Solid Electrolytic Capacitor (e.g., Dry Electrolytic Capacitor) Patents (Class 361/523)
  • Publication number: 20110273816
    Abstract: A solid electrolytic capacitor includes a capacitor element, a conductive member, an electrical insulating member, and a tubular member. The element has an element body with a cathode layer, and an anode lead. The conductive member is placed to face a first end surface of the body through which the lead is pulled out. The electrical insulating member is placed between the conductive member and the body. The lead passes through a through hole defined in the electrical insulating member. A tip end portion of the lead is inserted into a through hole or a closed end hole defined in the conductive member to be electrically connected to the conductive member. Insertion of the body into the tubular member causes the tubular member to cover at least part of a side surface of the body, while making electrical connection between the tubular member and the cathode layer.
    Type: Application
    Filed: May 6, 2011
    Publication date: November 10, 2011
    Applicant: SANYO ELECTRIC CO., LTD.
    Inventors: Osamu Moriya, Kazuya Niki, Hiroya Nishimoto
  • Patent number: 8054611
    Abstract: A porous metal thin film formed from aluminum has a film structure in which domains having an average diameter of 200 nm or more, and 500 nm or less and being formed through aggregation of a plurality of grains having an average grain diameter of 50 nm or more, and 160 nm or less are distributed discretely at an average distance of 5 nm or more, and 40 nm or less, wherein the area occupied by the above-described domains is 60% or more, and 90% or less in a cross-section in any direction of the porous metal thin film.
    Type: Grant
    Filed: December 8, 2008
    Date of Patent: November 8, 2011
    Assignee: Kobe Steel, Ltd.
    Inventor: Masao Mizuno
  • Patent number: 8050014
    Abstract: A solid electrolytic capacitor having a solid electrolyte layer, comprising: the solid electrolyte layer having an electrically-conductive polymer hybrid layer containing an electrolytically-polymerized electrically-conductive polymer and a chemically-polymerized electrically-conductive polymer.
    Type: Grant
    Filed: February 7, 2008
    Date of Patent: November 1, 2011
    Assignee: Sanyo Electric Co., Ltd.
    Inventors: Tetsuro Iwasa, Hiroshi Nakajima, Seiji Omura
  • Patent number: 8050015
    Abstract: A composite electric element includes a solid electrolytic capacitor and an electric element disposed on the solid electrolytic capacitor. A conductive plate, which is less resistive than an internal conductive layer, is connected to and covers the composite electric element. A current from a power source and its return current from an electric load flow across the internal conductive layer of the composite electric element in opposite directions. The composite electric element is disposed on a surface of a module substrate, and a slit is provided on the ground so that more current flows inside the electric element in opposite directions.
    Type: Grant
    Filed: September 27, 2007
    Date of Patent: November 1, 2011
    Assignee: SANYO Electric Co., Ltd.
    Inventor: Kazuya Niki
  • Publication number: 20110261504
    Abstract: The present invention provides solid electrolytic condensers with increased heat resistance and decreased ESR, and methods for preparing the same. The solid electrolytic condensers of the present invention comprise a porous sintered body 1 made of a valve action metal, a dielectric layer 2 covering at least a portion of the porous sintered body 1, and a solid electrolytic layer 3 covering at least a portion of the dielectric layer 2, where the solid electrolytic layer 3 is composed of an anion exchange resin.
    Type: Application
    Filed: April 20, 2011
    Publication date: October 27, 2011
    Applicant: ROHM CO., LTD.
    Inventor: Naotsugu SUGIMURA
  • Patent number: 8040661
    Abstract: A method for manufacturing a solid electrolytic capacitor device is disclosed. The solid electrolytic capacitor device comprises a package substrate and a capacitor element which is mounted on the package substrate. The package substrate comprises an outer anode electrode, an outer cathode electrode, an inner anode electrode and an inner cathode electrode. The outer anode electrode is electrically connected to the inner anode electrode. The outer cathode electrode is electrically connected to the inner cathode electrode. The capacitor element comprises a capacitor body and an anode lead portion which extends from the capacitor body. The capacitor body has a surface at least one part of which is provided with a cathode portion. The method comprises: forming the anode lead portion; forming the cathode portion after the formation of the anode lead portion; and connecting the anode lead portion and the cathode portion to the inner anode electrode and the inner cathode electrode, respectively.
    Type: Grant
    Filed: March 25, 2009
    Date of Patent: October 18, 2011
    Assignee: NEC Tokin Corporation
    Inventors: Shinya Tokashiki, Katsuhiro Yoshida, Masanori Takahashi
  • Patent number: 8035953
    Abstract: A solid electrolytic capacitor including an anode body, a dielectric layer arranged on the anode body, a conductive polymer layer arranged on the dielectric layer, and a cathode layer including a carbon layer arranged on the conductive polymer layer and a silver layer arranged on the carbon layer. The conductive polymer layer includes ridges and valleys formed in a surface that faces toward the cathode layer. The silver layer includes a first silver layer, which is arranged on the carbon layer, covers the ridges and valleys, and mainly contains spherical silver particles, and a second silver layer, which is arranged on the first silver layer and mainly contains silver flakes.
    Type: Grant
    Filed: December 17, 2008
    Date of Patent: October 11, 2011
    Assignee: Sanyo Electric Co., Ltd.
    Inventors: Masaaki Nemoto, Takashi Umemoto, Hiroshi Nonoue
  • Patent number: 8035952
    Abstract: A conductive composition comprises a ? conjugated conductive polymer, a polyanion, and a hydroxy group-containing aromatic compound containing two or more hydroxy groups. An antistatic coating material comprises the conductive composition and a solvent. An antistatic coating is produced by applying the antistatic coating material. A capacitor comprises an anode composed of a porous valve metal body; a dielectric layer formed by oxidizing a surface of the anode; and a cathode formed on the dielectric layer, wherein the cathode has a solid electrolyte layer comprising the conductive composition.
    Type: Grant
    Filed: October 21, 2010
    Date of Patent: October 11, 2011
    Assignee: Shin-Etsu Polymer Co., Ltd.
    Inventors: Kazuyoshi Yoshida, Tailu Ning, Yasushi Masahiro, Rika Abe, Yutaka Higuchi
  • Patent number: 8029762
    Abstract: Porous anode bodies suitable for use in solid state capacitors, the porous anode bodies prepared by processes which include providing a niobium suboxide powder comprising niobium suboxide particles having a bulk nitrogen content of 500 to 20,000 ppm, and agglomerating and coalescing the powder; and capacitors incorporating such anode bodies.
    Type: Grant
    Filed: June 1, 2006
    Date of Patent: October 4, 2011
    Assignee: H. C. Starck GmbH
    Inventors: Christoph Schnitter, Holger Brumm, Christine Rawohl, Colin McCracken
  • Patent number: 8026137
    Abstract: A method for producing a capacitor having a good capacitance appearance factor and a low ESR comprising, as one electrode (anode), an electric conductor having pores and having formed on the surface thereof a dielectric layer and, as the other electrode (cathode), a semiconductor layer formed on the electric conductor by energization in an electrolytic solution, the method comprising impregnating pores with a semiconductor layer-forming precursor before energization to render the concentration of semiconductor layer-forming precursor in pores higher than that of semiconductor layer-forming precursor in the electrolytic solution; a capacitor produced by the method; and an electronic circuit and an electronic device using the capacitor.
    Type: Grant
    Filed: October 19, 2004
    Date of Patent: September 27, 2011
    Assignee: Showa Denko K.K.
    Inventors: Kazumi Naito, Katutoshi Tamura
  • Patent number: 8027150
    Abstract: A solid electrolytic capacitor having an electrolytic layer containing at least two types of ionic liquids and a conductive polymer is provided. Preferably, the ionic liquids include at least one type of ionic liquid for supplying an excellent impedance characteristic and at least one type of ionic liquid for supplying an excellent withstand voltage characteristic. Thus, a solid electrolytic capacitor exhibiting a high withstand voltage and an excellent impedance characteristic can be obtained.
    Type: Grant
    Filed: February 7, 2008
    Date of Patent: September 27, 2011
    Assignee: Kaneka Corporation
    Inventors: Hideo Yamagishi, Kazuyuki Tateishi, Hiroyuki Furutani, Mutsuaki Murakami
  • Publication number: 20110229759
    Abstract: Ion storage electrodes formed by coating an underlying substrate with a nanofibrillar film of structured conjugate polymer nanofibers and methods of forming such electrodes are described herein. The electrical properties of the electrodes may be customized by modifying the structure of the polymer nanofibers, the thickness of the nanofiber film, and the pore size of the nanofiber films.
    Type: Application
    Filed: December 14, 2010
    Publication date: September 22, 2011
    Applicants: California Institute of Technology, Regents of the University of California
    Inventors: Rachid Yazami, Cedric M. Weiss, Richard Kaner, Julio D'Arcy
  • Patent number: 8023250
    Abstract: A porous substrate for use in a wide variety of applications, such as wet capacitors, is provided. The substrate is formed by subjecting a metal substrate to a voltage while in solution to initiate anodic formation of an oxide film. Contrary to conventional anodization processes, however, the newly created oxide quickly breaks down to once again expose the metal surface to the electrolytic solution. This may be accomplished in a variety of ways, such as by raising the voltage of the solution above a critical level known as the “breakdown voltage”, employing a corrosive acid in the solution that dissolves the oxide, etc. Regardless of the mechanism employed, the nearly simultaneous process of oxide growth/breakdown results in the formation of a structure having pores arranged at substantially regular intervals. The resulting structure is highly porous and can exhibit excellent adhesion to electrochemically-active materials and stability in aqueous electrolytes.
    Type: Grant
    Filed: September 12, 2008
    Date of Patent: September 20, 2011
    Assignee: AVX Corporation
    Inventors: Gang Ning, Zebbie Lynn Sebald, Bharat Rawal
  • Publication number: 20110222209
    Abstract: A capacitor electrode body producing method includes forming a porous layer on a surface of a positive electrode base material by spraying a metallic particle made of tantalum (Ta) and an organic particle onto the positive electrode base material made of a tantalum foil, thereby forming a porous positive electrode body including the positive electrode base material and the porous layer.
    Type: Application
    Filed: November 10, 2009
    Publication date: September 15, 2011
    Applicant: Sanyo Electric Co., Ltd.
    Inventor: Tatsushi Ohyama
  • Patent number: 8018713
    Abstract: Anodized films are formed at both surfaces of an aluminum base and, at the center portion on each side of the aluminum base, a solid electrolyte layer of a conductive polymer, a graphite layer, and a metal layer are stacked in the order, thereby forming a rectangular cathode portion. An insulator layer is formed at the peripheries of four sides of the cathode portion and, further, an anode lead frame is provided at the peripheries of four sides of the upper insulator layer, thereby forming an anode portion. Openings are formed at four corners of the insulator layer or the anode portion, thereby establishing electrical connection between the cathode portions on both sides of the aluminum base. By setting the ratio of a total region, occupied by the openings, of the cathode portion to 25% or less, the ESL of a capacitor can be suppressed low even when the openings are provided.
    Type: Grant
    Filed: April 17, 2008
    Date of Patent: September 13, 2011
    Assignee: NEC Tokin Corporation
    Inventors: Yuji Yoshida, Katsuhiro Yoshida, Takeo Kasuga, Masanori Takahashi, Takeshi Saito, Koji Sakata
  • Patent number: 8014128
    Abstract: The present invention provides means for forming an oxide film on a metal surface, means for repairing a defect of an oxide film, a high-performance electrolytic capacitor using the means, and an electrolyte of the capacitor. Namely, the prevent invention provides a method for easily forming an oxide film on the surface of a metal or an alloy thereof by anodization using a solution containing an ionic liquid. In an application of this method, an electrolytic capacitor having means for repairing a defect of an oxide film can be formed by a method using, as an electrolyte, an ionic liquid, a solution containing an ionic liquid and a salt, or a solution containing an ionic liquid and a conductive polymer or a TCNQ salt, and a valve metal or an alloy thereof as a metal.
    Type: Grant
    Filed: July 26, 2004
    Date of Patent: September 6, 2011
    Assignee: Kaneka Corporation
    Inventors: Mutsuaki Murakami, Masamitsu Tachibana, Hiroyuki Furutani, Hideo Yamagishi
  • Patent number: 8012222
    Abstract: The present subject matter includes a capacitor stack having a plurality of anode layers, and a plurality of cathodic metal substrates partially coated in a titanium coating. Cathode portions lacking titanium enable weld interconnections which are substantially free of titanium, improving capacitor properties. In some embodiments, anodes are interspersed among cathodes, and are electrically separated from the cathodes, with portions of cathode material attached to the welding area of the anode. These portions of the cathode material are no longer electrically connected to the cathode. As the anode and these cathode portions are welded and aged, leakage current is reduced due to improved oxide growth in the welding area due to the absence of titanium.
    Type: Grant
    Filed: March 3, 2010
    Date of Patent: September 6, 2011
    Assignee: Cardiac Pacemakers, Inc.
    Inventors: James M. Poplett, Jeannette C. Polkinghorne, Gregory J. Sherwood
  • Patent number: 8014127
    Abstract: In a solid electrolytic capacitor, a capacitor element laminate formed by stacking capacitor elements each using a valve metal as an anode body is bonded to a substrate by a conductive adhesive and packaged by a resin portion. The substrate includes a printed substrate made of an epoxy resin. On its mounting surface for the capacitor element laminate, there are provided an anode mounting portion and a cathode mounting portion each made of a copper base material. The anode mounting portion and the cathode mounting portion are electrically connected to an external anode terminal and an external cathode terminal, respectively, formed on the mounting surface of the solid electrolytic capacitor, through anode vias and cathode vias each penetrating through the epoxy resin. A part of the anode mounting portion on the substrate (6) extends to the outside of the packaging resin portion.
    Type: Grant
    Filed: February 13, 2009
    Date of Patent: September 6, 2011
    Assignee: NEC Tokin Corporation
    Inventors: Takeo Kasuga, Takashi Mizukoshi, Koji Sakata, Takeshi Saito
  • Publication number: 20110206993
    Abstract: A composite electrode for an electricity storage device of the present invention includes: a substrate; a whisker or a fiber which is made of at least one of a metal and a metal compound and is formed on the substrate; and a coating layer which contains an active material and is formed on at least a part of a surface of the whisker or the fiber.
    Type: Application
    Filed: October 27, 2009
    Publication date: August 25, 2011
    Inventors: Yoshiko Tsukada, Mori Nagayama, Nobutaka Chiba, Masashi Ishikawa
  • Patent number: 8004825
    Abstract: A solid electrolyte capacitor that prevents the capacitance from decreasing. The solid electrolyte capacitor includes an anode, a cathode, and a dielectric layer, which is arranged between the anode and the cathode in contact with the cathode. The dielectric layer includes a plurality of recesses arranged at an interface between the dielectric layer and the cathode.
    Type: Grant
    Filed: September 18, 2008
    Date of Patent: August 23, 2011
    Assignee: Sanyo Electric CO., Ltd.
    Inventors: Yasumi Kobayashi, Takashi Umemoto, Hiroshi Nonoue
  • Patent number: 8004824
    Abstract: The invention provides a solid electrolytic capacitor element, comprising a metal oxide layer, an electroconductive polymer layer, a carbon paste layer and a silver paste layer sequentially formed on surface of a valve-acting metal material, wherein thickness of the silver paste layer is within a range of 5 to 20 ?m and the mass ratio of silver contained in the silver paste layer is within a range of 84 to 94%. According to the invention, a solid electrolytic capacitor having good electric properties such as ESR (equivalent series resistance) and LC (leakage current) and good reliability can be produced.
    Type: Grant
    Filed: July 25, 2006
    Date of Patent: August 23, 2011
    Assignee: Murata Manufacturing Co., Ltd.
    Inventor: Isao Kabe
  • Patent number: 8004823
    Abstract: A lithium ion capacitor includes a positive electrode made of a material capable of reversibly doping and dedoping lithium ions and/or anions; a negative electrode made of a material capable of reversibly doping and dedoping lithium ions; and an electrolytic solution made of an aprotonic organic solvent electrolyte solution of a lithium salt. When the negative electrode and/or positive electrode and a lithium ion supply source are electrochemically brought into contact, lithium ions are doped in a negative electrode and/or positive electrode. A positive electrode potential after the positive electrode and negative electrode are short-circuited is 2.0 V (vs. Li/Li+) or less. The positive electrode and/or negative electrode has a current collector made of a metal foil that has many holes that penetrate through both sides and have an average diameter of inscribed circles of the through-holes of 100 ?m or less.
    Type: Grant
    Filed: November 13, 2006
    Date of Patent: August 23, 2011
    Assignee: Fuji Jukogyo Kabushiki Kaisha
    Inventors: Hiromoto Taguchi, Nobuo Ando, Hideki Shibuya, Shinichi Tasaki, Risa Miyagawa, Yukinori Hato, Osamu Hatozaki
  • Publication number: 20110200873
    Abstract: As consistent with various embodiments, an electronic device includes a fibrous material having a conductive coating thereon. The conductive coating includes conductive nanoparticles coupled to fibers in the fibrous material. The structure is implemented in connection with a variety of devices, such as a capacitive device or a battery. Other embodiments are directed to forming conductive fibrous sheets, in dispersing a nanomaterial in a solution and applying the solution to a fibrous sheet, such as commercial paper, to form a conductive sheet.
    Type: Application
    Filed: October 29, 2010
    Publication date: August 18, 2011
    Inventors: Liangbing Hu, Jang Wook Choi, Yuan Yang, Yi Cui
  • Patent number: 7995328
    Abstract: A capacitor for use in a hybrid vehicle and the like has a structure contrived to achieve reduction in size, increase in capacitance and decrease in resistance. An element has a pair of positive and negative electrodes, each comprising a collector made of a metallic foil having a carbon-containing electrode layer formed thereon, the electrodes rolled up with a separator interposed therebetween to form a pair of electrode terminations at opposite sides of the element. A dimension of one of the electrode terminations is set shorter than that of the other electrode termination. This structure achieves an increase in capacitance and decrease in resistance since it can increase an effective area of electrode surfaces under a restricted condition of keeping the same height of the element as it is placed inside a casing of given dimensions.
    Type: Grant
    Filed: December 5, 2007
    Date of Patent: August 9, 2011
    Assignee: Panasonic Corporation
    Inventor: Teruhisa Miura
  • Patent number: 7990683
    Abstract: A method for forming a capacitor including forming an anode from a valve metal; forming an oxide on the anode to form an anodized anode; dipping the anodized anode into a slurry of conductive polymer; drying the intrinsically conductive polymer; and providing external terminations in electrical contact with the anode and the conductive polymer.
    Type: Grant
    Filed: May 7, 2008
    Date of Patent: August 2, 2011
    Assignee: Kemet Electronics Corporation
    Inventors: Yongjian Qiu, Randy S. Hahn, Keith R. Brenneman
  • Patent number: 7990681
    Abstract: An aluminum electrolytic capacitor having an excellent short-circuit resistance, high capacitance, long life, and low equivalent series resistance (ESR) is provided. For this purpose, the aluminum electrolytic capacitor includes a capacitor element having a positive electrode foil, a first separator, a negative electrode foil, and a second separator, which are sequentially laminated one on another and wound together. After the capacitor element is impregnated with a driving electrolyte solution and housed in a metallic case, an open end of the metallic case is sealed with a sealing material. A ratio of B/A, i.e. a ratio of total thickness B of the first and second separators after winding with respect to total thickness A of the first and second separators before winding, is set in the range from 0.5 to 0.8.
    Type: Grant
    Filed: May 9, 2007
    Date of Patent: August 2, 2011
    Assignee: Panasonic Corporation
    Inventors: Hisao Nagara, Kazunari Imamoto, Shigetaka Furusawa, Hiroyuki Matsuura
  • Patent number: 7990679
    Abstract: Particular aspects provide capacitors, and particularly ultracapacitors, including molecules suitable to substantially increase the capacitance of the capacitor, and methods for making same, Particular aspects provide ultracapacitors that include nanoparticles optionally coated with molecules, such as polymer electrolytes. Certain aspects provide an energy storage device or capacitor, including at least three layers sealed in a fluid-tight covering, wherein a first layer includes at least one electrolytic polymer molecule of positive charge and at least one nanoparticle; a second dielectric layer including at least one insulative polymer; a third layer including at least one electrolytic polymer molecule of negative charge and at least one nanoparticle.
    Type: Grant
    Filed: July 16, 2007
    Date of Patent: August 2, 2011
    Assignee: Dais Analytic Corporation
    Inventors: Scott G. Ehrenberg, Liwei Cao
  • Patent number: 7990680
    Abstract: In a method of manufacturing a porous coke suitable as a charge-storing material in electrochemical capacitors, one manufactures or provides a non-calcined isotropic coke with spherical or onion-shaped morphology and low graphitizability as a starting material. The starting material is comingled with a caustic alkali to obtain a homogenous mixture. The homogenous mixture is heat treated at a temperature in a range between 650 and 950° C. to obtain the porous coke. The porous coke is washed and neutralized.
    Type: Grant
    Filed: August 17, 2009
    Date of Patent: August 2, 2011
    Assignee: SGL Carbon SE
    Inventors: Martin Cadek, Wilhelm Frohs, Mario Wachtler
  • Patent number: 7990686
    Abstract: A solid electrolytic capacitor of the present invention includes: a capacitor element having an anode leading part and a cathode leading part; an anode lead frame connected to the anode leading part and a cathode lead frame connected to the cathode leading part; and an packing resin with which the capacitor element is coated, and the anode leading part protrudes from one end face of the capacitor element. The anode lead frame includes: an anode terminal part having an exposed surface exposed from the packing resin, a rising part connected to the anode terminal part, bent toward the anode leading part located in the upper part of the anode terminal part and extending in the packing resin, and a bent part connected to the rising part and bent along a direction which is parallel to a protruding direction of the anode leading part and connected to the anode leading part.
    Type: Grant
    Filed: March 12, 2009
    Date of Patent: August 2, 2011
    Assignee: Sanyo Electric Co., Ltd.
    Inventors: Keiko Matsuoka, Shoji Umeda
  • Publication number: 20110183180
    Abstract: A flexible, asymmetric electrochemical cell comprising: (A) A sheet of graphene paper as first electrode comprising nano graphene platelets having a platelet thickness less than 1 nm, wherein the first electrode has electrolyte-accessible pores; (B) A thin-film or paper-like first separator and electrolyte; and (C) A thin-film or paper-like second electrode which is different in composition than the first electrode; wherein the separator is sandwiched between the first and second electrode to form a flexible laminate configuration. The asymmetric supercapacitor cells with different NGP-based electrodes exhibit an exceptionally high capacitance, specific energy, and stable and long cycle life.
    Type: Application
    Filed: January 25, 2010
    Publication date: July 28, 2011
    Inventors: Zhenning Yu, Jinjun Shi, Chen-guang Liu, Bor Z. Jang, Aruna Zhamu
  • Patent number: 7985828
    Abstract: A solid electrolyte of fully conjugated, water-soluble rigid-rod polymer with articulated backbone for isotropic ionic conductivity, a method for synthesizing the solid electrolyte and a battery, fuel cell or super-capacitor including the solid electrolyte. The polymer has a repeating unit E1 represented by the following general formula I: wherein the repeating unit E1 has two pendants, L1 and L2, linked to two of four N atoms of the repeating unit E1; L1 and L2 independently represent a group of R1—SO3M, R1 represents a hydrocarbon; M represents a cation selected from the group consisting of Li+, Na+, H+and K+; R3 represents a group of H or SO3M; and x represents an integer larger than 100.
    Type: Grant
    Filed: November 7, 2007
    Date of Patent: July 26, 2011
    Assignee: National Sun Yat-Sen University
    Inventors: Shih-Jung Bai, Ju-Pin Sun
  • Patent number: 7986510
    Abstract: An electrochemical device having an operational voltage up to 4.5 V in combination with a high concentration of an electrolyte salt consisting of a tetrafluoroborate salt and a eutectic of two solvents in which ethylene carbonate is one and an improved carbon electrode a preferred electrochemical device is a capacitor.
    Type: Grant
    Filed: May 30, 2009
    Date of Patent: July 26, 2011
    Inventors: W. Novis Smith, Joel R. McCloskey, James J. Gormley
  • Patent number: 7978457
    Abstract: Disclosed is an all-solid-state electric double layer capacitor comprising a solid electrolyte and a current collector, wherein the solid electrolyte is an inorganic solid electrolyte. Such a capacitor has high capacity and is free from any fear of leakage of an electrolytic solution, and also ensures high heat resistance and enables a low process cost.
    Type: Grant
    Filed: November 21, 2007
    Date of Patent: July 12, 2011
    Assignee: Panasonic Corporation
    Inventors: Kaoru Nagata, Tetsuo Nanno
  • Publication number: 20110164348
    Abstract: The invention relates to a process for producing electrolytic capacitors with low equivalent series resistance, to electrolytic capacitors produced by this process and to the use of such electrolytic capacitors.
    Type: Application
    Filed: July 2, 2009
    Publication date: July 7, 2011
    Applicant: H.C. Starck Clevios GmbH
    Inventors: Udo Merker, Klaus Wussow
  • Publication number: 20110164349
    Abstract: A structural electrochemical capacitor that includes at least one pair of electrodes and a solid electrolytic material disposed between the electrodes which, taken collectively, have sufficient mechanical strength to allow the electrochemical capacitor to be used as a structural component of an article of manufacture is described. The present invention also describes a method of capacitively storing electrical energy and conserving mass and/or volume in a device that includes the steps of: fabricating portions of the structure of a device with high-strength structural electrochemical capacitor that includes at least one pair of electrodes and a body of solid electrolytic material disposed between said electrodes wherein the body of solid electrolytic material accounts for a majority of the mass of a structural element or a majority of the volume of a structural element in the device.
    Type: Application
    Filed: November 30, 2010
    Publication date: July 7, 2011
    Applicant: THE UNITED STATES GOVERNMENT AS REPRESENTED BY THE SECRETARY OF THE ARMY
    Inventors: JAMES F. SNYDER, Eric D. Wetzel
  • Publication number: 20110157775
    Abstract: A decoupling device includes a lead frame, a capacitor unit, a metal layer, and a high dielectric organic-inorganic composite material layer. The lead frame includes a cathode terminal portion and an anode terminal portion. The capacitor unit is disposed on the lead frame. The capacitor unit includes a cathode portion, an anode portion, and an insulation portion located between the cathode portion and the anode portion. The cathode portion is electrically connected to the cathode terminal portion, and the anode portion is electrically connected to the anode terminal portion. The high dielectric organic-inorganic composite material layer is connected to the capacitor unit in parallel via the metal layer.
    Type: Application
    Filed: May 10, 2010
    Publication date: June 30, 2011
    Applicant: INDUSTRIAL TECHNOLOGY RESEARCH INSTITUTE
    Inventors: Cheng-Liang Cheng, Chi-Lun Chen, Li-Duan Tsai, Min-Lin Lee, Shur-Fen Liu
  • Publication number: 20110151321
    Abstract: The present disclosure relates to energy storage or collection devices and methods for making such devices having electrode materials containing exfoliated nanotubes with attached electro- or photoactive nanoscale particles or layers. The exfoliated nanotubes and attached nanoscale particles or layers may be easily fabricated by methods such as coating, solution or casting or melt extrusion to form electrodes. Electrolytes may also be used for dispersing nanotubes and also in a polymeric form to allow melt fabrication methods.
    Type: Application
    Filed: December 14, 2010
    Publication date: June 23, 2011
    Applicant: Designed Nanotubes, LLC
    Inventors: Clive P. Bosnyak, Kurt W. Swogger
  • Patent number: 7957120
    Abstract: The present invention relates to a capacitor chip and a solid electrolytic capacitor, wherein in a capacitor chip in which one or more capacitor element is laminated on a metal lead frame to carry electricity and the whole is encapsulated with resin, a laminated body is located within a certain definite range. The present invention enables to increase the capacitance of a capacitor by broadening the allowable range of the total thickness of the laminated capacitor chips without generating defective appearance of the laminated solid electrolytic capacitor.
    Type: Grant
    Filed: December 14, 2006
    Date of Patent: June 7, 2011
    Assignee: Murata Manufacturing Co., Ltd.
    Inventors: Kenki Kobayashi, Eiji Komazawa, Tomoya Utashiro
  • Publication number: 20110128675
    Abstract: The invention relates to a process for producing electrolyte capacitors with high capacitances and low equivalent series resistance, to electrolyte capacitors produced by this process and to the use of such electrolyte capacitors.
    Type: Application
    Filed: April 22, 2009
    Publication date: June 2, 2011
    Applicant: H.C. Starck Clevios GmbH
    Inventors: Udo Merker, Wilfried Loevenich
  • Patent number: 7952854
    Abstract: An apparatus is disclosed which includes an electrolytic capacitive element with multiple capacitor sections.
    Type: Grant
    Filed: December 28, 2007
    Date of Patent: May 31, 2011
    Assignee: American Radionic Company, Inc.
    Inventor: Robert Stockman
  • Publication number: 20110122544
    Abstract: A stacked solid electrolytic capacitor and a method for manufacturing the same are disclosed. The stacked solid electrolytic capacitor includes two capacitor sets, a positive electrode conducting device, a negative electrode conducting device, and a package unit. Each capacitor set includes at least one capacitor unit. The front side of the positive electrode portion of the capacitor set extends to form a positive electrode pin. The positive electrode conducting device has at least one first positive electrode conducting lead frame and at least one second positive electrode conducting lead frame. The first positive electrode conducting lead frame is electrically connected with the second positive electrode conducting lead frame. The negative electrode conducting device has at least one negative electrode conducting lead frame, and is electrically connected with the negative electrode of the two capacitor sets by using metal conductive material.
    Type: Application
    Filed: June 11, 2010
    Publication date: May 26, 2011
    Inventors: Chi-Hao CHIU, Ching-Feng Lin, Chun-Chia Huang, Chien-Ting Liu
  • Publication number: 20110122545
    Abstract: A solid electrolytic capacitor having a high heat resistance is provided. The solid electrolytic capacitor according to the present invention 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 an aromatic sulfonic acid ion and an NHPA compound ion.
    Type: Application
    Filed: November 17, 2010
    Publication date: May 26, 2011
    Applicants: SANYO ELECTRIC CO., LTD., SAGA SANYO INDUSTRIES CO., LTD.
    Inventor: Satoru Yoshimitsu
  • Patent number: 7948740
    Abstract: A method of manufacturing a solid electrolytic capacitor includes: rolling an anode foil, a cathode foil and a separator together, the separator being a mixed fiber composed of a chemical fiber and a natural fiber and being between the anode foil and the cathode foil; degrading and removing the natural fiber with enzyme; and forming an electrolytic layer composed of solid polymer between the anode foil and the cathode foil after degrading and removing the natural fiber.
    Type: Grant
    Filed: March 19, 2008
    Date of Patent: May 24, 2011
    Assignee: Nichicon Corporation
    Inventors: Minoru Funahashi, Akira Ueda, Katsuharu Yamada
  • Patent number: 7948738
    Abstract: The present invention provides an electrode material for an electric double layer capacitor which can provide an electric double layer capacitor having a low internal resistance and a large capacitance, a process for producing the same, and an electrode for an electric double layer capacitor and an electric double layer capacitor using the same. The electrode material of the present invention is characterized by comprising a carbonaceous material and an activated carbon, the carbonaceous material obtained by thermal-treating or activating a fullerene-containing soot or an extracted residue obtained by substantially extracting at least a part of fullerene from a fullerene-containing soot using a solvent. The electrode for an electric double layer capacitor and the electric double layer capacitor of the present invention is characterized by using the electrode material.
    Type: Grant
    Filed: April 6, 2006
    Date of Patent: May 24, 2011
    Assignee: Panasonic Corporation
    Inventors: Hideki Shimamoto, Chiho Yamada, Kouhei Okuyama, Hisatsugu Izuhara, Mitsumasa Hijiriyama
  • Patent number: 7948739
    Abstract: A composite composition for use in an electrode for electrochemical capacitors, comprising: (a) an electrochemically active material; and (b) exfoliated graphite flakes that are substantially interconnected to form a porous, conductive graphite network comprising pores, wherein at least a portion of the active material resides in a pore of the network. The composite composition is characterized by having liquid accessible pores which provide a surface area greater than about 200 m2/gm, preferably greater than 500 m2/gm, more preferably greater than 1000 m2/gm, and most preferably greater than 1000 m2/gm. Also disclosed is a capacitor that includes at least an electrode comprising such a composite composition. A supercapacitor featuring such a composite electrode exhibits an exceptionally high capacitance value and high electrical conductivity.
    Type: Grant
    Filed: August 27, 2007
    Date of Patent: May 24, 2011
    Assignee: Nanotek Instruments, Inc.
    Inventors: Aruna Zhamu, Bor Z. Jang
  • Patent number: 7940516
    Abstract: A capacitor including a substrate; a conductive layer provided on the substrate and containing conductive particles; a valve metal sheet having a dielectric part formed throughout an entire surface of the conductive layer; a protection layer covering the valve metal sheet; a first electrode terminal electrically connected to the conductive layer and partially exposed from an external surface of the protection layer; and a second electrode terminal electrically connected to a surface of the valve metal sheet which is opposite to a surface of the valve metal sheet on which the dielectric part is provided, and the second electrode terminal partially exposed from the external surface of the protection layer; wherein the dielectric part is made of an oxide of a metallic material of the valve metal sheet, the dielectric part is formed with a corrugated surface on the conductive layer, and the conductive particles of the conductive layer are in contact with the corrugated surface of the dielectric part.
    Type: Grant
    Filed: August 4, 2010
    Date of Patent: May 10, 2011
    Assignee: Fujitsu Limited
    Inventors: Takeshi Shioga, Kazuaki Kurihara
  • Patent number: 7940515
    Abstract: A solid electrolytic capacitor includes an anode body made of valve metal, a dielectric oxide layer provided on the anode body, and a conductive layer provided on the carbon layer. The carbon layer contains carbon and aromatic compound having sulfonic acid radical. This solid electrolytic capacitor has a small equivalent series resistance.
    Type: Grant
    Filed: July 5, 2007
    Date of Patent: May 10, 2011
    Assignee: Panasonic Corporation
    Inventor: Masato Ozawa
  • Patent number: 7936555
    Abstract: A flexible super capacitor including a pair of flexible electrodes and a separator film is disclosed. Each flexible electrode includes a carbon fiber layer and a collector formed on a surface of the carbon fiber layer. The pair of flexible electrodes has two outer surfaces, and the collector layers are formed on the outer surfaces of the pair of the flexible electrodes. The separator film is disposed between the flexible electrodes. The collector layer would be formed on the carbon fiber layer with surface metalizing the carbon fiber layer. A method for fabricating the flexible electrode of the flexible super capacitor is also disclosed.
    Type: Grant
    Filed: December 20, 2007
    Date of Patent: May 3, 2011
    Assignee: Taiwan Textile Research Institute
    Inventors: Wen-Ting Lin, Hung-Chang Chen, Jui-Kai Hu, Nae-Lih Wu
  • Publication number: 20110090621
    Abstract: A capacitor with an anode, a dielectric on the anode and a cathode on the dielectric. A blocking layer is on the cathode. A metal filled layer is on said blocking layer and a plated layer is on the metal filled layer.
    Type: Application
    Filed: December 20, 2010
    Publication date: April 21, 2011
    Inventors: Antony Chacko, Randy Hahn
  • Publication number: 20110091771
    Abstract: This invention relates to a coating formulation, a coating formulation for manufacturing an electrode plate and an undercoating formulation, and their use. These coating formulations are all characterized by containing, in a polar solvent, a hydroxyl-containing resin and an organic acid and/or a derivative thereof. The hydroxyl-containing resin is at least one of (1) a polyvinyl acetal resin, (2) an ethylene-vinyl alcohol copolymer, (3) a modified and/or unmodified polyvinyl alcohol, and (4) a cyanoethyl-containing polymer. According to the present invention, there is provided a coating formulation capable of forming a coating of excellent adhesion and solvent resistance on a surface of a metal material such as an aluminum material.
    Type: Application
    Filed: May 28, 2009
    Publication date: April 21, 2011
    Applicant: Dainichiseika Color & Chemicals Mfg. Co., Ltd.
    Inventors: Takanori Sannan, Shinya Tsuchida, Nobuyuki Kobayashi, Shinichiro Aoyagi