 , H01B13/0026 , H01B13/003 , H05K1/097 , H05K2203/1131 , Y10T428/24909
Abstract: Provided herein are novel ink formulations based on metal salts and metal complexes.
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公开(公告)号:US11923105B2
公开(公告)日:2024-03-05
申请号:US17887844
申请日:2022-08-15
Applicant: The University of Houston System
Inventor: Goran Majkic , Venkat Selvamanickam
IPC: H01B12/06 , C23C16/02 , C23C16/40 , C23C16/448 , C23C16/54 , H01B13/00 , H01B13/008 , H10N60/01
CPC classification number: H01B12/06 , C23C16/0209 , C23C16/408 , C23C16/448 , C23C16/545 , H01B13/00 , H01B13/0026 , H01B13/008 , H10N60/0464
Abstract: An MOCVD system fabricates high quality superconductor tapes with variable thicknesses. The MOCVD system can include a gas flow chamber between two parallel channels in a housing. A substrate tape is heated and then passed through the MOCVD housing such that the gas flow is perpendicular to the tape's surface. Precursors are injected into the gas flow for deposition on the substrate tape. In this way, superconductor tapes can be fabricated with variable thicknesses, uniform precursor deposition, and high critical current densities.
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公开(公告)号:US20230352213A1
公开(公告)日:2023-11-02
申请号:US18306685
申请日:2023-04-25
Applicant: NKT HV Cables AB
Inventor: Christoffer Dahl Ryde , Håkan Sandell , Andreas Tyrberg , Andreas Persberg , Sonny Långström , Tommy Johansson , Amir Pourrahimi
CPC classification number: H01B7/2825 , H01B7/14 , H01B7/1895 , H01B13/0016 , H01B13/0026 , H01B13/221 , H01B13/245 , H01B3/18
Abstract: A power cable including: a conductor, an insulation system including an inner semiconducting layer arranged around the conductor, an insulation layer arranged around the inner semiconducting layer, and an outer semiconducting layer arranged around the insulation layer, an elastic mechanical support layer arranged around the outer semiconducting layer, a metallic water blocking layer having a longitudinal weld seam, the metallic water blocking layer being arranged around the mechanical support layer, wherein the mechanical support layer is permanently thermally expanded radially as a result of a heat treatment process, thereby mechanically supporting the metallic water blocking layer.
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公开(公告)号:US20180228024A1
公开(公告)日:2018-08-09
申请号:US15942159
申请日:2018-03-30
Applicant: Apple Inc.
Inventor: Daniel D. Sunshine , Daniel A. Podhajny , Kathryn P. Crews , Kirk M. Mayer , John Arthur Maasberg
CPC classification number: H05K1/038 , C23C18/16 , C23C18/1633 , C25D7/0607 , H01B13/0026 , H01B13/0036 , H05K3/103 , H05K2201/0281
Abstract: Strands of material may be intertwined using weaving techniques, knitting techniques, non-woven or entanglement techniques, or braiding techniques. Fabric that is formed from the strands of material may be used in forming a fabric-based item. The fabric based item may include electrical components. The strands may include conductive strands that form signal paths. The signal paths can carry electrical signals associated with operation of the electrical components. Each strand may have an elongated core and a coating. Strands may also include intermediate layers between the cores and coatings. The cores, intermediate layers, and coatings may be formed from polymer without conductive filler, polymer with conductive filler, and/or metal. A polymer core may be provided with recesses to help retain subsequently deposited layers such as a metal coating layer. The recesses may be grooves that extend along the longitudinal axis of the core.
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46.
公开(公告)号:US09991687B2
公开(公告)日:2018-06-05
申请号:US14649131
申请日:2013-01-31
Applicant: ABB HV CABLES (SWITZERLAND) GMBH
Inventor: Carl-Olof Olsson , Markus Saltzer , Anders Lindgren
IPC: H02G15/18 , H02G1/14 , H02G1/16 , H02G1/12 , H02G15/00 , H01B13/00 , H01B13/016 , H02G15/068 , H02G15/188
CPC classification number: H02G1/14 , H01B13/0016 , H01B13/0026 , H01B13/0162 , H01B13/0165 , H02G1/12 , H02G1/16 , H02G15/003 , H02G15/068 , H02G15/18 , H02G15/188 , Y10T29/49119 , Y10T29/49123
Abstract: A method in the manufacturing of an insulated electric high voltage DC termination or joint includes the steps of providing an insulated electric high voltage DC cable including an inner conductor; a polymer based insulation system, the polymer based insulation system comprising an insulation layer and a semiconducting layer; and an outer grounding layer; removing the grounding layer and the semiconducting layer in at least one end portion of the high voltage DC cable, thereby exposing the insulation layer in the at least one end portion of the high voltage DC cable; covering the insulation layer of the polymer based insulation system in the at least one end portion of the high voltage DC cable by a cover impermeable to at least one substance present in the insulation layer of the polymer based insulation system in the at least one end portion of the high voltage DC cable in a non-homogenous distribution; subjecting the insulation layer of the polymer based insulation system in the at least one end portion of the high voltage DC cable for a heat treatment procedure, while being covered by the cover, thereby equalizing the concentration of the at least one substance in the insulation layer of the polymer based insulation system in the at least one end portion of the high voltage DC cable; and removing the cover. Instead of using a temporary cover, which is later removed, as the impermeable barrier, a field grading adapter or joint body mounted at the end of the DC cable during the manufacturing of the high voltage DC termination or joint may be used.
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公开(公告)号:US09955585B2
公开(公告)日:2018-04-24
申请号:US14801137
申请日:2015-07-16
Applicant: Konica Minolta, Inc.
Inventor: Keita Saito , Midori Shimomura , Dai Suwama , Sayaka Morita
CPC classification number: H05K3/1283 , B05C5/0204 , H01B13/0026 , H05K1/097 , H05K2201/0145 , H05K2201/083 , H05K2203/102 , H05K2203/1131 , H05K2203/1545
Abstract: A conductive pattern production device includes: a patterning unit that forms a pattern of a composite ink on a base member; and a burning unit that burns the pattern by high-frequency heating. The composite ink is obtained by mixing a particle material that is a material having a relative permeability of 200 or above or a carbon micro-coil and a conductive ink that has, after the burning, a resistivity of 1 to 2000 μΩ·cm.
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48.
公开(公告)号:US20180082764A1
公开(公告)日:2018-03-22
申请号:US15564442
申请日:2016-12-15
Inventor: IKUYA WAKAMORI , KENGO NAKAMURA , MUTSUYASU OHTSUBO
CPC classification number: H01B5/00 , B23K11/115 , B23K11/14 , B23K11/16 , B23K2101/38 , B23K2103/12 , H01B13/0026 , H01R4/023 , H01R43/0214 , H05K3/20 , H05K3/328
Abstract: A conductor assembly includes a first conductor made of metal and a second conductor bonded to the first conductor. The second conductor is made of a metal plate having first and second surfaces opposite to each other. The second conductor has a projection locally projecting from the first surface. A recess is provided in the second surface of the second conductor opposite to the projection. The projection of the second conductor has a portion contacting and entering into the first conductor. The projection of the second conductor is resistance-welded to the first conductor. The portion of the projection of the second conductor has two tips locally projecting from the portion of the projection of the second conductor and entering the first conductor.
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公开(公告)号:US20180057939A1
公开(公告)日:2018-03-01
申请号:US15646051
申请日:2017-07-10
Inventor: Sun Jin YUN , JungWook LIM
CPC classification number: C23C16/45525 , C23C14/08 , C23C14/14 , C23C14/205 , C23C14/352 , C23C14/562 , C23C14/568 , C23C16/06 , C23C16/40 , C23C16/45536 , C23C16/50 , C23C16/545 , H01B13/0026 , H01B13/0036 , H01L31/1884
Abstract: The present disclosure relates to a manufacturing method of a transparent electrode, and more particularly, to a manufacturing method of a transparent electrode by using a roll-to-roll type transparent electrode manufacturing apparatus including at least one atomic layer deposition module, the method comprises: performing a first atomic layer deposition process to respectively form first and second protection layers on a first surface of a flexible substrate and on a second surface opposite to the first surface; performing a second atomic layer deposition process to form a first oxide layer on the first protection layer; forming a metal layer on the first oxide layer; and forming a second oxide layer on the metal flim, wherein each of the performing the first atomic layer deposition process and the second atomic layer deposition process includes using the at least one atomic layer deposition module.
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公开(公告)号:US09786412B2
公开(公告)日:2017-10-10
申请号:US14662509
申请日:2015-03-19
Applicant: Tyco Electronics Corporation
Inventor: Harry Yaworski , James Head , Alan Tse , Miguel Contreras
CPC classification number: H01B7/2825 , H01B7/1855 , H01B13/0026 , H01B13/221 , H01B13/262 , H02G1/14 , H02G15/08
Abstract: A sealed cabled assembly includes a cable and a cable moisture seal assembly. The cable includes a cable subcore, a metal shield layer surrounding the cable subcore, and a jacket surrounding the metal shield layer. The cable subcore includes an electrical conductor surrounded by an electrical insulation layer. The cable moisture seal assembly includes a sealant, a electrically conductive jumper member, and an outer sleeve. The cable includes a sealing region section extending from a first axial end to a second axial end, and in which a section of the jacket and a section of the metal shield layer are removed to expose a section of the cable subcore. The insulation layer and the conductor extend through the sealing region section. First and second sections of the jacket extend away from the sealing region section in first and second opposed directions, respectively. First and second sections of the metal shield layer extend away from the sealing region section in the first and second opposed directions, respectively. The outer sleeve surrounds the sealing region section. The sealant is disposed radially between the cable subcore and the outer sleeve, and engages the cable subcore to form a moisture barrier in the sealing region section between the first and second sections of the jacket. The jumper member electrically connects the first and second sections of the metal shield layer.
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