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    • 5. 发明申请
    • Sample analyzer
    • 样品分析仪
    • US20070089543A1
    • 2007-04-26
    • US11526490
    • 2006-09-25
    • Narihiro OkuToshikazu OhnishiHiroshi NayaMasaharu Matsumoto
    • Narihiro OkuToshikazu OhnishiHiroshi NayaMasaharu Matsumoto
    • G01N1/00
    • G01N35/1095
    • The present invention has been made to simplify assembly and maintenance of a sample analyzer including: a flow passageway 3 that flows fluid, such as a sample, air, or the like; one or more fluid control units 5 that control the flow of the fluid on the flow passageway 3; a measurement cell 41 that is provided on the flow passageway 3; a sample analysis part 6 that analyzes the sample inside the measurement cell 41; and a casing 7 that holds these parts mentioned above. At least one of the fluid control units 5 is formed by unitizing functions related to fluid control; integrally has a manifold 502 that forms an internal flow path 501, one or more control valves 503 that control flow of the fluid in the internal flow path 501 and connection ports 504 for connecting together the internal flow path 501 and the flow passageway 3; and is so configured as to be removable from the casing 7.
    • 本发明是为了简化样品分析装置的组装和维护,包括:流动通道3,流体如样品,空气等; 一个或多个流体控制单元5,其控制流动通道3上的流体的流动; 设置在流路3上的测定单元41; 分析测量单元41内的样本的样本分析部6; 以及保持上述这些部件的壳体7。 流体控制单元5中的至少一个通过使与流体控制相关的功能成为一体而形成; 一体地形成有形成内部流路501的歧管502,控制内部流路501内的流体流动的一个以上的控制阀503以及内部流路501和流路3连接的连接口504。 并且被构造成可从壳体7移除。
    • 6. 发明授权
    • Nozzle device and liquid sample analyzer
    • 喷嘴装置和液体样品分析仪
    • US08974750B2
    • 2015-03-10
    • US12810805
    • 2008-12-18
    • Soichi OueYoshihiro YanoNarihiro Oku
    • Soichi OueYoshihiro YanoNarihiro Oku
    • G01N1/02G01N1/10G01N1/22G01N35/10
    • G01N35/1016G01N35/1079G01N2035/1023
    • A nozzle device which can perform accurate quantitative suction without being affected by a pressure when, for example, a nozzle (2) is inserted into a closed container (T). The nozzle device has the nozzle (2) that is inserted into the closed container(T) and that sucks a liquid in the closed container (T), an exposure to atmosphere mechanism (3) that opens the closed container (T) to the atmospheric air, and an opening/closing structure (4) that is arranged at a proximal end of the nozzle (2) and that has an internal flow channel (411) communicated with a flow channel in the nozzle (2) and an opening/closing mechanism for opening and closing the internal flow channel (411), and an opening/closing control section (5) that controls the opening/closing mechanism.
    • 一种喷嘴装置,当例如将喷嘴(2)插入到密闭容器(T)中时,能够进行精确的定量抽吸而不受压力的影响。 喷嘴装置具有插入密闭容器(T)中并将密封容器(T)中的液体吸入的喷嘴(2),将密闭容器(T)打开的大气机构(3)暴露于 大气空气和布置在喷嘴(2)的近端并且具有与喷嘴(2)中的流动通道连通的内部流动通道(411)的打开/关闭结构(4) 用于打开和关闭内部流动通道(411)的关闭机构,以及控制打开/关闭机构的打开/关闭控制部分(5)。
    • 7. 发明授权
    • Apparatus for receiving liquid treatment samples for disposal
    • 用于接收待处理样品的设备
    • US5287733A
    • 1994-02-22
    • US765151
    • 1991-09-23
    • Narihiro OkuHitoshi MitaniHiroaki Takahasi
    • Narihiro OkuHitoshi MitaniHiroaki Takahasi
    • G01N33/49G01N15/10G01N35/00G01N35/10G01N33/48
    • G01N15/10G01N35/00G01N35/1004G01N35/1083
    • A system collects fluid waste within a closed waste vessel where a waste disposal cycle is determined based upon the pressure level within the waste vessel. In the preferred embodiment, a closed liquid waste vessel accepts waste solutions through conduits having valves controlling conduit fluid communication with treatment vessels. A pressure sensor determines the level of pressure within the waste vessel. A pressurizing device reduces the level of pressure within the vessel. When the pressure within the vessel is lowered to a predetermined level, the valve is opened. When the pressure sensed within the liquid waste vessel then rises above an appointed value, the valve is closed, completing the waste collection of a treated sample. This corresponds to the point in time when the treatment vessel is empty, allowing a sudden rush of air into the waste vessel, raising the vessel pressure to ambient and closing the valve. When the pressure in the waste vessel does not rise to the appointed value after the lapse of a preset length of time, a warning signal is provided advising that the system is not working properly.
    • 系统在封闭的废物容器内收集流体废物,其中基于废物容器内的压力水平来确定废物处理循环。 在优选实施例中,封闭的液体废物容器通过具有控制导管与流体与处理容器连通的阀的管道接收废液。 压力传感器确定废液容器内的压力水平。 加压装置降低了容器内的压力水平。 当容器内的压力降低至预定水平时,阀打开。 当在液体废物容器内感测到的压力升高到高于指定值时,阀门关闭,完成处理过的样品的废物收集。 这对应于处理容器为空的时间点,允许空气急剧地进入废物容器,将容器压力升高到环境并关闭阀门。 当经过预设时间后废物容器中的压力不会上升到指定值时,提供警告信号,建议系统不能正常工作。
    • 10. 发明授权
    • Flow system glass electrode
    • 流量系玻璃电极
    • US4519890A
    • 1985-05-28
    • US614225
    • 1984-05-24
    • Hiroaki UematsuJunji AokiNarihiro Oku
    • Hiroaki UematsuJunji AokiNarihiro Oku
    • G01N27/28G01N27/36
    • G01N27/28G01N27/36
    • A flow system glass electrode in use for pH measurement, which houses the glass electrode body in a resin block to improve an impact resistance, the glass electrode body being sealed by a packing to be small-sized and improve the degree of freedom in the direction of the use, sample flow tubes each being equal in an inner diameter to a response film and separate from the glass electrode body in order to eliminate stagnation of a sample liquid, enable the measurement of a minute sample, and facilitate manufacture and assembly of the electrode, the sample flow tubes being connected with a liquid inlet and a liquid outlet at the glass electrode body through couplings respectively.
    • 一种用于pH测量的流动系统玻璃电极,其将玻璃电极体容纳在树脂块中以提高耐冲击性,玻璃电极体被填料密封成小尺寸并提高了方向的自由度 使用时,样品流管​​各自在内径相等于响应膜并与玻璃电极体分离,以消除样品液体的滞留,使得能够测量微小的样品,并且有助于制造和组装 电极,样品流管​​分别通过耦合与玻璃电极体的液体入口和液体出口连接。