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    • 1. 发明申请
    • METHOD AND APPARATUS FOR RAPID FILTER ANALYSIS OF FLUID SAMPLES
    • 流体样品快速过滤分析方法与装置
    • WO2010058373A1
    • 2010-05-27
    • PCT/IB2009/055229
    • 2009-11-20
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.STALLINGA, SjoerdCATTANEO, Stefano
    • STALLINGA, SjoerdCATTANEO, Stefano
    • G01N15/06
    • G01N15/0625G01N1/2205
    • An apparatus (10) for analyzing a fluid (18) of volume V comprises -a filter (12) having a filter surface (14) of area A,the filter being capable of allowing the fluid to flow through the filter surface, the fluid's volumetric flow density,averaged over the filter surface, being j mean ;and -a scanner for scanning the filter surface with a scan rate B; wherein the area A substantially coincides with an optimum area A opt defined as Formula (I). The sum of a filtering time and a scanning time may thereby be minimized. In another aspect, an apparatus (10)comprises -a set of at least two filters, each filter in the set of filters having a filter surface of area A and being capable of allowing the fluid to flow through the filter surface, the area A having a different value for each of the filters; and -a mechanism for selecting one (12) of the filters and placing the selected filter (12) in an operating position; and -a scanner for scanning the filter surface (14) of the selected filter (12).
    • 用于分析体积V的流体(18)的装置(10)包括具有区域A的过滤表面(14)的过滤器(12),所述过滤器能够允许流体流过过滤器表面, 滤波器表面上平均的体积流量密度为j表示;扫描速率B扫描滤波器表面; 其中区域A基本上与定义为公式(I)的最佳区域A opt重合。 因此可以将滤波时间和扫描时间之和最小化。 在另一方面,一种装置(10)包括一组至少两个过滤器,该组过滤器中的每个过滤器具有区域A的过滤器表面,并且能够允许流体流过过滤器表面,区域A 每个过滤器具有不同的值; 和 - 用于选择一个(12)过滤器并将所选择的过滤器(12)放置在操作位置的机构; 和用于扫描所选择的过滤器(12)的过滤表面(14)的扫描器。
    • 4. 发明申请
    • OPTICAL APPARATUS
    • 光学装置
    • WO2008114231A1
    • 2008-09-25
    • PCT/IB2008/051063
    • 2008-03-20
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.STALLINGA, Sjoerd
    • STALLINGA, Sjoerd
    • G11B7/08G11B7/095G11B7/135
    • G11B7/1374G11B7/082G11B7/0956G11B7/1376G11B2007/0006
    • An optical scanning apparatus (1) for writing/reading information into/from an object (2) comprises an optical system (30) for optically scanning such object. The system comprises at least two light beam generators (31; 131; 231) for generating corresponding light beams (32; 132; 232), and common optical components (33; 34) and individual optical components (138; 238) for guiding the light beams to an object, receiving reflected light and guiding the reflecting light beams to an optical detector (35); the common optical components are for guiding at least two of the light beams and the individual optical components are for guiding one single light beam. A common optical component is tilted with respect to the optical axis in order to compensate for disc tilt for one of the light beams, and at least one individual optical components is tilted to compensate for disc tilt for a corresponding other light beam.
    • 一种用于向/从物体(2)读取/读取信息的光学扫描装置(1)包括用于光学扫描该物体的光学系统(30)。 该系统包括用于产生相应的光束(32; 132; 232)的至少两个光束发生器(31; 131; 231)和用于引导光束的公共光学部件(33; 34)和各个光学部件 光束到物体,接收反射光并将反射光束引导到光学检测器(35); 普通光学部件用于引导至少两个光束,并且各个光学部件用于引导一个单个光束。 常见的光学部件相对于光轴倾斜,以补偿光束中的一个的光盘倾斜,并且至少一个单独的光学部件被倾斜以补偿对应的其他光束的光盘倾斜。
    • 10. 发明申请
    • PHASE-CONJUGATE READ-OUT IN A HOLOGRAPHIC DATA STORAGE
    • 在全息数据存储中进行相位读取
    • WO2006000980A1
    • 2006-01-05
    • PCT/IB2005/052017
    • 2005-06-20
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.STALLINGA, Sjoerd
    • STALLINGA, Sjoerd
    • G11B7/0065
    • G11B7/0065G11C13/042
    • The invention relates to a holographic data storage medium (4) in which there are sections (20) which are used for data storage and sections (21) which are not. A diffractive structure (30a, 30b) is provided in respect of one or more of the unused sections (21), possibly at each of the boundaries between the used (20) and unused sections (21) or within the volume of a respective unused section (21) of the data storage volume. During read-out, a reference wave (6) is diffracted by the diffractive structure (30b) such that it enters a used section (20) (from the right) in a direction substantially perpendicular to the optical axis (16) of the signal wave (26). During recording, a reference wave (2) is diffracted by the diffractive structure (30a) such that it enters the used section (20) (from the left) in a direction substantially perpendicular to the optical axes (lb) of the signal wave (1).
    • 本发明涉及一种全息数据存储介质(4),其中存在用于数据存储的部分(20)和不是的部分(21)。 关于一个或多个未使用部分(21),可能在使用(20)和未使用部分(21)之间的每个边界处或在相应未使用部分(21)的体积内设置衍射结构(30a,30b) (21)数据存储卷。 在读出期间,参考波(6)被衍射结构(30b)衍射,使得其在基本上垂直于信号的光轴(16)的方向上进入使用部分(20)(从右侧) 波(26)。 在记录期间,参考波(2)被衍射结构(30a)衍射,使得其在基本垂直于信号波的光轴(lb)的方向上从左侧进入使用部分(20) 1)。