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    • 4. 发明授权
    • Cuvette
    • 比维埃特
    • US06249345B1
    • 2001-06-19
    • US09333186
    • 1999-06-14
    • Jan KraackKurt HarnackWolfgang Goemann-ThossRainer Treptow
    • Jan KraackKurt HarnackWolfgang Goemann-ThossRainer Treptow
    • G01N110
    • G01N21/0303
    • A cuvette for the measurement of the absorption of irradiation in liquid samples which at least in the regions of the windows is of a transparent plastic with an inner space which is formed in an essentially box-shaped upper part with an upper opening for filling and removing sample fluid and in an essentially box-shaped lower part which projects downwards from the floor of the upper part and which comprises a smaller cross section than the upper part, of maximally 200 &mgr;l content capacity, two pairs of planar-parallel windows in the lower part which lie opposite one another, wherein the distance a of the one pair is different to the distance b of the windows of the other pair in order to make available differing layer thickness of the sample fluid for the measurement and with four feet which are flush with the four corners of the upper part and which extend away from the upper part at least until up to the level of a floor of the lower part.
    • 用于测量在液体样品中的至少在窗口区域中的照射吸收的比色皿,其为具有内部空间的透明塑料,该内部空间形成在基本上为盒形的上部,具有用于填充和移除的上部开口 样品流体和基本上为箱形的下部,其从上部的底部向下突出并且包括比上部更小的横截面,具有最大200个容积的容量,在下部的两对平面平行的窗口 部分彼此相对,其中一对的距离a与另一对的窗口的距离b不同,以便为测量提供用于测量的样品流体的不同层厚度,以及用于测量的四只脚 与上部的四个角部并且远离上部部分至少直到下部的底板的高度延伸。
    • 5. 发明申请
    • Optical Sensor System on a Device for the Treatment of Liquids
    • 用于处理液体的设备上的光学传感器系统
    • US20110031420A1
    • 2011-02-10
    • US12676637
    • 2008-08-10
    • Reinhold GötzKurt HarnackHelmut KnofeJens-Peters KroogPeter Scheffler
    • Reinhold GötzKurt HarnackHelmut KnofeJens-Peters KroogPeter Scheffler
    • G01F23/292
    • G01F23/292
    • Optical sensor system on a device for the treatment of liquids with at least one device for the projecting of light in the direction of an optical axis onto at least one illumination area in the space, an adjustment device for the adjustment of the relative position of the at least one illumination area and a boundary surface in a direction diagonal to the optical axis, an adjustment device for the adjustment of the relative position of the at least one illumination area and the boundary surface in the direction of the optical axis, a control device for controlling the adjustment devices, such that they simultaneously adjust the relative position of the at least one illumination area and the boundary surface diagonal to the at least one device for the imaging of the at least one illumination area during the adjustment of the relative position onto at least one photodetector and an evaluation device connected with the at least one photodetector for the evaluation of the at least one measurement signal.
    • 用于处理液体的设备上的光学传感器系统,所述装置具有用于将光沿光轴方向投射到所述空间中的至少一个照明区域上的至少一个装置,用于调节所述光学系统的相对位置的调节装置 至少一个照明区域和与光轴对角的方向上的边界面;调节装置,用于调节至少一个照明区域和边界面在光轴方向上的相对位置;控制装置 用于控制所述调节装置,使得它们同时调整所述至少一个照明区域和所述边界面对角线对应于所述至少一个装置的相对位置,用于在将所述至少一个照明区域的相对位置调整到所述至少一个照明区域 至少一个光电检测器和与所述至少一个光电检测器连接的评估装置,用于评估至少一个mea 确认信号。
    • 6. 发明申请
    • APPARATUS, A SYSTEM INCORPORATING SUCH APPARATUS, AND A METHOD TO DRY MICROTITRATION FILTER TRAY CAVITIES AND RECEIVED FILTERS THEREIN
    • 装置,装有这种装置的系统以及干燥微滤纸盘和其接收过滤器的方法
    • US20060242857A1
    • 2006-11-02
    • US11279125
    • 2006-04-10
    • Kurt HarnackPeter Scheffler
    • Kurt HarnackPeter Scheffler
    • F26B5/04
    • B01L3/50255B01J2219/00286B01J2219/00315B01J2219/00414B01J2219/00423B01J2219/00495B01L99/00B01L2200/0678B01L2300/18B01L2400/049G01N2001/4027Y10T436/2525
    • The invention relates to an apparatus for drying microtitration filter tray cavities and filters configured therein using a flow of gas, the cavities each comprising an upper and a lower aperture and the microtitration filter tray being mounted on a chamber designed for the vacuum filtration of microtitration filter trays in a manner that a vacuum can be applied to the lower apertures of the cavities receiving the filters, and said invention is characterized by a heat exchanger which can be mounted on and later removed from the microtitration filter tray and can be heated and comprises at least one inlet aperture and at least one outlet aperture between which a flow of gas may move through the heat exchanger, said heat exchanger being designed to heat the gas flow and to guide it onto the upper cavity apertures, the said gas flow being generated by a vacuum pump communicating with the vacuum chamber from the inlet aperture to the outlet aperture of the heat exchanger and crossing the filters. The invention furthermore relates to a drying system incorporating such apparatus and to a method to dry filters configured in microtitration filter tray cavities by means of a flow of gas.
    • 本发明涉及一种用于使用气流干燥微量滴定过滤器托盘腔和过滤器的装置,每个空腔包括上孔和下孔,微量滴定过滤盘安装在设计用于真空过滤微量滴定过滤器的室 托盘可以将真空施加到容纳过滤器的空腔的下孔,并且本发明的特征在于一种热交换器,其可以安装在微量滴定过滤盘上并稍后从微量滴定过滤盘移除并且可以被加热并包括在 至少一个入口孔口和至少一个出口孔口,气体流可在该出口孔口之间移动通过热交换器,所述热交换器被设计成加热气流并将其引导到上腔体孔上,所述气流由 真空泵与真空室从热交换器的入口孔到出口孔连通,并穿过f il子。 本发明还涉及一种包含这种装置的干燥系统以及通过气流干燥由微量滴定过滤盘空腔构成的过滤器的方法。
    • 10. 发明授权
    • Optical sensor system on a device for the treatment of liquids
    • 用于处理液体的设备上的光学传感器系统
    • US08507886B2
    • 2013-08-13
    • US12676637
    • 2008-09-10
    • Reinhold GötzKurt HarnackHelmut KnofeJens-Peters KroogPeter Scheffler
    • Reinhold GötzKurt HarnackHelmut KnofeJens-Peters KroogPeter Scheffler
    • G01F23/292
    • G01F23/292
    • Optical sensor system on a device for the treatment of liquids with at least one device for the projecting of light in the direction of an optical axis onto at least one illumination area in the space, an adjustment device for the adjustment of the relative position of the at least one illumination area and a boundary surface in a direction diagonal to the optical axis, an adjustment device for the adjustment of the relative position of the at least one illumination area and the boundary surface in the direction of the optical axis, a control device for controlling the adjustment devices, such that they simultaneously adjust the relative position of the at least one illumination area and the boundary surface diagonal to the at least one device for the imaging of the at least one illumination area during the adjustment of the relative position onto at least one photodetector and an evaluation device connected with the at least one photodetector for the evaluation of the at least one measurement signal.
    • 用于处理液体的设备上的光学传感器系统,所述装置具有用于将光沿光轴方向投射到所述空间中的至少一个照明区域上的至少一个装置,用于调节所述光学系统的相对位置的调节装置 至少一个照明区域和与光轴对角的方向上的边界面;调节装置,用于调节至少一个照明区域和边界面在光轴方向上的相对位置;控制装置 用于控制所述调节装置,使得它们同时调整所述至少一个照明区域和所述边界面对角线对应于所述至少一个装置的相对位置,用于在将所述至少一个照明区域的相对位置调整到所述至少一个照明区域 至少一个光电检测器和与所述至少一个光电检测器连接的评估装置,用于评估至少一个mea 确认信号。