Method for processing a fluid and fluid processing device
    3.
    发明授权
    Method for processing a fluid and fluid processing device 有权
    流体和流体处理装置的处理方法

    公开(公告)号:US08771614B2

    公开(公告)日:2014-07-08

    申请号:US11992616

    申请日:2006-09-26

    Abstract: The present invention relates to improved methods for processing fluids and to a fluid processing device (1) for use in a centrifuge comprising: (a) a first holder (14) form-fit to the shape of a first tube (18) for holding said first tube (18) whereby said first tube (18) has a first cross section (A1); and (b) a second holder (22) form-fit to the shape of a second tube (26) for holding said second tube (26) whereby said second tube (26) has a second cross section (A2) that is different from said first cross section (A1). With the fluid processing devices and the methods according to the invention, it is possible to simplify the centrifugal processing steps for a given fluid processing sequence and to automate them.

    Abstract translation: 本发明涉及用于处理流体的改进方法和用于离心机的流体处理装置(1),其包括:(a)第一保持器(14),其形状配合到第一管(18)的形状,用于保持 所述第一管(18),由此所述第一管(18)具有第一横截面(A1); 和(b)与第二管(26)的形状配合的用于保持所述第二管(26)的第二保持器(22),由此所述第二管(26)具有不同于第二管 第一个横截面(A1)。 利用根据本发明的流体处理装置和方法,可以简化给定流体处理顺序的离心处理步骤并使其自动化。

    Method for Processing a Fluid and Fluid Processing Device
    4.
    发明申请
    Method for Processing a Fluid and Fluid Processing Device 有权
    流体和流体处理装置的处理方法

    公开(公告)号:US20100009832A1

    公开(公告)日:2010-01-14

    申请号:US11992616

    申请日:2006-09-26

    Abstract: The present invention relates to improved methods for processing fluids and to a fluid processing device (1) for use in a centrifuge comprising: (a) a first holder (14) form-fit to the shape of a first tube (18) for holding said first tube (18) whereby said first tube (18) has a first cross section (A1); and (b) a second holder (22) form-fit to the shape of a second tube (26) for holding said second tube (26) whereby said second tube (26) has a second cross section (A2) that is different from said first cross section (A1). With the fluid processing devices and the methods according to the invention, it is possible to simplify the centrifugal processing steps for a given fluid processing sequence and to automate them.

    Abstract translation: 本发明涉及用于处理流体的改进方法和用于离心机的流体处理装置(1),其包括:(a)第一保持器(14),其形状配合到第一管(18)的形状,用于保持 所述第一管(18),由此所述第一管(18)具有第一横截面(A1); 和(b)与第二管(26)的形状配合的用于保持所述第二管(26)的第二保持器(22),由此所述第二管(26)具有不同于第二管 第一个横截面(A1)。 利用根据本发明的流体处理装置和方法,可以简化给定流体处理顺序的离心处理步骤并使其自动化。

    Isolating switch
    6.
    发明授权
    Isolating switch 失效
    隔离开关

    公开(公告)号:US5841087A

    公开(公告)日:1998-11-24

    申请号:US821928

    申请日:1997-03-21

    CPC classification number: H01H3/42 H01H31/32 H02B13/035 H01H31/003

    Abstract: The isolating switch (1) contains an isolating switch housing (2) and at least two switching points (18, 19, 20) which are arranged in the isolating switch housing (2), are of axially symmetrical design, and each have one fixed switching element (7, 8, 9) and one switching element (15, 16, 17) which can move along the switching point axis (21, 22, 23). A drive shaft (11) leads into the isolating switch housing (2). From this drive shaft (11), power is transmitted via a gearbox (25) to the movable switching element (15, 16, 17). The gearbox (25) has for each switching point (18, 19, 20) a control cam (26, 27, 28) which is fixedly connected to the movable switching element (15, 16, 17), is aligned transversely with respect to the shaft axis (11) and is displaceable. It also contains a lever (29, . . . 34; 47) which is attached to the drive shaft (11) and interacts with the control cam (26, 27, 28). This lever is frictionally coupled to the control cam (26, 27, 28) in such a way that in each angular position of the drive shaft (11) the control cam (26, 27, 28), and the movable switching element (15, 16, 17) which is attached thereto are positioned in a defined fashion in the direction of the switching point axis (21, 22, 23). The isolation switch compact design permits precise control of the switching points.

    Abstract translation: 隔离开关(1)包括隔离开关壳体(2),并且布置在隔离开关壳体(2)中的至少两个开关点(18,19,20)是轴对称设计的,并且每个具有一个固定 开关元件(7,8,9)和可沿切换点轴线(21,22,23)移动的一个开关元件(15,16,17)。 驱动轴(11)通向隔离开关外壳(2)。 从该驱动轴(11),动力通过变速箱(25)传递到可动开关元件(15,16,17)。 齿轮箱(25)对于每个切换点(18,19,20),固定地连接到可移动开关元件(15,16,17)的控制凸轮(26,27,28)相对于 轴轴(11)并且可移动。 它还包括连接到驱动轴(11)并与控制凸轮(26,27,28)相互作用的杆(29 ... 34; 47)。 该杠杆以这样的方式摩擦联接到控制凸轮(26,27,28),使得在驱动轴(11)的每个角位置中,控制凸轮(26,27,28)和可移动开关元件(15) ,16,17)以限定的方式定位在切换点轴线(21,22,23)的方向上。 隔离开关紧凑设计允许精确控制开关点。

    Support arrangement
    8.
    发明申请
    Support arrangement 审中-公开
    支持安排

    公开(公告)号:US20090034224A1

    公开(公告)日:2009-02-05

    申请号:US11887065

    申请日:2006-02-14

    CPC classification number: H05K5/0004

    Abstract: The invention relates to a support arrangement for an inner module in an outer module, particularly for an inner vibrating frame in an outer frame of an outer housing, with a damping device between the inner and outer modules for absorbing forces acting in up to three coordinate directions relative to the inner and outer modules. The damping device is essentially constructed as an elastic polymer profile, particularly two polymer profiles, running round between the inner and outer modules and that the inner and outer modules are constructed with a bearing device for the elastic polymer profile or profiles.

    Abstract translation: 本发明涉及一种用于外部模块中的内部模块的支撑装置,特别是用于外部壳体的外部框架中的内部振动框架,在内部和外部模块之间具有阻尼装置,用于吸收作用在三个坐标 相对于内外模块的方向。 阻尼装置基本上构造为弹性聚合物轮廓,特别是两个聚合物轮廓,其在内部和外部模块之间延伸,并且内部和外部模块由用于弹性聚合物轮廓或轮廓的轴承装置构成。

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