Iwatani Corporation

Japon

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Type PI
        Brevet 100
        Marque 22
Juridiction
        International 80
        États-Unis 37
        Canada 4
        Europe 1
Date
Nouveautés (dernières 4 semaines) 2
2026 mars (MACJ) 2
2026 décembre 1
2025 novembre 1
2026 (AACJ) 2
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Classe IPC
C01B 13/10 - Préparation de l'ozone 8
H01L 21/67 - Appareils spécialement adaptés pour la manipulation des dispositifs à semi-conducteurs ou des dispositifs électriques à l'état solide pendant leur fabrication ou leur traitementAppareils spécialement adaptés pour la manipulation des plaquettes pendant la fabrication ou le traitement des dispositifs à semi-conducteurs ou des dispositifs électriques à l'état solide ou de leurs composants 6
C23C 16/44 - Revêtement chimique par décomposition de composés gazeux, ne laissant pas de produits de réaction du matériau de la surface dans le revêtement, c.-à-d. procédés de dépôt chimique en phase vapeur [CVD] caractérisé par le procédé de revêtement 5
H01L 21/304 - Traitement mécanique, p. ex. meulage, polissage, coupe 5
B01D 53/04 - Séparation de gaz ou de vapeursRécupération de vapeurs de solvants volatils dans les gazÉpuration chimique ou biologique des gaz résiduaires, p. ex. gaz d'échappement des moteurs à combustion, fumées, vapeurs, gaz de combustion ou aérosols par adsorption, p. ex. chromatographie préparatoire en phase gazeuse avec adsorbants fixes 4
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Classe NICE
11 - Appareils de contrôle de l'environnement 18
04 - Huiles et graisses industrielles; lubrifiants; combustibles 13
01 - Produits chimiques destinés à l'industrie, aux sciences ainsi qu'à l'agriculture 6
21 - Ustensiles, récipients, matériaux pour le ménage; verre; porcelaine; faience 5
18 - Cuir et imitations du cuir 3
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Statut
En Instance 4
Enregistré / En vigueur 118
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1.

FREEZING DEVICE

      
Numéro d'application JP2025029849
Numéro de publication 2026/053792
Statut Délivré - en vigueur
Date de dépôt 2025-08-26
Date de publication 2026-03-12
Propriétaire IWATANI CORPORATION (Japon)
Inventeur(s)
  • Nakamura Tetsuji
  • Ishida Kei

Abrégé

The present invention makes it possible to more suitably perform cooling while reducing the consumption of a refrigerant. In a freezing device 11 that comprises a freezing chamber 12 which uses a liquefied gas as a refrigerant and which has an exhaust port 15, a cooling plate 16, on which an object to be frozen is placed directly or indirectly, is provided on an inner bottom surface 12a of the freezing chamber 12. The cooling plate 16 is made of metal and incorporates a refrigerant flow path 16a therein, and performs a freezing process of supplying a liquid refrigerant to an inlet 16b of the refrigerant flow path 16a while discharging a gaseous refrigerant from the outlet of the refrigerant flow path 16a to fill the freezing chamber 12.

Classes IPC  ?

  • F25D 3/10 - Dispositifs utilisant d'autres agents froidsDispositifs utilisant des récipients conservant le froid utilisant des gaz liquéfiés, p. ex. de l'air liquide
  • C12M 1/00 - Appareillage pour l'enzymologie ou la microbiologie
  • C12N 1/04 - Conservation des micro-organismes à l'état viable

2.

CLEAN ROOM INSTALLATION STRUCTURE FOR FREEZING DEVICE

      
Numéro d'application JP2025029850
Numéro de publication 2026/053793
Statut Délivré - en vigueur
Date de dépôt 2025-08-26
Date de publication 2026-03-12
Propriétaire IWATANI CORPORATION (Japon)
Inventeur(s)
  • Nakamura Tetsuji
  • Ishida Kei
  • Sawada Shun

Abrégé

The present invention ensures a sterile state in a clean room by eliminating the risk of propagation of bacteria due to frost formation and dew condensation. A holding window 12a into which a freezing device 11 is fitted is formed penetrating through a wall section 12 that configures a clean room 13 and has a back space 15 on a rear surface side thereof, and a casing 11b of the freezing device 11 is fitted into and held by the holding window 12a. At this time, an opening/closing door 11a of the freezing device 11 is exposed at a surface on the clean room 13 side of the wall section 12. A refrigerant supply passage 14 for supplying a refrigerant to the freezing device 11 is provided in the back space 15 together with a refrigerant container 16, and the portion where frost and dew condensation are likely to occur is thereby isolated.

Classes IPC  ?

  • F25D 3/10 - Dispositifs utilisant d'autres agents froidsDispositifs utilisant des récipients conservant le froid utilisant des gaz liquéfiés, p. ex. de l'air liquide
  • F24F 7/06 - Ventilation avec réseau de gaines à circulation d'air forcée, p. ex. par un ventilateur

3.

WELDED COMPONENT AND PRODUCTION METHOD FOR WELDED COMPONENT

      
Numéro d'application JP2025016933
Numéro de publication 2025/258280
Statut Délivré - en vigueur
Date de dépôt 2025-05-08
Date de publication 2025-12-18
Propriétaire IWATANI CORPORATION (Japon)
Inventeur(s)
  • Fujikawa Atsushi
  • Ishii Masanobu
  • Kodama Takaaki
  • Minami Kazuki
  • Yoshida Yoshifumi
  • Yoshioka Takashi
  • Hio Masatoshi

Abrégé

The present invention improves the strength of a weld part of a welded component that is made by welding a copper member and a chromium stainless steel member. A welded component according to the present invention comprises a first member that is formed from chromium stainless steel, a second member that is formed from copper, and a weld part that joins the first member and the second member. The weld part includes a first region that includes elements included in the chromium stainless steel that forms the first member as principal components and a second region that includes copper as a principal component and is disposed so as to form an interface with the first region. A plurality of first island-like regions that include elements included in the chromium stainless steel that forms the first member as principal components are distributed in the second region. A plurality of second island-like regions that include copper as a principal component are distributed in the first region. The first region and the second region form metallic bonds at the interface.

Classes IPC  ?

  • B23K 9/23 - Soudage ou découpage à l'arc tenant compte des propriétés des matériaux à souder
  • B23K 35/30 - Emploi de matériaux spécifiés pour le soudage ou le brasage dont le principal constituant fond à moins de 1550 C
  • B23K 35/32 - Emploi de matériaux spécifiés pour le soudage ou le brasage dont le principal constituant fond à plus de 1550°C
  • C22C 9/00 - Alliages à base de cuivre
  • C22C 27/04 - Alliages à base de tungstène ou de molybdène

4.

Iwatani

      
Numéro d'application 1886630
Statut Enregistrée
Date de dépôt 2025-06-03
Date d'enregistrement 2025-06-03
Propriétaire IWATANI CORPORATION (Japon)
Classes de Nice  ?
  • 01 - Produits chimiques destinés à l'industrie, aux sciences ainsi qu'à l'agriculture
  • 04 - Huiles et graisses industrielles; lubrifiants; combustibles
  • 06 - Métaux communs et minerais; objets en métal
  • 07 - Machines et machines-outils
  • 09 - Appareils et instruments scientifiques et électriques
  • 11 - Appareils de contrôle de l'environnement
  • 16 - Papier, carton et produits en ces matières
  • 29 - Viande, produits laitiers et aliments préparés ou conservés
  • 30 - Aliments de base, thé, café, pâtisseries et confiseries
  • 31 - Produits agricoles; animaux vivants
  • 32 - Bières; boissons non alcoolisées
  • 35 - Publicité; Affaires commerciales
  • 39 - Services de transport, emballage et entreposage; organisation de voyages

Produits et services

Chemicals; natural refrigerants; chemicals used in industry, science and photography; chemicals for use in industry, science and photography, as well as in agriculture, horticulture and forestry; chemical agents; non-metallic oxides; sulfur [non-metallic minerals]; non-metallic minerals for use in manufacture; oxygen; hydrogen; carbon; nitrogen; helium; argon; carbon dioxide for industrial purposes; gas for industrial purposes; solidified gases for industrial purposes; carbonic acid gas; chemicals for use in the processing of plastics; dry ice [carbon dioxide]; wood alcohol; carbides; alkaline metals; alkaline-earth metals; rare earths; rare earth metals; non-metallic minerals; chemical condensation preparations; glue and adhesives for industrial purposes; fertilizers; plastics [raw materials]; unprocessed plastics for industrial use; plastics, unprocessed; unprocessed plastic materials in powder, liquid or paste form. Fuels; solid fuels; liquid fuels; gaseous fuels; ethanol [fuel]; gasoline (fuel); diesel fuel; biomass fuel; biofuels; butane fuel; carburants; hydrogen fuel; xylene fuel; hydrocarbon fuels; lighting fuel; butane gas for use as fuel; propane for use as fuel; fuel gas; fuel pellets; solidified gases [fuel]; coal based fuels; fuel for motor vehicles; aviation fuel; fuel for ships; fuels for cooking; mineral fuel; alcohol and mixed alcohol fuel; fuel from crude oil; propane gas; natural gas; liquefied natural gas; liquefied petroleum gases; coal gas; coke; coal; gasoline; gas oil; heavy oils; crude oils; kerosene; mineral oils and greases for industrial purposes [not for fuel]; solid lubricants; grease for shoes and boots; leather preserving oil and grease; non-mineral oils for industrial purposes; waxes [raw material]; lamp wicks; candles. Metal cylinders for compressed gas or liquids, sold empty; liquefied gas storage tanks of metal; iron and steel; non-ferrous metals and their alloys; ores of metal; steel plates and sheets; steel sheets; pipework of metal; rails of metal; galvanized steel sheets; steel in the form of sheets, plates, foils and reels; tinplate; alloyed steels; aluminum alloy; nickel alloys; titanium alloy; liquid storage tanks [containers] made of metal; metal junctions for pipes; sealing caps of metal; metal flanges; wire nets and gauzes. Metalworking machines and tools; gas cutting machines; gas welding machines; gas-operated welding torches; electric welding machines for metalworking; engines, other than for land vehicles; machine couplings and transmission components for machines; industrial robots; chemical processing machines and apparatus; food preparation machines, electromechanical; pressure regulators [parts of machines]; mixing machines; presses for chemical processing; pumps [machines]; drills, electric; lathes for metalworking; compression moulding machines for processing plastics; fuel filters; separating machines for chemical processing; oil separators; oil centrifuges; dissolving machines for chemical processing; reaction vessels for chemical processing being parts of machines; reaction vessels for chemical processing machines; disintegrators for chemical processing; extracting machines for chemical processing; washing apparatus; sintering machines for chemical processing; vacuum cleaners; absorbing machines for chemical processing; compressors; dishwashers; agitators; blenders, electric, for household purposes; earth moving machines. Gas sensors; gas testing instruments; gas pressure indicators; flue gas analyzers; gas flow meters; intercommunication apparatus; remote control apparatus and instruments; data communication apparatus and instruments; devices for wireless radio transmission; detectors; sensors [measurement apparatus], other than for medical use; alarm sensors; carbon monoxide detectors; carbon dioxide detectors; gasometers; gasometers [measuring instruments]; alarm installations; bells [warning devices]; fire alarms; fire detectors; smoke detectors; alarms for the detection of inflammable gases; gas alarms; locks, electric; laboratory apparatus and instruments; lithium ion batteries; rechargeable electric batteries; solar batteries; photovoltaic cells and modules; fuel cells; batteries, electric; electric cables; telecommunication machines and apparatus; application software; computer software products; computers; computer peripheral devices; electronic publications, downloadable. Cooking apparatus and installations for commercial use; industrial dishdrying machines; kitchen sinks incorporating integrated worktops for commercial use; kitchen sinks for commercial use; lighting apparatus and installations; led light bulbs; electric torches; portable headlamps; electrically heated carpets; electric cooking pots for household purposes; coffee percolators, electric; electric cooktops; electric fans for household purposes; hot plates; gas stoves; stoves [heating apparatus]; portable stoves; oil stoves [space heaters] for household purposes; electric stoves; toasters; blankets, electric, not for medical purposes; electric thermo pots for household purposes; refrigerators; portable refrigerators; electric freezers; electromagnetic induction cookers [for household purposes]; microwave ovens [cooking apparatus]; electrically heated mugs; hair driers; non-electric cooking heaters for household purposes; barbecues; kitchen sinks incorporating integrated worktops; sinks; gas cookers; oil cooking stoves [for household purposes]; barbecue grills; gas lighters; coal stoves [space heaters for household use]; oil burners; gas burners; burners; gas torches for cooking; butane torches for cooking; humidifiers; heating apparatus for solid, liquid or gaseous fuels; cool boxes, electric; cooking utensils, electric; kettles, electric; frying pans, electric; cookers; cooking apparatus and installations; multicookers; cooking stoves; lamp mantles; heating filaments, electric; electrical rice cookers; camping stoves; roasters; gas ovens; cooking ovens; electric ovens; induction ovens; portable fire pits; outdoor heaters; ice machines; ventilation apparatus; air purifiers; candle lighters; bath tubs; Japanese charcoal heaters for household purposes [hibachi]; grill lighters; gas condensers, other than parts of machines; gas-powered lanterns; oil lanterns; electric lanterns; gas grills. Paper and cardboard; towels of paper; packing paper; wrapping paper; packaging containers of paper; bags [envelopes, pouches] of plastics for packaging; bags [envelopes, pouches] of paper or plastics, for packaging; food wrapping plastic film for household purposes; absorbent sheets of paper or plastic for foodstuff packaging; plastic film for wrapping; plastic bubble film for wrapping; plastic materials for packaging; food wrapping plastic film; pastes and other adhesives for stationery or household purposes; garbage bags of paper or of plastics; stationery; printed matter. Vegetable-based snack food; meat-based snack food; edible oils and fats; milk products; meat for human consumption [fresh, chilled or frozen]; eggs; fresh, chilled or frozen edible aquatic animals (not live); frozen vegetables; frozen fruits; processed meat products; frozen processed meat products; processed seafood products; frozen processed seafood products; processed vegetables and fruits; soya milk; processed eggs; preparations for making soup; dried flakes of laver for sprinkling on rice in hot water (ochazuke-nori); preserved pulses; formed textured vegetable protein for use as a meat substitute. Aromatic preparations for food, not from essential oils; tea; coffee [roasted, powdered, granulated, or in drinks]; prepared cocoa and cocoa-based beverages; ice; cakes; confectionery; seasonings; ice cream mixes; unroasted coffee beans; processed cereals; pre-packaged lunches consisting primarily of rice, and also including meat, fish or vegetables; rice; flour. Live edible aquatic animals; seaweed, unprocessed, for human or animal consumption; vegetables, fresh; malt, not for food; wheat; animal foodstuffs; seeds; trees; flowers [natural]. Beer; soft drinks; extracts of hops for making beer; whey beverages; non-alcoholic beverages. Retail services or wholesale services for fuels; retail services or wholesale services for fuel gas; retail services or wholesale services for cooking stoves; retail services or wholesale services for portable stoves; retail services or wholesale services for blenders, electric, for household purposes; retail services or wholesale services for in relation to cookware; retail services or wholesale services for kitchen containers; retail services or wholesale services for burners; retail services or wholesale services for gas-powered lanterns; retail services or wholesale services for oil lanterns; retail services or wholesale services for electric lanterns; retail services or wholesale services for non-electric cooking heaters for household purposes; retail services or wholesale services for cooking apparatus and installations; retail services or wholesale services for barbecue grills; retail services or wholesale services for gas grills; retail services or wholesale services for grills [cooking utensils]; retail services or wholesale services for camping grills [cooking utensils]; retail services or wholesale services for gas lighters; retail services or wholesale services for gas stoves [space heaters] for household purposes; retail services or wholesale services for electric stoves; retail services or wholesale services for bags and pouches; retail services or wholesale services for toiletries; retail services or wholesale services for griddles [cooking appliances]; retail services or wholesale services for gas-powered griddles being cooking appliances; retail services or wholesale services for plastic film for wrapping; retail services or wholesale services for tableware; retail services or wholesale services for dustbins for household purposes; retail services or wholesale services for furniture; retail services or wholesale services for packaging containers of wood or plastic; retail services or wholesale services for bathroom furniture; retail services or wholesale services for tents; retail services or wholesale services for tents for camping; retail services or wholesale services for sleeping bags for camping; retail services or wholesale services for bags specially adapted for sleeping bags; retail services or wholesale services for portable fire pits; retail services or wholesale services for foods and beverages; retail services or wholesale services for dietary supplements; retail services or wholesale services for kitchen equipment, cleaning tools and washing utensils; retail services or wholesale services for clothing; retail services or wholesale services for footwear, other than special footwear for sports; retail services or wholesale services for electrical machinery and apparatuses. Transport and storage of fuels; transportation and storage of gas; storage, distribution, transportation, shipping, and delivery of gas, oil and chemicals; distribution of gas; distribution of energy; electricity distribution.

5.

MULTI CUT GRILL

      
Numéro d'application 1873450
Statut Enregistrée
Date de dépôt 2025-07-18
Date d'enregistrement 2025-07-18
Propriétaire IWATANI CORPORATION (Japon)
Classes de Nice  ? 11 - Appareils de contrôle de l'environnement

Produits et services

Cooking apparatus and installations for commercial use; portable stoves; barbecues; barbecue grills; cookers; cooking stoves; camping stoves; griddles [cooking appliances]; gas cooking stoves.

6.

YAKI MARU

      
Numéro d'application 1873087
Statut Enregistrée
Date de dépôt 2025-07-18
Date d'enregistrement 2025-07-18
Propriétaire IWATANI CORPORATION (Japon)
Classes de Nice  ? 11 - Appareils de contrôle de l'environnement

Produits et services

Cooking apparatus and installations for commercial use; portable stoves; barbecues; barbecue grills; cookers; cooking stoves; camping stoves; griddles [cooking appliances]; gas cooking stoves.

7.

FLAME VIEWING DEVICE

      
Numéro d'application JP2024038485
Numéro de publication 2025/169548
Statut Délivré - en vigueur
Date de dépôt 2024-10-29
Date de publication 2025-08-14
Propriétaire
  • IWATANI CORPORATION (Japon)
  • ASAHI SEISAKUSHO CO., LTD. (Japon)
Inventeur(s)
  • Motoyama, Kousuke
  • Harasawa, Kengo

Abrégé

[Problem] To provide a flame viewing device which is compact so as to allow for a wider range of choice in installation location, and which can prevent fires. [Solution] Provided is a flame viewing device having an enclosure 10 with transparent portions 17, 18 and a burner 40 that releases a gas into an interior space S1 of the enclosure 10, thus allowing a flame produced by burning the gas to be viewed through the transparent portions 17, 18, wherein the gas is supplied from a removable cassette gas cylinder CB, a thermal barrier 73 is laid out above the burner 40 in the interior space S1 to prevent convective heat from the flame from heading to a top panel 15 of the enclosure 10, and at least one of the four sides of the enclosure 10 around the thermal barrier 73 has a heat dissipation port 75 for releasing convective heat into an external space.

Classes IPC  ?

  • F24C 15/34 - Éléments ou dispositions pour l'accumulation de chaleur ou l'isolation
  • F23D 14/04 - Brûleurs à gaz avec prémélangeurs, c.-à-d. dans lesquels le combustible gazeux est mélangé à l'air de combustion en amont de la zone de combustion du type à induction, p. ex. becs Bunsen
  • F23D 14/28 - Brûleurs pour la combustion d'un gaz, p. ex. d'un gaz stocké sous pression à l'état liquide associés à une source de combustible gazeux, p. ex. générateur d'acétylène ou réservoir de gaz liquéfié
  • F23D 14/84 - Diffusion de la flamme ou autres moyens pour lui donner une forme particulière
  • F24C 3/14 - Poêles ou fourneaux à combustibles gazeux spécialement adaptés pour voyager, p. ex. démontables

8.

IWATANI

      
Numéro d'application 241373500
Statut En instance
Date de dépôt 2025-07-10
Propriétaire IWATANI CORPORATION (Japon)
Classes de Nice  ? 21 - Ustensiles, récipients, matériaux pour le ménage; verre; porcelaine; faience

Produits et services

(1) Cooking pots and pans, non-electric; non-electric coffee urns; tetsubin [Japanese cast iron kettles], non-electric; kettles, non-electric; dishware; cleaning tools and washing utensils; non-electric portable coldboxes; kitchen containers for rice; water bottles; insulated flasks; boxes of metal, for dispensing paper towels; food preserving jars of glass; frying pans; jugs; heat-insulated containers; portable cool boxes, non-electric; household or kitchen utensils and containers; gloves for household purposes; table plates; cups; cookware and tableware, except forks, knives and spoons; coal scuttles; cold packs for chilling food and beverages; non-electric griddles.

9.

IWATANI

      
Numéro d'application 243679800
Statut En instance
Date de dépôt 2025-06-03
Propriétaire IWATANI CORPORATION (Japon)
Classes de Nice  ?
  • 01 - Produits chimiques destinés à l'industrie, aux sciences ainsi qu'à l'agriculture
  • 04 - Huiles et graisses industrielles; lubrifiants; combustibles
  • 11 - Appareils de contrôle de l'environnement

Produits et services

(1) Chemicals; natural refrigerants; chemicals used in industry, science and photography; chemicals for use in industry, science and photography, as well as in agriculture, horticulture and forestry; chemical agents; non-metallic oxides; sulfur [non-metallic minerals]; non-metallic minerals for use in manufacture; oxygen; hydrogen; carbon; nitrogen; helium; argon; carbon dioxide for industrial purposes; gas for industrial purposes; solidified gases for industrial purposes; carbonic acid gas; chemicals for use in the processing of plastics; dry ice [carbon dioxide]; wood alcohol; carbides; alkaline metals; alkaline-earth metals; rare earths; rare earth metals; non-metallic minerals; chemical condensation preparations; glue and adhesives for industrial purposes; fertilizers; plastics [raw materials]; unprocessed plastics for industrial use; plastics, unprocessed; unprocessed plastic materials in powder, liquid or paste form. (2) Fuels; solid fuels; liquid fuels; gaseous fuels; ethanol [fuel]; gasoline (fuel); diesel fuel; biomass fuel; biofuels; butane fuel; carburants; hydrogen fuel; xylene fuel; hydrocarbon fuels; lighting fuel; butane gas for use as fuel; propane for use as fuel; fuel gas; fuel pellets; solidified gases [fuel]; coal based fuels; fuel for motor vehicles; aviation fuel; fuel for ships; fuels for cooking; mineral fuel; alcohol and mixed alcohol fuel; fuel from crude oil; propane gas; natural gas; liquefied natural gas; liquefied petroleum gases; coal gas; coke; coal; gasoline; gas oil; heavy oils; crude oils; kerosene; mineral oils and greases for industrial purposes [not for fuel]; solid lubricants; grease for shoes and boots; leather preserving oil and grease; non-mineral oils for industrial purposes; waxes [raw material]; lamp wicks; candles. (3) Cooking apparatus and installations for commercial use; industrial dishdrying machines; kitchen sinks incorporating integrated worktops for commercial use; kitchen sinks for commercial use; lighting apparatus and installations; led light bulbs; electric torches; portable headlamps; electrically heated carpets; electric cooking pots for household purposes; coffee percolators, electric; electric cooktops; electric fans for household purposes; hot plates; gas stoves; stoves [heating apparatus]; portable stoves; oil stoves [space heaters] for household purposes; electric stoves; toasters; blankets, electric, not for medical purposes; electric thermo pots for household purposes; refrigerators; portable refrigerators; electric freezers; electromagnetic induction cookers [for household purposes]; microwave ovens [cooking apparatus]; electrically heated mugs; hair driers; non-electric cooking heaters for household purposes; barbecues; kitchen sinks incorporating integrated worktops; sinks; gas cookers; oil cooking stoves [for household purposes]; barbecue grills; gas lighters; coal stoves [space heaters for household use]; oil burners; gas burners; burners; gas torches for cooking; butane torches for cooking; humidifiers; heating apparatus for solid, liquid or gaseous fuels; cool boxes, electric; cooking utensils, electric; kettles, electric; frying pans, electric; cookers; cooking apparatus and installations; multicookers; cooking stoves; lamp mantles; heating filaments, electric; electrical rice cookers; camping stoves; roasters; gas ovens; cooking ovens; electric ovens; induction ovens; portable fire pits; outdoor heaters; ice machines; ventilation apparatus; air purifiers; candle lighters; bath tubs; Japanese charcoal heaters for household purposes [hibachi]; grill lighters; gas condensers, other than parts of machines; gas-powered lanterns; oil lanterns; electric lanterns; gas grills.

10.

IWATANI

      
Numéro de série 79437023
Statut En instance
Date de dépôt 2025-06-03
Propriétaire IWATANI CORPORATION (Japon)
Classes de Nice  ?
  • 01 - Produits chimiques destinés à l'industrie, aux sciences ainsi qu'à l'agriculture
  • 04 - Huiles et graisses industrielles; lubrifiants; combustibles
  • 06 - Métaux communs et minerais; objets en métal
  • 09 - Appareils et instruments scientifiques et électriques
  • 11 - Appareils de contrôle de l'environnement

Produits et services

Chemicals; natural refrigerants; chemicals used in industry, science and photography; chemicals for use in industry, science and photography, as well as in agriculture, horticulture and forestry; chemical agents; non-metallic oxides; sulfur (non-metallic minerals); non-metallic minerals for use in manufacture; oxygen; hydrogen; carbon; nitrogen; helium; argon; carbon dioxide for industrial purposes; gas for industrial purposes; solidified gases for industrial purposes; carbonic acid gas; chemicals for use in the processing of plastics; dry ice (carbon dioxide); wood alcohol; carbides; alkaline metals; alkaline-earth metals; rare earths; rare earth metals; non-metallic minerals; chemical condensation preparations; glue and adhesives for industrial purposes; fertilizers; plastics (raw materials); unprocessed plastics for industrial use; plastics, unprocessed; unprocessed plastic materials in powder, liquid or paste form Fuels; solid fuels; liquid fuels; gaseous fuels; ethanol (fuel); gasoline (fuel); diesel fuel; biomass fuel; biofuels; butane fuel; carburants; hydrogen fuel; xylene fuel; hydrocarbon fuels; lighting fuel; butane gas for use as fuel; propane for use as fuel; fuel gas; fuel pellets; solidified gases (fuel); coal based fuels; fuel for motor vehicles; aviation fuel; fuel for ships; fuels for cooking; mineral fuel; alcohol and mixed alcohol fuel; fuel from crude oil; propane gas; natural gas; liquefied natural gas; liquefied petroleum gases; coal gas; coke; coal; gasoline; gas oil; heavy oils; crude oils; kerosene; mineral oils and greases for industrial purposes (not for fuel); solid lubricants; grease for shoes and boots; leather preserving oil and grease; non-mineral oils for industrial purposes; waxes (raw material); lamp wicks; candles Metal cylinders for compressed gas or liquids, sold empty; liquefied gas storage tanks of metal; iron and steel; non-ferrous metals and their alloys; ores of metal; steel plates and sheets; steel sheets; pipework of metal; rails of metal; galvanized steel sheets; steel in the form of sheets, plates, foils and reels; tinplate; alloyed steels; aluminum alloy; nickel alloys; titanium alloy; liquid storage tanks (containers) made of metal; metal junctions for pipes; sealing caps of metal; metal flanges; wire nets and gauzes Gas sensors; gas testing instruments; gas pressure indicators; flue gas analyzers; gas flow meters; intercommunication apparatus; remote control apparatus and instruments; data communication apparatus and instruments; devices for wireless radio transmission; detectors; sensors (measurement apparatus), other than for medical use; alarm sensors; carbon monoxide detectors; carbon dioxide detectors; gasometers; gasometers (measuring instruments); alarm installations; bells (warning devices); fire alarms; fire detectors; smoke detectors; alarms for the detection of inflammable gases; gas alarms; locks, electric; laboratory apparatus and instruments; lithium ion batteries; rechargeable electric batteries; solar batteries; photovoltaic cells and modules; fuel cells; batteries, electric; electric cables; telecommunication machines and apparatus; application software; computer software products; computers; computer peripheral devices; electronic publications, downloadable Cooking apparatus and installations for commercial use; industrial dishdrying machines; kitchen sinks incorporating integrated worktops for commercial use; kitchen sinks for commercial use; lighting apparatus and installations; led light bulbs; electric torches; portable headlamps; electrically heated carpets; electric cooking pots for household purposes; coffee percolators, electric; electric cooktops; electric fans for household purposes; hot plates; gas stoves; stoves (heating apparatus); portable stoves; oil stoves (space heaters) for household purposes; electric stoves; toasters; blankets, electric, not for medical purposes; electric thermo pots for household purposes; refrigerators; portable refrigerators; electric freezers; electromagnetic induction cookers (for household purposes); microwave ovens (cooking apparatus); electrically heated mugs; hair driers; non-electric cooking heaters for household purposes; barbecues; kitchen sinks incorporating integrated worktops; sinks; gas cookers; oil cooking stoves (for household purposes); barbecue grills; gas lighters; coal stoves (space heaters for household use); oil burners; gas burners; burners; gas torches for cooking; butane torches for cooking; humidifiers; heating apparatus for solid, liquid or gaseous fuels; cool boxes, electric; cooking utensils, electric; kettles, electric; frying pans, electric; cookers; cooking apparatus and installations; multicookers; cooking stoves; lamp mantles; heating filaments, electric; electrical rice cookers; camping stoves; roasters; gas ovens; cooking ovens; electric ovens; induction ovens; portable fire pits; outdoor heaters; ice machines; ventilation apparatus; air purifiers; candle lighters; bath tubs; Japanese charcoal heaters for household purposes (hibachi); grill lighters; gas condensers, other than parts of machines; gas-powered lanterns; oil lanterns; electric lanterns; gas grills

11.

COFFEE BEAN ROASTING MACHINE

      
Numéro d'application JP2024019548
Numéro de publication 2024/257604
Statut Délivré - en vigueur
Date de dépôt 2024-05-28
Date de publication 2024-12-19
Propriétaire IWATANI CORPORATION (Japon)
Inventeur(s) Abe, Shusaku

Abrégé

[Problem] To provide a coffee bean roasting machine that allows a drum to be removed stably and easily therefrom. [Solution] A coffee bean roasting machine (2) comprises: a base (3) that is installed in a pan support (81) and has an attachment part (31); a support member (4) that is attached to the attachment part (31); a shaft (5) that penetrates the support member (4) and is rotatably supported with respect to the support member (4); and a drum (6) that is fixed to the shaft (5) at one end (661), has, at the other end (662), an opening (631) through which coffee beans can pass, and rotates upon receiving a rotational force transmitted from the shaft (5). Either the base (3) or the support member (4) fits into the other of the base (3) and the support member (4). The drum (6) is supported on one side at the one end (661).

Classes IPC  ?

  • A23N 12/10 - Machines rotatives à griller ou torréfier

12.

tatsujin

      
Numéro d'application 1776805
Statut Enregistrée
Date de dépôt 2023-12-19
Date d'enregistrement 2023-12-19
Propriétaire IWATANI CORPORATION (Japon)
Classes de Nice  ? 11 - Appareils de contrôle de l'environnement

Produits et services

Cooking stoves; gas burners; cookers; cooking apparatus and installations; roasters; barbecues; non-electric cooking heaters for household purposes; hot plates; cooking ovens for household purposes; gas cooking ovens [for household purposes]; lava rocks for use in barbecue grills; camping gas stoves; gas stoves for household purposes; gas cooking stoves; portable gas stoves; portable gas cooking stoves.

13.

TATSUJIN

      
Numéro de série 79389827
Statut Enregistrée
Date de dépôt 2023-12-19
Date d'enregistrement 2025-04-08
Propriétaire IWATANI CORPORATION (Japon)
Classes de Nice  ? 11 - Appareils de contrôle de l'environnement

Produits et services

Cooking stoves; gas burners; cookers, namely, gas cookers and portable gas cookers; cooking apparatus and installations, namely, cooktops, wood burning cooking stoves, and Japanese charcoal cooking stoves for household purposes (shichirin); electric roasters; gas roasters; charcoal roasters for household purposes; barbecues; hot plates; electric cooking ovens for household purposes; gas cooking ovens for household purposes; lava rocks for use in barbecue grills; camping gas stoves; gas stoves for household purposes; gas cooking stoves; portable gas stoves; portable gas cooking stoves

14.

CELL FREEZING COMPOSITION, CELL FREEZING METHOD, CELL CULTURE METHOD, AND CELL FREEZING KIT

      
Numéro d'application 17766430
Statut En instance
Date de dépôt 2020-10-08
Date de la première publication 2023-09-07
Propriétaire IWATANI CORPORATION (Japon)
Inventeur(s)
  • Tabata, Yasuhiko
  • Kimura, Koji

Abrégé

A cell freezing composition according to the present invention includes a medium, an antifreezing agent, and dissolved hydrogen.

Classes IPC  ?

  • A01N 1/02 - Conservation de parties vivantes

15.

TOUGH MARU

      
Numéro d'application 1739070
Statut Enregistrée
Date de dépôt 2023-05-22
Date d'enregistrement 2023-05-22
Propriétaire IWATANI CORPORATION (Japon)
Classes de Nice  ? 11 - Appareils de contrôle de l'environnement

Produits et services

Camping stoves; gas stoves for household purposes; portable gas stoves; gas cooking stoves; portable gas cooking stoves; non-electric cooking heaters for household purposes; electric torches; gas lamps; oil lamps; gas-fired water heaters; sinks; gas refrigerators; gas barbecue grills; gas grills; outdoor lighting fittings; gas burners; burners.

16.

Iwatani

      
Numéro d'application 1722319
Statut Enregistrée
Date de dépôt 2023-01-27
Date d'enregistrement 2023-01-27
Propriétaire IWATANI CORPORATION (Japon)
Classes de Nice  ? 21 - Ustensiles, récipients, matériaux pour le ménage; verre; porcelaine; faience

Produits et services

Cooking pots and pans, non-electric; non-electric coffee urns; tetsubin [Japanese cast iron kettles], non-electric; kettles, non-electric; dishware; cleaning tools and washing utensils; non-electric portable coldboxes; kitchen containers for rice; water bottles; insulated flasks; boxes of metal, for dispensing paper towels; food preserving jars of glass; frying pans; jugs; heat-insulated containers; portable cool boxes, non-electric; household or kitchen utensils and containers; gloves for household purposes; table plates; cups; cookware and tableware, except forks, knives and spoons; coal scuttles; cold packs for chilling food and beverages; non-electric griddles.

17.

IWATANI

      
Numéro de série 79366664
Statut Enregistrée
Date de dépôt 2023-01-27
Date d'enregistrement 2024-08-13
Propriétaire IWATANI CORPORATION (Japon)
Classes de Nice  ? 21 - Ustensiles, récipients, matériaux pour le ménage; verre; porcelaine; faience

Produits et services

Cooking pots and pans, non-electric; non-electric coffee urns; tetsubin, namely, Japanese cast iron kettles, non-electric; kettles, non-electric; dishware; cleaning tools and washing utensils, namely, cleaning sponges, cleaning cloths, mops, brooms; non-electric portable coldboxes; kitchen containers for rice; water bottles sold empty; insulated flasks; food preserving jars of glass; frying pans; jugs; heat-insulated containers for beverages; portable cool boxes, non-electric; household or kitchen utensils, namely, graters, sieves, spatulas; household and kitchen containers; gloves for household purposes; table plates; cups; cookware and tableware, except forks, knives and spoons, namely, pots, pans, dishes, beverage glassware; coal scuttles; cold packs for chilling food and beverages; non-electric griddles

18.

Portable gas stove

      
Numéro d'application 35512017
Numéro de brevet D0974098
Statut Délivré - en vigueur
Date de dépôt 2020-12-17
Date de la première publication 2023-01-03
Date d'octroi 2023-01-03
Propriétaire IWATANI CORPORATION (Japon)
Inventeur(s) Tada, Tsuyoshi

19.

Gas burner

      
Numéro d'application 35512028
Numéro de brevet D0966814
Statut Délivré - en vigueur
Date de dépôt 2020-12-17
Date de la première publication 2022-10-18
Date d'octroi 2022-10-18
Propriétaire IWATANI CORPORATION (Japon)
Inventeur(s) Tada, Tsuyoshi

20.

Gas cluster processing device and gas cluster processing method

      
Numéro d'application 17585274
Numéro de brevet 12172198
Statut Délivré - en vigueur
Date de dépôt 2022-01-26
Date de la première publication 2022-05-12
Date d'octroi 2024-12-24
Propriétaire
  • TOKYO ELECTRON LIMITED (Japon)
  • IWATANI CORPORATION (Japon)
Inventeur(s)
  • Dobashi, Kazuya
  • Orii, Takehiko
  • Saito, Yukimasa
  • Koike, Kunihiko
  • Senoo, Takehiko
  • Izumi, Koichi
  • Yoshino, Yu
  • Shojo, Tadashi
  • Kanehira, Keita

Abrégé

There is provided a gas cluster processing device for performing a predetermined process on a workpiece by irradiating the workpiece with a gas cluster, including: a processing container in which the workpiece is disposed; a gas supply part configured to supply a gas for generating the gas cluster; a flow rate controller configured to control a flow rate of the gas supplied from the gas supply part; a cluster nozzle configured to receive the gas for generating the gas cluster at a predetermined supply pressure, spray the gas into the processing container maintained in a vacuum state, and convert the gas into the gas cluster through an adiabatic expansion; and a pressure control part provided in a pipe between the flow rate controller and the cluster nozzle and including a back pressure controller configured to control a supply pressure of the gas for generating the gas cluster.

Classes IPC  ?

  • B08B 5/02 - Nettoyage par la force de jets, p. ex. le soufflage de cavités
  • B08B 7/00 - Nettoyage par des procédés non prévus dans une seule autre sous-classe ou un seul groupe de la présente sous-classe
  • H01L 21/67 - Appareils spécialement adaptés pour la manipulation des dispositifs à semi-conducteurs ou des dispositifs électriques à l'état solide pendant leur fabrication ou leur traitementAppareils spécialement adaptés pour la manipulation des plaquettes pendant la fabrication ou le traitement des dispositifs à semi-conducteurs ou des dispositifs électriques à l'état solide ou de leurs composants
  • H01L 21/02 - Fabrication ou traitement des dispositifs à semi-conducteurs ou de leurs parties constitutives

21.

METHOD FOR PRODUCING PERFORATED CAST PRODUCT

      
Numéro d'application JP2021027371
Numéro de publication 2022/024930
Statut Délivré - en vigueur
Date de dépôt 2021-07-21
Date de publication 2022-02-03
Propriétaire IWATANI CORPORATION (Japon)
Inventeur(s) Nakajima Hideo

Abrégé

[Problem] To provide a method for producing a perforated cast product of a metal or a semiconductor material having one or more holes opened in the surface, said holes being formed by pulling out one or more heat-resistant wires, which had been provided within a casting mold, after supplying a molten metal or semiconductor material into the casting mold and subsequently solidifying the molten metal or semiconductor material therein, said method being capable of forming a longer and narrower pull-out hole having a large aspect ratio, or a curved pull-out hole, while being also capable of efficiently producing the perforated cast product having a plurality of pull-out holes at low cost. [Solution] Not later than a molten metal or semiconductor material is supplied, the surface of a heat-resistant wire is provided in advance with a coating layer having a multilayer structure, said coating layer comprising a first coating layer that is formed by adhering a mold release agent to the surface, said mold release agent not generating a gas even if brought into contact with the molten metal or semiconductor material, and a second coating layer that is formed by adhering a gas generation compound onto the first coating layer, said gas generation compound being decomposed by heat when brought into contact with the molten metal or semiconductor material, thereby generating a gas.

Classes IPC  ?

  • B22D 25/02 - Coulée particulière caractérisée par la nature du produit par sa formeCoulée particulière caractérisée par la nature du produit d'œuvres d'art
  • C22C 1/08 - Alliages poreux avec pores ouverts ou fermés
  • B22C 3/00 - Emploi de compositions spécifiées pour revêtir les surfaces des moules, noyaux ou modèles
  • B22C 9/10 - NoyauxFabrication ou mise en place des noyaux
  • B22C 9/24 - Moules pour pièces de forme particulière pour pièces évidées

22.

PORTABLE POWER GENERATOR

      
Numéro d'application JP2020025814
Numéro de publication 2022/003861
Statut Délivré - en vigueur
Date de dépôt 2020-07-01
Date de publication 2022-01-06
Propriétaire IWATANI CORPORATION (Japon)
Inventeur(s)
  • Akagi, Yuya
  • Nakamura, Sadaki
  • Morisawa, Makoto

Abrégé

[Problem] To provide a portable power generator that can improve power generation capacity and power generation efficiency. [Solution] A portable power generator according to the present invention generates power using combustion heat and is also transportable. The portable power generator 2 is provided with: burners 4 that burn fuel gas supplied from a fuel gas storage container 31 that stores the fuel gas; a high-temperature part 51 that is heated by heat transferred from flames 41 and exhaust gas released from the burners 4; a low-temperature part 52 that is positioned opposite the high-temperature part 51 and kept at a lower temperature than the high-temperature part 51; and a thermoelectric element 53 that is interposed between the high-temperature part 51 and the low-temperature part 52 and generates power on the basis of the temperature difference that arises between the high-temperature part 51 and the low-temperature part 52. A surface 511 of the high-temperature part 51 receives the heat transferred from the flames 41 and the exhaust gas and is inclined with respect to a direction A1 orthogonal to an installation surface 9 of the portable power generator 2.

Classes IPC  ?

  • H02N 3/00 - Générateurs dans lesquels l'énergie thermique ou cinétique est convertie en énergie électrique par ionisation d'un fluide et enlèvement de sa charge

23.

SOLID OXIDE FUEL CELL GENERATOR

      
Numéro d'application JP2021024206
Numéro de publication 2021/261588
Statut Délivré - en vigueur
Date de dépôt 2021-06-25
Date de publication 2021-12-30
Propriétaire
  • IWATANI CORPORATION (Japon)
  • ATSUMITEC CO., LTD. (Japon)
Inventeur(s)
  • Nakamura, Sadaki
  • Furutani, Masahiro
  • Akagi, Yuya
  • Morisawa, Makoto
  • Uchiyama, Naoki
  • Nakabayashi, Seigou
  • Uchiyama, Yasuyuki
  • Kawada, Tetsuya

Abrégé

[Problem] To provide a solid oxide fuel cell generator, that is, a generator provided with a solid oxide fuel cell that can start generation without requiring an auxiliary power source. [Solution] This solid oxide fuel cell generator (11) is characterized by being provided with: a solid oxide fuel cell unit (26) which generates power with a fuel gas and an oxide gas; an oxide gas supply unit (21) which transfers the oxide gas to the fuel cell unit; an oxide gas supply path (16) which guides the oxide gas to the fuel cell unit; a fuel gas supply path (15) which guides a fuel gas housed in a gas container (12) to the fuel cell unit; a heating means (17) which uses the fuel gas to heat the fuel cell unit; a thermoelectric generator unit (61) which has a thermoelectric element (61c) which is heated by the heating means and generates power on the basis of the temperature difference between a high-temperature area (61a) and a low-temperature area (61b); and a control unit (58) which implements control for supplying the power generated by the thermoelectric element to the oxide gas supply unit.

Classes IPC  ?

  • H01M 8/00 - Éléments à combustibleLeur fabrication
  • H01M 8/04 - Dispositions auxiliaires, p. ex. pour la commande de la pression ou pour la circulation des fluides
  • H01M 8/04007 - Dispositions auxiliaires, p. ex. pour la commande de la pression ou pour la circulation des fluides relatives à l’échange de chaleur
  • H01M 8/04014 - Échange de chaleur par des fluides gazeuxÉchange de chaleur par combustion des réactifs
  • H01M 8/04225 - Dispositions auxiliaires, p. ex. pour la commande de la pression ou pour la circulation des fluides pendant le démarrage ou l’arrêtDépolarisation ou activation, p. ex. purgeMoyens pour court-circuiter les éléments à combustible défectueux pendant le démarrage
  • H01M 8/04302 - Procédés de commande des éléments à combustible ou des systèmes d’éléments à combustible appliqués pendant des périodes spécifiques appliqués pendant le démarrage
  • H01M 8/04858 - Variables électriques
  • H01M 8/12 - Éléments à combustible avec électrolytes solides fonctionnant à haute température, p. ex. avec un électrolyte en ZrO2 stabilisé
  • H01M 8/249 - Groupement d'éléments à combustible, p. ex. empilement d'éléments à combustible comprenant plusieurs groupements d'éléments à combustible, p. ex. ensembles modulaires

24.

SOLID OXIDE FUEL CELL POWER GENERATOR

      
Numéro d'application JP2021024207
Numéro de publication 2021/261589
Statut Délivré - en vigueur
Date de dépôt 2021-06-25
Date de publication 2021-12-30
Propriétaire
  • IWATANI CORPORATION (Japon)
  • ATSUMITEC CO., LTD. (Japon)
Inventeur(s)
  • Nakamura, Sadaki
  • Furutani, Masahiro
  • Akagi, Yuya
  • Morisawa, Makoto
  • Uchiyama, Naoki
  • Nakabayashi, Seigou
  • Uchiyama, Yasuyuki
  • Kawada, Tetsuya

Abrégé

[Problem] To provide a solid oxide fuel cell power generator which is capable of suppressing decrease in the power generation capacity of a solid oxide fuel cell, while using a fuel gas containing sulfur without requiring a desulfurization device. [Solution] This solid oxide fuel cell power generator 11 is provided with: a solid oxide type fuel cell unit 26 which generates electricity by means of a fuel gas and an oxidizing gas; an oxidizing gas supply unit 21 which supplies an oxidizing gas to the fuel cell unit 26; an oxidizing gas supply path 16b for air electrode, which guides the oxidizing gas to an air electrode 13b of the fuel cell unit 26; an oxidizing gas supply path 16a for fuel electrode, which guides the oxidizing gas to a fuel electrode 13a of the fuel cell unit 26; a fuel gas supply path 15 which guides the fuel gas contained in a gas container 12 to the fuel cell unit 26; a heating means 17 which heats the fuel cell unit 26 by utilizing the fuel gas; and a control unit 58 which controls so that the oxidizing gas and the fuel gas are supplied to the fuel electrode 13a at a predetermined ratio.

Classes IPC  ?

  • H01M 8/04537 - Variables électriques
  • H01M 8/04746 - PressionDébit
  • H01M 8/12 - Éléments à combustible avec électrolytes solides fonctionnant à haute température, p. ex. avec un électrolyte en ZrO2 stabilisé
  • H01M 8/249 - Groupement d'éléments à combustible, p. ex. empilement d'éléments à combustible comprenant plusieurs groupements d'éléments à combustible, p. ex. ensembles modulaires

25.

METHOD FOR RECOVERING PLATINUM GROUP METAL, METHOD FOR MANUFACTURING FILM CONTAINING PLATINUM GROUP METAL, AND FILM-FORMING APPARATUS

      
Numéro d'application JP2021020529
Numéro de publication 2021/246340
Statut Délivré - en vigueur
Date de dépôt 2021-05-28
Date de publication 2021-12-09
Propriétaire IWATANI CORPORATION (Japon)
Inventeur(s)
  • Manabe, Toshiki
  • Izumi, Koichi
  • Shojo, Tadashi
  • Nagayama, Ryotaro

Abrégé

A method according to the present invention is for recovering a platinum group metal present within a film formation chamber after introducing a feedstock gas containing the platinum group metal into the film formation chamber and forming a film containing the platinum group metal on the surface of a substrate housed within the film formation chamber. The method is provided with: (i) a step for introducing a fluorine-containing cleaning gas into the film formation chamber after the substrate has been removed therefrom; and (ii) a step for introducing the cleaning gas discharged from the film formation chamber into a scavenging container that holds a scavenger comprising at least one selected from the group consisting of soda lime, slaked lime, and CaO.

Classes IPC  ?

  • C23C 16/44 - Revêtement chimique par décomposition de composés gazeux, ne laissant pas de produits de réaction du matériau de la surface dans le revêtement, c.-à-d. procédés de dépôt chimique en phase vapeur [CVD] caractérisé par le procédé de revêtement
  • C22B 3/06 - Extraction de composés métalliques par voie humide à partir de minerais ou de concentrés par lixiviation dans des solutions inorganiques acides
  • C22B 7/00 - Mise en œuvre de matériaux autres que des minerais, p. ex. des rognures, pour produire des métaux non ferreux ou leurs composés
  • C22B 11/00 - Obtention des métaux nobles
  • C23C 16/16 - Revêtement chimique par décomposition de composés gazeux, ne laissant pas de produits de réaction du matériau de la surface dans le revêtement, c.-à-d. procédés de dépôt chimique en phase vapeur [CVD] caractérisé par le dépôt d'un matériau métallique à partir de métaux carbonyles
  • H01L 21/28 - Fabrication des électrodes sur les corps semi-conducteurs par emploi de procédés ou d'appareils non couverts par les groupes
  • H01L 21/285 - Dépôt de matériaux conducteurs ou isolants pour les électrodes à partir d'un gaz ou d'une vapeur, p. ex. condensation

26.

METHOD FOR PRODUCING DYED FIBER ARTICLE AND METHOD OF PRODUCING DYE SOLUTION

      
Numéro d'application JP2020046965
Numéro de publication 2021/125226
Statut Délivré - en vigueur
Date de dépôt 2020-12-16
Date de publication 2021-06-24
Propriétaire IWATANI CORPORATION (Japon)
Inventeur(s)
  • Yamamoto Tsuyoshi
  • Suzuki Kouhei
  • Yamanaka Yuya
  • Koike Kunihiko

Abrégé

According to the present invention, a dye solution is produced by dissolving indigo into an aqueous solvent without using a hard-to-handle chemical such as a hydrosulfite. The dye solution is able to be produced by sequentially or simultaneously supplying indigo and hydrogen to an aqueous solvent. The dye solution is able to be used for dyeing of a fiber article.

Classes IPC  ?

  • D06P 1/22 - Procédés généraux de teinture ou d'impression des textiles ou procédés généraux de teinture du cuir, des fourrures ou des substances macromoléculaires solides de toutes formes, classés selon les teintures, les pigments ou les substances auxiliaires utilisés utilisant des colorants de cuve
  • D06P 1/34 - Procédés généraux de teinture ou d'impression des textiles ou procédés généraux de teinture du cuir, des fourrures ou des substances macromoléculaires solides de toutes formes, classés selon les teintures, les pigments ou les substances auxiliaires utilisés utilisant des matières colorantes naturelles
  • D06P 1/642 - Composés contenant de l'azote
  • D06P 5/00 - Autres caractéristiques de la teinture ou de l'impression des textiles ou de la teinture du cuir, des fourrures ou des substances macromoléculaires de toutes formes
  • D06P 3/52 - Polyesters

27.

Gas cluster processing device and gas cluster processing method

      
Numéro d'application 16496714
Numéro de brevet 11267021
Statut Délivré - en vigueur
Date de dépôt 2018-02-09
Date de la première publication 2021-04-15
Date d'octroi 2022-03-08
Propriétaire
  • TOKYO ELECTRON LIMITED (Japon)
  • IWATANI CORPORATION (Japon)
Inventeur(s)
  • Dobashi, Kazuya
  • Orii, Takehiko
  • Saito, Yukimasa
  • Koike, Kunihiko
  • Senoo, Takehiko
  • Izumi, Koichi
  • Yoshino, Yu
  • Shojo, Tadashi
  • Kanehira, Keita

Abrégé

There is provided a gas cluster processing device for performing a predetermined process on a workpiece by irradiating the workpiece with a gas cluster, including: a processing container in which the workpiece is disposed; a gas supply part configured to supply a gas for generating the gas cluster; a flow rate controller configured to control a flow rate of the gas supplied from the gas supply part; a cluster nozzle configured to receive the gas for generating the gas cluster at a predetermined supply pressure, spray the gas into the processing container maintained in a vacuum state, and convert the gas into the gas cluster through an adiabatic expansion; and a pressure control part provided in a pipe between the flow rate controller and the cluster nozzle and including a back pressure controller configured to control a supply pressure of the gas for generating the gas cluster.

Classes IPC  ?

  • H01L 21/67 - Appareils spécialement adaptés pour la manipulation des dispositifs à semi-conducteurs ou des dispositifs électriques à l'état solide pendant leur fabrication ou leur traitementAppareils spécialement adaptés pour la manipulation des plaquettes pendant la fabrication ou le traitement des dispositifs à semi-conducteurs ou des dispositifs électriques à l'état solide ou de leurs composants
  • B08B 5/02 - Nettoyage par la force de jets, p. ex. le soufflage de cavités
  • B08B 7/00 - Nettoyage par des procédés non prévus dans une seule autre sous-classe ou un seul groupe de la présente sous-classe
  • H01L 21/02 - Fabrication ou traitement des dispositifs à semi-conducteurs ou de leurs parties constitutives

28.

COMPOSITION FOR FREEZING CELLS, METHOD FOR FREEZING CELLS, METHOD FOR CULTURING CELLS, AND KIT FOR FREEZING CELLS

      
Numéro d'application JP2020038136
Numéro de publication 2021/070908
Statut Délivré - en vigueur
Date de dépôt 2020-10-08
Date de publication 2021-04-15
Propriétaire IWATANI CORPORATION (Japon)
Inventeur(s)
  • Tabata Yasuhiko
  • Kimura Koji

Abrégé

The composition for freezing cells according to the present invention comprises a culture medium, an anti-freezing agent and dissolved hydrogen.

Classes IPC  ?

  • A01N 1/02 - Conservation de parties vivantes
  • C12N 5/07 - Cellules animales ou tissus animaux
  • C12N 1/04 - Conservation des micro-organismes à l'état viable

29.

FORE WINDS

      
Numéro d'application 1566736
Statut Enregistrée
Date de dépôt 2020-09-09
Date d'enregistrement 2020-09-09
Propriétaire IWATANI CORPORATION (Japon)
Classes de Nice  ?
  • 04 - Huiles et graisses industrielles; lubrifiants; combustibles
  • 11 - Appareils de contrôle de l'environnement
  • 18 - Cuir et imitations du cuir
  • 20 - Meubles et produits décoratifs
  • 21 - Ustensiles, récipients, matériaux pour le ménage; verre; porcelaine; faience

Produits et services

Solid fuels; liquid fuels; gaseous fuels; leather preserving oil and grease; lamp wicks; candles; fuel. Electric torches; gas lamps; oil lamps; lamp chimneys; hibachis; gas-fired water heaters; outdoor heaters; non-electric cooking heaters for household purposes; water heaters; cooking apparatus and installations; sinks; gas refrigerators; portable refrigerators; apparatus for heating and cooling; household electrothermic appliances; barbecue grills; gas grills; grills, electric; outdoor lighting fittings; gas burners; burners; ice-cooling refrigerators for household purposes; heating or cooling packs filled with chemical substances ready to react when required. Bags; pouches; vanity cases, not fitted; umbrellas; walking sticks; canes. Furniture; packaging containers of plastic; cushions; mattresses; benches; hanging boards [Japanese style pegboards using positional hooks]; chairs; tables; shelves; locks, other than electric, not of metal; packaging containers of wood; beds. Cooking pots and pans, non-electric; non-electric coffee urns; tetsubin [Japanese cast iron kettles], non-electric; kettles, non-electric; dishware; cleaning tools and washing utensils; non-electric portable coldboxes; kitchen containers for rice; water bottles; insulated flasks; boxes of metal, for dispensing paper towels; food preserving jars of glass; frying pans; jugs; heat-insulated containers; portable cool boxes, non-electric; household or kitchen utensils and containers; baskets for household purposes; gloves for household purposes; table plates; cups; cookware and tableware, except forks, knives and spoons; coal scuttles; cold packs for chilling food and beverages.

30.

Inspection apparatus for hydrogen gas dispenser

      
Numéro d'application 16646751
Numéro de brevet 11371656
Statut Délivré - en vigueur
Date de dépôt 2019-02-28
Date de la première publication 2020-12-10
Date d'octroi 2022-06-28
Propriétaire IWATANI CORPORATION (Japon)
Inventeur(s)
  • Ito, Masaru
  • Inoue, Goichi
  • Tsuda, Koichi

Abrégé

An inspection apparatus A for a hydrogen gas dispenser includes a receiving-side gas flowing unit 1 including a receptacle 11 configured to be connected to a nozzle C1 of a hydrogen gas dispenser C and an inspection unit including a rate-of-pressure-rise inspection unit 2 configured to measure a rate of pressure rise of hydrogen gas from the hydrogen gas dispenser C and a dispensed-amount inspection unit 3 configured to measure a dispensed amount of the hydrogen gas. The inspection apparatus A for a hydrogen gas dispenser is capable of measuring a dispensed amount and a rate of pressure rise of the hydrogen gas dispenser.

Classes IPC  ?

  • F17C 13/02 - Adaptations spéciales des dispositifs indicateurs, de mesure ou de contrôle
  • F17C 5/06 - Procédés ou appareils pour remplir des récipients sous pression de gaz liquéfiés, solidifiés ou comprimés pour le remplissage avec des gaz comprimés

31.

BIOMASS FUEL PRODUCTION METHOD AND BIOMASS FUEL

      
Numéro d'application JP2019022151
Numéro de publication 2020/245906
Statut Délivré - en vigueur
Date de dépôt 2019-06-04
Date de publication 2020-12-10
Propriétaire
  • IWATANI CORPORATION (Japon)
  • EREX CO., LTD. (Japon)
Inventeur(s)
  • Okuda, Jun
  • Tsujimura, Takayuki

Abrégé

A biomass fuel production method according to the present invention comprises: a step for preparing palm kernel shells; and a step for adhering, to the palm kernel shells, a neutralizer including one or more neutralizing substances selected from the group consisting of potassium hydroxide, sodium hydroxide, magnesium hydroxide, calcium hydroxide, and calcium oxide.

Classes IPC  ?

  • C10L 5/44 - Combustibles solides à base essentielle de matières d'origine non minérale de matières végétales

32.

HYDROGEN TORCH

      
Numéro d'application JP2020019608
Numéro de publication 2020/241345
Statut Délivré - en vigueur
Date de dépôt 2020-05-18
Date de publication 2020-12-03
Propriétaire IWATANI CORPORATION (Japon)
Inventeur(s)
  • Matsumoto Kazuto
  • Katou Hayato
  • Koike Kunihiko

Abrégé

[Problem] To reduce a loss of heat transfer for heating a hydrogen storage alloy and enable rapid heating in a hydrogen torch in which hydrogen is taken out from the hydrogen storage alloy and burned. [Solution] A hydrogen torch 11 comprises a hydrogen tank 13 containing a hydrogen storage alloy 12, and a burner 14 for burning hydrogen supplied from the hydrogen tank 13, wherein a heat exchanger 31 having a flow path for flowing water is provided inside the hydrogen tank 13. A circulation path 17 for circulating water to the heat exchanger 31 is connected to the heat exchanger 31, and a heat recovery part 17a for recovering the heat of the burner 14 is formed in a part of the circulation path 17.

Classes IPC  ?

  • F17C 11/00 - Utilisation de solvants ou d'absorbants des gaz dans les récipients
  • F23K 5/00 - Alimentation en d'autres combustibles ou distribution d'autres combustibles pour les appareils à combustion

33.

VALVE DEVICE AND GAS CONSUMPTION UNIT

      
Numéro d'application JP2020019516
Numéro de publication 2020/235504
Statut Délivré - en vigueur
Date de dépôt 2020-05-15
Date de publication 2020-11-26
Propriétaire
  • IWATANI CORPORATION (Japon)
  • NERIKI VALVE CO., LTD. (Japon)
Inventeur(s)
  • Matsumoto Kazuto
  • Katou Hayato
  • Takeda Masaru
  • Miyata Kazuyuki

Abrégé

[Problem] The purpose of the present invention is to provide a valve device and a gas consumption unit which can be attached to a storage container to restrict the passage of fluid, the valve device and the gas consumption unit being small-sized but provided with a safety valve that releases an excessive pressure greater than a predetermined pressure. [Solution] A relief body (41) is configured in a ring shape to fit around a tubular main body (13) so as to move forward and backward along an axial direction (L) inside a cover portion (30). The relief body (41) is provided with a relief spring (42), two O-rings (4), and a third flow channel (R3). The relief spring (42) urges the relief body (41) toward a proximal end side (Lb) with an urging force of a predetermined pressure or less. The two O-rings (4) are separated in the axial direction (L) and seal gaps between the tubular main body (13) and the relief body (41). The third flow channel (R3) communicates with a part located between the tubular main body (13) and the relief body (41) and between the two O-rings (4), and with a first flow channel (R1). The effective area of the O-ring (4b) on the proximal end side (Lb) is wider than the effective area of the O-ring (4a) on a distal end side (Lf).

Classes IPC  ?

  • F16K 27/07 - Structures des logementsMatériaux utilisés à cet effet de dispositifs obturateurs de réservoirs, p. ex. de wagons-citernes
  • F16K 51/00 - Autres détails non particuliers aux types de soupapes ou clapets ou autres appareils d'obturation
  • F17C 11/00 - Utilisation de solvants ou d'absorbants des gaz dans les récipients
  • F17C 13/04 - Disposition ou montage des soupapes

34.

FILM FORMATION METHOD, FILM FORMATION APPARATUS, AND METHOD FOR CLEANING TREATMENT VESSEL

      
Numéro d'application JP2020019952
Numéro de publication 2020/235596
Statut Délivré - en vigueur
Date de dépôt 2020-05-20
Date de publication 2020-11-26
Propriétaire
  • TOKYO ELECTRON LIMITED (Japon)
  • IWATANI CORPORATION (Japon)
Inventeur(s)
  • Murakami, Seishi
  • Izumi, Koichi
  • Shojo, Tadashi
  • Manabe, Toshiki

Abrégé

The purpose of the present invention is to clean a treatment vessel at a lower temperature when a ruthenium-containing film or an osmium-containing film is formed. This film formation method includes: a step (step 1) for accommodating a substrate to be treated in a treatment vessel and forming a ruthenium-containing film or an osmium-containing film on the substrate to be treated in the treatment vessel by means of CVD; and, after carrying out the film formation step one or more times, a step (step 2) for supplying a halogen-containing gas and an oxidizing gas into the treatment vessel in a state whereby the substrate to be treated is not present in the treatment vessel and dry cleaning the inside of the treatment vessel.

Classes IPC  ?

  • C23C 16/18 - Revêtement chimique par décomposition de composés gazeux, ne laissant pas de produits de réaction du matériau de la surface dans le revêtement, c.-à-d. procédés de dépôt chimique en phase vapeur [CVD] caractérisé par le dépôt d'un matériau métallique à partir de composés organométalliques
  • C23C 16/44 - Revêtement chimique par décomposition de composés gazeux, ne laissant pas de produits de réaction du matériau de la surface dans le revêtement, c.-à-d. procédés de dépôt chimique en phase vapeur [CVD] caractérisé par le procédé de revêtement
  • H01L 21/31 - Traitement des corps semi-conducteurs en utilisant des procédés ou des appareils non couverts par les groupes pour former des couches isolantes en surface, p. ex. pour masquer ou en utilisant des techniques photolithographiquesPost-traitement de ces couchesEmploi de matériaux spécifiés pour ces couches

35.

Cutting method

      
Numéro d'application 16632291
Numéro de brevet 11380586
Statut Délivré - en vigueur
Date de dépôt 2018-07-18
Date de la première publication 2020-11-19
Date d'octroi 2022-07-05
Propriétaire
  • IWATANI CORPORATION (Japon)
  • HAMAMATSU PHOTONICS K.K. (Japon)
Inventeur(s)
  • Manabe, Toshiki
  • Senoo, Takehiko
  • Izumi, Koichi
  • Shojo, Tadashi
  • Ogiwara, Takafumi
  • Sakamoto, Takeshi

Abrégé

A cutting method includes: forming a reformed region in a workpiece; and after forming the reformed region in the workpiece, forming a groove in the workpiece along an intended cut line. In the forming a groove, a first dry etching process is performed from a front surface toward a rear surface of the workpiece. After the first dry etching process, a first pressure-reducing process is performed in which the workpiece is placed under an atmosphere of reduced pressure as compared to pressure during the first dry etching process. After the first pressure-reducing process, a second dry etching process is performed from the front surface toward the rear surface of the workpiece.

Classes IPC  ?

  • H01L 21/78 - Fabrication ou traitement de dispositifs consistant en une pluralité de composants à l'état solide ou de circuits intégrés formés dans ou sur un substrat commun avec une division ultérieure du substrat en plusieurs dispositifs individuels
  • H01L 21/268 - Bombardement par des radiations ondulatoires ou corpusculaires par des radiations d'énergie élevée les radiations étant électromagnétiques, p. ex. des rayons laser
  • H01L 21/3065 - Gravure par plasmaGravure au moyen d'ions réactifs

36.

Cutting method of workpiece by forming reformed region and dry etching process

      
Numéro d'application 16632298
Numéro de brevet 11482455
Statut Délivré - en vigueur
Date de dépôt 2018-07-18
Date de la première publication 2020-11-19
Date d'octroi 2022-10-25
Propriétaire
  • IWATANI CORPORATION (Japon)
  • HAMAMATSU PHOTONICS K.K. (Japon)
Inventeur(s)
  • Manabe, Toshiki
  • Senoo, Takehiko
  • Izumi, Koichi
  • Shojo, Tadashi
  • Ogiwara, Takafumi
  • Sakamoto, Takeshi

Abrégé

A cutting method includes: forming a reformed region in a workpiece; and after forming the reformed region in the workpiece, cutting the workpiece along an intended cut line. In the cutting the workpiece, a dry etching process is performed from a front surface toward a rear surface of the workpiece while the workpiece is fixed on a support member at least under its own weight or by suction, to form a groove from the front surface to reach the rear surface of the workpiece.

Classes IPC  ?

  • H01L 21/78 - Fabrication ou traitement de dispositifs consistant en une pluralité de composants à l'état solide ou de circuits intégrés formés dans ou sur un substrat commun avec une division ultérieure du substrat en plusieurs dispositifs individuels
  • B23K 26/0622 - Mise en forme du faisceau laser, p. ex. à l’aide de masques ou de foyers multiples par commande directe du faisceau laser par impulsions de mise en forme
  • B23K 26/364 - Gravure au laser pour faire une rainure ou une saignée, p. ex. pour tracer une rainure d'amorce de rupture
  • B23K 26/53 - Travail par transmission du faisceau laser à travers ou dans la pièce à travailler pour modifier ou reformer le matériau dans la pièce à travailler, p. ex. pour faire des fissures d'amorce de rupture
  • B23K 26/06 - Mise en forme du faisceau laser, p. ex. à l’aide de masques ou de foyers multiples
  • B23K 26/08 - Dispositifs comportant un mouvement relatif entre le faisceau laser et la pièce
  • B23K 26/12 - Travail par rayon laser, p. ex. soudage, découpage ou perçage sous atmosphère particulière, p. ex. dans une enceinte
  • B23K 26/402 - Enlèvement de matière en tenant compte des propriétés du matériau à enlever en faisant intervenir des matériaux non métalliques, p. ex. des isolants
  • H01L 21/268 - Bombardement par des radiations ondulatoires ou corpusculaires par des radiations d'énergie élevée les radiations étant électromagnétiques, p. ex. des rayons laser
  • H01L 21/3065 - Gravure par plasmaGravure au moyen d'ions réactifs
  • B23K 103/00 - Matières à braser, souder ou découper
  • B23K 101/40 - Dispositifs semi-conducteurs

37.

METHOD FOR PRODUCING BIOMASS FUEL AND BIOMASS FUEL

      
Numéro d'application JP2019017190
Numéro de publication 2020/217305
Statut Délivré - en vigueur
Date de dépôt 2019-04-23
Date de publication 2020-10-29
Propriétaire IWATANI CORPORATION (Japon)
Inventeur(s) Okuda, Jun

Abrégé

This method for producing a biomass fuel includes: a step (S11) for preparing a plant-derived biomass feedstock; and a step (S13) for washing the biomass feedstock by bringing a washing liquid, which is an aqueous solution of at least one compound selected from the group consisting of a citric acid, a malic acid, and a tartaric acid, into contact with the biomass feedstock.

Classes IPC  ?

  • C10L 5/44 - Combustibles solides à base essentielle de matières d'origine non minérale de matières végétales

38.

FORE WINDS

      
Numéro de série 79300624
Statut Enregistrée
Date de dépôt 2020-09-09
Date d'enregistrement 2022-10-11
Propriétaire IWATANI CORPORATION (Japon)
Classes de Nice  ?
  • 04 - Huiles et graisses industrielles; lubrifiants; combustibles
  • 11 - Appareils de contrôle de l'environnement
  • 18 - Cuir et imitations du cuir
  • 20 - Meubles et produits décoratifs

Produits et services

Solid fuels; liquid fuels; gaseous fuels; leather preserving oil and grease; lamp wicks; candles; fuel Electric torches for lighting; gas lamps; oil lamps; lamp chimneys; hibachis; gas-fired water heaters; outdoor heaters, namely, gas stoves, hot water heaters, electric space heaters; non-electric cooking heaters for household purposes, namely, gas cooking heaters in the nature of gas ranges, gas stoves, and gas ovens; water heaters; cooking apparatus and installations, namely, cooking ovens, cooking ranges, cooking stoves; sinks; gas refrigerators; portable refrigerators; apparatus for heating and cooling, namely, air conditioning apparatus, furnaces, electric space heaters; household electrothermic appliances, namely, electrically-heated carpets, electric cooking pots for household purposes, electric coffee makers, Japanese electric leg-warming apparatus for household purposes (electric kotatsu), electric hot plates, electric radiant heaters for household purposes, electric toasters for household purposes, and electric blankets for household purposes; outdoor lighting fittings, namely, outdoor lighting fixtures and installations; gas burners; burners, namely, gas burners, alcohol burners, oil burners for domestic use, hand-held electric torches for lighting, electric torches for lighting, butane torches for lighting, and culinary torches, namely, butane torches for cooking; ice-cooling refrigerators for household purposes; heating and cooling packs filled with chemical substances ready to react when required to warm or cool the body, not for medical purposes Bags, namely, messenger bags, all-purpose carrying bags, handbags, shoulder bags, backpacks, travelling bags; pouches, namely, leather pouches, waist pouches, key pouches; vanity cases, not fitted; umbrellas; walking sticks; canes Furniture; packaging containers of plastic; cushions; mattresses; benches; hanging boards, namely, Japanese style plastic pegboards using non-metal positional hooks; chairs; tables; shelves; locks, other than electric, not of metal; industrial packaging containers of wood; beds

39.

F FORE WINDS

      
Numéro d'application 207336600
Statut Enregistrée
Date de dépôt 2020-09-09
Date d'enregistrement 2023-12-01
Propriétaire IWATANI CORPORATION (Japon)
Classes de Nice  ?
  • 04 - Huiles et graisses industrielles; lubrifiants; combustibles
  • 11 - Appareils de contrôle de l'environnement
  • 18 - Cuir et imitations du cuir
  • 20 - Meubles et produits décoratifs
  • 21 - Ustensiles, récipients, matériaux pour le ménage; verre; porcelaine; faience

Produits et services

(1) Solid fuels, namely, coal, peat, wood chips; liquid fuels, namely, gasoline, kerosene; gaseous fuels, namely, butane, propane, natural gas; leather preserving oil and grease; lamp wicks; candles; fuel, namely, domestic fuel for heating, lamp fuel, lighter fuel. (2) Electric torches; gas lamps; oil lamps; lamp chimneys; hibachis; gas-fired water heaters; outdoor heaters, namely, gas stoves, hot water heaters, electric space heaters; non-electric cooking heaters for household purposes, namely, gas ranges, gas stoves, gas cooking ovens for household purposes; water heaters; cooking apparatus and installations, namely, cooking ovens for household purposes, cooking ranges, cooking stoves; sinks; gas refrigerators; portable refrigerators; apparatus for heating and cooling, namely, air conditioners, gas furnaces for residential homes, electric space heaters; household electrothermic appliances, namely, electrically heated carpets, electric cooking pots for household purposes, electric coffee makers, Japanese electric leg-warming apparatus for household purposes [electric kotatsu], electric hot plates, electric radiant heaters for household purposes, electric toasters for household purposes, and electric blankets for household purposes; barbecue grills; gas grills; grills, electric; outdoor lighting fittings; gas burners; burners, namely, gas burners, alcohol burners, oil burners for domestic use, pocket electric torches, electric torches for lighting, and culinary torches, namely, butane torches for kitchen use; ice-cooling refrigerators for household purposes; chemically-activated cold packs for cooling the body and not for medical purposes, chemically-activated heat packs for heating the body and not for medical purposes. (3) Bags, namely, messenger bags, all-purpose carrying bags, handbags, shoulder bags, backpacks, travelling bags; pouches, namely, leather pouches, waist pouches, key pouches; vanity cases, not fitted; umbrellas; walking sticks; canes. (4) Furniture, namely, bedroom furniture, dining room furniture, living room furniture, kitchen furniture, office furniture, patio furniture; packaging containers of plastic; cushions; mattresses; furniture benches; chairs; tables; shelves; locks, other than electric, not of metal; packaging containers of wood; beds. (5) Cooking pots and pans, non-electric; non-electric coffee urns; tetsubin [Japanese cast iron kettles], non-electric; kettles, non-electric; dishes, glass dishes, butter dishes, vegetable dishes, serving dishes; cleaning tools and washing utensils, namely, cleaning cloths, cleaning rags, kitchen cleaning sponges, dishwashing brushes, mops, brooms; non-electric portable coldboxes; kitchen containers for rice; water bottles; insulated flasks; boxes of metal, for dispensing paper towels; food preserving jars of glass; frying pans; jugs; heat-insulated containers for beverages; portable cool boxes, non-electric; household or kitchen utensils and containers, namely, cooking utensils, food storage containers, garbage containers, cooking graters, cooking sieves, spatulas for kitchen use; baskets for household purposes, namely, bread baskets, laundry baskets, storage baskets, waste paper baskets; gloves for household purposes; table plates; cups; cookware; tableware, namely, table glassware, serving dishes, cooking pots, cooking pans, beverage glassware; coal scuttles; cold packs for chilling food and beverages.

40.

CIRCUIT SUBSTRATE, ANTENNA ELEMENT, MILLIMETER WAVE ABSORBER FOR INCORPORATION IN SUBSTRATE, AND METHOD FOR REDUCING NOISE IN CIRCUIT SUBSTRATE

      
Numéro d'application JP2020005405
Numéro de publication 2020/166628
Statut Délivré - en vigueur
Date de dépôt 2020-02-12
Date de publication 2020-08-20
Propriétaire
  • THE UNIVERSITY OF TOKYO (Japon)
  • IWATANI CORPORATION (Japon)
Inventeur(s)
  • Ohkoshi Shin-Ichi
  • Yoshikiyo Marie
  • Namai Asuka
  • Asanuma Masayuki
  • Shibuya Yukihiro
  • Yamazaki Sumire
  • Ueda Naomasa

Abrégé

11211211212. Accordingly, it is possible to reduce noise in the circuit substrate 2 more than in the past.

Classes IPC  ?

  • H01P 5/08 - Dispositifs de couplage du type guide d'ondes destinés au couplage de lignes ou de dispositifs de différentes sortes
  • H01F 1/34 - Aimants ou corps magnétiques, caractérisés par les matériaux magnétiques appropriésEmploi de matériaux spécifiés pour leurs propriétés magnétiques en matériaux inorganiques caractérisés par leur coercivité en matériaux magnétiques doux substances non métalliques, p. ex. ferrites
  • H05K 9/00 - Blindage d'appareils ou de composants contre les champs électriques ou magnétiques
  • H05K 1/02 - Circuits imprimés Détails
  • H01F 27/36 - Blindages ou écrans électriques ou magnétiques

41.

HYDROGEN GAS DISPENSER INSPECTING DEVICE

      
Numéro d'application JP2019007742
Numéro de publication 2020/157996
Statut Délivré - en vigueur
Date de dépôt 2019-02-28
Date de publication 2020-08-06
Propriétaire IWATANI CORPORATION (Japon)
Inventeur(s)
  • Ito Masaru
  • Inoue Goichi
  • Tsuda Koichi

Abrégé

A hydrogen gas dispenser inspecting device A includes: a gas acceptance-side circulation portion 1 that includes a receptacle 11 capable of being connected to a nozzle C1 of a hydrogen gas dispenser C; and an inspecting portion that includes a pressure increase rate inspecting portion 2 for inspecting the rate of increase in the pressure of the hydrogen gas from the hydrogen gas dispenser C, and a filling quantity inspecting portion 3 for inspecting the hydrogen gas filling quantity. The hydrogen gas dispenser inspecting device A is capable of inspecting the filling quantity of a hydrogen gas dispenser and the rate of increase in pressure.

Classes IPC  ?

  • F17C 13/02 - Adaptations spéciales des dispositifs indicateurs, de mesure ou de contrôle

42.

Method for treating inner wall surface of treatment object

      
Numéro d'application 16652982
Numéro de brevet 11542585
Statut Délivré - en vigueur
Date de dépôt 2018-07-27
Date de la première publication 2020-07-30
Date d'octroi 2023-01-03
Propriétaire IWATANI CORPORATION (Japon)
Inventeur(s)
  • Izumi, Koichi
  • Furutani, Masahiro
  • Yamamoto, Tsuyoshi

Abrégé

A method for treating an inner wall surface of a treatment object uses a treatment object that is at least one of a container housing an ozone gas, a treatment container housing an object to be subjected to a surface treatment using an ozone gas and a pipe configured to supply an ozone gas. The method for treating an inner wall surface of a treatment object includes the steps of: determining whether an abnormal part is present in the inner wall surface of the treatment object or not; and distributing an ozone gas having a concentration of 10% by volume or more and 30% by volume or less and a temperature of 60° C. or less such that the ozone gas contacts the inner wall surface of the treatment object after the step of determining whether an abnormal part is present or not.

Classes IPC  ?

  • C23C 8/14 - Oxydation de la couche superficielle de matériaux ferreux

43.

HYDROGEN COMBUSTION APPARATUS

      
Numéro d'application JP2019019637
Numéro de publication 2020/012779
Statut Délivré - en vigueur
Date de dépôt 2019-05-17
Date de publication 2020-01-16
Propriétaire IWATANI CORPORATION (Japon)
Inventeur(s)
  • Matsumoto Kazuto
  • Katou Hayato
  • Abe Yoshinobu
  • Nakamura Sadaki
  • Koike Kunihiko

Abrégé

A substrate processing apparatus according to one embodiment of the present disclosure is provided with: a substrate processing unit; a hydrogen peroxide solution supply unit (100); an additive supply unit (110); a sulfuric acid supply unit (120); a first mixing unit (140); a second mixing unit (150); and a liquid supply unit. The substrate processing unit performs a liquid treatment on a substrate. The first mixing unit (140) mixes a hydrogen peroxide solution that is supplied from the hydrogen peroxide solution supply unit (100) with an additive that is supplied from the additive supply unit (110), thereby producing a first mixed liquid. The second mixing unit (150) mixes the first mixed liquid produced in the first mixing unit (140) with sulfuric acid that is supplied from the sulfuric acid supply unit (120), thereby producing a second mixed liquid. The liquid supply unit supplies the second mixed liquid to a substrate which is placed on the substrate processing unit.

Classes IPC  ?

  • F23D 14/84 - Diffusion de la flamme ou autres moyens pour lui donner une forme particulière
  • F23D 14/22 - Brûleurs à gaz sans prémélangeur, c.-à-d. dans lesquels le combustible gazeux est mélangé à l'air de combustion à l'arrivée dans la zone de combustion avec des conduits d'alimentation en air et en gaz séparés, p. ex. avec des conduits disposés parallèlement ou se croisant
  • F23D 14/58 - Buses caractérisés par la forme ou la disposition de l'orifice ou des orifices des buses, p. ex. en couronne

44.

HEAT INSULATION SHEET OR HEAT INSULATION LAYER

      
Numéro d'application JP2019025280
Numéro de publication 2020/004433
Statut Délivré - en vigueur
Date de dépôt 2019-06-26
Date de publication 2020-01-02
Propriétaire
  • IWATANI CORPORATION (Japon)
  • TECHNO FLOW ONE INC. (Japon)
Inventeur(s)
  • Hasebe Naoya
  • Fujiu Yuichiro
  • Tada Hitoshi
  • Sato Takuhiko

Abrégé

The present invention provides a heat insulation sheet or a heat insulation layer with which it is possible to inhibit thermal runaway while catering for the need for a higher capacity and a higher density required from a secondary cell, particularly a lithium-ion cell. The present invention provides a heat insulation sheet or heat insulation layer having A) a resin and B) an expandable graphite in which the temperature at which expandability is exhibited is 110-160°C, wherein the heat insulation sheet or heat insulation layer has a thickness of 10 μm to 3 mm.

Classes IPC  ?

  • F16L 59/02 - Forme ou configuration de matériaux isolants, avec ou sans revêtement formant un tout avec les matériaux isolants
  • B32B 27/18 - Produits stratifiés composés essentiellement de résine synthétique caractérisée par l'emploi d'additifs particuliers
  • H01M 10/658 - Moyens de commande de la température associés de façon structurelle avec les éléments par isolation ou protection thermique

45.

ALARM DEVICE AND INFORMATION PROCESSING SYSTEM

      
Numéro d'application JP2019008360
Numéro de publication 2019/211942
Statut Délivré - en vigueur
Date de dépôt 2019-03-04
Date de publication 2019-11-07
Propriétaire IWATANI CORPORATION (Japon)
Inventeur(s)
  • Majima, Hiroshi
  • Bandoh, Takeo

Abrégé

This alarm device (10) is disposed indoor and outputs an alert when a target gas has been detected, the alarm device being provided with: a first communication means for performing wireless communication with a gas meter (20A) which measures an amount of gas consumed indoors; a second communication means for communicating with a center server (50); a meter reading information acquisition means (301) for acquiring meter reading information from the gas meter (20A) via the first communication means on a designated meter reading date; a storage means (303) for storing the meter reading information acquired by the meter reading information acquisition means (301); and a communication control means (313) for transmitting, to the center server (50) via the second communication means, the meter reading information of the designated meter reading date stored in the storage means (303).

Classes IPC  ?

  • H04M 11/00 - Systèmes de communication téléphonique spécialement adaptés pour être combinés avec d'autres systèmes électriques
  • G08B 21/16 - Alarmes réagissant aux gaz combustibles
  • G08C 15/00 - Dispositions caractérisées par l'utilisation du multiplexage pour la transmission de plusieurs signaux par une voie commune
  • G08C 17/00 - Dispositions pour transmettre des signaux caractérisées par l'utilisation d'une voie électrique sans fil
  • H04Q 9/00 - Dispositions dans les systèmes de commande à distance ou de télémétrie pour appeler sélectivement une sous-station à partir d'une station principale, sous-station dans laquelle un appareil recherché est choisi pour appliquer un signal de commande ou pour obtenir des valeurs mesurées

46.

METHOD FOR TREATING INNER WALL SURFACE OF OBJECT TO BE TREATED

      
Numéro d'application JP2018028178
Numéro de publication 2019/106880
Statut Délivré - en vigueur
Date de dépôt 2018-07-27
Date de publication 2019-06-06
Propriétaire IWATANI CORPORATION (Japon)
Inventeur(s)
  • Izumi, Koichi
  • Furutani, Masahiro
  • Yamamoto, Tsuyoshi

Abrégé

According to this method for treating an inner wall surface of an object to be treated, the inner wall surface of the object is treated, wherein the object is at least one among: a storage container that accommodates an ozone gas and has an inner wall formed of a metal; a processing container (30) that accommodates a subject, which is to be surface-treated by using an ozone gas, and that has an inner wall formed of a metal; and a pipe which supplies an ozone gas and has an inner wall formed of a metal. This method for treating the inner wall surface of the object to be treated includes: a step for checking whether there is an abnormal portion on the inner wall surface of the object to be treated; and, after the step for checking whether there is an abnormal portion, a step for circulating an ozone gas having a concentration of 10-30 vol% and a temperature of 60°C or less to bring the ozone gas into contact with the inner wall surface of the object to be treated.

Classes IPC  ?

  • C23C 8/14 - Oxydation de la couche superficielle de matériaux ferreux

47.

Method for concentrating ozone gas and apparatus for concentrating ozone gas

      
Numéro d'application 16092220
Numéro de brevet 11123679
Statut Délivré - en vigueur
Date de dépôt 2017-03-03
Date de la première publication 2019-05-02
Date d'octroi 2021-09-21
Propriétaire IWATANI CORPORATION (Japon)
Inventeur(s)
  • Nakamura, Sadaki
  • Izumi, Koichi
  • Makihira, Naohisa

Abrégé

Provided is a method for concentrating ozone gas, including the steps of: allowing ozone gas to be adsorbed onto an adsorbent in a first adsorption vessel; reducing pressure in a concentration vessel in a state where the concentration vessel does not communicate with the first adsorption vessel; discharging part of gas in the first adsorption vessel; introducing first concentrated mixed gas in the concentration vessel by desorbing ozone gas in the first concentrated mixed gas and delivering the desorbed ozone gas into the concentration vessel; allowing ozone gas to be adsorbed onto an adsorbent in a second adsorption vessel; and introducing second concentrated mixed gas into the concentration vessel in a state where the concentration vessel into which the first concentrated mixed gas is introduced and the second adsorption vessel that houses an adsorbent. Also provided is an apparatus for concentrating ozone gas for implementing the method.

Classes IPC  ?

  • B01D 53/053 - Adsorption à pression alternée avec un récipient tampon ou de stockage
  • C01B 13/10 - Préparation de l'ozone

48.

Method for concentrating ozone gas and apparatus for concentrating ozone gas

      
Numéro d'application 16092016
Numéro de brevet 11130092
Statut Délivré - en vigueur
Date de dépôt 2017-03-03
Date de la première publication 2019-04-18
Date d'octroi 2021-09-28
Propriétaire IWATANI CORPORATION (Japon)
Inventeur(s)
  • Nakamura, Sadaki
  • Izumi, Koichi
  • Makihira, Naohisa

Abrégé

Provided is method for concentrating ozone gas the method including the steps of: allowing ozone gas to be adsorbed onto the adsorbent by introducing ozone gas-containing raw material mixed gas into an adsorption vessel (20) that houses an adsorbent for adsorbing ozone gas; reducing a pressure in a concentration vessel (30) in a state where the concentration vessel (30) does not communicate with the adsorption vessel (20), the concentration vessel (30) being configured to be connected to the adsorption vessel (20) so as to be interswitchable between a state where the concentration vessel (30) communicates with the adsorption vessel (20) and a state where the concentration vessel does not communicate with the adsorption vessel (20); and introducing concentrated mixed gas including ozone gas with a higher ozone gas concentration than the ozone gas concentration in the raw material mixed gas into the concentration vessel (30) by desorbing the ozone gas adsorbed onto the adsorbent using a pressure difference between the internal pressure of the concentration vessel (30) and an internal pressure of the adsorption vessel (20) in a state where the concentration vessel (30) having a reduced internal pressure communicates with the adsorption vessel (20) that houses the adsorbent onto which the ozone gas is adsorbed, and delivering the desorbed ozone gas into the concentration vessel (30). Also provided is an apparatus (1) for concentrating ozone gas for implementing the method.

Classes IPC  ?

  • B01D 53/053 - Adsorption à pression alternée avec un récipient tampon ou de stockage
  • C01B 13/10 - Préparation de l'ozone
  • B01D 53/04 - Séparation de gaz ou de vapeursRécupération de vapeurs de solvants volatils dans les gazÉpuration chimique ou biologique des gaz résiduaires, p. ex. gaz d'échappement des moteurs à combustion, fumées, vapeurs, gaz de combustion ou aérosols par adsorption, p. ex. chromatographie préparatoire en phase gazeuse avec adsorbants fixes

49.

SILICONE ADHESIVE SHEET OR SILICONE ADHESIVE LAYER

      
Numéro d'application JP2018029522
Numéro de publication 2019/031474
Statut Délivré - en vigueur
Date de dépôt 2018-08-07
Date de publication 2019-02-14
Propriétaire
  • IWATANI CORPORATION (Japon)
  • TECHNO FLOW ONE INC. (Japon)
Inventeur(s)
  • Okamoto, Taisuke
  • Tsukamoto, Yoshinori

Abrégé

The present invention provides a silicone adhesive sheet or silicone adhesive layer provided with sufficient bending resistance in a low temperature environment, in particular with sufficient bending resistance at low temperatures to high temperatures, specifically from -20°C to 20°C. The present invention specifically provides a silicone adhesive sheet or silicone adhesive layer provided with at least one requirement from among requirements A) to E), including the following requirements A) to C): A) the storage modulus at -20°C is no higher than 1.0×107Pa; B) the storage modulus at 20°C is no higher than 1.0×106 Pa; and C) the strain at yield in stress-strain measurement at 20°C is more than 150%.

Classes IPC  ?

  • C09J 7/38 - Adhésifs sensibles à la pression
  • C09J 183/04 - Polysiloxanes
  • G09F 9/30 - Dispositifs d'affichage d'information variable, dans lesquels l'information est formée sur un support, par sélection ou combinaison d'éléments individuels dans lesquels le ou les caractères désirés sont formés par une combinaison d'éléments individuels

50.

CUTTING METHOD

      
Numéro d'application JP2018026851
Numéro de publication 2019/017367
Statut Délivré - en vigueur
Date de dépôt 2018-07-18
Date de publication 2019-01-24
Propriétaire
  • IWATANI CORPORATION (Japon)
  • HAMAMATSU PHOTONICS K.K. (Japon)
Inventeur(s)
  • Manabe, Toshiki
  • Senoo, Takehiko
  • Izumi, Koichi
  • Shojo, Tadashi
  • Ogiwara, Takafumi
  • Sakamoto, Takeshi

Abrégé

This cutting method comprises: a step for forming a modified region on an object (1) to be processed; and, after forming the modified region on the object (1) to be processed, a step for forming a groove (9) in the object (1) to be processed along an intended cut line. In the step for forming a groove (9), a first dry etching process is performed from the front surface (3) of the object (1) to be processed toward the back surface (4). After the first dry etching process, the object (1) to be processed is subjected to a first decompression process wherein the object is placed in an atmosphere having a lower pressure than that during the first dry etching process. After the first decompression process, a second dry etching process is performed from the front surface (3) of the object (1) to be processed toward the back surface (4).

Classes IPC  ?

  • H01L 21/301 - Traitement des corps semi-conducteurs en utilisant des procédés ou des appareils non couverts par les groupes pour subdiviser un corps semi-conducteur en parties distinctes, p. ex. cloisonnement en zones séparées
  • B23K 26/53 - Travail par transmission du faisceau laser à travers ou dans la pièce à travailler pour modifier ou reformer le matériau dans la pièce à travailler, p. ex. pour faire des fissures d'amorce de rupture
  • H01L 21/3065 - Gravure par plasmaGravure au moyen d'ions réactifs

51.

CUTTING METHOD

      
Numéro d'application JP2018026852
Numéro de publication 2019/017368
Statut Délivré - en vigueur
Date de dépôt 2018-07-18
Date de publication 2019-01-24
Propriétaire
  • IWATANI CORPORATION (Japon)
  • HAMAMATSU PHOTONICS K.K. (Japon)
Inventeur(s)
  • Manabe, Toshiki
  • Senoo, Takehiko
  • Izumi, Koichi
  • Shojo, Tadashi
  • Ogiwara, Takafumi
  • Sakamoto, Takeshi

Abrégé

This cutting method includes a step for forming a modified region in an object for processing (1), and a step for cutting the object for processing (1) along a cutting line after forming the modified region in the object for processing (1). In the step for cutting the object for processing (1), in a state where the object for processing (1) is fixed to a support material by the weight of the object for processing and/or adsorption, dry etching is performed from a front surface (3) to a rear surface (4) of the object for processing (1), thereby forming a groove from the front surface (3) to the rear surface (4) of the object for processing (1).

Classes IPC  ?

  • H01L 21/301 - Traitement des corps semi-conducteurs en utilisant des procédés ou des appareils non couverts par les groupes pour subdiviser un corps semi-conducteur en parties distinctes, p. ex. cloisonnement en zones séparées
  • B23K 26/53 - Travail par transmission du faisceau laser à travers ou dans la pièce à travailler pour modifier ou reformer le matériau dans la pièce à travailler, p. ex. pour faire des fissures d'amorce de rupture
  • H01L 21/3065 - Gravure par plasmaGravure au moyen d'ions réactifs

52.

ADHESIVE FILM

      
Numéro d'application JP2017018344
Numéro de publication 2018/211586
Statut Délivré - en vigueur
Date de dépôt 2017-05-16
Date de publication 2018-11-22
Propriétaire
  • IWATANI CORPORATION (Japon)
  • TECHNO FLOW ONE INC. (Japon)
Inventeur(s)
  • Toyota, Kimio
  • Okamoto, Taisuke
  • Ikegawa, Hiroyoshi

Abrégé

The present invention provides an adhesive film having both weather resistance and bend resistance. The present invention provides the adhesive film constituted by having at least: a first layer having a storage elastic modulus of 108 to 104 Pa at -20°C and a storage elastic modulus of 107 to 104 Pa at 40°C, to be adhered to a first adherend; a second layer provided over the first layer, having a storage elastic modulus of 108 to 104 Pa at -20°C to 40°C; and a third layer provided above the second layer, having a storage elastic modulus of 108 to 104 Pa at -20°C and a storage elastic modulus of 107 to 104 Pa at 40°C, to be adhered to a second adherend.

Classes IPC  ?

  • C09J 7/02 - sur supports
  • C09J 201/00 - Adhésifs à base de composés macromoléculaires non spécifiés

53.

GAS CLUSTER PROCESSING DEVICE AND GAS CLUSTER PROCESSING METHOD

      
Numéro d'application JP2018004669
Numéro de publication 2018/173541
Statut Délivré - en vigueur
Date de dépôt 2018-02-09
Date de publication 2018-09-27
Propriétaire
  • TOKYO ELECTRON LIMITED (Japon)
  • IWATANI CORPORATION (Japon)
Inventeur(s)
  • Dobashi Kazuya
  • Orii Takehiko
  • Saito Yukimasa
  • Koike Kunihiko
  • Senoo Takehiko
  • Izumi Koichi
  • Yoshino Yu
  • Shojo Tadashi
  • Kanehira Keita

Abrégé

A gas cluster processing device (100), which carries out prescribed processes on a substrate (S) by irradiating the substrate (S) with a gas cluster, comprises: a processing container (1); a gas supply unit (13) which supplies gas for generating a gas cluster; a mass flow controller (14) which controls the flow rate of the gas supplied by the gas supply unit (13); a cluster nozzle (11) which receives the gas for generating a gas cluster at a prescribed supply pressure, injects the gas into the processing container that is maintained at a vacuum, and clusterizes the gas using adiabatic expansion; and a pressure control unit (15) which is provided to a pipe (12) between the mass flow controller (14) and the cluster nozzle (11) and has a backpressure controller (17) which controls the supply pressure of the gas for generating the gas cluster.

Classes IPC  ?

  • H01L 21/304 - Traitement mécanique, p. ex. meulage, polissage, coupe

54.

HYDROGEN GAS SUPPLY DEVICE AND METHOD THEREOF

      
Numéro d'application JP2017011373
Numéro de publication 2018/173136
Statut Délivré - en vigueur
Date de dépôt 2017-03-22
Date de publication 2018-09-27
Propriétaire IWATANI CORPORATION (Japon)
Inventeur(s)
  • Endo Akiko
  • Fujikawa Shizuichi
  • Makihira Naohisa

Abrégé

Ultralow-temperature liquefied hydrogen is directly changed to hydrogen gas at a target predetermined temperature and supplied in what is referred to as a hydrogen station. A hydrogen gas supply device, which changes liquefied hydrogen LH2 in a liquefied hydrogen storage tank to hydrogen gas GH2 at a predetermined temperature and supplies the gas to a dispenser, comprises a liquefied hydrogen pump that feeds out liquefied hydrogen while increasing the pressure of the liquefied hydrogen, and a gasification device that produces hydrogen gas at a predetermined temperature from the liquefied hydrogen thus fed out. The gasification device has: a refrigerant tank having a liquid phase section and a gas phase section and in which a liquid refrigerant R is sealed, the liquid refrigerant R having a boiling point at a specific pressure that is a temperature that increases the aforementioned predetermined temperature of the hydrogen gas; a temperature-increasing heat exchange channel that passes through the interior of the refrigerant tank; and a pressure adjustment means for adjusting the pressure of the refrigerant in the refrigerant tank to the aforementioned specific pressure.

Classes IPC  ?

  • F17C 13/00 - Détails des récipients ou bien du remplissage ou du vidage des récipients

55.

Method for supplying ozone gas and system for supplying ozone gas

      
Numéro d'application 15761040
Numéro de brevet 10597296
Statut Délivré - en vigueur
Date de dépôt 2016-06-29
Date de la première publication 2018-09-13
Date d'octroi 2020-03-24
Propriétaire IWATANI CORPORATION (Japon)
Inventeur(s)
  • Makihira, Naohisa
  • Izumi, Koichi
  • Furutani, Masahiro

Abrégé

A method for supplying an ozone gas includes the steps of: supplying an ozone gas from an ozone gas source through a second channel; and switching the ozone gas to a state where the ozone gas is supplied through a first channel and supplying the ozone gas having a reduced concentration of nitrogen oxide. The step of supplying the ozone gas through the second channel includes the step of introducing a part of the ozone gas to a first vessel so that ozone adsorbability of a first adsorbent is reduced. In the step of supplying the ozone gas to the object through the first channel, the ozone gas passes through the first vessel holding the first adsorbent having reduced ozone adsorbability.

Classes IPC  ?

  • C01B 13/11 - Préparation de l'ozone par décharge électrique
  • B01D 53/04 - Séparation de gaz ou de vapeursRécupération de vapeurs de solvants volatils dans les gazÉpuration chimique ou biologique des gaz résiduaires, p. ex. gaz d'échappement des moteurs à combustion, fumées, vapeurs, gaz de combustion ou aérosols par adsorption, p. ex. chromatographie préparatoire en phase gazeuse avec adsorbants fixes

56.

Miscellaneous Design

      
Numéro d'application 1418404
Statut Enregistrée
Date de dépôt 2018-02-06
Date d'enregistrement 2018-02-06
Propriétaire IWATANI CORPORATION (Japon)
Classes de Nice  ?
  • 04 - Huiles et graisses industrielles; lubrifiants; combustibles
  • 11 - Appareils de contrôle de l'environnement

Produits et services

Industrial oils; non-mineral oils for industrial purposes [not for fuel]; solid fuels; liquid fuels; gaseous fuels; gaseous fuels filled in canisters; liquid fuels filled in canisters. Electric lamps and other lighting apparatus; gas lamps; oil lamps; lamp chimneys; Japanese charcoal heaters for household purposes [Hibachi]; gas-fired water heaters for household purposes; non-electric cooking heaters; kitchen sinks; industrial deep fryers; industrial dish drying machines; industrial rice cookers; industrial cooking pots; electric roasters for industrial purposes; industrial cooking ovens; freezing machines and apparatus; iceboxes; ice refrigerators; desiccating apparatus; recuperators; food steamers, electric; distillation apparatus; evaporators; heat exchangers; air-conditioning apparatus; solar water heaters; household electrothermic appliances; bath tubs; water purifiers for household purposes; waste water treatment tanks for household purposes; septic tanks for household purposes; garbage incinerators for household purposes; toilet stool units with a washing water squirter; disinfectant dispensers for toilets; toilet bowls; seatings for use with Japanese style toilet bowls; keep-warm/cool tools filled with chemical agents; gas lighters; cooking stoves; gas cartridge operated cooking stoves, electric radiant heaters for household purposes.

57.

METHOD FOR REMOVING CHLORINE TRIFLUORIDE CLEANING RESIDUES IN SIC EPITAXIAL GROWTH FURNACE SYSTEM

      
Numéro d'application JP2016077330
Numéro de publication 2018/051472
Statut Délivré - en vigueur
Date de dépôt 2016-09-15
Date de publication 2018-03-22
Propriétaire IWATANI CORPORATION (Japon)
Inventeur(s)
  • Manabe Toshiki
  • Ono Ryoei
  • Shojo Tadashi

Abrégé

The present invention reduces the cleaning time and accelerates formation of a SiC film in a SiC epitaxial growth furnace system. Provided is a method for, after a SiC epitaxial growth furnace system including an epitaxial growth furnace for formation of a SiC film and an exhaust pipe therefor is cleaned by using a chlorine trifluoride gas, removing chlorine trifluoride cleaning residues adhered to and remaining in the interior of the exhaust pipe. After the cleaning using the chlorine trifluoride gas has ended, a raw material gas and a hydrogen chloride gas are introduced together into the epitaxial growth furnace in a SiC film formation step. As a result, while the SiC film formation is performed, the gas used in the process is allowed to flow into the exhaust pipe. The gas used in the process contains hydrogen molecules, hydrogen radicals, and the like, by which chlorine trifluoride cleaning residues are removed from the interior of the exhaust pipe.

Classes IPC  ?

  • C30B 29/36 - Carbures
  • C23C 16/42 - Siliciures
  • C23C 16/44 - Revêtement chimique par décomposition de composés gazeux, ne laissant pas de produits de réaction du matériau de la surface dans le revêtement, c.-à-d. procédés de dépôt chimique en phase vapeur [CVD] caractérisé par le procédé de revêtement
  • C30B 25/14 - Moyens d'introduction et d'évacuation des gazModification du courant des gaz réactifs

58.

HYDROGEN-FLAME COLORING DEVICE

      
Numéro d'application JP2017017527
Numéro de publication 2017/208746
Statut Délivré - en vigueur
Date de dépôt 2017-05-09
Date de publication 2017-12-07
Propriétaire IWATANI CORPORATION (Japon)
Inventeur(s)
  • Saeda Manabu
  • Katou Hayato
  • Abe Yoshinobu
  • Koike Kunihiko
  • Asai Kenji
  • Kawabe Mitsunori

Abrégé

The present invention can excellently color a transparent hydrogen flame with high brightness, and can maintain a color developed state of the hydrogen flame for a long time period. The present invention is provided with: a plurality of burners (21) that generate a hydrogen flame (F) by burning hydrogen; and a coloring part (31) disposed at a position toward which the hydrogen flame (F) is generated from flame ports (21a) of the burners (21). The coloring part (31) is formed of color developing members (32) and through portions (33) through which the hydrogen flame (F) passes. The color developing members (32) are each formed by causing a porous body (32b) made of aggregated lava to carry a color developing material (32a) which gives a flame reaction. The through portions (33) are formed at spaces generated among the arranged color developing members (32).

Classes IPC  ?

  • F23D 14/84 - Diffusion de la flamme ou autres moyens pour lui donner une forme particulière
  • F24C 15/06 - Éléments décoratifs, p. ex. grilles de façade ou entourages

59.

HEAT COOKER

      
Numéro d'application JP2017017542
Numéro de publication 2017/195777
Statut Délivré - en vigueur
Date de dépôt 2017-05-09
Date de publication 2017-11-16
Propriétaire
  • IWATANI CORPORATION (Japon)
  • ASAHI SEISAKUSHO CO., LTD. (Japon)
Inventeur(s)
  • Kotani, Hiroaki
  • Fukushi, Hironori
  • Wada, Akio
  • Sugawara, Daichi

Abrégé

[Problem] To provide a heat cooker that makes it possible to effectively suppress generation of smoke from the top of a plate, without the need for a user to adjust the intensity of the flame. [Solution] Provided is a heat cooker comprising a body part (12) on which a gas burner (20) is disposed, and a plate (30) that is arranged above the gas burner and is for laying and grilling at least meat, wherein the heat cooker is characterized in that: the plate has a heat confinement section (30D) covering above a flame mouth (19) of the gas burner and protruding convexly upward so as to form a space (S1) in which combustion heat is confined on a lower surface (30F) side, and is formed of a high-thermal-conductivity material (60) having a high thermal conductivity with respect to the direction in which the upper surface spreads; the maximum output of the gas burner is of such an extent that a flame (FR) does not contact the lower surface, and is at 850 to 950 kcal/h; and the plate has concavities and convexities formed so that at least an upper surface temperature of the heat confinement section moves between approximately 210°C to 250°C under maximum output in a state following extraction of heat by meat placed thereon.

Classes IPC  ?

60.

OZONE GAS CONCENTRATION METHOD AND OZONE GAS CONCENTRATION DEVICE

      
Numéro d'application JP2017008614
Numéro de publication 2017/187786
Statut Délivré - en vigueur
Date de dépôt 2017-03-03
Date de publication 2017-11-02
Propriétaire IWATANI CORPORATION (Japon)
Inventeur(s)
  • Nakamura, Sadaki
  • Izumi, Koichi
  • Makihira, Naohisa

Abrégé

Provided are an ozone gas concentration method and an ozone gas concentration device (1) using same, said ozone gas concentration method comprising: a step in which a mixed raw material gas containing ozone gas is guided inside an adsorption vessel (20) holding an adsorption agent that adsorbs ozone and the adsorption agent is caused to adsorb the ozone gas; a step in which the interior of a concentration vessel (30), connected to the adsorption vessel (20) so as to be switchable between communicating and not communicating with the adsorption vessel, is depressurized in a state in which same is not communicating with the absorption vessel; and a step in which a concentrated mixed gas having a higher ozone gas concentration than the mixed raw material gas is introduced into the concentration vessel (30) by switching, to a communicated state, the concentration vessel (30) having the interior thereof depressurized and the adsorption vessel (20) holding the adsorption agent that has adsorbed the ozone gas, desorbing the ozone gas adsorbed by the adsorption agent, as a result of the pressure difference between the interior of the concentration vessel (30) and the adsorption vessel (20), and conveying the ozone gas to inside the concentration vessel (30).

Classes IPC  ?

  • C01B 13/10 - Préparation de l'ozone
  • B01D 53/053 - Adsorption à pression alternée avec un récipient tampon ou de stockage

61.

OZONE GAS CONCENTRATION METHOD AND OZONE GAS CONCENTRATION DEVICE

      
Numéro d'application JP2017008615
Numéro de publication 2017/187787
Statut Délivré - en vigueur
Date de dépôt 2017-03-03
Date de publication 2017-11-02
Propriétaire IWATANI CORPORATION (Japon)
Inventeur(s)
  • Nakamura, Sadaki
  • Izumi, Koichi
  • Makihira, Naohisa

Abrégé

Provided are an ozone gas concentration method and an ozone gas concentration device (1) that facilitates same, said ozone gas concentration method including; a step in which ozone gas is caused to be adsorbed by an adsorption agent inside a first adsorption vessel (20A); a step in which the interior of a concentration vessel (30) is depressurized in a state in which same does not communicate with the first adsorption vessel (20A); a step in which some of the gas inside the first adsorption vessel (20A) is discharged; a step in which a first concentrated mixed gas is guided inside the concentration vessel (30) by desorbing ozone gas inside the first adsorption vessel (20A) and conveying same to inside the concentration vessel (30); a step in which ozone gas is caused to be adsorbed by an adsorption agent inside a second adsorption vessel (20B); and a step in which the concentration vessel (30) having the first concentrated mixed gas guided therein and the second adsorption vessel (20B) holding the adsorption agent that has adsorbed the ozone gas are switched to a communicated state and the second concentrated mixed gas is guided inside the concentration vessel (30).

Classes IPC  ?

  • C01B 13/10 - Préparation de l'ozone
  • B01D 53/053 - Adsorption à pression alternée avec un récipient tampon ou de stockage

62.

Sampling apparatus and sampling method

      
Numéro d'application 15617497
Numéro de brevet 09869614
Statut Délivré - en vigueur
Date de dépôt 2017-06-08
Date de la première publication 2017-09-21
Date d'octroi 2018-01-16
Propriétaire IWATANI CORPORATION (Japon)
Inventeur(s)
  • Matsumoto, Kazuto
  • Omoteda, Shinichi
  • Nishida, Ken
  • Inoue, Goichi

Abrégé

A sampling apparatus includes a pressure-reducing safety unit, which includes a device accommodation chamber that accommodates safety devices and a cylinder connection chamber, and a cylinder unit. The cylinder unit removably accommodates a cylinder, excluding an exposed portion where a front end portion of the cylinder, a mouthpiece, and a cylinder on-off valve are exposed, in an openable/closable casing. The exposed portion of the cylinder is formed so as to be insertable from the open surface portion of the cylinder connection chamber into the cylinder connection chamber, the mouthpiece of the cylinder and a hydrogen outlet of a supply pipe of the device accommodation chamber are connected by using a flexible hose, and thereby a sample of hydrogen gas is taken into the cylinder.

Classes IPC  ?

  • G01N 1/22 - Dispositifs pour prélever des échantillons à l'état gazeux
  • G01N 33/00 - Recherche ou analyse des matériaux par des méthodes spécifiques non couvertes par les groupes

63.

CASSETTE FEU ECOPREMIUM

      
Numéro de série 87519316
Statut Enregistrée
Date de dépôt 2017-07-07
Date d'enregistrement 2019-01-08
Propriétaire IWATANI CORPORATION (Japon)
Classes de Nice  ? 11 - Appareils de contrôle de l'environnement

Produits et services

Gas cartridge operated cooking stoves for household purposes; gas cartridge operated cooking ovens for household purposes; portable gas cooking stoves

64.

METHOD FOR SUPPLYING OZONE GAS AND SYSTEM FOR SUPPLYING OZONE GAS

      
Numéro d'application JP2016069299
Numéro de publication 2017/047201
Statut Délivré - en vigueur
Date de dépôt 2016-06-29
Date de publication 2017-03-23
Propriétaire IWATANI CORPORATION (Japon)
Inventeur(s)
  • Makihira, Naohisa
  • Izumi, Koichi
  • Furutani, Masahiro

Abrégé

This method for supplying ozone gas includes: a step of supplying ozone gas from an ozone gas source (10) through a second flow path (85, 87, 102); and a step of switching to a state in which the ozone gas is supplied through a first flow path (85, 86, 91A, 92A, 96, 102) so that ozone gas in which the concentration of nitrogen oxide is reduced is supplied. The step of supplying the ozone gas through the second flow path (85, 87, 102) includes a step of introducing some of the ozone gas into a first container (20A) to suppress the ozone adsorption ability of a first adsorbent. In the step of supplying the ozone gas through the first flow path (85, 86, 91A, 92A, 96, 102) to the object to which the ozone gas is to be supplied to, the ozone gas passes through the first container (20A) which holds the first adsorbent in which the ozone adsorption ability has been suppressed.

Classes IPC  ?

  • C01B 13/11 - Préparation de l'ozone par décharge électrique
  • B01D 53/04 - Séparation de gaz ou de vapeursRécupération de vapeurs de solvants volatils dans les gazÉpuration chimique ou biologique des gaz résiduaires, p. ex. gaz d'échappement des moteurs à combustion, fumées, vapeurs, gaz de combustion ou aérosols par adsorption, p. ex. chromatographie préparatoire en phase gazeuse avec adsorbants fixes

65.

SAMPLE COLLECTION DEVICE AND SAMPLE COLLECTION METHOD

      
Numéro d'application JP2015085002
Numéro de publication 2016/098754
Statut Délivré - en vigueur
Date de dépôt 2015-12-15
Date de publication 2016-06-23
Propriétaire IWATANI CORPORATION (Japon)
Inventeur(s)
  • Matsumoto Kazuto
  • Omoteda Shinichi
  • Nishida Ken
  • Inoue Goichi

Abrégé

Provided is a technology constituted by a method and device that are endowed with safety and portability and comprise a gas cylinder unit and a pressure reduction safety unit for collecting a hydrogen gas for sampling in a gas cylinder from a storage receptacle for hydrogen fuel gas supplied to a hydrogen vehicle. The sample collection device (1) is formed by a gas cylinder unit (3) and a pressure reduction safety unit (2) comprising a gas cylinder connection chamber and an equipment-housing chamber for housing safety equipment. The gas cylinder unit (3) detachably houses the gas cylinder (7) within a reclosable casing, except for an exposed part of the gas cylinder (7) including the exposed distal end, mouth, and gas cylinder shutoff valve (73) thereof. The exposed part of the gas cylinder (7) is formed so as to be able to be inserted into the gas cylinder connection chamber from an open surface of the gas cylinder connection chamber. The mouth of the gas cylinder (7) and the hydrogen outlet (42) of the supply pipe (4) of the equipment-housing chamber are connected by a flexible hose (8), and the hydrogen gas for sampling is collected in the gas cylinder (7).

Classes IPC  ?

  • G01N 1/00 - ÉchantillonnagePréparation des éprouvettes pour la recherche
  • G01N 1/22 - Dispositifs pour prélever des échantillons à l'état gazeux

66.

Suction device and suction method

      
Numéro d'application 14789122
Numéro de brevet 09841143
Statut Délivré - en vigueur
Date de dépôt 2015-07-01
Date de la première publication 2016-01-14
Date d'octroi 2017-12-12
Propriétaire IWATANI CORPORATION (Japon)
Inventeur(s)
  • Hori, Yoshihiro
  • Matsuno, Yuu
  • Nemoto, Hiroaki
  • Omori, Hideyo
  • Kondo, Toshiyuki

Abrégé

A suction method that sucks inside of a filling nozzle used for supply of hydrogen by using a suction nozzle that is engaged with the filling nozzle, the suction method comprising: evacuating a vacuum chamber by using a vacuum pump; and sucking inside of the suction nozzle by using the evacuated vacuum chamber.

Classes IPC  ?

  • F17C 5/04 - Procédés ou appareils pour remplir des récipients sous pression de gaz liquéfiés, solidifiés ou comprimés pour le remplissage avec des gaz liquéfiés nécessitant le recours à la réfrigération, p. ex. remplissage avec de l'hélium ou de l'hydrogène

67.

Film forming method

      
Numéro d'application 14698273
Numéro de brevet 09425071
Statut Délivré - en vigueur
Date de dépôt 2015-04-28
Date de la première publication 2015-11-05
Date d'octroi 2016-08-23
Propriétaire
  • TOKYO ELECTRON LIMITED (Japon)
  • IWATANI CORPORATION (Japon)
Inventeur(s)
  • Yabe, Kazuo
  • Shimizu, Akira
  • Izumi, Koichi
  • Furutani, Masahiro

Abrégé

A film forming method for obtaining a thin film by laminating molecular layers of oxide on a surface of a substrate in a vacuum atmosphere includes performing a cycle a plurality of times. The cycle includes: supplying a source gas containing a source to the substrate in a vacuum vessel to adsorb the source onto the substrate; forming an ozone atmosphere containing ozone having a concentration not less than that where a chain decomposition reaction is caused in the vacuum vessel; and forcibly decomposing the ozone by supplying energy to the ozone atmosphere to generate active species of oxygen, and oxidizing the source adsorbed onto the surface of the substrate by the active species to obtain the oxide.

Classes IPC  ?

  • H01L 21/02 - Fabrication ou traitement des dispositifs à semi-conducteurs ou de leurs parties constitutives
  • H01L 21/67 - Appareils spécialement adaptés pour la manipulation des dispositifs à semi-conducteurs ou des dispositifs électriques à l'état solide pendant leur fabrication ou leur traitementAppareils spécialement adaptés pour la manipulation des plaquettes pendant la fabrication ou le traitement des dispositifs à semi-conducteurs ou des dispositifs électriques à l'état solide ou de leurs composants
  • C23C 16/40 - Oxydes
  • C23C 16/455 - Revêtement chimique par décomposition de composés gazeux, ne laissant pas de produits de réaction du matériau de la surface dans le revêtement, c.-à-d. procédés de dépôt chimique en phase vapeur [CVD] caractérisé par le procédé de revêtement caractérisé par le procédé utilisé pour introduire des gaz dans la chambre de réaction ou pour modifier les écoulements de gaz dans la chambre de réaction

68.

PLANT CULTIVATION METHOD

      
Numéro d'application JP2015061605
Numéro de publication 2015/163217
Statut Délivré - en vigueur
Date de dépôt 2015-04-15
Date de publication 2015-10-29
Propriétaire
  • IWATANI CORPORATION (Japon)
  • YAMAGUCHI UNIVERSITY (Japon)
  • SHOWA DENKO K.K. (Japon)
Inventeur(s)
  • Okuda, Jun
  • Aida, Tetsuro
  • Sigyo, Masayoshi

Abrégé

 A plant cultivation method, characterized in including a step for separately and independently performing, within a given period, (A) a step for irradiating a plant with red light and (B) a step for irradiating the plant with blue light, the photosynthetic photon flux density of the red light in step (A) being greater than 150 μmol/m2s, the photosynthetic photon flux density of the blue light in step (B) being greater than 50 μmol/m2s, and the carbon dioxide concentration of the plant cultivation environment in both step (A) and step (B) being 1,300 ppm or above.

Classes IPC  ?

  • A01G 7/00 - Botanique en général
  • A01G 7/02 - Traitement des végétaux au gaz carbonique

69.

METHOD AND APPARATUS FOR PRODUCING HYDROGEN-CONTAINING WATER, AND HYDROGEN WATER

      
Numéro d'application JP2015058882
Numéro de publication 2015/146969
Statut Délivré - en vigueur
Date de dépôt 2015-03-24
Date de publication 2015-10-01
Propriétaire
  • IWATANI CORPORATION (Japon)
  • SHARP KABUSHIKI KAISHA (Japon)
Inventeur(s)
  • Ishikawa, Atsushi
  • Nishijima, You
  • Inoue, Goichi
  • Koike, Kunihiko
  • Tanimoto, Keisuke
  • Chuhjoh, Kazumi
  • Sakata, Kazuyuki
  • Hashimoto, Satoshi

Abrégé

[Problem] To produce hydrogen-containing water having a high concentration and high sustainability employing a simple constitution. [Solution] A hydrogen-containing water production apparatus is equipped with: a cold water tank (13) in which raw water is stored; a fine bubble generator (16) which is arranged in the cold water tank (13) and can disperse fine bubbles in the raw water; a gas supply unit (17) which can supply a mixed gas of hydrogen and carbon dioxide to the fine bubble generator (16); and a measurement unit (37) which can measure the concentration of dissolved hydrogen or carbon dioxide in the raw water in which the fine bubbles are dispersed. The mixed gas of hydrogen and carbon dioxide is subjected to a fine bubble dispersion treatment in raw water to allow hydrogen and carbon dioxide to exist in the raw water. In this manner, the dissolution of hydrogen can be promoted.

Classes IPC  ?

  • C02F 1/68 - Traitement de l'eau, des eaux résiduaires ou des eaux d'égout par addition de substances spécifiées, pour améliorer l'eau potable, p. ex. par addition d'oligo-éléments
  • A61K 33/00 - Préparations médicinales contenant des ingrédients actifs inorganiques
  • B01F 1/00 - Dissolution
  • B01F 3/04 - Mélange, p.ex. dispersion, émulsion, selon les phases à mélanger de gaz ou de vapeurs avec des liquides

70.

SHIELDING GAS FOR MIG BRAZING

      
Numéro d'application JP2014057747
Numéro de publication 2015/140985
Statut Délivré - en vigueur
Date de dépôt 2014-03-20
Date de publication 2015-09-24
Propriétaire IWATANI CORPORATION (Japon)
Inventeur(s)
  • Yoshida, Yoshifumi
  • Ishii, Masanobu

Abrégé

A shielding gas (α) for the MIG brazing of steel materials (21, 22) with a brazing material (12) constituted of an alloy including copper as the main component. The shielding gas (α) contains 7-20 vol%, excluding 20 vol%, helium and 2-4 vol% hydrogen or contains 20-30 vol% helium and 2-5 vol% hydrogen, the remainder comprising argon. This shielding gas brings about an improved finish.

Classes IPC  ?

  • B23K 1/00 - Brasage ou débrasage
  • B23K 9/16 - Soudage ou découpage à l'arc utilisant des gaz de protection

71.

BURNING APPLIANCE

      
Numéro d'application JP2015051980
Numéro de publication 2015/141279
Statut Délivré - en vigueur
Date de dépôt 2015-01-26
Date de publication 2015-09-24
Propriétaire
  • IWATANI CORPORATION (Japon)
  • DAINICHI CO., LTD. (Japon)
Inventeur(s)
  • Miyashiro, Toshio
  • Yokoo, Naoki
  • Shibasaki, Norihisa

Abrégé

[Problem] To provide a safe burning appliance in which overheating of a housing is prevented even if a blower does not operate. [Solution] A burning appliance wherein a combustion chamber (30) having a burner (32) and a thermoelectric converting means (40) are arranged inside a housing (12), the thermoelectric converting means (40) generates thermoelectromotive force by means of a thermoelectric element (46) sandwiched between a low-temperature part (44) and a high-temperature part (42) formed using the combustion heat of the burner (32), and a blower (50) is driven by the thermoelectromotive force, thereby releasing the combustion heat from an air outlet (18) formed in the housing (12). The housing (12) has a heat dissipation opening (15) above the air outlet (18), the opening being used to release to the outside the combustion heat generated in the combustion chamber (30).

Classes IPC  ?

  • F24H 3/04 - Appareils de chauffage d'air à circulation forcée l'air étant en contact direct avec l'agent chauffant, p. ex. élément chauffant électrique

72.

Method for treating inner surface of chlorine trifluoride supply passage in apparatus using chlorine trifluoride

      
Numéro d'application 14374728
Numéro de brevet 09416445
Statut Délivré - en vigueur
Date de dépôt 2012-02-08
Date de la première publication 2015-02-12
Date d'octroi 2016-08-16
Propriétaire IWATANI CORPORATION (Japon)
Inventeur(s)
  • Yoshino, Yu
  • Koike, Kunihiko
  • Saeda, Manabu
  • Manabe, Toshiki

Abrégé

3 in a reaction chamber during process operation. The method includes: integrally connecting a gas supply passage (2) and a gas discharge passage (3) to a processing chamber (1) of a processing apparatus in which chlorine trifluoride is used as an etching gas; and applying chlorine trifluoride gas having a concentration equal to or higher than the concentration of chlorine trifluoride gas supplied during etching process operation on inner surfaces of at least the processing chamber (1) and the gas supply passage (2) among the processing chamber (1), the gas supply passage (2), and the gas discharge passage (3), which are integrally formed, to coat the inner surfaces of at least the processing chamber (1) and the gas supply passage (2) with a fluoride film.

Classes IPC  ?

  • C03C 15/00 - Traitement de surface du verre, autre que sous forme de fibres ou de filaments, par attaque chimique
  • B05D 7/22 - Procédés, autres que le flocage, spécialement adaptés pour appliquer des liquides ou d'autres matériaux fluides, à des surfaces particulières, ou pour appliquer des liquides ou d'autres matériaux fluides particuliers à des surfaces internes, p. ex. à l'intérieur de tubes
  • C23C 16/44 - Revêtement chimique par décomposition de composés gazeux, ne laissant pas de produits de réaction du matériau de la surface dans le revêtement, c.-à-d. procédés de dépôt chimique en phase vapeur [CVD] caractérisé par le procédé de revêtement
  • H01L 21/67 - Appareils spécialement adaptés pour la manipulation des dispositifs à semi-conducteurs ou des dispositifs électriques à l'état solide pendant leur fabrication ou leur traitementAppareils spécialement adaptés pour la manipulation des plaquettes pendant la fabrication ou le traitement des dispositifs à semi-conducteurs ou des dispositifs électriques à l'état solide ou de leurs composants
  • C23C 16/455 - Revêtement chimique par décomposition de composés gazeux, ne laissant pas de produits de réaction du matériau de la surface dans le revêtement, c.-à-d. procédés de dépôt chimique en phase vapeur [CVD] caractérisé par le procédé de revêtement caractérisé par le procédé utilisé pour introduire des gaz dans la chambre de réaction ou pour modifier les écoulements de gaz dans la chambre de réaction

73.

Method and apparatus for supplying mixed gas

      
Numéro d'application 14511214
Numéro de brevet 09533268
Statut Délivré - en vigueur
Date de dépôt 2014-10-10
Date de la première publication 2015-01-22
Date d'octroi 2017-01-03
Propriétaire IWATANI CORPORATION (Japon)
Inventeur(s)
  • Koike, Kunihiko
  • Yoshino, Yu
  • Makihira, Naohisa
  • Senoo, Takehiko
  • Aida, Toshihiro
  • Biro, Tomoya
  • Ichimaru, Hiroshi
  • Tainaka, Masahiro

Abrégé

A method and apparatus, for supplying high-pressure mixed gas of a low-vapor-pressure first gas as an active gas and a high-vapor-pressure second gas, are arranged to reduce an amount of the first gas discarded. The mixed gas in a high-pressure state is supplied from a mixing container to a use point. Upon reduction of pressure in the mixing container to a setpoint as a result of supply to the use point, a predetermined amount of the first gas is charged into a replenishment container connected to the mixing container by a replenishment line having a replenishment valve, and which is evacuated. As the second gas is charged into the replenishment container charged with the first gas, the replenishment valve is opened such that the first gas in the replenishment container is forced out by the second gas, thereby charging the mixing container with the mixed gas in the high-pressure condition.

Classes IPC  ?

  • B01F 5/10 - Mélangeurs à circulation
  • G05D 11/13 - Commande du rapport des débits de plusieurs matériaux fluides ou fluents caractérisée par l'usage de moyens électriques
  • G05D 11/00 - Commande du rapport des débits
  • B01F 15/00 - Accessoires pour mélangeurs
  • B01F 15/02 - Mécanismes d'alimentation ou d'évacuation

74.

Barbecue grill

      
Numéro d'application 29481786
Numéro de brevet D0720570
Statut Délivré - en vigueur
Date de dépôt 2014-02-10
Date de la première publication 2015-01-06
Date d'octroi 2015-01-06
Propriétaire Iwatani Corporation (Japon)
Inventeur(s) Inada, Kenichiro

75.

Barbecue grill

      
Numéro d'application 29481790
Numéro de brevet D0720181
Statut Délivré - en vigueur
Date de dépôt 2014-02-10
Date de la première publication 2014-12-30
Date d'octroi 2014-12-30
Propriétaire Iwatani Corporation (Japon)
Inventeur(s) Inada, Kenichiro

76.

Barbecue grill

      
Numéro d'application 29481781
Numéro de brevet D0719394
Statut Délivré - en vigueur
Date de dépôt 2014-02-10
Date de la première publication 2014-12-16
Date d'octroi 2014-12-16
Propriétaire Iwatani Corporation (Japon)
Inventeur(s) Inada, Kenichiro

77.

WELDING APPARATUS

      
Numéro d'application JP2014059188
Numéro de publication 2014/157637
Statut Délivré - en vigueur
Date de dépôt 2014-03-28
Date de publication 2014-10-02
Propriétaire
  • F-TECH INC. (Japon)
  • FUJI MACHINE WORKS CO., LTD. (Japon)
  • IWATANI CORPORATION (Japon)
Inventeur(s)
  • Noma, Naohiro
  • Iino, Masamitsu
  • Taniguchi, Hideshi
  • Sugiyama, Yasuhiro

Abrégé

This welding apparatus is provided with: a feeding mechanism (20) for feeding a cylindrical member (10) obtained by molding a plate member into a cylindrical shape in such a manner that a first end section (10a) and a second end section (10b) of the plate member face each other; a first pressing mechanism (30) that presses the cylindrical member (10) fed by the feeding mechanism (20) in such a manner that the first end section (10a) and the second end section (10b) face each other with a first spacer (38) therebetween; and a welding part (40) that is penetrated by a welding gun (44) and the cylindrical member (10), which is pressed by the first pressing mechanism (30) while being fed by the feeding mechanism (20), and has a guide member (42) that guides the cylindrical member (10) toward the welding gun (44) while holding the cylindrical member (10) in such a manner that the first end section (10a) and the second end section (10b) are maintained in a facing state with a second spacer (46) therebetween. Thus, the cylindrical member (10) is smoothly and continuously introduced to the welding part (40) while the facing state of the end sections of the cylindrical member, which are facing each other, is maintained, thereby enabling the end sections of the cylindrical member (10), which are in contact with one another, to be continuously welded.

Classes IPC  ?

  • B23K 9/025 - Soudage de joints continusSupportsPièces rapportées pour des joints rectilignes
  • B21C 37/08 - Fabrication de tubes à joints soudés ou brasés

78.

WELDING APPARATUS

      
Numéro d'application JP2014059189
Numéro de publication 2014/157638
Statut Délivré - en vigueur
Date de dépôt 2014-03-28
Date de publication 2014-10-02
Propriétaire
  • F-TECH INC. (Japon)
  • FUJI MACHINE WORKS CO., LTD. (Japon)
  • IWATANI CORPORATION (Japon)
Inventeur(s)
  • Noma, Naohiro
  • Iino, Masamitsu
  • Taniguchi, Hideshi
  • Sugiyama, Yasuhiro

Abrégé

This welding apparatus is provided with: a first pressing mechanism (30) that presses a cylindrical member (10) in such a manner that a first end section (10a) and a second end section (10b) face each other with a first spacer (38) therebetween; a welding part (40) that is penetrated by the cylindrical member (10), which is pressed by the first pressing mechanism (30) while being fed by a feeding mechanism (20), and has a guide member (42) that guides the cylindrical member (10) toward a welding gun (44), while holding the cylindrical member (10), in such a manner that the first end section (10a) and the second end section (10b) are maintained in a facing state with a second spacer (46) therebetween; and a second pressing mechanism (50) that presses the cylindrical member (10), wherein the first end section (10a) and the second end section (10b) have been welded by the welding part (40), while the cylindrical member (10) is fed by the feeding mechanism (20). Thus, the cylindrical member (10) is smoothly and continuously introduced to the welding part (40) while the facing state of the end sections of the cylindrical member, which are facing each other, is maintained, thereby continuously welding the end sections of the cylindrical member (10), which are in contact with each other, and smoothly and continuously discharging the cylindrical member (10) from the welding part (40), enabling welding distortions to be corrected.

Classes IPC  ?

  • B23K 9/025 - Soudage de joints continusSupportsPièces rapportées pour des joints rectilignes
  • B21C 37/08 - Fabrication de tubes à joints soudés ou brasés

79.

ETCHING METHOD

      
Numéro d'application JP2014056664
Numéro de publication 2014/156681
Statut Délivré - en vigueur
Date de dépôt 2014-03-13
Date de publication 2014-10-02
Propriétaire
  • TOKYO ELECTRON LIMITED (Japon)
  • IWATANI CORPORATION (Japon)
Inventeur(s)
  • Moriya Shuji
  • Senoo Takehiko
  • Yoshino Yu
  • Aida Toshihiro
  • Horiguchi Makoto
  • Biro Tomoya

Abrégé

A substrate to be treated (W) is disposed in a chamber (40), said substrate to be treated having a silicon nitride film on the surface, and also having a polysilicon film and/or a silicon oxide film that is provided adjacent to the silicon nitride film, and NO gas and/or ozone gas, and HF gas are supplied to the inside of the chamber (40), thereby selectively etching the silicon nitride film.

Classes IPC  ?

  • H01L 21/302 - Traitement des corps semi-conducteurs en utilisant des procédés ou des appareils non couverts par les groupes pour changer leurs caractéristiques physiques de surface ou leur forme, p. ex. gravure, polissage, découpage

80.

GAS FILLING DEVICE AND GAS FILLING METHOD

      
Numéro d'application JP2014050863
Numéro de publication 2014/119398
Statut Délivré - en vigueur
Date de dépôt 2014-01-18
Date de publication 2014-08-07
Propriétaire IWATANI CORPORATION (Japon)
Inventeur(s)
  • Ueha Hisato
  • Watanabe Satoshi

Abrégé

In order to implement the filling of gas without requiring a booster pump, and to reduce the device size and the filling time, this gas filling device (11), which fills a filling container (12) with a vaporized gas to achieve a prescribed pressure, is equipped with: a temporary storage heat-insulating container (14), which has a heat-insulating function and stores an amount of liquefied gas representing the amount when the filling container (12) is filled to the prescribed pressure of vaporized gas at normal temperature; and a connecting passage (15), which is for connecting a fluid outlet (14a) of the temporary storage heat-insulating container (14) and a fluid inlet (12a) of the filling container (12) and introducing hydrogen gas from the temporary storage heat-insulating container (14) to the filling container (12). The connecting passage (15) is equipped with: opening/closing means (15a, 15b) for opening/closing the fluid outlet (14a) and the fluid inlet (12a); an introducing/vaporizing unit (15f) equipped with a buffer means (21) that alleviates the momentum of the passing gas flow and a warming unit (22) having a temperature at which the liquefied hydrogen is vaporized; and an attachment/detachment unit (15c) coupled to the filling container (12) in a detachable manner.

Classes IPC  ?

  • F17C 5/06 - Procédés ou appareils pour remplir des récipients sous pression de gaz liquéfiés, solidifiés ou comprimés pour le remplissage avec des gaz comprimés
  • F17C 9/02 - Procédés ou appareils pour vider les gaz liquéfiés ou solidifiés contenus dans des récipients non sous pression avec changement d'état, p. ex. vaporisation

81.

PROCESS FOR MANUFACTURING DRY NANOPARTICLES BY FREEZE-DRYING

      
Numéro d'application JP2012076365
Numéro de publication 2014/057564
Statut Délivré - en vigueur
Date de dépôt 2012-10-11
Date de publication 2014-04-17
Propriétaire IWATANI CORPORATION (Japon)
Inventeur(s) Okumura Haruki

Abrégé

This process for manufacturing dry nanoparticles includes: a dispersion-preparing step for preparing a dispersion of nanoparticles in an organic solvent; and a freeze-drying step for freeze-drying the dispersion to remove the organic solvent.

Classes IPC  ?

  • B22F 1/00 - Poudres métalliquesTraitement des poudres métalliques, p. ex. en vue de faciliter leur mise en œuvre ou d'améliorer leurs propriétés
  • B22F 9/00 - Fabrication des poudres métalliques ou de leurs suspensionsAppareils ou dispositifs spécialement adaptés à cet effet

82.

SUPPLY METHOD AND SUPPLY DEVICE FOR MIXED GAS

      
Numéro d'application JP2013060284
Numéro de publication 2013/154014
Statut Délivré - en vigueur
Date de dépôt 2013-04-04
Date de publication 2013-10-17
Propriétaire
  • IWATANI CORPORATION (Japon)
  • CENTRAL GLASS COMPANY, LIMITED (Japon)
Inventeur(s)
  • Koike Kunihiko
  • Yoshino Yu
  • Makihira Naohisa
  • Senoo Takehiko
  • Aida Toshihiro
  • Biro Tomoya
  • Ichimaru Hiroshi
  • Tainaka Masahiro

Abrégé

The present invention pertains to a supply method and a supply device for a high-pressure mixed gas that is obtained by mixing a low-vapor-pressure first gas serving as an active gas with a high-vapor-pressure second gas, and is configured so as to reduce disposal of the first gas. The supply device is used to supply mixed gas in the high-pressure state to a point of use (72) thereof from the inside of a mixing container (1) and is configured such that a replenishment container (2) is connected by a replenishment pipeline (31) that has a replenishment valve (3) to the mixing container (1) when the pressure inside the mixing container (1) has dropped to a predetermined value due to the supplying of the mixed gas to the point of use (72), a predetermined amount of the first gas is loaded into the replenishment container (2) that has been brought to a vacuum state, and the mixing container (1) is replenished with the mixed gas in the high-pressure state by pushing the first gas in the replenishment container (2) out with the second gas by simultaneously opening the replenishment valve (3) with the loading of the second gas into the replenishment container (2), which has been filled with the first gas. This replenishes the high-pressure mixing container (1) with the low-vapor-pressure first gas while reducing the amount of first gas which is disposed of.

Classes IPC  ?

  • B01F 15/02 - Mécanismes d'alimentation ou d'évacuation
  • B01F 3/02 - Mélange, p.ex. dispersion, émulsion, selon les phases à mélanger de gaz avec des gaz ou des vapeurs
  • F17C 7/00 - Procédés ou appareils pour vider les gaz liquéfiés, solidifiés ou comprimés contenus dans des récipients sous pression, non couverts par une autre sous-classe

83.

Iwatani CASSETTE GAS

      
Numéro d'application 1173047
Statut Enregistrée
Date de dépôt 2013-07-11
Date d'enregistrement 2013-07-11
Propriétaire IWATANI CORPORATION (Japon)
Classes de Nice  ? 04 - Huiles et graisses industrielles; lubrifiants; combustibles

Produits et services

Gaseous fuels filled in canisters; liquid fuels filled in canisters.

84.

METHOD FOR TREATING INNER SURFACE OF CHLORINE TRIFLUORIDE SUPPLY PATH IN DEVICE USING CHLORINE TRIFLUORIDE

      
Numéro d'application JP2012052862
Numéro de publication 2013/118260
Statut Délivré - en vigueur
Date de dépôt 2012-02-08
Date de publication 2013-08-15
Propriétaire IWATANI CORPORATION (Japon)
Inventeur(s)
  • Yoshino Yu
  • Koike Kunihiko
  • Saeda Manabu
  • Manabe Toshiki

Abrégé

Provided is a method for treating the inner surface of a chlorine trifluoride supply path that enables reliable suppression of drops in the concentration of ClF3 in a reaction chamber during treatment work. A gas supply path (2) and a gas discharge path (3) are integrally connected to a treatment chamber (1) of a treatment device in which chlorine trifluoride is used as an etching gas. Chlorine trifluoride gas with a concentration equal to or greater than the concentration of the chlorine trifluoride gas supplied during etching treatment operation is allowed to act on the inner surfaces of at least the treatment chamber (1) and the gas supply path (2) from among the treatment chamber (1), the gas supply path (2), and the gas discharge path (3), thus coating the inner surfaces of at least the treatment chamber (1) and the gas supply path (2) with a fluoride film.

Classes IPC  ?

  • H01L 21/3065 - Gravure par plasmaGravure au moyen d'ions réactifs
  • H01L 21/205 - Dépôt de matériaux semi-conducteurs sur un substrat, p. ex. croissance épitaxiale en utilisant la réduction ou la décomposition d'un composé gazeux donnant un condensat solide, c.-à-d. un dépôt chimique

85.

GAS SUPPLY DEVICE

      
Numéro d'application JP2013052694
Numéro de publication 2013/118756
Statut Délivré - en vigueur
Date de dépôt 2013-02-06
Date de publication 2013-08-15
Propriétaire
  • IWATANI CORPORATION (Japon)
  • A-TEC CO., LTD. (Japon)
  • MITSUBISHI HEAVY INDUSTRIES, LTD. (Japon)
Inventeur(s)
  • Kusaka Hiroyuki
  • Takata Takayoshi
  • Takao Kazuhiro
  • Goto Katsuhiko
  • Shibuya Toshiki
  • Yamada Daisuke

Abrégé

A gas supply device (11) which provides a tank (21) that stores LNG (12) with a supply path (31) for supplying vaporized gas to gas-consuming equipment (13) and with a return path (41) for returning vaporized gas that has been conducted out from an internal thermally insulated chamber (25), and which supplies gas through the supply path (31) by adjusting the pressure inside the tank (21) using a pressure-adjusting means (42) provided in the return path (41). The internal thermally insulated chamber (25), which is partitioned off by a liquid gas-storing section (24) for storing the LNG (12) and a vacuum insulation layer (22a), is provided inside the tank (21). In the liquid gas-storing section (24), a conducting path (26) for conducting the LNG to the internal thermally insulated chamber (25) is formed. The upstream portion of the return path (41) is formed inside the tank (21). In the internal thermally insulated chamber (25), a heat-exchanging section (27) that uses the gas as the heating medium is provided for vaporizing the LNG (12) and the liquid phase portion is stored in the tank (21).

Classes IPC  ?

  • F17C 13/00 - Détails des récipients ou bien du remplissage ou du vidage des récipients
  • B63B 25/16 - Installations de chargement, p. ex. pour le rangement ou l'arrimageNavires spécialisés à cet effet pour chargement de marchandises fluides fermées isolées de la chaleur
  • F17C 7/04 - Vidage des gaz liquéfiés avec changement d'état, p. ex. vaporisation

86.

METHOD FOR CLEANING TRANSPARENT ELECTRODE FILM

      
Numéro d'application JP2012074068
Numéro de publication 2013/058050
Statut Délivré - en vigueur
Date de dépôt 2012-09-20
Date de publication 2013-04-25
Propriétaire
  • IWATANI CORPORATION (Japon)
  • HEMMI Slide Rule Co., Ltd. (Japon)
Inventeur(s)
  • Koike Kunihiko
  • Yoshino Yu
  • Senoo Takehiko
  • Azuma Shuhei
  • Kato Yuji

Abrégé

The present invention is a method for cleaning a transparent electrode film which adheres to the inner surface of a chamber of a transparent conductive film-forming apparatus that produces a zinc oxide film as a transparent conductive film. A hydrogen-rich methyl chloride-hydrogen mixed gas atmosphere is formed within the chamber with use of a methyl chloride gas and a hydrogen gas, and a transparent electrode film adhering to the inner surface of the chamber is removed by generating plasma within the chamber that is in the methyl chloride-hydrogen mixed gas atmosphere.

Classes IPC  ?

  • C23C 14/00 - Revêtement par évaporation sous vide, pulvérisation cathodique ou implantation d'ions du matériau composant le revêtement
  • C23C 16/44 - Revêtement chimique par décomposition de composés gazeux, ne laissant pas de produits de réaction du matériau de la surface dans le revêtement, c.-à-d. procédés de dépôt chimique en phase vapeur [CVD] caractérisé par le procédé de revêtement

87.

Method for producing high concentration ozonated water and device for producing high concentration ozonated water

      
Numéro d'application 13703139
Numéro de brevet 09080131
Statut Délivré - en vigueur
Date de dépôt 2010-11-25
Date de la première publication 2013-03-28
Date d'octroi 2015-07-14
Propriétaire
  • SHARP KABUSHIKI KAISHA (Japon)
  • IWATANI CORPORATION (Japon)
Inventeur(s)
  • Koike, Kunihiko
  • Nakamura, Sadaki
  • Makihira, Naohisa
  • Izumi, Koichi
  • Inoue, Goichi
  • Hohshi, Norikazu
  • Minamihonoki, Takashi

Abrégé

The disclosed device and method produce high concentration ozonated water by connecting a high concentration ozone gas-supplying system that comprises an ozone gas-generating unit (1) for forming ozone gas, an ozone gas-concentrating unit (2) for concentrating the ozone gas formed, a concentrated ozone gas-pressurizing unit (3) for pressurizing the concentrated ozone gas output from the ozone gas-concentrating unit (2), and a cooling mechanism (13) for cooling the concentrated ozone gas-pressurizing unit (3), to an ozone gas-dissolving unit (4) to dissolve the high pressure, concentrated ozone gas in pure water and produce the high concentration ozonated water.

Classes IPC  ?

  • C11D 7/04 - Composés inorganiques solubles dans l'eau
  • C01B 13/11 - Préparation de l'ozone par décharge électrique
  • C11D 3/39 - Percomposés organiques ou inorganiques

88.

Method and apparatus for concentrating ozone gas

      
Numéro d'application 13597822
Numéro de brevet 08945278
Statut Délivré - en vigueur
Date de dépôt 2012-08-29
Date de la première publication 2013-03-14
Date d'octroi 2015-02-03
Propriétaire Iwatani Corporation (Japon)
Inventeur(s)
  • Makihira, Naohisa
  • Nakamura, Sadaki
  • Inoue, Goichi
  • Koike, Kunihiko

Abrégé

A method of concentrating ozone gas including: causing ozone gas contained in ozone-oxygen mixture gas to be selectively adsorbed to adsorbents which are filled in a non-cooled state in at least two adsorbing cylinders arranged parallel to one another; desorbing the ozone gas from the adsorbents by subjecting a depressurizing process to each adsorbing cylinder during an ozone gas desorption operation; repeating an adsorption step and a desorption step alternately in the at least two adsorbing cylinders; and controlling the adsorbing cylinders, in such a way that one of the adsorbing cylinders is performing the adsorption step while another one of the adsorbing cylinders is performing the desorption step.

Classes IPC  ?

89.

Substrate cleaning method and substrate cleaning device

      
Numéro d'application 13579772
Numéro de brevet 09209010
Statut Délivré - en vigueur
Date de dépôt 2011-02-03
Date de la première publication 2013-03-07
Date d'octroi 2015-12-08
Propriétaire
  • TOKYO ELECTRON LIMITED (Japon)
  • IWATANI CORPORATION (Japon)
Inventeur(s)
  • Matsui, Hidefumi
  • Moriya, Tsuyoshi
  • Narushima, Masaki

Abrégé

A substrate cleaning method includes removing a foreign material attached to a substrate while preventing deterioration of the substrate and any film formed on or above the substrate. A cleaning gas at a pressure between 0.3 MPa and 2.0 MPa is sprayed towards a wafer W with attached foreign material 22 placed in a near-vacuum, producing clusters 21 made up of a multitude of gas molecules 20, and the clusters 21 collide with the wafer W without undergoing ionization.

Classes IPC  ?

  • B08B 5/02 - Nettoyage par la force de jets, p. ex. le soufflage de cavités
  • B08B 7/00 - Nettoyage par des procédés non prévus dans une seule autre sous-classe ou un seul groupe de la présente sous-classe
  • H01L 21/02 - Fabrication ou traitement des dispositifs à semi-conducteurs ou de leurs parties constitutives
  • H01L 21/67 - Appareils spécialement adaptés pour la manipulation des dispositifs à semi-conducteurs ou des dispositifs électriques à l'état solide pendant leur fabrication ou leur traitementAppareils spécialement adaptés pour la manipulation des plaquettes pendant la fabrication ou le traitement des dispositifs à semi-conducteurs ou des dispositifs électriques à l'état solide ou de leurs composants

90.

Substrate cleaning apparatus and vacuum processing system

      
Numéro d'application 13429720
Numéro de brevet 09214364
Statut Délivré - en vigueur
Date de dépôt 2012-03-26
Date de la première publication 2012-10-04
Date d'octroi 2015-12-15
Propriétaire
  • TOKYO ELECTRON LIMITED (Japon)
  • IWATANI CORPORATION (Japon)
Inventeur(s)
  • Dobashi, Kazuya
  • Inai, Kensuke
  • Shimizu, Akitaka
  • Yasuda, Kenta
  • Yoshino, Yu
  • Aida, Toshihiro
  • Senoo, Takehiko

Abrégé

A substrate cleaning apparatus includes a supporting unit, provided in a processing chamber having a gas exhaust port, for supporting a substrate; one or more nozzle units, each for ejecting gas clusters to a peripheral portion of the substrate supported by the supporting unit to remove unnecessary substances from the peripheral portion; and a moving mechanism for changing relative positions of the supporting unit and the nozzle unit during ejecting the gas clusters. Each nozzle unit discharges a cleaning gas having a pressure higher than that in the processing chamber so that the cleaning gas is adiabatically expanded to form aggregates of atoms and/or molecules.

Classes IPC  ?

  • H01L 21/67 - Appareils spécialement adaptés pour la manipulation des dispositifs à semi-conducteurs ou des dispositifs électriques à l'état solide pendant leur fabrication ou leur traitementAppareils spécialement adaptés pour la manipulation des plaquettes pendant la fabrication ou le traitement des dispositifs à semi-conducteurs ou des dispositifs électriques à l'état solide ou de leurs composants
  • C23C 16/455 - Revêtement chimique par décomposition de composés gazeux, ne laissant pas de produits de réaction du matériau de la surface dans le revêtement, c.-à-d. procédés de dépôt chimique en phase vapeur [CVD] caractérisé par le procédé de revêtement caractérisé par le procédé utilisé pour introduire des gaz dans la chambre de réaction ou pour modifier les écoulements de gaz dans la chambre de réaction
  • H01J 37/32 - Tubes à décharge en atmosphère gazeuse

91.

COMBUSTIBLE GAS

      
Numéro d'application JP2011055814
Numéro de publication 2012/124030
Statut Délivré - en vigueur
Date de dépôt 2011-03-11
Date de publication 2012-09-20
Propriétaire
  • IWATANI INDUSTRIAL GASES CORPORATION (Japon)
  • IWATANI CORPORATION (Japon)
Inventeur(s)
  • Nakamuta, Masahiko
  • Hashimoto, Toshiaki
  • Yoshida, Yoshifumi
  • Matsumoto, Kazuto

Abrégé

The present invention is a combustible gas which is easy to store and transport and can improve the quality of the finished state after performing a process such as gas cutting, gas welding, or brazing. The combustible gas contains 38-45 vol% ethylene by volume, with the remainder being hydrogen and unavoidable impurities.

Classes IPC  ?

  • C10L 3/10 - Post-traitement de gaz naturel ou de gaz naturel de synthèse
  • B23K 7/10 - Dispositifs auxiliaires, p. ex. pour guider ou supporter le chalumeau

92.

COMPOSITE NICKEL NANOPARTICLES AND METHOD FOR PRODUCING SAME

      
Numéro d'application JP2012056112
Numéro de publication 2012/124625
Statut Délivré - en vigueur
Date de dépôt 2012-03-09
Date de publication 2012-09-20
Propriétaire
  • NIPPON STEEL & SUMIKIN CHEMICAL CO., LTD. (Japon)
  • OSAKA UNIVERSITY (Japon)
  • IWATANI CORPORATION (Japon)
Inventeur(s)
  • Inoue Shuji
  • Yamada Katsuhiro
  • Nomoto Hiderou
  • Yamauchi Tomohisa
  • Wada Yuji
  • Tsukahara Yasunori
  • Kawahata Ryoji
  • Okumura Haruki

Abrégé

A method for producing composite nickel nanoparticles comprises: A) a step for obtaining a complexed reaction solution by heating a mixture of nickel carboxylic acid and a primary amine at a temperature ranging from 100°C to 165°C; B) a step for obtaining a metallic nickel nanoparticle slurry by heating the complexed reaction solution at a temperature of at least 170°C by microwave irradiation, and reducing nickel ions in the complexed reaction solution such that the nickel ions are covered by the primary amine; and C) a step for obtaining composite nickel nanoparticles, which are covered by the primary amine and elemental sulfur or an elemental-sulfur-containing organic compound, by adding sulfur powder or the elemental-sulfur-containing organic compound, which is capable of replacing the covering primary amine, to the metallic nickel nanoparticle slurry covered by the primary amine.

Classes IPC  ?

  • B22F 1/02 - Traitement particulier des poudres métalliques, p.ex. en vue de faciliter leur mise en œuvre, d'améliorer leurs propriétés; Poudres métalliques en soi, p.ex. mélanges de particules de compositions différentes comportant un enrobage des particules
  • B22F 1/00 - Poudres métalliquesTraitement des poudres métalliques, p. ex. en vue de faciliter leur mise en œuvre ou d'améliorer leurs propriétés
  • B22F 9/24 - Fabrication des poudres métalliques ou de leurs suspensionsAppareils ou dispositifs spécialement adaptés à cet effet par un procédé chimique avec réduction de mélanges métalliques à partir de mélanges métalliques liquides, p. ex. de solutions
  • B82Y 30/00 - Nanotechnologie pour matériaux ou science des surfaces, p. ex. nanocomposites
  • B82Y 40/00 - Fabrication ou traitement des nanostructures
  • H01B 5/00 - Conducteurs ou corps conducteurs non isolés caractérisés par la forme
  • H01B 13/00 - Appareils ou procédés spécialement adaptés à la fabrication de conducteurs ou câbles

93.

Calcium phosphate complex, and method for production thereof

      
Numéro d'application 13266075
Numéro de brevet 09447502
Statut Délivré - en vigueur
Date de dépôt 2009-04-30
Date de la première publication 2012-05-10
Date d'octroi 2016-09-20
Propriétaire IWATANI CORPORATION (Japon)
Inventeur(s)
  • Koike, Kunihiko
  • Kogai, Yasumichi
  • Nakagawa, Masami

Abrégé

Provided is a means for fixing calcium phosphate onto the surface of a metal by a treatment method which uses no acid and produces less residue. A method of producing a calcium phosphate composite in which calcium phosphate is bonded to the surface of a base material, the method including a surface treatment step of bringing the surface of the base material into contact with a surface treating agent, and then into contact with a silane coupling agent, to surface treat the base material; a polymerization step of initiating, after the surface treatment step, polymerization of the silane coupling agent by means of a polymerization initiator; and a bonding step of bonding the silane coupling agent at the surface of the base material after the polymerization step, with calcium phosphate; wherein the base material is a metal, and the surface treating agent is ozone water.

Classes IPC  ?

  • C23C 22/05 - Traitement chimique de surface de matériaux métalliques par réaction de la surface avec un milieu réactif laissant des produits de réaction du matériau de la surface dans le revêtement, p. ex. revêtement par conversion, passivation des métaux au moyen de solutions aqueuses
  • C09D 1/00 - Compositions de revêtement, p. ex. peintures, vernis ou vernis-laques, à base de substances inorganiques
  • C23C 22/83 - Post-traitement chimique
  • C08K 3/32 - Composés contenant du phosphore

94.

SURFACE MOUNT LIGHT-EMITTING DEVICE, AND DISPLAY UNIT

      
Numéro d'application JP2011062678
Numéro de publication 2012/008233
Statut Délivré - en vigueur
Date de dépôt 2011-06-02
Date de publication 2012-01-19
Propriétaire
  • Mitsubishi Electric Corporation (Japon)
  • Iwatani Corporation (Japon)
Inventeur(s)
  • Teranishi Masato
  • Etou Chikara
  • Saito Yusaku
  • Yanaura Satoshi
  • Kakutani Haruhiko
  • Sakamoto Hiroo
  • Abe Osamu

Abrégé

[Problem] To provide a highly reliable surface mount light-emitting device wherein the occurrence of a crack in a joint between an electrode part of the surface mount light-emitting device and a wiring part of a wiring substrate is reliably suppressed without complicating a configuration, and a display unit. [Solution] This surface mount light-emitting device is provided with an LED chip serving as a light-emitting source, a plurality of electrode parts connected to the LED chip, and a mold part for housing the LED chip and the plurality of electrode parts, and is configured so that the plurality of electrode parts can be fastened to a wiring part of a wiring substrate and the back surface of the mold part can be mounted to face the surface of the wiring substrate. The mold part is provided with a recess that forms a space between at least two electrodes among the plurality of electrodes on the back surface side. This display unit is configured by disposing the surface mount light emitting devices configured as described above at a plurality of lattice points.

Classes IPC  ?

  • H01L 33/54 - Encapsulations ayant une forme particulière
  • H01L 23/28 - Encapsulations, p. ex. couches d’encapsulation, revêtements

95.

LED PACKAGE DEVICE

      
Numéro d'application JP2011066294
Numéro de publication 2012/008600
Statut Délivré - en vigueur
Date de dépôt 2011-07-12
Date de publication 2012-01-19
Propriétaire
  • IWATANI CORPORATION (Japon)
  • MITSUBISHI ELECTRIC CORPORATION (Japon)
Inventeur(s)
  • Abe, Osamu
  • Teranishi, Masato

Abrégé

Disclosed is an LED package device in which colour shift due to a resin mould is prevented. An LED package device comprises at least three or more LEDs (2R, 2B, 2G) having different wavelengths, and a lead frame (1) on which the LEDs (2R, 2B, 2G) are mounted. The lead frame (1) is provided with a cap section (5) on which the LEDs (2R, 2B, 2G) are mounted. A first optically transparent resin mould (11) is provided in the cap section (5) on which the LEDs (2R, 2B, 2G) are mounted, so as to cover the mounted LEDs (2R, 2B, 2G). A second optically transparent resin mould (12) is formed so as to cover at least an aperture of the cap section (5). The first resin mould (11) and the second resin mould (12) have mutually different refractive indices. As a result, colour shift is effectively prevented and excellent colour reproducibility is achieved when the LED package device is used in a colour display or the like.

Classes IPC  ?

  • H01L 33/56 - Matériaux, p.ex. résine époxy ou silicone

96.

LED PACKAGE DEVICE

      
Numéro d'application JP2011066291
Numéro de publication 2012/008598
Statut Délivré - en vigueur
Date de dépôt 2011-07-12
Date de publication 2012-01-19
Propriétaire
  • IWATANI CORPORATION (Japon)
  • MITSUBISHI ELECTRIC CORPORATION (Japon)
Inventeur(s)
  • Abe, Osamu
  • Teranishi, Masato

Abrégé

Provided is an LED package device wherein a color shift is effectively eliminated, while ensuring sufficient luminance. The LED package device has a red LED (2R), a blue LED (2B), and a green LED (2G). The red LED (2R), the blue LED (2B), and the green LED (2G) are respectively mounted on the mounting surfaces (3A, 3B, 3C) facing the light irradiation direction of the LEDs. The red LED (2R) is mounted on the first mounting surface (3A), which is disposed on the furthest side when viewed from the light irradiation side of the red LED (2R), the blue LED (2B) is disposed on the second mounting surface (3B), which is disposed on the foremost side when viewed from the light irradiation side, and the green LED (2G) is mounted on the third mounting surface (3C), which is disposed on a step between the first mounting surface (3A) and the second mounting surface (3B).

Classes IPC  ?

  • H01L 33/48 - DISPOSITIFS À SEMI-CONDUCTEURS NON COUVERTS PAR LA CLASSE - Détails caractérisés par les éléments du boîtier des corps semi-conducteurs

97.

METHOD FOR PRODUCING HIGH CONCENTRATION OZONATED WATER AND DEVICE FOR PRODUCING HIGH CONCENTRATION OZONATED WATER

      
Numéro d'application JP2010071007
Numéro de publication 2011/158397
Statut Délivré - en vigueur
Date de dépôt 2010-11-25
Date de publication 2011-12-22
Propriétaire
  • SHARP KABUSHIKI KAISHA (Japon)
  • IWATANI CORPORATION (Japon)
Inventeur(s)
  • Koike Kunihiko
  • Nakamura Sadaki
  • Makihira Naohisa
  • Izumi Koichi
  • Inoue Goichi
  • Hohshi Norikazu
  • Minamihonoki Takashi

Abrégé

The disclosed device and method produce high concentration ozonated water by connecting a high concentration ozone gas-supplying system that comprises an ozone gas-generating unit (1) for forming ozone gas, an ozone gas-concentrating unit (2) for concentrating the ozone gas formed, a concentrated ozone gas-pressurizing unit (3) for pressurizing the concentrated ozone gas output from the ozone gas-concentrating unit (2), and a cooling mechanism (13) for cooling the concentrated ozone gas-pressurizing unit (3), to an ozone gas-dissolving unit (4) to dissolve the high pressure, concentrated ozone gas in pure water and produce the high concentration ozonated water.

Classes IPC  ?

  • B01F 1/00 - Dissolution
  • B01F 15/06 - Systèmes de chauffage ou de refroidissement
  • C01B 13/11 - Préparation de l'ozone par décharge électrique
  • H01L 21/304 - Traitement mécanique, p. ex. meulage, polissage, coupe

98.

INDOOR DISELECTRIFICATION METHOD AND INDOOR DISELECTRIFICATION DEVICE

      
Numéro d'application JP2011059803
Numéro de publication 2011/138901
Statut Délivré - en vigueur
Date de dépôt 2011-04-21
Date de publication 2011-11-10
Propriétaire IWATANI CORPORATION (Japon)
Inventeur(s)
  • Matsumoto Kazuto
  • Koike Kunihiko
  • Kawabe Mitsunori
  • Kubo Kazuya
  • Hirasawa Hajime
  • Nogami Chitoshi

Abrégé

Disclosed is a device that efficaciously removes dust in a room to be processed. The device comprises a plurality of wire electrodes (3) that are frame arrayed in parallel above an electrically charged body (5) that is disposed within the room to be processed (1); and a voltage impressor (4) that impresses a voltage upon each wire electrode (3). The voltage impressor (4) controls the flow of electricity when electricity is flowing to the wire electrodes (3) such that wire electrodes (3a, 3b) that are located adjacent to one another and are voltage impressed have different polarities, and impresses a polarity of a voltage that is supplied to each wire electrode (3), interchangeably switching same at a prescribed period.

Classes IPC  ?

  • H05F 3/04 - Enlèvement des charges électrostatiques au moyen d'éclateurs ou d'autres dispositifs à décharge
  • H01T 23/00 - Appareils pour la production d'ions destinés à être introduits dans des gaz à l'état libre, p. ex. dans l'atmosphère

99.

PROCESS FOR PRODUCTION OF NICKEL NANOPARTICLES

      
Numéro d'application JP2011056407
Numéro de publication 2011/115213
Statut Délivré - en vigueur
Date de dépôt 2011-03-17
Date de publication 2011-09-22
Propriétaire
  • NIPPON STEEL CHEMICAL CO., LTD. (Japon)
  • OSAKA UNIVERSITY (Japon)
  • IWATANI CORPORATION (Japon)
Inventeur(s)
  • Yamada Katsuhiro
  • Inoue Shuji
  • Nomoto Hiderou
  • Yamauchi Tomohisa
  • Wada Yuji
  • Tsukahara Yasunori

Abrégé

A process for producing nickel nanoparticles, which comprises: a first step of heating a mixture of nickel carboxylate having 1 to 12 carbon atoms in a moiety excluding a COOH group with a primary amine to produce a nickel complex, thereby preparing a complexed reaction solution; and a second step of heating the complexed reaction solution with a microwave to produce a nickel nanoparticle slurry. In the first step, the heating is preferably carried out at a temperature of 105 to 175°C for 15 minutes or longer. In the second step, the heating is preferably carried out at a temperature of 180˚C or higher.

Classes IPC  ?

  • B22F 9/24 - Fabrication des poudres métalliques ou de leurs suspensionsAppareils ou dispositifs spécialement adaptés à cet effet par un procédé chimique avec réduction de mélanges métalliques à partir de mélanges métalliques liquides, p. ex. de solutions

100.

NICKEL-COBALT NANOPARTICLE AND MANUFACTURING METHOD THEREFOR

      
Numéro d'application JP2011056408
Numéro de publication 2011/115214
Statut Délivré - en vigueur
Date de dépôt 2011-03-17
Date de publication 2011-09-22
Propriétaire
  • NIPPON STEEL CHEMICAL CO., LTD. (Japon)
  • OSAKA UNIVERSITY (Japon)
  • IWATANI CORPORATION (Japon)
Inventeur(s)
  • Yamauchi Tomohisa
  • Wada Yuji
  • Tsukahara Yasunori
  • Yamada Katsuhiro
  • Inoue Shuji
  • Nomoto Hiderou
  • Kawahata Ryoji

Abrégé

The disclosed nickel-cobalt nanoparticle includes a core, which essentially comprises nickel, and a shell, which essentially completely covers the core and essentially comprises cobalt. The disclosed method for manufacturing said nanoparticle includes: either a step in which a mixture containing a nickel salt or nickel microparticles, a cobalt salt, and a primary amine is heated to produce a reaction solution, or a step in which a mixture containing a cobalt salt and a primary amine is heated to produce a reaction solution; and a step in which the reaction solution is heated to produce a nickel-cobalt nanoparticle slurry.

Classes IPC  ?

  • B22F 1/02 - Traitement particulier des poudres métalliques, p.ex. en vue de faciliter leur mise en œuvre, d'améliorer leurs propriétés; Poudres métalliques en soi, p.ex. mélanges de particules de compositions différentes comportant un enrobage des particules
  • B22F 9/24 - Fabrication des poudres métalliques ou de leurs suspensionsAppareils ou dispositifs spécialement adaptés à cet effet par un procédé chimique avec réduction de mélanges métalliques à partir de mélanges métalliques liquides, p. ex. de solutions
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