会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 12. 发明授权
    • Method and device for forming ultrafine particle film of compound
    • 用于形成化合物超细颗粒膜的方法和装置
    • US4714047A
    • 1987-12-22
    • US853761
    • 1986-04-18
    • Hirotane IkedaTadashi HattoriMinoru OhtaShinichi Mukainakano
    • Hirotane IkedaTadashi HattoriMinoru OhtaShinichi Mukainakano
    • C23C14/24B01J12/02B01J19/00B22F9/12C01B13/20C01G19/02C23C14/00C23C16/40C23C14/08C23C14/26
    • C01B13/20C23C14/0021
    • A method for forming an ultrafine particle film of compound includes the steps of evacuating a vessel provided with an evaporation source in its bottom portion, by which a material to be evaporated is retained, and a base plate in its upper portion, on which ultrafine particles of compound are to be deposited, supplying a reactive gas into the evacuated vessel, evaporating the retained material by heating the evaporation source and making the material interact with the reactive gas to form ultrafine particles of compound and depositing the formed ultrafine particles of compound on the base plate. The reactive gas is directly supplied to an interaction area adjacent to the evaporation source, in which the evaporated material concentrically exists. And a device for forming a ultrafine particle film of compound has a vessel for forming a reactive gas atmosphere, an evaporation source for retaining and heating a material to be evaporated, which is provided in the bottom portion within the vessel, a base plate on which ultrafine particles of compound are to be deposited and which is provided in the upper portion within the vessel so as to be opposed to the evaporation source in the vertical direction, and a gas introducing pipe for supplying a reactive gas into the vessel, which has a gas injection port positioned in an interaction area adjacent to the evaporation source.
    • 用于形成化合物超细颗粒膜的方法包括以下步骤:在其底部排出具有蒸发源的容器,通过该容器保留待蒸发的材料;以及在其上部的基板,在其上具有超细颗粒 的化合物沉积,将反应性气体供应到抽空的容器中,通过加热蒸发源蒸发保留的材料,并使材料与反应性气体相互作用以形成化合物的超微粒子,并将形成的超微粒子化合物沉积在 底盘。 反应气体直接供应到与蒸发源相邻的相互作用区域,其中同时存在蒸发的材料。 并且,用于形成化合物的超细颗粒膜的装置具有用于形成反应性气体气氛的容器,用于保持和加热待蒸发的材料的蒸发源,其设置在容器内的底部中,基板上 要沉积化合物的超细颗粒,并且其设置在容器内的上部,以便在垂直方向上与蒸发源相对;以及气体导入管,用于将反应性气体供应到容器中,该气体导入管具有 气体注入口位于与蒸发源相邻的相互作用区域中。
    • 14. 发明授权
    • Gas sensor assembly
    • 气体传感器组件
    • US4327054A
    • 1982-04-27
    • US105120
    • 1979-12-19
    • Eturo YasudaMinoru Ohta
    • Eturo YasudaMinoru Ohta
    • G01N27/12G01N27/16
    • G01N27/16G01N27/12
    • A gas sensor assembly comprises first and second sinters each composed of a metal oxide having an electric resistance value varying in dependence on the composition of a detected gas as well as the detected gas temperature, and the first sinter has deposited thereon a catalyst for causing an oxidation reaction of the detected gas components. To detect a change in the electric resistance value of the first sinter which is temperature compensated by the second sinter, the first and second sinters are connected to each other with separated first and second electrodes so as to support the sinters in an opposing relation and a third electrode is connected to the second electrode in such a manner that the third electrode is apart from the first and second electrodes.
    • 气体传感器组件包括第一和第二烧结体,每个烧结体由金属氧化物构成,该金属氧化物具有根据检测到的气体的组成以及检测到的气体温度而变化的电阻值,并且第一烧结体沉积有催化剂, 检测到的气体成分的氧化反应。 为了检测由第二烧结体进行温度补偿的第一烧结体的电阻值的变化,第一和第二烧结体通过分离的第一和第二电极彼此连接,以便以相对的关系支撑烧结体,并且 第三电极以第三电极离开第一和第二电极的方式连接到第二电极。
    • 15. 发明申请
    • CONDUCTIVE CONNECTING MEMBER AND ELECTRIC MOTOR
    • 导电连接器和电动机
    • US20090243409A1
    • 2009-10-01
    • US12402071
    • 2009-03-11
    • Minoru Ohta
    • Minoru Ohta
    • H01R4/02H02K11/00
    • H02K3/522
    • A conductive connecting member is connected to electric wire with insulating coating by a fusing process so that electric continuity therebetween is ensured. The conductive connecting member includes a connecting section and a groove portion. The connecting section is formed by being bent so as to have an inner surface including a bottom surface and both side surfaces to be bonded to the electric wire. The groove portion is formed in the inner surface of the connecting section. The groove portion has a longitudinal groove extending in a direction of the inner surface intersecting with a longitudinal direction of the electric wire. The groove portion is positioned substantially at a center of the longitudinal direction of the electric wire. The groove portion may further have an inclined groove obliquely extending from the longitudinal groove or a transverse groove extending substantially perpendicular to the longitudinal groove.
    • 导电连接构件通过熔融工艺连接到具有绝缘涂层的电线,从而确保其间的电连续性。 导电连接构件包括连接部和槽部。 连接部通过弯曲形成,以具有包括底面的内表面和要接合到电线的两个侧表面。 槽部形成在连接部的内表面。 槽部具有沿与电线的长度方向交叉的内表面的方向延伸的纵向槽。 槽部大致位于电线的长度方向的中心。 槽部还可以具有从纵向槽倾斜延伸的倾斜槽或者基本上垂直于纵向槽延伸的横向槽。