Electrolytic Device Making (e.g., Capacitor) Patents (Class 29/25.03)
  • Patent number: 8317882
    Abstract: A method for fabricating a pair of large surface area planar electrodes. The method includes forming a first template above a first substrate, the first template having a first plurality of pores, coating the first plurality of pores of the first template with a first layer of conducting material to form a first electrode, placing the first plurality of pores of the first electrode in proximity to a second electrode, thereby forming a gap between the first plurality of pores and the second electrode, and filling the gap with an electrolyte material.
    Type: Grant
    Filed: July 24, 2009
    Date of Patent: November 27, 2012
    Assignee: Robert Bosch GmbH
    Inventors: Po-Jui Chen, Gary Yama, Matthieu Liger, Matthias Illing
  • Publication number: 20120293918
    Abstract: A solid electrolytic capacitor includes an anode body, an anode extraction layer, a dielectric layer, a first electrolyte layer, an electrical insulator, and a cathode layer. The anode extraction layer is formed on the outer circumference of the anode body. The dielectric layer is formed on a region in the outer circumference of the anode body different from a region on which the anode extraction layer is formed. The first electrolyte layer is formed on the dielectric layer. The electrical insulator is placed between the anode extraction layer and the first electrolyte layer. The cathode layer is formed on the first electrolyte layer, and is spaced apart from the anode extraction layer.
    Type: Application
    Filed: May 16, 2012
    Publication date: November 22, 2012
    Applicant: SANYO ELECTRIC CO., LTD.
    Inventors: Takaaki Uchiyama, Masatomo Bando, Kazuyoshi Murata
  • Publication number: 20120293911
    Abstract: Technologies and implementations for graphene integrated energy storage devices having capacitive-like properties are generally disclosed.
    Type: Application
    Filed: May 17, 2011
    Publication date: November 22, 2012
    Applicant: EMPIRE TECHNOLOGY DEVELOPMENT LLC
    Inventors: Sung-wei Chen, Chris Rothfuss
  • Patent number: 8313538
    Abstract: The invention relates to a process for the production of electrolyte capacitors having a low equivalent series resistance and low residual current for high nominal voltages, electrolyte capacitors produced by this process and the use of such electrolyte capacitors.
    Type: Grant
    Filed: September 13, 2006
    Date of Patent: November 20, 2012
    Assignee: Heraeus Precious Metals GmbH & Co. KG
    Inventors: Udo Merker, Wilfried Lövenich, Klaus Wussow
  • Publication number: 20120284978
    Abstract: Provided is a method of manufacturing a solid electrolytic capacitor including a capacitor element, the capacitor element having an anode body with a dielectric coating film formed on a surface thereof and a solid electrolyte made of a conductive polymer. The method includes the steps of: forming the capacitor element having the anode body with the dielectric coating film formed on the surface thereof; preparing a polymerization liquid A containing one of a monomer as a precursor of the conductive polymer and an oxidant, and a silane compound; preparing a polymerization liquid B by adding the other of the monomer and the oxidant that is not contained in polymerization liquid A, to polymerization liquid A; and performing polymerization after impregnating the capacitor element with polymerization liquid B.
    Type: Application
    Filed: July 23, 2012
    Publication date: November 15, 2012
    Applicants: SAGA SANYO INDUSTRIES CO., LTD., SANYO ELECTRIC CO., LTD.
    Inventors: Takeshi Furukawa, Yuichiro Inutsuka
  • Patent number: 8308825
    Abstract: A method for treating anodes of refractory valve metals by deoxidizing the anodes using Mg in an oven, prior to sintering. The process limits free oxygen in the metal compact and improves performance of a capacitor, especially with regards to rated voltage.
    Type: Grant
    Filed: December 11, 2009
    Date of Patent: November 13, 2012
    Assignee: Kemet Electronics Corporation
    Inventors: Yuri Freeman, Philip M. Lessner, Jeffrey Poltorak, Steven C. Hussey
  • Patent number: 8310817
    Abstract: In a solid electrolytic capacitor, a path of an electric current flowing from a lower layer to an upper layer of a laminate in cathode portions of respective capacitor elements connected through an electroconductive adhesive layer is opposite to paths of electric currents flowing from a canopy through joints to cathode terminals, thereby achieving reduction in ESL by mutual inductance effect in a simple structure. Since the solid electrolytic capacitor has the structure in which the laminate is surrounded by the canopy and joints, sufficient pressure resistance is ensured for the capacitor elements during resin injection. For this reason, a resin mold to cover the laminate can be formed by transfer molding, which ensures excellent heat resistance and moisture resistance.
    Type: Grant
    Filed: July 2, 2009
    Date of Patent: November 13, 2012
    Assignee: TDK Corporation
    Inventors: Masaaki Kobayashi, Hironori Sato
  • Patent number: 8310810
    Abstract: The present invention relates to an electric double-layer capacitor and a method for producing same capable of evenly and rapidly doping a negative electrode layer with lithium ions. The electric double-layer capacitor comprises: a positive electrode including a positive electrode layer formed on one surface of a positive electrode current collector; a negative electrode including a negative electrode layer formed on one surface of a negative electrode current collector; a first separator disposed between the positive electrode layer and the negative electrode layer; and a second separator disposed between the positive electrode current collector and the negative electrode current collector, in which the negative electrode includes holes penetrating through the negative electrode current collector and reaching the negative electrode layer.
    Type: Grant
    Filed: November 5, 2008
    Date of Patent: November 13, 2012
    Assignee: Mitsubishi Electric Corporation
    Inventors: Osamu Hiroi, Daigo Takemura, Kenro Mitsuda, Shigeru Aihara, Kazuki Kubo, Yasushi Uehara
  • Patent number: 8302270
    Abstract: A method of manufacturing a capacitor-embedded printed circuit board that includes fabricating a capacitor substrate having at least one inner electrode formed on one side of a dielectric layer; aligning a semi-cured insulation layer with one side of a core layer, and aligning the capacitor substrate with the semi-cured insulation layer such that the inner electrode faces the semi-cured insulation layer; and collectively stacking the core layer, the semi-cured insulation layer, and the capacitor substrate.
    Type: Grant
    Filed: January 10, 2011
    Date of Patent: November 6, 2012
    Assignee: Samsung Electro-Mechanics Co., Ltd.
    Inventors: Woon-Chun Kim, Sung Yi, Hwa-Sun Park, Hong-Won Kim, Dae-Jun Kim, Jin-Seon Park
  • Publication number: 20120275083
    Abstract: A solid electrolytic capacitor includes: a porous sintered body; an anode wire extending in a first direction and connected to the porous sintered body such that one end portion of the anode wire in the first direction is exposed; a resin package covering the porous sintered body and the anode wire; and a lead including a terminal exposed from the resin package and a lead side connector connected to the terminal. The anode wire includes a base and a connector placed at one side of the base in the first direction, a sectional area of the connector is smaller than that of the base, and the connector and the lead side connector are welded together.
    Type: Application
    Filed: April 25, 2012
    Publication date: November 1, 2012
    Applicant: ROHM CO., LTD.
    Inventors: Takafumi YAMANAKA, Naotsugu SUGIMURA
  • Patent number: 8291585
    Abstract: A chip element in the form of a substantially rectangular parallelepiped having end surfaces and side surfaces is formed (step of forming chip element). An electrically conductive green sheet is formed (step of forming electrically conductive green sheet). An electrically conductive paste is applied to the end surfaces of the chip element (step of application electrically conductive paste). A chip element is formed in which the electrically conductive green sheet is attached to the end surface via the electrically conductive paste applied to the end surface of the chip element (step of attaching electrically conductive sheet). In the step of attaching, the end surface of the electrically conductive green sheet on the side of the side surfaces is positioned on the outside of the side surfaces, and the electrically conductive paste applied to the end surface is pressed out into a space between the electrically conductive green sheet and ridge portions.
    Type: Grant
    Filed: August 21, 2008
    Date of Patent: October 23, 2012
    Assignee: TDK Corporation
    Inventors: Ko Onodera, Satoshi Kurimoto, Hisayuki Abe, Taketo Sasaki, Yoji Tozawa, Osamu Hirose
  • Patent number: 8295032
    Abstract: The present invention provides a solid electrolytic capacitor having sufficiently low impedance at high frequencies in which a conductive polymer formed on a dielectric oxide film has good adherence to the dielectric oxide film, and a manufacturing method of the solid electrolytic capacitor. The solid electrolytic capacitor of the present invention includes a valve metal; a dielectric oxide film layer formed on a surface of the valve metal; and a solid electrolyte layer, comprising a conductive polymer layer, formed on the dielectric oxide film layer. The conductive polymer layer contains, as an additive, 0.1 wt % to 30 wt % of an organic oligomer having an average degree of polymerization of 2 to 100.
    Type: Grant
    Filed: November 20, 2008
    Date of Patent: October 23, 2012
    Assignee: NEC Tokin Corporation
    Inventors: Yasuhisa Sugawara, Masako Ohya, Kazuyuki Katoh
  • Publication number: 20120262845
    Abstract: The present invention relates to a magnesium capacitor including: a cathode including a carbon material as an active material; an anode including magnesium and its alloys as active materials; and an electrolyte. Since the magnesium capacitor in accordance with the present invention can use magnesium metal and its alloys as anode materials, a separate pre-doping process of magnesium metal is not needed. Further, it is possible to provide a magnesium capacitor that can be charged and discharged in a predetermined range as well as overcome reduction in stability due to leakage of an electrolyte occurred when using lithium ions as an anode material in the prior art.
    Type: Application
    Filed: January 24, 2012
    Publication date: October 18, 2012
    Inventors: Sang Kyun LEE, Ji Sung CHO, Bae Kyun KIM
  • Publication number: 20120262846
    Abstract: A solid electrolytic capacitor with suppressed occurrence of short circuit is provided. The solid electrolytic capacitor includes an anode body having a surface on which a dielectric film is formed, and a conductive polymer layer formed on the dielectric film. The conductive polymer layer includes at least a first conductive polymer layer formed on the dielectric film and a second conductive polymer layer formed on the first conductive polymer layer. A silane compound in the first conductive polymer layer and the silane compound in the second conductive polymer layer have respective concentrations different from each other.
    Type: Application
    Filed: June 21, 2012
    Publication date: October 18, 2012
    Applicants: SAGA SANYO INDUSTRIES CO., LTD., SANYO ELECTRIC CO., LTD.
    Inventors: Nobuyuki Yamaguchi, Koji Fukuchi, Yasuhiro Tsunezumi
  • Publication number: 20120260478
    Abstract: To suppress decomposition of lithium cobalt oxide and formation of a decomposition product. To suppress the reaction between oxygen in lithium cobalt oxide and a current collector. To obtain a power storage device having high charge and discharge capacity. In a method for manufacturing a power storage device, in forming a lithium cobalt oxide layer over a positive electrode current collector by a sputtering method using a target containing lithium cobalt oxide and a sputtering gas containing Ar, the positive electrode current collector is heated at a temperature at which c-axes of crystals of lithium cobalt oxide are aligned and cobalt oxide is not formed. The heating temperature of the positive electrode current collector is higher than or equal to 400° C. and lower than 600° C.
    Type: Application
    Filed: March 30, 2012
    Publication date: October 18, 2012
    Applicant: SEMICONDUCTOR ENERGY LABORATORY CO., LTD.
    Inventor: Kazutaka KURIKI
  • Patent number: 8287604
    Abstract: A capacitor includes a plurality of nanochannels formed in a dielectric material. A conductive film is formed over interior surfaces of the nanochannels, and a charge barrier is formed over the conductive film. An electrolytic solution is disposed in the nanochannels. An electrode is coupled to the electrolytic solution in the nanochannels to form the capacitor.
    Type: Grant
    Filed: February 3, 2010
    Date of Patent: October 16, 2012
    Assignee: International Business Machines Corporation
    Inventors: Richard A. Haight, Stephen M. Rossnagel
  • Publication number: 20120257326
    Abstract: An electric double layer capacitor comprises first and second electrodes, each comprising respective first and second carbon materials having distinct pore size distributions. A pore volume ratio of the first carbon material is greater than a pore volume ratio of the second carbon material. The pore volume ratio R is defined as R=V1/V, where V1 is a total volume of pores having a pore size of less than 1 nm, and V is a total volume of pores having a pore size greater than 1 nm.
    Type: Application
    Filed: April 7, 2011
    Publication date: October 11, 2012
    Inventors: Kishor Purushottam Gadkaree, Kamjula Pattabhirami Reddy
  • Publication number: 20120257329
    Abstract: A capacitor assembly for use in high voltage and high temperature environments is provided. More particularly, the capacitor assembly includes a capacitor element containing an anodically oxidized porous, sintered body that is coated with a manganese oxide solid electrolyte. To help facilitate the use of the capacitor assembly in high voltage (e.g., above about 35 volts) and high temperature (e.g., above about 175° C.) applications, the capacitor element is enclosed and hermetically sealed within a housing in the presence of a gaseous atmosphere that contains an inert gas.
    Type: Application
    Filed: December 7, 2011
    Publication date: October 11, 2012
    Applicant: AVX CORPORATION
    Inventors: Martin Biler, Jan Petrzilek, Ivana Zednickova
  • Publication number: 20120250227
    Abstract: Provided are a tantalum solid electrolytic capacitor having a reduced leakage current and a method for manufacturing the tantalum solid electrolytic capacitor. A dielectric layer of the solid electrolytic capacitor includes a first dielectric layer in contact with an anode and a second dielectric layer covering the first dielectric layer and making contact with an electrolyte layer. The first dielectric layer is made of an oxide of the anode, the oxide consisting essentially of an amorphous component. The second dielectric layer is formed of dielectric particles having a higher dielectric constant than the first dielectric layer. The dielectric particles includes first dielectric particles in contact with the first dielectric layer and second dielectric particles out of contact with the first dielectric layer. The first dielectric particles have a smaller average particle diameter than the second dielectric particles.
    Type: Application
    Filed: March 26, 2012
    Publication date: October 4, 2012
    Applicant: SANYO ELECTRIC CO., LTD.
    Inventors: Tomohiro MITSUYAMA, Toshiyuki KATO
  • Publication number: 20120250223
    Abstract: An energy storage device includes a first conductor having a first surface and a second surface. The energy storage device also includes a second conductor and a separator assembly that encloses the first conductor and that is disposed between the first and second conductors. The separator assembly also includes a first portion that covers the first surface and a second portion that covers the second surface. The first and second portions are attached to one another, and at least one of the first and second portions includes a first sheet and a second sheet that are attached to one another. The first sheet includes a first material, and the second sheet includes a second material that is different from the first material.
    Type: Application
    Filed: June 8, 2012
    Publication date: October 4, 2012
    Applicant: Medtronic, Inc.
    Inventors: Christian S. Nielsen, Timothy T. Bomstad, Frank T. Greenwald
  • Patent number: 8279584
    Abstract: A capacitor assembly that includes a solid electrolytic capacitor element containing an anode body, a dielectric overlying the anode, and a solid electrolyte (e.g., conductive polymer) overlying the dielectric is provided. The anode body is in electrical contact with an anode termination and the solid electrolyte is in electrical contact with a cathode termination. The capacitor element and terminations are encapsulated within a resinous material so that at least a portion of the terminations remain exposed. In addition to enhancing mechanical robustness, the resinous encapsulating material acts in some capacity as a barrier to moisture and oxygen during use, which could otherwise reduce the conductivity of the solid electrolyte and increase ESR. To even further protect the capacitor element, especially at high temperatures, the encapsulated capacitor element is also enclosed and hermetically sealed within a ceramic housing in the presence of an inert gas.
    Type: Grant
    Filed: August 12, 2010
    Date of Patent: October 2, 2012
    Assignee: AVX Corporation
    Inventor: Ivana Zednickova
  • Patent number: 8273135
    Abstract: Provided is a method of manufacturing a solid electrolytic capacitor including a capacitor element, the capacitor element having an anode body with a dielectric coating film formed on a surface thereof and a solid electrolyte made of a conductive polymer. The method includes the steps of: forming the capacitor element having the anode body with the dielectric coating film formed on the surface thereof; preparing a polymerization liquid A containing one of a monomer as a precursor of the conductive polymer and an oxidant, and a silane compound; preparing a polymerization liquid B by adding the other of the monomer and the oxidant that is not contained in polymerization liquid A, to polymerization liquid A; and performing polymerization after impregnating the capacitor element with polymerization liquid B.
    Type: Grant
    Filed: October 6, 2009
    Date of Patent: September 25, 2012
    Assignees: SANYO Electric Co., Ltd., Saga Sanyo Industries Co., Ltd.
    Inventors: Takeshi Furukawa, Yuichiro Inutsuka
  • Publication number: 20120236465
    Abstract: As a core for winding up an anode foil, a cathode foil, and the like, such a core as exhibiting an outer shape having a long-side direction and a short-side direction in a cross-section perpendicular to a rotation central axis, with a straight line in the long-side direction passing through the rotation central axis being defined as a first centerline and with a straight line in the short-side direction passing through the rotation central axis being defined as a second centerline, the outer shape being in asymmetry in a manner at least any of first asymmetry which is asymmetry with respect to the second centerline in the long-side direction and second asymmetry which is asymmetry with respect to the first centerline in the short-side direction, is employed.
    Type: Application
    Filed: March 12, 2012
    Publication date: September 20, 2012
    Applicants: SAGA SANYO INDUSTRIES CO., LTD., SANYO ELECTRIC CO., LTD.
    Inventor: Masashi Kondo
  • Publication number: 20120233827
    Abstract: A method of manufacturing a solid electrolytic capacitor includes the steps of forming an anode element by sintering powders of a valve metal, washing the anode element with a first wash solution, forming a dielectric film on the anode element after the washing step, and forming a solid electrolytic layer on the dielectric film. The first wash solution is an aqueous solution containing ammonia and hydrogen peroxide.
    Type: Application
    Filed: March 16, 2012
    Publication date: September 20, 2012
    Applicant: SANYO ELECTRIC CO., LTD.
    Inventor: Yuji Miyachi
  • Patent number: 8268019
    Abstract: A powder compaction press having opposed rib and channel punches which are interleaved and a production method are used to produce capacitor elements having a uniform compaction density and which are free of surface imperfections.
    Type: Grant
    Filed: June 24, 2008
    Date of Patent: September 18, 2012
    Assignee: Kemet Electronics Corporation
    Inventor: Jeffrey P. Poltorak
  • Publication number: 20120229956
    Abstract: A capacitor containing a solid electrolytic capacitor element that includes an anode, dielectric, and a cathode that includes a solid electrolyte is provided. An anode lead extends from the anode and is electrically connected to an anode termination. Likewise, a cathode termination is electrically connected to the cathode. The cathode termination contains an upstanding portion that is oriented generally perpendicular to the lower surface of the capacitor element, and first and second planar portions that are oriented generally parallel to the lower surface of the capacitor. The first and second planar portions are interconnected by a folded region so that the first portion is positioned vertically above the second portion. Thus, after encapsulating the capacitor element with a molding material, the second planar portion remains exposed for subsequent connection to an electrical component.
    Type: Application
    Filed: March 11, 2011
    Publication date: September 13, 2012
    Applicant: AVX CORPORATION
    Inventor: Stanislav Zednicek
  • Publication number: 20120229957
    Abstract: A capacitor containing a solid electrolytic capacitor element that includes an anode, dielectric, and a cathode that includes a solid electrolyte is provided. An anode lead extends from the anode and is electrically connected to an anode termination. Likewise, a cathode termination is electrically connected to the cathode. The cathode termination contains a planar portion that is oriented generally parallel to a lower surface of the capacitor element. An interior slot is defined by the planar portion within which is disposed a conductive adhesive that connects the cathode termination to the capacitor element. By disposing the adhesive within a slot of a planar portion of the cathode termination, the present inventors have discovered that the tendency of the adhesive to bleed toward the edges of the termination can be limited. Among other things, this improves the mechanical stability of the capacitor upon encapsulation and also improves electrical performance.
    Type: Application
    Filed: March 11, 2011
    Publication date: September 13, 2012
    Applicant: AVX CORPORATION
    Inventor: Ales Vyroubal
  • Publication number: 20120231346
    Abstract: The invention provides n electrochemical device containing a negative electrode having a negative electrode material layer at least on a surface; a positive electrode having a positive electrode material layer at least on a surface; and a solid polymer electrolyte of fine composite particles disposed between the negative electrode and the positive electrode. Each of the fine composite particles comprises a polymer brush layer of polymer graft chains. The fine composite particles form a substantially three-dimensional ordered array structure, and a continuous ion-conductive network channel is formed in each gap of the fine particles. The negative or positive electrode or electrode material layer have gaps filled with the fine composite particles.
    Type: Application
    Filed: October 20, 2010
    Publication date: September 13, 2012
    Applicant: KYOTO UNIVERSITY
    Inventors: Yoshinobu Tsujii, Kohji Ohno, Takeshi Fukuda, Takaya Sato, Takashi Morinaga
  • Patent number: 8264819
    Abstract: The present invention relates to a solid state capacitor having a conductive polymer cathode layer counter electrode that includes an acrylate binder and a method for its manufacture. In particular the present invention relates to a solid state capacitor comprising: providing a porous anode body of valve action material; forming a dielectric layer on said porous body; forming a cathode layer in contact with the dielectric layer, which cathode layer comprises a conductive polymer and an acrylic binder; and providing an anode terminal in electrical connection with the porous body anode and a cathode terminal in electrical connection with the cathode layer and a method for its manufacture.
    Type: Grant
    Filed: August 18, 2006
    Date of Patent: September 11, 2012
    Assignee: AVX Corporation
    Inventors: Martin Biler, Zdenek Sita
  • Patent number: 8262745
    Abstract: The capacitor has a monolithic anode and at least one anode lead wire extending from the anode. At least one sacrificial lead wire extends from the anode. A dielectric layer is on said anode and a cathode layer is on the dielectric layer. The anode lead wire is in electrical contact with the anode and a cathode lead is in electrical contact with the cathode.
    Type: Grant
    Filed: July 21, 2010
    Date of Patent: September 11, 2012
    Assignee: Kemet Electronics Corporation
    Inventors: Erik Reed, David Jacobs, Randolph S. Hahn
  • Patent number: 8256077
    Abstract: A method for forming a capacitor dielectric includes depositing a tantalum oxide layer over a substrate, performing a post-treatment on the tantalum oxide layer to provide the tantalum oxide layer with a tetragonal phase, and depositing a zirconium oxide layer over the tantalum oxide layer such that the zirconium oxide layer has a tetragonal phase.
    Type: Grant
    Filed: June 14, 2010
    Date of Patent: September 4, 2012
    Assignee: Hynix Semiconductor Inc.
    Inventor: Jong-Bum Park
  • Patent number: 8256078
    Abstract: A method for forming a plurality of strips to be used for formulating high-breakdown strength and high-temperature capacitors is disclosed. The method includes forming a metalized substrate having a particular pattern, masking a portion of the metalized substrate, coating the metalized substrate with a dielectric material and removing the masking material and thus the dielectric layer from a portion of the metalized layer to form a contact surface. In lieu of placing a masking material on the metalized substrate, the exposed contact area can be formed by shielding a portion of the metalized substrate while depositing the dielectric layer.
    Type: Grant
    Filed: July 2, 2010
    Date of Patent: September 4, 2012
    Assignee: Faradox Energy Storage, Inc.
    Inventors: William M. Balliette, Keith D. Jamison
  • Patent number: 8257449
    Abstract: The present invention relates to a method for producing a niobium solid electrolytic capacitor using niobium as an anode body, which comprises a step of chemically converting the anode, wherein the chemical conversion step comprises a first chemical conversion step of forming a chemical conversion coating of the anode, a step of heating the anode body having been subjected to the first chemical conversion step, and a second chemical conversion step of once again chemically converting the heated anode body; wherein electrolytic chemical conversion is performed in the first chemical conversion step and the second chemical conversion step using a chemical conversion liquid, which contains a metal nitrate salt as an electrolyte, at a temperature from 40° C. to the boiling point of the solvent; and wherein the heating step is performed at a temperature of 150 to 300° C.
    Type: Grant
    Filed: July 28, 2009
    Date of Patent: September 4, 2012
    Assignee: Showa Denko K.K.
    Inventors: Hidenori Nakamura, Yoshinori Shibuya
  • Publication number: 20120218682
    Abstract: A solid electrolytic capacitor including an anode, a dielectric layer formed on the anode, a polyvinyl alcohol film formed on the dielectric layer, and a conductive polymer layer formed on the polyvinyl alcohol film, wherein the polyvinyl alcohol film has a cross-linked structure.
    Type: Application
    Filed: February 23, 2012
    Publication date: August 30, 2012
    Applicant: SANYO Electric Co., Ltd.
    Inventors: Keiichi KOMATSU, Koichi NISHIMURA, Fumio TATEZONO
  • Patent number: 8250747
    Abstract: A method is provided to mount a capacitor array onto a circuit board formed with first leads for connecting power lines to each other and a second lead for grounding. The method uses one of a first connection method of connecting such that first and second capacitor sections are parallel to each other, third capacitor section is in series with the parallel first and second capacitor sections; a second connection method of connecting such that the first to third capacitor sections are in series in sequence; and a third connection method of connecting such that the first and second capacitor sections are in series with each other without using the third capacitor section.
    Type: Grant
    Filed: June 29, 2010
    Date of Patent: August 28, 2012
    Assignee: TDK Corporation
    Inventor: Masaaki Togashi
  • Patent number: 8252068
    Abstract: An electrolytic capacitor is manufactured which includes at least one capacitor element having an anode portion, a dielectric film covering a part of the anode portion and a cathode portion located on the dielectric film; and a piece member attached to each anode portion. The dielectric film is formed on each of a plurality of anode portions including the anode portion. A connecting portion connecting the plurality of anode portions to each other is provided. After the step of providing the connecting portion, the cathode portion is formed on the dielectric film in order to form a plurality of capacitor elements including at least one capacitor element. After the step of forming the cathode portion, the piece member is cut out from the connecting portion in order to separate the plurality of capacitor elements from each other.
    Type: Grant
    Filed: November 18, 2010
    Date of Patent: August 28, 2012
    Assignees: SANYO Electric Co., Ltd., Saga Sanyo Industries Co., Ltd.
    Inventor: Takayuki Matsumoto
  • Patent number: 8240016
    Abstract: A method for manufacturing a multilayer electronic component includes a step of preparing a laminate which includes a plurality of stacked insulator layers and a plurality of internal electrodes extending along the interfaces between the insulator layers, and in which an end of each of the plurality of internal electrodes is exposed at a predetermined surface corresponding to one of the first and second end surfaces; a step of forming external electrodes on the predetermined surfaces; and a step of forming thick-film edge electrodes at edge portions. The step of forming external electrodes includes a step of attaching a plurality of conductive particles having a particle size of about 1 ?m or more to the predetermined surfaces of the laminate, and a step of performing plating directly on the predetermined surfaces to which the conductive particles are attached.
    Type: Grant
    Filed: April 30, 2010
    Date of Patent: August 14, 2012
    Assignee: Murata Manufacturing Co., Ltd.
    Inventors: Akihiro Motoki, Makoto Ogawa, Kenichi Kawasaki, Shunsuke Takeuchi
  • Patent number: 8243420
    Abstract: A porous conducting metal oxide electrode prepared by depositing a porous conducting metal oxide film containing a conducting metal oxide film layer having a network structure of nanofibers, containing nanograins or nanoparticles, on at least one surface of a current collector, and a conducting metal oxide coating layer on the network layer of the porous conducting metal oxide through a constant current method or a cyclic voltammetric method; and a high-speed charge/discharge and ultrahigh-capacity supercapacitor using the porous conducting metal oxide electrode are provided.
    Type: Grant
    Filed: August 11, 2008
    Date of Patent: August 14, 2012
    Assignee: Korea Institute of Science and Technology
    Inventors: Il Doo Kim, Jae-Min Hong, Seong Mu Jo, Dong Young Kim
  • Patent number: 8238079
    Abstract: A capacitor and a method for assembling a capacitor. A capacitor is assembled from a case, which contains an anode that is electrically coupled to the case and defines wells or slots receiving a plurality of cathode plates. A header is placed on the case. The header also supports a glass seal that insulates the lead tube and cathode lead coming from the cathode. Once assembled, the capacitor is filled with electrolyte. A weld extends around the header to secure the header to the case. A bent cathode configuration enables a plurality of cathode plates electrically coupled together from a common cathode plate.
    Type: Grant
    Filed: October 29, 2009
    Date of Patent: August 7, 2012
    Assignee: Tantalum Pellet Company
    Inventor: Todd Knowles
  • Patent number: 8228664
    Abstract: A solid electrolytic capacitor with suppressed occurrence of short circuit is provided. The solid electrolytic capacitor includes an anode body having a surface on which a dielectric film is formed, and a conductive polymer layer formed on the dielectric film. The conductive polymer layer includes at least a first conductive polymer layer formed on the dielectric film and a second conductive polymer layer formed on the first conductive polymer layer. A silane compound in the first conductive polymer layer and the silane compound in the second conductive polymer layer have respective concentrations different from each other.
    Type: Grant
    Filed: August 24, 2010
    Date of Patent: July 24, 2012
    Assignees: SANYO Electric Co., Ltd., Saga Sanyo Industries Co., Ltd.
    Inventors: Nobuyuki Yamaguchi, Koji Fukuchi, Yasuhiro Tsunezumi
  • Patent number: 8214984
    Abstract: A method for producing a multilayer component is described. A stack of green foils, to which inner electrodes including palladium oxide are applied, is sintered. The sintered stack is provided with a silver paste on two or more sides for outer electrodes that are burned into the sintered stack in a further temperature step.
    Type: Grant
    Filed: March 8, 2010
    Date of Patent: July 10, 2012
    Assignee: EPCOS AG
    Inventors: Gerhard Bisplinghoff, Axel Pecina
  • Patent number: 8218293
    Abstract: Provided is an electrolytic capacitor, including: an anode foil having a dielectric coating film and a conductive polymer layer formed thereon; a cathode foil having a conductive polymer layer formed thereon; an anode lead tab and a cathode lead tab electrically connected to the anode foil and the cathode foil, respectively; and a protection member. A first region provided with the protection member is present between the anode foil and the cathode foil that are wound. The first region is at least one of a region covering the anode lead tab, a region covering the cathode lead tab, a region covering a rear side of the anode foil at a connection portion between the anode lead tab and the anode foil, and a region covering a rear side of the cathode foil at a connection portion between the cathode lead tab and the cathode foil.
    Type: Grant
    Filed: September 21, 2009
    Date of Patent: July 10, 2012
    Assignees: Sanyo Electric Co., Ltd, Saga Sanyo Industries Co., Ltd.
    Inventor: Kazumasa Fujimoto
  • Patent number: 8218291
    Abstract: A monomer and polycarbonate resin are provided, as are methods of making the monomer. The resin may be used to provide a thin film that has a higher dielectric constant and higher glass transition temperature, and similar breakdown strength and similar dissipation factor to films prepared from polycarbonate resins not so modified. The thin films, in turn, may advantageously be used to form, wholly or in part, articles such as capacitors, sensors, batteries, flexible printed circuit boards, keyboard membranes, motor/transformer insulations, cable wrappings, industrial tapes, interior coverage materials, and the like. In particular, a capacitor comprising the polycarbonate resin is also provided.
    Type: Grant
    Filed: March 31, 2010
    Date of Patent: July 10, 2012
    Assignee: General Electric Company
    Inventors: Norberto Silvi, Gary Charles Davis, Patrick Joseph McCloskey, Sheldon Jay Shafer, Julia Lam Lee, Yang Cao, Patricia Chapman Irwin
  • Patent number: 8218292
    Abstract: Solid electrolytic capacitors and related methods for forming such capacitors may variously involve forming at least one of a seed, grip, reference point and/or anode body by stencil printing of dry powder. In accordance with a method of forming anodic components for electrolytic capacitors, a stencil is positioned adjacent to a substrate, the stencil being formed to define a plurality of apertures therethrough. A plurality of printed powder portions are selectively printed on the substrate by placing dry powder into selected ones of the plurality of apertures defined in the stencil. The printed powder portions are then sintered to form respective anodic components for multiple respective electrolytic capacitors.
    Type: Grant
    Filed: July 31, 2009
    Date of Patent: July 10, 2012
    Assignee: AVX Corporation
    Inventor: Majid Rezai-Kalantary
  • Patent number: 8213156
    Abstract: A coated electrode is provided for use in energy storage devices. The coated electrode comprises a dry fibrillized polymer that is fibrillized with no processing additives.
    Type: Grant
    Filed: November 17, 2009
    Date of Patent: July 3, 2012
    Assignee: Maxwell Technologies, Inc.
    Inventors: Porter Mitchell, Linda Zhong, Hermann Vincent, Chenniah Nanjundiah
  • Patent number: 8209829
    Abstract: A method of fabricating an electronic device includes selectively forming a glass layer on a ceramic substrate by printing, baking the glass layer, and forming a capacitor on the glass layer, the capacitor including metal electrodes and a dielectric layer interposed between the metal electrodes.
    Type: Grant
    Filed: February 27, 2009
    Date of Patent: July 3, 2012
    Assignees: Taiyo Yuden Co., Ltd., Fujitsu Limited
    Inventors: Takeo Takahashi, Xiaoyu Mi, Satoshi Ueda
  • Patent number: 8213161
    Abstract: A solid electrolytic capacitor according to the present invention comprises an anode body, an anode lead in contact with an outer surface of the anode body, a dielectric layer formed on a surface of the anode lead, and a cathode layer formed on a surface of the dielectric layer. The anode lead is provided with a plurality of openings passing through the anode lead. Another solid electrolytic capacitor according to the present invention comprises an anode body, an anode lead in contact with an outer surface of the anode body, a dielectric layer formed on a surface of the anode lead, and a cathode layer formed on a surface of the dielectric layer. The anode lead is provided with a cutout on an outer circumference edge of the anode lead.
    Type: Grant
    Filed: October 29, 2009
    Date of Patent: July 3, 2012
    Assignee: Sanyo Electric Co., Ltd.
    Inventors: Koichi Nishimura, Koji Endo, Takashi Umemoto, Hiroshi Nonoue
  • Patent number: 8213158
    Abstract: Provided is a solid electrolytic capacitor comprising an anode of a porous body formed of a valve metal or its alloy, a dielectric layer formed on the surface in the inside part of the porous body and on the surface in the outer peripheral part thereof, a conductive polymer layer formed on the dielectric layer, a cathode layer formed on the conductive polymer layer in the outer peripheral part of the porous body, and an anode lead of which one end is embedded inside the anode, wherein the conductive polymer layer in the first region which is in the inside part of the porous body and the periphery around the anode lead as the center is formed of a polypyrrole layer, and the conductive polymer layer in the second region which is the periphery around the first region is formed by laminating a polypyrrole layer on a polyethylenedioxythiophene layer.
    Type: Grant
    Filed: September 25, 2008
    Date of Patent: July 3, 2012
    Assignee: Sanyo Electric Co., Ltd.
    Inventors: Kazuhiro Takatani, Mutsumi Yano, Takashi Umemoto, Hiroshi Nonoue
  • Patent number: 8211188
    Abstract: The invention concerns a method for making a porous substrate-electrode complex (6) with load rate not less than 80% for a supercapacitor including at least the following steps: preparing a mixture containing at least one polymer (1), at least one liquid pore-forming plasticizer (3), and at least one active filler (2); extruding the mixture in paste form; depositing the paste on the substrate and laminating same; and treating the resulting complex to eliminate all or part of the plasticizer (3) and generate porosity in the electrode. The invention also concerns an electrode paste and a collector-electrode complex.
    Type: Grant
    Filed: January 30, 2006
    Date of Patent: July 3, 2012
    Assignee: Batscap
    Inventors: Hélène Drevet, Isabelle Rey, Michel Peillet, Frédèric Abribat
  • Publication number: 20120162859
    Abstract: According to one embodiment, an electrolytic capacitor includes a first electrode foil, a second electrode foil and an insulating member. The first electrode foil is formed like a loop and configured in such a manner that a first terminal is connected to a predetermined position. The second electrode foil is formed like a loop in such a manner that an outer periphery of the second electrode foil lies opposite an inner periphery of the first electrode foil. An insulating member is formed like a loop interposed between the inner periphery of the first electrode foil and the outer periphery of the second electrode foil.
    Type: Application
    Filed: September 28, 2011
    Publication date: June 28, 2012
    Inventor: Hideo Yokoo