Patents Examined by James Lin
  • Patent number: 9714474
    Abstract: A method and system for coating the interior surfaces of microscale hole features fabricated into the substantially planar surface of a work piece. The method comprises providing a work piece with a barrier metal coating that is substantially continuous and uniform both along the planar surface of the work piece and the inner surfaces of the microscale hole features wherein said barrier metal coating is applied by a substantially surface reaction limited process. The workpiece is provided with a coating, on the planar surface of the work piece, of a thick metal layer anchored to the barrier metal coat and disposed to provide substantially uniform electrical conduction capability to the microscale features located throughout and across the workpiece. An electrical contact path is provided to the electrically conductive coating at the perimeter of the work piece.
    Type: Grant
    Filed: April 6, 2010
    Date of Patent: July 25, 2017
    Assignee: TEL NEXX, INC.
    Inventors: Arthur Keigler, Johannes Chiu, Zhenqiu Liu, Daniel Goodman
  • Patent number: 9702044
    Abstract: A problem to be solved is to provide a method for regenerating plating liquid from plating waste liquid in a simple and easy way and a plating method utilizing the regenerating method.
    Type: Grant
    Filed: November 27, 2012
    Date of Patent: July 11, 2017
    Assignee: FUJI SHOJI CO., LTD.
    Inventors: Tatsuya Banno, Katsuhiro Goto, Nobuhiro Kanazawa
  • Patent number: 9695524
    Abstract: [Object] When rare earth magnets are plated, components of the rare earth magnets are dissolved in the plating solution, causing plating defects. Thus, an easy method for removing rare earth impurities has been necessary. [Means for Solution] A nickel-electroplating solution containing rare earth impurities is kept at 60° C. or higher for a predetermined period of time to precipitate rare earth impurities for separation by sedimentation or filtration. Rare earth impurities can be precipitated further efficiently by adding precipitate to the nickel-electroplating solution, or by concentrating the nickel-electroplating solution by heating.
    Type: Grant
    Filed: September 21, 2012
    Date of Patent: July 4, 2017
    Assignee: HITACHI METALS, LTD.
    Inventor: Masanao Kamachi
  • Patent number: 9677187
    Abstract: A method of forming a non-metallic coating on a metallic substrate involves the steps of positioning the metallic substrate in an electrolysis chamber and applying a sequence of voltage pulses of alternating polarity to electrically bias the substrate with respect to an electrode. Positive voltage pulses anodically bias the substrate with respect to the electrode and negative voltage pulses cathodically bias the substrate with respect to the electrode. The amplitude of the positive voltage pulses is potentiostatically controlled, whereas the amplitude of the negative voltage pulses is galvanostatically controlled.
    Type: Grant
    Filed: February 7, 2012
    Date of Patent: June 13, 2017
    Assignees: Cambridge Nanolitic Limited, Cambridge Nanotherm Limited
    Inventors: Pavel Shashkov, Gennady Khomutov, Aleksey Yerokhin, Sergey Usov
  • Patent number: 9672990
    Abstract: An oxadiazole dye for use as an organic photosensitizer. The oxadiazole dye comprising donor-?-spacer-acceptor type molecules in which at least one of an oxadiazole group acts as a ?-conjugated bridge (spacer), a naphthyl unit acts as an electron-donating unit, a carboxyl group act as an electron acceptor group, and a cyano group acts as an anchor group. An optional thiophene group acts as part of the ?-conjugated bridge (spacer). The dye for use as organic photosensitizers in a dye-sensitized solar cell. The dye for use in photodynamic therapies. Computational DFT and time dependent DFT (TD-DFT) modeling techniques showing Light Harvesting Efficiency (LHE), Free Energy for Electron Injection (?Ginject), Excitation Energies, and Frontier Molecular Orbitals (FMOs) indicate that the series of dye comprise a more negative ?Ginject and a higher LHE value; resulting in a higher incident photon to current efficiency (IPCE).
    Type: Grant
    Filed: May 20, 2015
    Date of Patent: June 6, 2017
    Assignee: King Fahd University of Petroleum and Minerals
    Inventors: Umer Mehmood, Shakeel Ahmed, Ibnelwaleed A. Hussein
  • Patent number: 9666426
    Abstract: An apparatus for substrate metallization from electrolyte is provided. The apparatus comprises: an immersion cell containing metal salt electrolyte; at least one electrode connecting to at least one power supply; an electrically conductive substrate holder holding at least one substrate to expose a conductive side of the substrate to face the at least one electrode; an oscillating actuator for oscillating the substrate holder with an amplitude and a frequency; at least one ultrasonic device with an operating frequency and an intensity, disposed in the metallization apparatus; at least one ultrasonic power generator connecting to the ultrasonic device; at least one inlet for metal slat electrolyte feeding; and at least one outlet for metal salt electrolyte draining.
    Type: Grant
    Filed: June 24, 2011
    Date of Patent: May 30, 2017
    Assignee: ACM Research (Shanghai) Inc.
    Inventors: Hui Wang, Yue Ma, Chuan He, Xi Wang
  • Patent number: 9643864
    Abstract: A method and liquid purifying device for controlling concentration of ions in a liquid includes generating a main stream of liquid in a main channel and applying a transverse electric field to the main stream by electrodes that are electrically in direct contact with the liquid flowing in the main channel. Further, a product stream of liquid is derived from a central region of the main stream, and waste streams of liquid are derived from regions of the main stream closer to the electrodes.
    Type: Grant
    Filed: August 2, 2011
    Date of Patent: May 9, 2017
    Assignee: KONINKLIJKE PHILIPS N.V.
    Inventor: Alwin Verschueren
  • Patent number: 9611556
    Abstract: Coaxial disk armatures, counter-rotating through an axial magnetic field, act as electrolysis electrodes and high shear centrifugal impellers for an axial feed. The feed can be carbon dioxide, water, methane, or other substances requiring electrolysis. Carbon dioxide and water can be processed into syngas and ozone continuously, enabling carbon and oxygen recycling at power plants. Within the space between the counter-rotating disk electrodes, a shear layer comprising a fractal tree network of radial vortices provides sink flow conduits for light fractions, such as syngas, radially inward while the heavy fractions, such as ozone and elemental carbon flow radially outward in boundary layers against the disks and beyond the disk periphery, where they are recovered as valuable products, such as carbon nanotubes.
    Type: Grant
    Filed: August 13, 2014
    Date of Patent: April 4, 2017
    Assignee: McCutchen Co.
    Inventors: Wilmot H. McCutchen, David J. McCutchen
  • Patent number: 9607773
    Abstract: The present invention relates to a dye-sensitized solar cell module (1) which comprises at least two dye-sensitized solar cell units (2a-c) arranged adjacent to each other and connected in series. The dye-sensitized solar cell module comprises a porous insulating substrate (7), the first conducting layer (4) is a porous conducting layer formed on one side of the porous insulating substrate, and the second conducting layer (5) is a porous conducting layer formed on the opposite side of the porous insulating substrate. A series connecting element (6) is penetrating through the porous insulating substrate and extending between the first conducting layer of one of the cell units and the second conducting layer of the adjacent cell unit, thereby electrically connecting the first conducting layer of one of the cell units with the second conducting layer of the adjacent cell unit. This invention also relates to a method for manufacturing the dye-sensitized solar cell module.
    Type: Grant
    Filed: March 8, 2013
    Date of Patent: March 28, 2017
    Assignee: Exeger Sweden AB
    Inventors: Henrik Lindström, Giovanni Fili
  • Patent number: 9608144
    Abstract: In one aspect of the present invention, a photovoltaic device is provided. The photovoltaic device includes a window layer and an absorber layer disposed on the window layer, wherein the absorber layer includes a first region and a second region, the first region disposed adjacent to the window layer. The absorber layer further includes a first additive and a second additive, wherein a concentration of the first additive in the first region is greater than a concentration of the first additive in the second region, and wherein a concentration of the second additive in the second region is greater than a concentration of the second additive in the first region. Method of making a photovoltaic device is also provided.
    Type: Grant
    Filed: June 1, 2011
    Date of Patent: March 28, 2017
    Assignee: First Solar, Inc.
    Inventors: James Neil Johnson, Bastiaan Arie Korevaar, Timothy John Sommerer
  • Patent number: 9605875
    Abstract: A solar energy converter comprising: a solar energy absorber, the solar energy absorber comprising a photovoltaic element; a heat transfer element in thermal contact with the solar energy absorber; a primary heat exchanger in thermal contact with the heat transfer element; a secondary heat exchanger; and a heat transfer control element; wherein the heat transfer control element is arranged to selectively place the secondary heat exchanger either in thermal contact with the heat transfer element or out of thermal contact with the heat transfer element.
    Type: Grant
    Filed: March 21, 2012
    Date of Patent: March 28, 2017
    Assignee: Naked Energy Ltd
    Inventors: Richard Boyle, Christophe Williams, Norman Cottington
  • Patent number: 9607774
    Abstract: Disclosed are an open internal electrode AMTEC unit cell, a method for manufacturing the same and a method for connecting circuits. In order to overcome the difficulty in collecting electricity within a conventional AMTEC unit cell, an internal electrode of which a portion is open to the outside, so that the internal electrode and an external electrode can be electrically connected to each other at the outside of the unit cell, and a metal support is used as the internal electrode, so that the internal electrode has durability and stability, and a solid electrolyte is formed in the form of a thin film, and as a result, the AMTEC unit cell has an improved efficiency and a simpler manufacturing process.
    Type: Grant
    Filed: August 5, 2013
    Date of Patent: March 28, 2017
    Assignee: KOREA INSTITUTE OF ENERGY RESEARCH
    Inventors: Sun-Dong Kim, Se-Young Kim, Sang-Kuk Woo, Jong-Hoon Joo, In-Sub Han, Doo-Won Seo, Min-Soo Suh
  • Patent number: 9608155
    Abstract: The invention includes a parabolic solar concentrator typified by a highly integrated structure whereby, mirror, aerodynamic elements, a shell structure, cooling elements and other elements have been integrated to form a unibody structure, which is both stiffer and lighter than traditional trough structures. The invention includes; aerodynamic features that greatly limit lift forces induced by high speed winds, a receiver with liquid cooling for better control of PV cell temperatures and which allows for the collection of the heat for beneficial use, accommodations for a solar tracker, and improvements in the focusing and distribution of light using secondary mirrors. The receiver incorporates specific details to improve heat transfer and reduce parasitic pumping loads and incorporates secondary mirrors to increase light acceptance angles. Automated mirror washing is addressed.
    Type: Grant
    Filed: November 9, 2012
    Date of Patent: March 28, 2017
    Inventor: John C Ingram
  • Patent number: 9608135
    Abstract: A solar cell according to an embodiment includes a semiconductor substrate; a first dopant layer formed at one surface of the semiconductor substrate; and a first electrode electrically connected to the first dopant layer. At least a part of the first dopant layer includes a pre-amorphization element, and a concentration of the pre-amorphization element in one portion of the first dopant layer is different from a concentration of the pre-amorphization element in another portion of the first dopant layer.
    Type: Grant
    Filed: October 4, 2012
    Date of Patent: March 28, 2017
    Assignee: LG ELECTRONICS INC.
    Inventors: Youngsung Yang, Yongduk Jin, Manhyo Ha, Juhwa Cheong
  • Patent number: 9598788
    Abstract: An electroplating apparatus has a rotor in a head, with a contact ring on the rotor. A lift/rotate actuator may move the head to position a sector of the contact ring into a deplate channel of a deplating station. Electrical current and a deplate liquid are applied directly onto the contacts of the contact ring, from a position radially inward of the contacts. Electrical current and a deplate liquid may also be separately applied onto the back side of the ring contact, from a position radially to the outside of the contact ring. A seal on the deplating station makes sliding contact with the contact ring as the contact ring rotates through the deplate channel, with the seal associated with an exhaust or vacuum opening that pulls deplating and rinse liquid through openings in the contact ring.
    Type: Grant
    Filed: September 25, 2013
    Date of Patent: March 21, 2017
    Assignee: APPLIED Materials, Inc.
    Inventors: Randy A. Harris, Bryan J. Puch
  • Patent number: 9602046
    Abstract: The present invention is premised upon an improved photovoltaic device (“PV device”), more particularly to an improved photovoltaic device with a multilayered photovoltaic cell assembly and a body portion joined at an interface region and including an intermediate layer, at least one interconnecting structural member, relieving feature, unique component geometry, or any combination thereof.
    Type: Grant
    Filed: December 12, 2011
    Date of Patent: March 21, 2017
    Assignee: Dow Global Technologies LLC
    Inventors: Jason A Reese, James R Keenihan, Ryan S Gaston, Keith L Kauffmann, Joseph A Langmaid, Leonardo C Lopez, Kevin D Maak, Michael E Mills, Narayan Ramesh, Samar R Teli
  • Patent number: 9580828
    Abstract: A self-terminating rapid process for controlled growth of platinum or platinum alloy monolayer films from a K2PtCl4—NaCl—NaBr electrolyte. Using the present process, platinum deposition may be quenched at potentials just negative of proton reduction by an alteration of the double layer structure induced by a saturated surface coverage of underpotential deposited hydrogen. The surface may be reactivated for platinum deposition by stepping the potential to more positive values where underpotential deposited hydrogen is oxidized and fresh sites for absorption of platinum chloride become available. Periodic pulsing of the potential enables sequential deposition of two dimensional platinum layers to fabricate films of desired thickness relevant to a range of advanced technologies, from catalysis to magnetics and electronics.
    Type: Grant
    Filed: August 28, 2013
    Date of Patent: February 28, 2017
    Assignee: The United States of America, as represented by the Secretary of Commerce (NIST)
    Inventors: Thomas P. Moffat, Yihua Liu
  • Patent number: 9562302
    Abstract: A method for producing a metal-ceramic composite coating with increased hardness on a substrate includes adding a sol of a ceramic phase to the plating solution or electrolyte. The sol may be added prior to and/or during the plating or coating and at a rate of sol addition controlled to be sufficiently low that nanoparticles of the ceramic phase form directly onto or at the substrate and/or that the metal-ceramic coating forms on the substrate with a predominantly crystalline structure and/or to substantially avoid formation of nanoparticles of the ceramic phase, and/or agglomeration of particles of the ceramic phase, in the plating solution or electrolyte. The ceramic phase may be a single or mixed oxide, carbide, nitride, silicate, boride of Ti, W, Si, Zr, Al, Y, Cr, Fe, Pb, Co, or a rare earth element. The coating, other than the ceramic phase may comprise Ni, Ni—P, Ni—W—P, Ni—Cu—P, Ni—B, Cu, Ag, Au, Pd.
    Type: Grant
    Filed: June 29, 2010
    Date of Patent: February 7, 2017
    Assignee: AUCKLAND UNISERVICES LIMITED
    Inventors: Wei Gao, Weiwei Chen
  • Patent number: 9534309
    Abstract: The present invention relates to a coating method by electrocatalyzed chemical grafting of a surface of a substrate with a polymeric layer characterized in that it comprises the following steps: a. a substrate is provided, b. a bath containing at least one polymerizable monomer via a radical route, at least one cleavable aryl salt, at least one reducing agent and at least one solvent is provided, in which a potential difference is applied, c. said substrate is immersed in said bath, d. a grafted polymer is obtained on the surface of said substrate. The invention also relates to a substrate obtained according to the coating method by electrocatalyzed chemical grafting, the surface of which is coated with a polymeric layer.
    Type: Grant
    Filed: December 21, 2011
    Date of Patent: January 3, 2017
    Assignee: PEGASTECH
    Inventors: Sebastien Roussel, Matthieu Laurent, Christian Maennel
  • Patent number: 9526183
    Abstract: The present invention relates to a galvanic process for filling through-holes with metals. The process is particularly suitable for filling through-holes of printed circuit boards with copper.
    Type: Grant
    Filed: May 20, 2016
    Date of Patent: December 20, 2016
    Assignee: Atotech Deutschland GmbH
    Inventors: Bert Reents, Thomas Pliet, Bernd Roelfs, Toshiya Fujiwara, Rene Wenzel, Markus Youkhanis, Soungsoo Kim