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    • 3. 发明申请
    • Fluid handling system for flow-through assay
    • 用于流通测定的流体处理系统
    • US20080003147A1
    • 2008-01-03
    • US11824420
    • 2007-06-29
    • William J. MillerMark L. MorrellTodd M. RoswechPo Ki Yuen
    • William J. MillerMark L. MorrellTodd M. RoswechPo Ki Yuen
    • B01L3/02
    • G01N35/1072B01L3/5027G01N35/1074
    • A fluid handling system for transferring fluids is disclosed. The fluid handling system incorporates a plurality of transfer units for dispensing and/or collecting fluids as part of a closed analytical system. The plurality of transfer units are capable of functioning independently and/or collectively when assembled in a unitary array format. Methods of making and using the fluid handling system are also disclosed. The fluid handling system allows a sub-array of transfer units to shift in a vertical direction independent from a position of another sub-array of transfer units that are assembled within the same fluid head. Therefore, the fluid handling system facilitates multi-port fluid delivery and collection in an array format. Further, the fluid handling system aligned with a sensing surface enables label-free detection assays to be performed in an analytical system.
    • 公开了一种用于输送流体的流体处理系统。 流体处理系统包括用于分配和/或收集流体作为封闭分析系统的一部分的多个转运单元。 当以单一阵列格式组装时,多个传送单元能够独立地和/或共同地起作用。 还公开了制造和使用流体处理系统的方法。 流体处理系统允许传送单元的子阵列在垂直方向上移动,独立于组装在同一流体头内的另一传送单元子阵列的位置。 因此,流体处理系统便于以端口流体输送和以阵列格式收集。 此外,与感测表面对准的流体处理系统使得能够在分析系统中进行无标记检测分析。
    • 4. 发明授权
    • Method and apparatus for separating two optical fibers
    • 用于分离两根光纤的方法和装置
    • US06701057B2
    • 2004-03-02
    • US10153234
    • 2002-05-21
    • Patrick J. BurkeWilliam J. MillerMark L. Morrell
    • Patrick J. BurkeWilliam J. MillerMark L. Morrell
    • G02B600
    • G02B6/245G02B6/2835
    • A method and apparatus for separating a first and second optical fibers including a fiber feed mechanism adapted to feed the first optical fiber and the second optical fiber, and a nozzle adapted to provide a displacing force on the second optical fiber, where the second optical fiber is displaced away from the first optical fiber to thereby separate the second optical fiber from the first optical fiber. In one embodiment, the displacing force is provided by a gas stream directed away from the nozzle while in another embodiment, the displacing force is directed towards the nozzle. In another embodiment, the apparatus includes a separation mechanism with a first guide, a second guide, a guide separator, and a deflector plate. In another embodiment, the apparatus includes a clamp mechanism with a first clamping pad having an offset extension that extends beyond an edge of a second clamp pad.
    • 一种用于分离第一和第二光纤的方法和装置,包括适于馈送第一光纤和第二光纤的光纤馈送机构,以及适于在第二光纤上提供移位力的喷嘴,其中第二光纤 离开第一光纤,从而将第二光纤与第一光纤分离。 在一个实施例中,位移力由远离喷嘴的气流提供,而在另一个实施例中,移位力指向喷嘴。 在另一个实施例中,该装置包括具有第一引导件,第二引导件,引导件分离器和偏转板的分离机构。 在另一个实施例中,该装置包括具有第一夹持垫的夹紧机构,该第一夹持垫具有延伸超过第二夹紧垫的边缘的偏移延伸部。
    • 6. 发明授权
    • Method and apparatus for removing a protective coating from an optical fiber and inhibiting damage to same
    • 从光纤去除保护涂层并抑制其损坏的方法和装置
    • US06273990B1
    • 2001-08-14
    • US09340482
    • 1999-06-30
    • Dana C. BookbinderMark L. Morrell
    • Dana C. BookbinderMark L. Morrell
    • B32B3500
    • B82Y30/00G02B6/245G02B6/3898G02B6/4497Y10T29/5151Y10T156/1168Y10T156/1184Y10T156/1972
    • A method for mechanically stripping the protective coating from a silica or glass optical fiber using a polymeric or soft metal blade having a hardness less than that of the glass optical fiber but greater than the protective coating. The blade is preferably selected from a group of polymeric materials, or alternately a soft metal, which is selected or treated so as to not detrimentally oxidize in conventional operating environments. For a silica-containing optical fiber, the blade has a hardness of less than approximately 125 on the Knoop hardness scale, and preferably less than approximately 60 on the Knoop hardness scale. A method of inhibiting damage to the exposed region of the silica-containing optical fiber comprises applying a substance that forms a protective layer to provide a barrier to particulates and moisture, and which does not inhibit subsequent processing of the optical fiber, selected from a group of silane-containing compounds.
    • 使用硬度小于玻璃光纤的硬度但大于保护涂层的聚合物或软金属刀片从二氧化硅或玻璃光纤机械剥离保护涂层的方法。 叶片优选选自一组聚合物材料,或者替代地,选择或处理的软金属,以便在常规操作环境中不会有害地氧化。 对于含二氧化硅的光纤,刀具的硬度在Knoop硬度刻度上小于约125,并且在Knoop硬度标度上优选小于约60。 抑制对含二氧化硅的光纤的曝光区域的损伤的方法包括施加形成保护层的物质,以提供对微粒和水分的屏障,并且不抑制后续加工选自组中的光纤 的含硅烷化合物。