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    • 1. 发明申请
    • LIQUID TANK AND DENTAL DEVICE
    • 液体罐和牙科装置
    • US20120305098A1
    • 2012-12-06
    • US13484620
    • 2012-05-31
    • Masaki NAKAGAWAShinichi TANAKATomohiro SAKANUSHI
    • Masaki NAKAGAWAShinichi TANAKATomohiro SAKANUSHI
    • F24D19/08
    • A61C1/0061A61C1/0084A61C17/20Y10T137/3084
    • A liquid tank capable of preventing a gas passage from being clogged and a dental device including this liquid tank are provided. A liquid tank having an accommodation space in which a liquid L to be supplied to outside is accommodated includes a tank body having a mouth part with an opening, a cap mounted on the mouth part to close the opening, a liquid passage through which the liquid L in the liquid tank flows toward outside, a gas passage having a gap between the mouth part and the cap and a path communicatively connecting to the gap and the accommodation space, a liquid flow valve provided on the liquid passage to allow or inhibit a flow of the liquid L to outside, and an aeration valve provided on the gas passage to compensate for a negative pressure occurring in the accommodation space.
    • 提供能够防止气体通道堵塞的液体罐和包括该液体罐的牙科装置。 具有容纳空间的容纳有供给到外部的液体L的液体容器包括具有开口部的口部的罐主体,安装在口部上以封闭开口的盖体,液体通路,液体 液体箱内的液体流向外部流动,在口部和盖之间具有间隙的气体通道和与间隙和容纳空间连通的路径,设置在液体通道上以允许或抑制流动的液体流动 液体L到外部,以及曝气阀,设置在气体通道上以补偿在容纳空间中发生的负压。
    • 3. 发明申请
    • COMMUNICATION DEVICE, UPDATE METHOD, AND COMPUTER-READABLE STORAGE MEDIUM
    • 通信设备,更新方法和计算机可读存储介质
    • US20130019236A1
    • 2013-01-17
    • US13494299
    • 2012-06-12
    • Masaki NAKAGAWATakahiro ASAI
    • Masaki NAKAGAWATakahiro ASAI
    • G06F9/44
    • G06F8/65
    • A communication device includes a first receiving unit configured to receive first metainformation indicating a target update required for a program of the communication device from an update information providing device, the first metainformation including information about a dependency version that is another version of update dependent upon the target update; a determining unit configured to determine whether the dependency version is newer than a device version which is a current version of update of the communication device; a second receiving unit configured to receive second metainformation indicating an update for the dependency version from the update information providing device if the dependency version is newer than the device version; and an update process unit configured to execute the update for the dependency version on the basis of the second metainformation and execute the target update based on the first metainformation after executing the update for the dependency version.
    • 通信设备包括:第一接收单元,被配置为从更新信息提供设备接收指示通信设备的程序所需的目标更新的第一元信息,所述第一元信息包括关于依赖性版本的信息,所述相关性版本是根据 目标更新; 确定单元,被配置为确定所述依赖性版本是否比作为所述通信设备的当前更新版本的设备版本更新; 第二接收单元,被配置为如果所述依赖性版本比所述设备版本更新,则从所述更新信息提供设备接收指示所述依赖性版本的更新的第二元信息; 以及更新处理单元,被配置为基于第二元信息执行依赖性版本的更新,并且在执行依赖性版本的更新之后基于第一元信息来执行目标更新。
    • 7. 发明申请
    • GAS SENSOR
    • 气体传感器
    • US20130019655A1
    • 2013-01-24
    • US13554340
    • 2012-07-20
    • Masaki NAKAGAWAKoji SHIOTANITomohiro WAKAZONO
    • Masaki NAKAGAWAKoji SHIOTANITomohiro WAKAZONO
    • G01N37/00
    • G01N27/419
    • In a gas sensor element of a gas sensor, reference oxygen chamber (113) assumes the shape of a rectangular parallelepiped. A reference electrode (111) is disposed on a surface of a third solid electrolyte body (73) which is exposed to the reference oxygen chamber (113). A second outer electrode (117) is disposed opposite the reference electrode, on a surface of a second solid electrolyte body (77) which is exposed to the reference oxygen chamber. Further, a porous, insulative protection layer (165) is formed so as to cover the entire surface of the second outer electrode. A gap (167) is present between the reference electrode and the insulative protection layer. The thickness of the gap is greater than that of the insulative protection layer.
    • 在气体传感器的气体传感器元件中,参考氧气室(113)呈长方体形状。 参考电极(111)设置在暴露于基准氧气室(113)的第三固态电解质体(73)的表面上。 第二外部电极(117)与参考电极相对设置在暴露于参考氧气室的第二固体电解质体(77)的表面上。 此外,形成多孔绝缘保护层(165)以覆盖第二外部电极的整个表面。 在参考电极和绝缘保护层之间存在间隙(167)。 间隙的厚度大于绝缘保护层的厚度。
    • 8. 发明申请
    • METHOD OF MANUFACTURING SEMICONDUCTOR DEVICE AND SEMICONDUCTOR DEVICE
    • 制造半导体器件和半导体器件的方法
    • US20080237812A1
    • 2008-10-02
    • US12053089
    • 2008-03-21
    • Masanori TERAHARAMasaki NAKAGAWA
    • Masanori TERAHARAMasaki NAKAGAWA
    • H01L23/58H01L21/76
    • H01L21/76237H01L21/823814H01L21/823857H01L21/823878
    • A method of manufacturing a semiconductor device includes the steps of forming a trench on a semiconductor substrate to define a first and a second element regions; burying a first oxide film in the trench; forming a second oxide film on surfaces of the first and second element regions; performing a first ion doping using a first mask which is exposing a first region containing the first element region and a part of the first oxide; performing a second ion doping using a second mask which is exposing a second region containing the second element region and a part of the first oxide film; and removing the second oxide film formed in the first element region and the second element region by etching, and the first oxide film is selectively thinned using the first or second mask after performing the first or second ion doping.
    • 制造半导体器件的方法包括以下步骤:在半导体衬底上形成沟槽以限定第一和第二元件区域; 在沟槽中埋设第一氧化膜; 在所述第一和第二元件区域的表面上形成第二氧化物膜; 使用第一掩模进行第一离子掺杂,所述第一掩模暴露含有所述第一元素区域的第一区域和所述第一氧化物的一部分; 使用暴露含有第二元素区域的第二区域和第一氧化物膜的一部分的第二掩模进行第二离子掺杂; 以及通过蚀刻去除在第一元件区域和第二元件区域中形成的第二氧化物膜,并且在执行第一或第二离子掺杂之后,使用第一或第二掩模来选择性地减薄第一氧化物膜。
    • 10. 发明申请
    • GAS SENSOR
    • 气体传感器
    • US20100264027A1
    • 2010-10-21
    • US12760958
    • 2010-04-15
    • Masaki NAKAGAWATomohiro WAKAZONOSeiji OYA
    • Masaki NAKAGAWATomohiro WAKAZONOSeiji OYA
    • G01N27/30
    • G01N27/4071
    • A gas sensor including a gas sensor element configured by laminating three or more ceramic layers and having an electrode pad disposed on an outer surface thereof and penetrating holes extending in a laminating direction through two or more of the ceramic layers disposed between an inner conductor and the electrode pad. The gas sensor element has a conductive path formed therein which passes through the penetrating holes formed in different respective ones of the ceramic layers and electrically connects the inner conductor and the electrode pad. Further, the conductive pad is a type 1 conductive path which passes through a plurality of the penetrating holes disposed so as not to overlie one another as viewed from the laminating direction.
    • 一种气体传感器,包括气体传感器元件,该气体传感器元件通过层叠三个或更多个陶瓷层并且具有设置在其外表面上的电极焊盘,并且穿过沿层叠方向延伸的两个或更多个陶瓷层设置在内部导体和 电极垫。 气体传感器元件具有形成在其中的导电路径,其通过形成在不同的各个陶瓷层中的贯穿孔,并且电连接内部导体和电极垫。 此外,导电焊盘是从层叠方向观察而穿过多个贯穿孔而不被彼此叠置的1型导电路径。