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    • 4. 发明授权
    • Device for measuring changes in parameters within transparent objects
    • 用于测量透明对象中参数变化的设备
    • US06362887B1
    • 2002-03-26
    • US09327822
    • 1999-06-08
    • Artur Meisberger
    • Artur Meisberger
    • G01N2127
    • G01J3/42G01N21/85
    • A device is described for measuring changes in parameters in transparent objects, in particular for medical applications. For universal use in various applications, the device includes a light source, an optical line sensor which detects the intensity of the light of the light source passing through the object as a function of location in at least one extension direction of the object, and a computer unit which compares the distribution of the light intensities detected by the optical line sensor as a function of location with at least one predetermined reference distribution. According to another embodiment, the light source supplies approximately parallel light, and the computer unit shapes the first derivation according to location of the distribution of the light intensities detected by the optical line sensor. The device is designed so that the different light sources can be easily replaced or combined.
    • 描述了一种用于测量透明对象中的参数变化的设备,特别是用于医疗应用。 为了在各种应用中的普遍使用,该装置包括光源,光线传感器,其根据物体的至少一个延伸方向上的位置来检测通过物体的光源的光的强度,以及 计算机单元,其将由光线路传感器检测的光强度的分布作为位置的函数与至少一个预定的参考分布进行比较。 根据另一实施例,光源提供大致平行的光,并且计算机单元根据由光线传感器检测到的光强度的分布的位置对第一导数进行整形。 该设备被设计成使得不同的光源可以容易地更换或组合。
    • 8. 发明授权
    • Magnetic gear and centrifuge having a magnetic gear
    • 具有磁齿轮的磁齿轮和离心机
    • US06440055B1
    • 2002-08-27
    • US09664189
    • 2000-09-18
    • Artur Meisberger
    • Artur Meisberger
    • B04B900
    • H02K49/102B04B9/08
    • A magnetic gear having first and second carrier each having a plurality of magnetic poles arranged in a circle and separated by a distance, with the north and south poles arranged in alternation. Flux-carrying connecting pieces are provided on a third carrier to magnetically couple the first and second carriers. A centrifuge for centrifuging biological fluids, especially blood, having such a magnetic gear includes a first carrier in a stationary mount on a frame, while the third carrier is a rotating frame in a rotating mount on the frame. The second carrier is a separation unit mounted on the rotating frame. The centrifuge using the magnetic gear allows maintenance-free operation at a high rpm and with low noise, requiring a relatively low driving power.
    • 一种具有第一和第二载体的磁齿轮,每个具有设置成圆形并分开一定距离的多个磁极,其中北极和南极交替排列。 助焊剂连接件设置在第三载体上以磁耦合第一和第二载体。 用于离心具有这种磁齿轮的生物流体,特别是血液的离心机包括在框架上的固定安装件中的第一载体,而第三载体是在框架上的旋转安装件中的旋转框架。 第二载体是安装在旋转框架上的分离单元。 使用磁齿轮的离心机允许以高转速进行免维护运行,噪音低,需要较低的驱动功率。
    • 10. 发明授权
    • Method and apparatus for the separation of media
    • 分离介质的方法和装置
    • US4557719A
    • 1985-12-10
    • US570465
    • 1984-01-13
    • Hans-Jurgen NeumannArtur Meisberger
    • Hans-Jurgen NeumannArtur Meisberger
    • B01D17/025B01D17/12B01D21/26B04B13/00G01N33/48G05D9/12B04B11/04
    • B04B13/00B01D21/262B01D21/34G05D9/12B01D2221/10B04B2013/006
    • A plurality of scanning regions (22) are disposed about the anticipated region of a phase boundary (32) of two media. The change in position of the phase boundary (32) is detected by a scanning means (18) with which each scanning region (22) is scanned and a signal is generated for each of the scanning regions (22). The first media is more radiation-permeable than the second media. A beam path is generated by the scanning means and is detected and evaluated by a discriminator circuit as a logic one. The second media is less radiation-permeable than the first media. The absence of a beam path corresponding to scanning regions in the second media is evaluated by the discriminator circuit as a logic zero. The number of signals per measuring cycle is compared against the actual number of scanning regions (22) to locate and control the position of the phase boundary (32).
    • 围绕两个介质的相边界(32)的预期区域设置多个扫描区域(22)。 通过扫描装置(18)检测相位边界(32)的位置变化,扫描每个扫描区域(22),并为每个扫描区域(22)生成信号。 第一种介质比第二种介质更具辐射透过性。 光束路径由扫描装置产生,并由鉴别器电路检测和评估为逻辑电路。 第二种介质比第一种介质的辐射透过性更差。 不符合第二介质中的扫描区域的光束路径由鉴别器电路评估为逻辑0。 将每个测量周期的信号数与实际的扫描区域数(22)进行比较,以定位和控制相位边界的位置(32)。