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    • 3. 发明授权
    • Buffer gradient and temperature gradient capillary electrophoresis
    • 缓冲液梯度和温度梯度毛细管电泳
    • US5047134A
    • 1991-09-10
    • US470019
    • 1990-01-25
    • Scot R. WeinbergerErnst Gassmann
    • Scot R. WeinbergerErnst Gassmann
    • G01N27/447
    • G01N27/44721G01N27/44708G01N27/44756G01N27/4476
    • An electrophoresis instrument includes a capillary tube mounted in an air cooled cartridge. The cartridge also supports a spherical lens which is part of the optical detection apparatus. The cartridge rests in a manifold which includes the sample and buffer reservoirs. The temperature of the capillary tube is controlled by measuring the electrical resistance of the capillary tube during the electrophoresis process and then cooling or heating the cartridge by circulating temperature controlled air over the tube. The optical path associated with the instrument is a fiber optic bundle bifurcated close to dual detectors into a reference arm and a sample arm so as to provide similar reference and sample optical paths. The instrument may be used for temperature control for buffer gradient electrophoresis and also, a neutral marker for determining electro-osmotic flow may be detected.
    • 电泳仪包括安装在空气冷却筒中的毛细管。 墨盒还支持作为光学检测装置的一部分的球面透镜。 墨盒位于包含样品和缓冲液储存器的歧管中。 通过在电泳过程中测量毛细管的电阻,然后通过将温度受控的空气循环通过管冷却或加热来控制毛细管的温度。 与仪器相关联的光路是将近双重检测器分叉到参考臂和样品臂中的光纤束,以便提供相似的参考和样品光路。 该仪器可用于缓冲梯度电泳的温度控制,并且还可以检测用于确定电渗流的中性标记。
    • 4. 发明授权
    • Buffer gradient and temperature gradient capillary electrophoresis
    • 缓冲液梯度和温度梯度毛细管电泳
    • US5221448A
    • 1993-06-22
    • US674445
    • 1991-03-25
    • Scot R. WeinbergerErnst Gassmann
    • Scot R. WeinbergerErnst Gassmann
    • G01N27/447
    • G01N27/44756G01N27/44708G01N27/44721G01N27/4476
    • An electrophoresis instrument includes a capillary tube mounted in an air cooled cartridge. The cartridge also supports a spherical lens which is part of the optical detection apparatus. The cartridge rests in a manifold which includes the sample and buffer reservoirs. The temperature of the capillary tube is controlled by measuring the electrical resistance of the capillary tube during the electrophoresis process and then cooling or heating the cartridge by circulating temperature controlled air over the tube. The optical path associated with the instrument is a fiber optic bundle bifurcated close to dual detectors into a reference arm and a sample arm so as to provide similar reference and sample optical paths. The instrument may be used for temperature control for buffer gradient electro-phoresis and also, a neutral marker for determining electro-osmotic flow may be detected.
    • 电泳仪包括安装在空气冷却筒中的毛细管。 墨盒还支持作为光学检测装置的一部分的球面透镜。 墨盒位于包含样品和缓冲液储存器的歧管中。 通过在电泳过程中测量毛细管的电阻,然后通过将温度受控的空气循环通过管冷却或加热来控制毛细管的温度。 与仪器相关联的光路是将近双重检测器分叉到参考臂和样品臂中的光纤束,以便提供相似的参考和样品光路。 该仪器可用于缓冲梯度电泳的温度控制,并且还可以检测用于确定电渗流的中性标记。
    • 7. 发明授权
    • Method and device for precisely positioning a vehicle in a wind tunnel
    • 用于将车辆精确地定位在风洞中的方法和装置
    • US06615652B1
    • 2003-09-09
    • US09673179
    • 2000-11-16
    • Hans-Dieter BechsteinErnst GassmannJürgen PfistererBerthod Schwartekopp
    • Hans-Dieter BechsteinErnst GassmannJürgen PfistererBerthod Schwartekopp
    • G01M900
    • G01M9/062
    • A method for the accurate positioning of a vehicle to be examined aerodynamically in a measurement position in a wind tunnel, in which it assumes an accurately predefined relative position in relation to the axis of the wind tunnel, the measurement object is supported in the measurement position, in a stable position on the floor or on balance standing points in the wind tunnel, by auxiliary supports, in the case of a motor vehicle via its wheels. Outside the wind tunnel, the measurement object is placed onto a measurement-object carrier that can be moved at least in the longitudinal direction of the measurement-object carrier and is aligned accurately with respect to the latter. The measurement-object carrier with the aligned measurement object is moved into the wind tunnel and stopped in the latter in an accurately predefined position. The measurement object is subsequently transferred to the measurement section of the wind tunnel only in the vertical direction and is locked, the measurement-object carrier being brought into a waiting position that does not either influence and/or interfere with the measurement.
    • 一种用于在风洞中的测量位置中空气动力学地准确地定位被检查车辆的方法,其中它相对于风洞的轴线呈现准确预定的相对位置,测量对象被支撑在测量位置 在机动车辆通过其车轮的情况下,通过辅助支撑件在地板上的稳定位置或风洞中的平衡站立点上。 在风洞外,测量对象被放置在可以至少在测量对象载体的纵向移动的测量对象载体上,并相对于测量对象载体准确地对准。 具有对准的测量对象的测量对象载体被移动到风洞中并且在后者中以精确预定义的位置停止。 测量对象随后被传送到风洞的测量部分,仅在垂直方向上被锁定,测量对象载体进入不影响和/或干扰测量的等待位置。