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    • 1. 发明授权
    • Incubator
    • 孵化器
    • US06935567B2
    • 2005-08-30
    • US10730801
    • 2003-12-08
    • Tadahisa SagaTakashi AraiHidetoshi ShinyaYuichi Tamaoki
    • Tadahisa SagaTakashi AraiHidetoshi ShinyaYuichi Tamaoki
    • C12M1/00A01K41/00
    • B01L7/52B01L2300/1822
    • The present invention provides an incubator which can release pressure applied to a vessel side by upper heating means, and can simplify an opening/closing structure of a reaction chamber. The gist of the present invention resides in an incubator comprising a reaction chamber disposed in an incubator body; a heat conductive reaction block disposed in the reaction chamber to hold one or plural vessels containing reaction samples; a cover for covering an upper part of the reaction chamber in an openable manner; upper heating means positioned on a lower surface of the cover to heat an upper part of the vessel held by the reaction block; and pressure means for pressing the upper heating means to the vessel side; the reaction block being heated/cooled while the upper part of the vessel is heated by the upper heating means, to incubate the reaction sample; wherein the cover is disposed rotatably and movably in a horizontal direction with respect to the incubator body.
    • 本发明提供一种可以通过上部加热装置释放施加到容器侧的压力的培养箱,并且可以简化反应室的打开/关闭结构。 本发明的要点在于包括设置在培养箱体内的反应室的培养箱; 设置在所述反应室中以保持包含反应样品的一个或多个容器的导热反应块; 用于以可打开的方式覆盖反应室的上部的盖子; 上加热装置定位在盖的下表面上,以加热由反应块保持的容器的上部; 以及用于将上加热装置压向容器侧的压力装置; 反应块被加热/冷却,同时容器的上部被上部加热装置加热,以使反应样品温育; 其中所述盖相对于所述培养箱主体在水平方向上可旋转地且可移动地设置。
    • 2. 发明申请
    • Reaction detecting device
    • 反应检测装置
    • US20070031290A1
    • 2007-02-08
    • US11497324
    • 2006-08-02
    • Yuichi TamaokiTadahisa SagaTakashi AraiYasuhiro Kikuchi
    • Yuichi TamaokiTadahisa SagaTakashi AraiYasuhiro Kikuchi
    • G01N21/00
    • G01N21/6452G01N21/0332
    • An object is to provide a reaction detecting device in which a height dimension of the device itself can be set to be small to realize space saving, unevenness of measurement sensitivity for each reaction container is minimized, and high-sensitivity and high-precision reaction detecting is possible, the device includes: a reflective plate disposed above a temperature controllable reaction block disposed in a reaction chamber constituted in a main body to reflect light; and a light source lamp and a camera arranged in the main body, the light from the light source lamp is reflected by the reflective plate to enter each reaction container from above, and light such as fluorescence directed upwards from a reaction specimen is reflected by the reflective plate to enter the camera.
    • 本发明的目的是提供一种反应检测装置,其中可以将装置本身的高度尺寸设置得较小以实现节省空间,使每个反应容器的测量灵敏度的不均匀性最小化,并且具有高灵敏度和高精度的反应检测 该装置包括:设置在构成在主体中的反应室内的温度可控反应块上方以反射光的反射板; 以及设置在主体中的光源灯和照相机,来自光源灯的光被反射板反射,从上方进入各反应容器,从反应样本向上的荧光等被反射 反光板进入相机。
    • 3. 发明授权
    • Culture device and storage container
    • 文化装置和储存容器
    • US07785867B2
    • 2010-08-31
    • US10503137
    • 2003-02-19
    • Yuichi TamaokiTakashi AraiTadahisa SagaHiroki Busujima
    • Yuichi TamaokiTakashi AraiTadahisa SagaHiroki Busujima
    • C12M1/36C12M1/38C12M3/00C12M1/34C12M1/00
    • C12M41/14C12M23/48C12M45/22G01N35/0099G01N35/025G01N35/028G01N2035/042G01N2035/0425
    • The invention provides a culture apparatus or a reserving stock room which receives a lot of culture vessels without vibration. The culture apparatus or the reserving stock room is provided with storage shelves (12a, 12b, . . . ) for culture vessels arranged in a circular arc shape or an annular shape, and a carrying means (15) for taking in and out the culture vessels to an inner side of the circular arc shaped arrangement or the annular shaped arrangement from the storage shelves (12a, 12b, . . . ). Further, the culture apparatus or the reserving stock room is provided with storage shelves (12a, 12b, . . . ) for culture vessels arranged on a table (13) in a circular arc shape or an annular shape, an air distribution port (39) provided in the table (13) such that an air in an inner side of the circular arc shaped arrangement or the annular shaped arrangement flows from a lower side to an upper side, and a circulation passage (36) for returning the air sucked from an upper side within a stock room to the distribution port (39) via a lower side within the stock room.
    • 本发明提供了一种在没有振动的情况下接收大量培养容器的培养装置或储存室。 培养装置或贮留室设有用于排列成圆弧状或环状的培养容器的储存架(12a,12b ......)和用于取出和移出培养物的搬运装置(15) 容器从储存架(12a,12b ......)到圆弧形布置的内侧或环形装置。 此外,培养装置或储藏室设置有用于设置在圆弧状或环状的台(13)上的培养容器的储存架(12a,12b ......),空气分配口(39) )设置在所述台(13)中,使得所述圆弧形排列的内侧的空气或所述环形排列物从下侧向上侧流动,并且使循环通道(36)将从 股票室内的上侧经由库房内的下侧到分配口(39)。
    • 4. 发明授权
    • Reaction detecting device
    • 反应检测装置
    • US07628958B2
    • 2009-12-08
    • US11497324
    • 2006-08-02
    • Yuichi TamaokiTadahisa SagaTakashi AraiYasuhiro Kikuchi
    • Yuichi TamaokiTadahisa SagaTakashi AraiYasuhiro Kikuchi
    • G01N21/00
    • G01N21/6452G01N21/0332
    • An object is to provide a reaction detecting device in which a height dimension of the device itself can be set to be small to realize space saving, unevenness of measurement sensitivity for each reaction container is minimized, and high-sensitivity and high-precision reaction detecting is possible, the device includes: a reflective plate disposed above a temperature controllable reaction block disposed in a reaction chamber constituted in a main body to reflect light; and a light source lamp and a camera arranged in the main body, the light from the light source lamp is reflected by the reflective plate to enter each reaction container from above, and light such as fluorescence directed upwards from a reaction specimen is reflected by the reflective plate to enter the camera.
    • 本发明的目的是提供一种反应检测装置,其中可以将装置本身的高度尺寸设置得较小以实现节省空间,使每个反应容器的测量灵敏度的不均匀性最小化,并且具有高灵敏度和高精度的反应检测 该装置包括:设置在构成在主体中的反应室内的温度可控反应块上方以反射光的反射板; 以及设置在主体中的光源灯和照相机,来自光源灯的光被反射板反射,从上方进入各反应容器,从反应样本向上的荧光等被反射 反光板进入相机。
    • 5. 发明申请
    • Culture device and storage container
    • 文化装置和储存容器
    • US20050084955A1
    • 2005-04-21
    • US10503137
    • 2003-02-19
    • Yuichi TamaokiTakashi AraiTadahisa SagaHiroki Busujima
    • Yuichi TamaokiTakashi AraiTadahisa SagaHiroki Busujima
    • C12M1/38C12M1/00C12M3/00G01N35/00G01N35/02G01N35/04
    • C12M41/14C12M23/48C12M45/22G01N35/0099G01N35/025G01N35/028G01N2035/042G01N2035/0425
    • The invention provides a culture apparatus or a reserving stock room which receives a lot of culture vessels without vibration. The culture apparatus or the reserving stock room is provided with storage shelves (12a, 12b, . . . ) for culture vessels arranged in a circular arc shape or an annular shape, and a carrying means (15) for taking in and out the culture vessels to an inner side of the circular arc shaped arrangement or the annular shaped arrangement from the storage shelves (12a, 12b, . . . ). Further, the culture apparatus or the reserving stock room is provided with storage shelves (12a, 12b, . . . ) for culture vessels arranged on a table (13) in a circular arc shape or an annular shape, an air distribution port (39) provided in the table (13) such that an air in an inner side of the circular arc shaped arrangement or the annular shaped arrangement flows from a lower side to an upper side, and a circulation passage (36) for returning the air sucked from an upper side within a stock room to the distribution port (39) via a lower side within the stock room.
    • 本发明提供了一种在没有振动的情况下接收大量培养容器的培养装置或储存室。 培养装置或贮留室设有用于设置成圆弧形状或环形形状的培养容器的储存架(12a,12b ...)和用于吸入和取出的携带装置(15) 培养容器从储存架(12a,12b ...)到圆弧形布置的内侧或环形装置。 此外,培养装置或储藏室设有用于设置在圆弧状或环状的台(13)上的培养容器的储存架(12a,12b),空气分配口 (39),设置在所述台(13)中,使得所述圆弧形排列的内侧的空气或所述环形结构从下侧向上侧流动,并且使所述空气返回的循环通路(36) 从库房内的上侧通过库房内的下侧从分配口(39)吸入。
    • 8. 发明申请
    • REFRIGERATING APPARATUS
    • 制冷设备
    • US20110023532A1
    • 2011-02-03
    • US12835568
    • 2010-07-13
    • Susumu KobayashiJiro YuzawaSatoshi OkudaHidetoshi ShinyaTadahisa Saga
    • Susumu KobayashiJiro YuzawaSatoshi OkudaHidetoshi ShinyaTadahisa Saga
    • F25B1/00F25B39/02
    • F25B7/00F25B9/006F25D11/04F25D17/047F25D23/025F25D23/061F25D2201/14F28D1/0426
    • A refrigerating apparatus includes a refrigerating cycle including a compressor, a condenser, a flow divider, a first heat exchanger, a second heat exchanger, a decompressing device, and an evaporator. The refrigerant cycle has sealed therein a mixed refrigerant obtained by mixing at least first to third refrigerants with different evaporation temperatures. The first heat exchanger and the second heat exchanger each includes a double pipe to form a first flow passage in an inner pipe of the double pipe, a second flow passage in an outer pipe of the double pipe, and an intermediate port in a piping connecting between the second flow passage of the first heat exchanger and the second flow passage of the second heat exchanger. A high-temperature and high-pressure refrigerant discharged from the compressor is cooled by the condenser to liquefy the first refrigerant having a high evaporation temperature into a liquid refrigerant.
    • 一种制冷装置,具备包括压缩机,冷凝器,分流器,第一热交换器,第二热交换器,减压装置和蒸发器的制冷循环。 制冷剂循环中密封有通过混合具有不同蒸发温度的至少第一至第三制冷剂而获得的混合制冷剂。 第一热交换器和第二热交换器各自包括双管,以在双管的内管中形成第一流动通道,在双管的外管中具有第二流动通道,以及在管道连接中的中间端口 在第一热交换器的第二流动通道和第二热交换器的第二流动通道之间。 从压缩机排出的高温高压制冷剂由冷凝器冷却,将具有高蒸发温度的第一制冷剂液化成液体制冷剂。