Patents Assigned to Advanced Industrial Science and Technology
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Publication number: 20230063626Abstract: A spray ionization device comprising: a first tube that has a first flow path through which a liquid can flow and a first outlet on one end thereof from which the liquid is sprayed; a second tube that surrounds the first tube with a gap therebetween, has a second flow path through which a gas can flow, and has a second outlet on the one end thereof; and an electrode that extends through the interior of the first flow path of the first tube, from the other end thereof to the one end, said electrode being arranged such that the tip thereof is at the same position as the first outlet or is further on the other end side than the first outlet, and said electrode being able to apply a voltage to the liquid by means of a power source connected to the electrode.Type: ApplicationFiled: October 28, 2020Publication date: March 2, 2023Applicant: National Institute of Advanced Industrial Science and TechnologyInventors: Shinichiro Fujii, Kazumi Inagaki, Shinichi Miyashita
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Publication number: 20230051469Abstract: A spray ionization device comprising: a first pipe body that has a first flow path which allows a liquid to flow therethrough, and has, at one end thereof, a first outlet through which the liquid is sprayed out; a second pipe body that surrounds the first pipe body; and a third pipe body that surrounds the second pipe body with a space interposed therebetween, that has a second flow path allowing a gas to flow therethrough, and that has a second outlet at the one end. At least the leading end part of the third pipe body including the second outlet is made of an electrically conductive material so as to serve as an electrode. Charged droplets can be sprayed from the second outlet by applying an electric field to droplets sprayed from the first outlet using a power supply connected to the electrode.Type: ApplicationFiled: January 19, 2021Publication date: February 16, 2023Applicant: National Institute of Advanced Industrial Science and TechnologyInventors: Shinichiro Fujii, Kazumi Inagaki, Shinichi Miyashita
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Publication number: 20230039058Abstract: A Sm—Fe—N magnet includes Sm—Fe—N particles, wherein an inter-particle metal phase is present between at least two of the Sm—Fe—N particles, an average particle diameter of the Sm—Fe—N particles is less than 2.0 ?m, and a percentage of the Sm—Fe—N particles having an aspect ratio of 2.0 or more is 10% or less, the inter-particle metal phase includes a Fe3Zn10 phase and an ?-Fe phase in a particle form, and in the inter-particle metal phase, an area ratio of the Fe3Zn10 phase is 80% or more.Type: ApplicationFiled: July 27, 2022Publication date: February 9, 2023Applicants: TDK Corporation, National Institute of Advanced Industrial Science and TechnologyInventors: Hirotaka YOKOTA, Eiichiro Fukuchi, Shusuke Okada, Kenta Takagi
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Publication number: 20230043317Abstract: A Sm—Fe—N magnet includes Sm—Fe—N particles each having a surface, a coating layer being provided on at least a portion of the surface or on at least a portion of an interface between at least two of the Sm—Fe—N particles, or being provided on both, wherein the coating layer includes a first layer and a second layer, the first layer being situated closer to the surface or the interface than is the second layer, he first layer includes ?-Fe, the second layer includes a Sm—Fe—Zn alloy, and a Zn content contained in the second layer is 1 at % or more and 20 at % or less.Type: ApplicationFiled: July 27, 2022Publication date: February 9, 2023Applicants: TDK Corporation, National Institute of Advanced Industrial Science and TechnologyInventors: Hirotaka YOKOTA, Shusuke Okada, Kenta Takagi
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Patent number: 11565488Abstract: This method for manufacturing a light absorber includes: a first step for irradiating a resin substrate with ion beams; a second step for etching the irradiated resin substrate with an alkaline solution to form an uneven surface on the surface thereof; a third step for forming a transfer body which covers the uneven surface of the etched resin substrate; and a fourth step for peeling off the transfer body from the resin substrate to obtain a light absorber. A metal film, a photocurable resin, and a silicone rubber are disclosed as an example of the transfer body.Type: GrantFiled: May 9, 2018Date of Patent: January 31, 2023Assignee: National Institute of Advanced Industrial Science and TechnologyInventor: Kuniaki Amemiya
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Patent number: 11548004Abstract: A method for producing a liquid reaction mixture containing a radioisotope, in particular, a radioactive composition, minimizes device contamination with radioactive substances and increase speed and accuracy with which droplets are mixed. The method for producing a radioactive composition includes placing at least one first droplet L1 containing a radionuclide and at least one second droplet L2 containing a labeling substance on at least two respective dimples 5 among dimples 5 on a front surface 4b of an insulating layer 4 of a liquid manipulation device 1, and obtaining a liquid mixture M by using a change in electrostatic force caused by changing voltage applied to the electrodes 3 to thereby cause a relative movement between the at least one first droplet L1 and the at least one second droplet L2 so that the at least one first droplet L1 and the at least one second droplet L2 are mixed together at any one dimple among the dimples 5.Type: GrantFiled: May 11, 2021Date of Patent: January 10, 2023Assignees: National Institute of Advanced Industrial Science and Technology, Kyoto Pharmaceutical UniversityInventors: Katsuo Mogi, Tohru Natsume, Shungo Adachi, Tomoya Inoue, Hiroyuki Kimura
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Publication number: 20230003813Abstract: Proposed is a phase shift introduction method, a structure, and a circuit device for eliminating or minimizing a risk associated with dissimilar materials, solving in principle a problem of mixing of a signal current and a control current that occurs due to DC connection of a phase shifter to a signal line, and stably and reliably providing a phase shift that is desired to be introduced without being adversely effected by noise generated by an ambient magnetic field, which is generated due to use of an external power supply. A structure according to the present invention includes a phase shifter 101 and a closed-loop circuit 103 that is directly used for computation or storage, and a quantum phase shift is generated in the closed-loop circuit 103 by using a fractional flux quantum captured by the phase shifter 101 that is DC-separated from the closed-loop circuit 103.Type: ApplicationFiled: November 26, 2020Publication date: January 5, 2023Applicants: National Institute of Advanced Industrial Science and Technology, NATIONAL INSTITUTE FOR MATERIALS SCIENCE, Tokyo University of Science FoundationInventors: Yasumoto TANAKA, Hirotake YAMAMORI, Takashi YANAGISAWA, Shunichi ARISAWA, Taichiro NISHIO
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Publication number: 20220402057Abstract: A magnetic-field melting solder that melts by the action of an AC magnetic field is provided. The magnetic-field melting solder includes solder material; and magnetic material composing of ferrite or Ni, a proportion of the magnetic material to the entire magnetic-field melting solder being 0.005% to 5% by weight. A joining method using the magnetic-field melting solder includes providing the magnetic-field melting solder between an electrode on a substrate and an electrode of an electronic component, and joining together the electrode on the substrate and the electrode of the electronic component by generating an AC magnetic field around the substrate and thereby melting the magnetic-field melting solder.Type: ApplicationFiled: November 18, 2020Publication date: December 22, 2022Applicants: SENJU METAL INDUSTRY CO., LTD., National Institute of Advanced Industrial Science and TechnologyInventors: Haruya SAKUMA, Kenichi TOMITSUKA, Hisahiko YOSHIDA, Kenji KANAZAWA, Sei UEMURA, Takashi NAKAMURA, Masateru NISHIOKA
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Publication number: 20220369959Abstract: The present invention is provided with a four-wavelength light emitter that emits four kinds of wavelengths of light toward a predetermined site on a living body; a light receiver that receives the four kinds of wavelengths of light transmitted through the predetermined site on the living body; a received light intensity information acquirer that acquires received light intensity information for the four wavelengths on the basis of an optical signal received by the light receiver; an absorbance time change value acquirer that finds time change values of the absorbances corresponding to the four wavelengths on the basis of the received light intensity information of the four wavelengths; a calibration data table that stores calibration data for finding a predetermined component in blood based on the absorbance time change values; and a component concentration acquirer that finds the concentration of the predetermined component in the blood.Type: ApplicationFiled: November 5, 2020Publication date: November 24, 2022Applicants: National Institute of Advanced Industrial Science and Technology, CBC Co., Ltd.Inventors: Hiromitsu FURUKAWA, Anri WATANABE, Shinichi NAKAMURA, Hiroaki AIZAWA
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Patent number: 11493994Abstract: An input device, method, and system enabling a switch input operation of various equipment by moving a body part other than hands and feet. Input by body movement, such as a wink, is achieved by an input device including: a detector which includes a first contact electrode placed at a first position of a body part and a second contact electrode placed at a second position of the body part, the detector configured to measure a biological signal between the first contact electrode and the second contact electrode, and to detect a low-frequency component inclusive of the biological signal; and a discrimination processor configured to determine, based on a signal from the detector, presence or absence of an input movement of the body part in a vicinity of the first position, and/or presence or absence of an input movement of the body part in a vicinity of the second position.Type: GrantFiled: July 12, 2019Date of Patent: November 8, 2022Assignee: National Institute of Advanced Industrial Science and TechnologyInventor: Ryohei Hasegawa
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Publication number: 20220320527Abstract: This electrode comprises: an electrode component containing a columnar structure; and a porous collector layer that is prepared on the electrode component. The columnar structure comprises a multiple columnar sections, the lateral surfaces of which are at least partially in contact with each other. Each columnar part section is provided with a multilayer part wherein different inorganic compound layers are stacked. In addition, the columnar structure comprises two or more adjacent columnar sections, which are different from each other in the stacking direction of the multilayer part. For example, each columnar section has a width of 10 nm to 100 nm, and each inorganic compound layer has a thickness of 1 nm to 10 nm.Type: ApplicationFiled: July 15, 2020Publication date: October 6, 2022Applicant: National Institute of Advanced Industrial Science and TechnologyInventors: Tomohiro Ishiyama, Develos Katherine Bagarinao, Haruo Kishimoto, Katsuhiko Yamaji
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Patent number: 11459646Abstract: The purpose of the present invention is to provide: a new magnetic material which exhibits high magnetic stability and excellent oxidation resistance and which can achieve both significantly higher saturation magnetization and lower coercive force than a conventional ferrite-based magnetic material by using a magnetic material obtained by nanodispersing ?-(Fe,M) phases and M component-enriched phases (here, the M component is at least one component selected from among Zr, Hf, V, Nb, Ta, Cr, Mo, W, Cu, Zn and Si); and a method for producing same. This magnetic material powder exhibits high moldability, and is such that ?-(Fe, M) phases and M-enriched phases are nanodispersed by chemically reducing M-ferrite nanoparticles, which are obtained by means of wet synthesis, in hydrogen and utilizing phase separation by means of a disproportionation reaction while simultaneously carrying out grain growth. Furthermore, a solid magnetic material is obtained by sintering this powder.Type: GrantFiled: September 20, 2018Date of Patent: October 4, 2022Assignee: National Institute of Advanced Industrial Science and TechnologyInventors: Nobuyoshi Imaoka, Shinpei Yamamoto, Kimihiro Ozaki
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Publication number: 20220305505Abstract: Provided in the present disclosure is a spray ionization device comprising: a first tube that has a first flow path in which a liquid can flow, the first tube having a first outlet on one end thereof from which the liquid is sprayed; a second tube that surrounds the first tube with a gap therebetween and has a second flow path in which a gas can flow, the second tube having a second outlet on the one end thereof and the second flow path being defined by the outer peripheral surface of the first tube and the inner peripheral surface of the second tube; and an electrode contacting the liquid flowing through the first flow path, the electrode being able to apply a voltage to the liquid by means of a power source connected to the electrode, wherein charged droplets of the liquid can be sprayed from the second outlet.Type: ApplicationFiled: April 15, 2020Publication date: September 29, 2022Applicant: National Institute of Advanced Industrial Science and TechnologyInventors: Shinichiro Fujii, Kazumi Inagaki, Shinichi Miyashita
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Patent number: 11453057Abstract: A samarium-iron-nitrogen alloy powder according to one embodiment of the present invention is characterized in that a value obtained by dividing the hydrogen content of the samarium-iron-nitrogen alloy powder by the BET specific surface area of the samarium-iron-nitrogen alloy powder is less than or equal to 400 ppm/(m2/g), and a value obtained by dividing the oxygen content of the samarium-iron-nitrogen alloy powder by the BET specific surface area of the samarium-iron-nitrogen alloy powder is less than or equal to 11,000 ppm/(m2/g).Type: GrantFiled: February 28, 2017Date of Patent: September 27, 2022Assignees: National Institute of Advanced Industrial Science and Technology, TDK CorporationInventors: Shusuke Okada, Kazuyuki Suzuki, Kenta Takagi, Kimihiro Ozaki, Yasushi Enokido
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Patent number: 11448634Abstract: An analysis apparatus (100) includes an image acquisition unit (110) and an analysis unit (120). The image acquisition unit (110) acquires image data of a microfossil in a sample collected from a stratum. The analysis unit (120) analyzes the image data acquired by the image acquisition unit (110) using a machine learning result to analyze a taxon or kind of the microfossil in the image data.Type: GrantFiled: May 10, 2018Date of Patent: September 20, 2022Assignees: NEC CORPORATION, JAPAN AGENCY FOR MARINE-EARTH SCIENCE AND TECHNOLOGY, NATIONAL UNIVERSITY CORPORATION KOCHI UNIVERSITY, National Institute of Advanced Industrial Science and TechnologyInventors: Yousuke Taira, Naoki Kuwamori, Tatsuhiko Hoshino, Jonaotaro Onodera, Tatsuhiko Yamaguchi, Kyoko Tomioka, Takuya Itaki
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Publication number: 20220278267Abstract: Provided is a sheet-shape electrostatic sound pressure-electrical signal conversion device that is three-dimensionally deformable and has a low drive voltage. The sound pressure-electrical signal conversion device includes a polymer sheet sandwiched between a pair of electrodes facing each other, the polymer sheet is a dielectric film, at least one of the electrodes includes an insulating flexible substrate having a plurality of through-holes and a plurality of conductive fibers having one end fixed to the flexible substrate with a pressure sensitive adhesive, electrical conduction in an in-plane direction is formed by contact between the conductive fibers, the conductive fibers are vibrated by giving an electrical signal to the pair of electrodes or the conductive fibers are vibrated by receiving sound pressure to cause the pair of electrodes to output an electrical signal.Type: ApplicationFiled: June 12, 2020Publication date: September 1, 2022Applicant: National Institute of Advanced Industrial Science and TechnologyInventors: Manabu Yoshida, Naoki Shirakawa, Nobuko Fukuda
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Patent number: 11427620Abstract: It is an object of the present invention to provide a transmission-blocking vaccine using an immunogenic protein which is specifically expressed in the oocyst stage of malaria parasites or a peptide fragment thereof, and an oral transmission-blocking vaccine capable of immunizing various animals involved in the malaria infectious cycle with such a vaccine. The present invention relates to a malaria transmission-blocking vaccine for oral administration containing an immunogenic protein derived from malaria parasite which is specifically expressed in the oocyst stage of malaria parasites or a peptide fragment thereof, and a method of blocking the transmission of malaria using the same.Type: GrantFiled: September 4, 2017Date of Patent: August 30, 2022Assignees: Hokusan Co., Ltd., National Institute of Advanced Industrial Science and Technology, School Juridical Person The Kitasato InstituteInventors: Noriko Tabayashi, Toru Gotanda, Hanae Sasaki, Noriko Itchoda, Uiko Kagaya, Takeshi Matsumura, Akira Ito, Hiromi Ikadai
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Publication number: 20220260527Abstract: An ion analyzer for analyzing product ions generated by irradiating precursor ions derived from a sample component with radicals, the ion analyzer including a reaction chamber 2, a radical supply unit 5, 6 configured to generate radicals and supply the radicals to the reaction chamber, a radical temperature acquisition unit 911, 912 configured to acquire a temperature of the radicals to be supplied to the reaction chamber, a standard substance supply unit 11 configured to supply a predetermined amount of predetermined precursor ions to the reaction chamber, the predetermined precursor ions being generated from a standard substance whose activation energy of a reaction in which the radicals attach to the standard substance is known, an ion measurement unit 92 configured to measure an amount of predetermined product ions generated from the precursor ions derived from the standard substance by the reaction with the radicals, a reactive radical amount calculation unit 93 configured to obtain an amount of reactiveType: ApplicationFiled: July 19, 2019Publication date: August 18, 2022Applicants: Shimadzu Corporation, National Institute of Advanced Industrial Science and TechnologyInventors: Hidenori TAKAHASHI, Daiki ASAKAWA
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Patent number: 11415613Abstract: An optical waveguide 1, an optical waveguide 2 are formed on a substrate 3 to be crossed with each other, modulator electrodes 11, 12, 13 and 14 are arranged along the optical waveguides 1, 2, and antennas 21, 22, 23, 24 (i.e., square patch antennas having an approximately same shape) are arranged around four corners of the square shape. The modulator electrode 11 is energized from the antenna 21 and the antenna 22, the modulator electrode 12 is energized from the antenna 24 and the antenna 23, the modulator electrode 13 is energized from the antenna 21 and the antenna 24, and the modulator electrode 14 is energized from the antenna 22 and the antenna 23. The light wave propagating through the optical waveguide 1 is modulated by an electric field of Y-direction, and the light wave propagating through the optical waveguide 2 is modulated by an electric field of X-direction.Type: GrantFiled: March 19, 2020Date of Patent: August 16, 2022Assignees: MIE University, National Institute of Advanced Industrial Science and Technology, SEIKOH GIKEN Co., Ltd.Inventors: Hiroshi Murata, Satoru Kurokawa, Yoshikazu Toba, Masahiro Sato
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Patent number: 11417881Abstract: A lithium-manganese composite oxide represented by formula (1): Li1+x[(FeyNi1?y)zMn1?z]1?xO2 (1) wherein x, y, and z satisfy the following: 0<x??, 0?y<1.0, and 0<z?0.6, and wherein the content ratio of Li to the total content of Fe, Ni, and Mn (Li/(Fe+Ni+Mn)) is 1.55 or less on a molar ratio basis, the lithium-manganese composite oxide containing a crystalline phase having a layered rock-salt structure. This composite oxide is a novel material made from less resource-constrained and cheaper elements, and exhibits a high specific capacity, excellent charge-and-discharge cycle characteristics, and a high discharge capacity at a high current density (excellent rate characteristics), when used in the positive electrode material for lithium-ion secondary batteries.Type: GrantFiled: November 14, 2017Date of Patent: August 16, 2022Assignees: National Institute ot Advanced Industrial Science and Technology, Tanaka Chemical Corporation, NEC CorporationInventors: Mitsuharu Tabuchi, Hideka Shibuya, Takashi Ohtomo, Noriyuki Tamura, Kaoru Narita, Ryota Yuge, Naoki Kawano