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    • 3. 发明申请
    • METHODS AND SYSTEMS FOR DETECTION WITH FRONT IRRADIATION
    • 用于检测前辐照的方法和系统
    • WO2008041190A3
    • 2008-07-03
    • PCT/IB2007054022
    • 2007-10-03
    • KONINKL PHILIPS ELECTRONICS NVJOHNSON MARK TPONJEE MARC W GBALISTRERI MARCELLO L MVAN HERPEN MAARTEN M J WKLUNDER DERK J W
    • JOHNSON MARK TPONJEE MARC W GBALISTRERI MARCELLO L MVAN HERPEN MAARTEN M J WKLUNDER DERK J W
    • G01N21/64B01L3/00
    • G01N21/6428B01L3/5027G01N21/6454
    • A radiation detection system (100) is described comprising a measurement region (104) in a measurement chamber adapted for receiving at least one sample (108) to be examined and adapted for receiving excitation radiation for impingement on the at least one sample (108) and for generating sample radiation. The radiation detection system (100) furthermore comprises at least one detector element (106) for detection of the generated sample radiation. The radiation detection system thereby is a front irradiation system, i.e. the excitation radiation is incident on a first side of the measurement region (104) in a measurement chamber and the at least one detector element (106) is positioned at a second side of the measurement region (104) in a measurement chamber, the second side being opposite to the first side with respect to the measurement region (104) in a measurement chamber, such that detection occurs at the side facing the first side. The detection system (100) also comprises optical means (112) adapted for guiding said excitation radiation aside the at least one detector element (106).
    • 描述了包括测量室中的测量区域(104)的辐射检测系统(100),所述测量室适于接收待检查的至少一个样本(108)并且适于接收用于撞击所述至​​少一个样本(108)的激发辐射, 并用于产生样品辐射。 辐射探测系统(100)还包括用于探测所产生的样本辐射的至少一个探测器元件(106)。 由此辐射检测系统是前照射系统,即激发辐射入射到测量室中的测量区域(104)的第一侧上,并且至少一个检测器元件(106)定位在测量室的第二侧 测量室中的测量区域(104),第二侧相对于测量室中的测量区域(104)与第一侧相对,使得检测发生在面向第一侧的一侧。 检测系统(100)还包括适于将所述激发辐射引导到所述至少一个检测器元件(106)旁边的光学装置(112)。
    • 5. 发明申请
    • MAGNETIC ROM INFORMATION CARRIER
    • 磁光信息载体
    • WO2007010457A3
    • 2007-05-10
    • PCT/IB2006052386
    • 2006-07-13
    • KONINKL PHILIPS ELECTRONICS NVRUIGROK JAAPBALISTRERI MARCELLO L MKUIPER ANTONIUS E TDECRE MICHEL M J
    • RUIGROK JAAPBALISTRERI MARCELLO L MKUIPER ANTONIUS E TDECRE MICHEL M J
    • G11B5/82G11B5/855G11B5/86
    • G11B5/82B82Y10/00G11B5/743G11B5/746G11B5/78G11B5/855G11B5/865
    • The invention relates to a method of manufacturing a device (10) comprising a layer (12) having a pattern of disjunct portions (14) of magnetic material (18) generating a corresponding pattern of local magnetic fields (2). The magnetic material (18) is constituted of particles (22) dispersed in a solid substance (24). The particles are magnetically stable and substantially aligned for generating the local magnetic fields (2). The method comprises the steps of: providing a substance (32) having the particles (22) dispersed in the substance (32), the substance (32) having a viscosity for allowing the particles (22) to move in the substance (32), creating the pattern of disjunct portions (14) of the substance (32) in the layer (12) of the device (10), applying an external magnetic field (50) for substantially aligning the particles (22) in the disjunct portions (14) of the substance (32), and solidifying the substance (32) for obtaining the solid substance (24). The benefit of this method is that instead of changing the magnetization inside the particles (22), the particles (22) are moved, typically rotated, to be aligned to the externally applied magnetic field (50). Subsequent solidification of the substance (32) fixes the aligned magnetically stable particles (22) inside the solid substance (24) which results in a permanently magnetized magnetic material (18).
    • 本发明涉及一种制造器件(10)的方法,该器件(10)包括具有形成局部磁场(2)的相应图案的磁性材料(18)的分离部分(14)的图案的层(12)。 磁性材料(18)由分散在固体物质(24)中的颗粒(22)构成。 颗粒是磁性稳定的并且基本对齐以产生局部磁场(2)。 该方法包括以下步骤:提供具有分散在物质(32)中的颗粒(22)的物质(32),物质(32)具有使粒子(22)在物质(32)中移动的粘度, ,在装置(10)的层(12)中产生物质(32)的分离部分(14)的图案,施加外部磁场(50),用于使分离部分中的颗粒(22)基本上对准( 14),并固化物质(32)以获得固体物质(24)。 该方法的优点在于,代替改变颗粒(22)内部的磁化,颗粒(22)通常被旋转以与外部施加的磁场(50)对齐。 随后物质(32)的固化将固定物质(24)内的对准的磁稳定颗粒(22)固定,导致永久磁化的磁性材料(18)。
    • 7. 发明申请
    • EMPLOYING BEAM SCANNING FOR OPTICAL DETECTION
    • 采用光束扫描进行光学检测
    • WO2008010120A3
    • 2008-05-02
    • PCT/IB2007052499
    • 2007-06-27
    • KONINKL PHILIPS ELECTRONICS NVVAN DIJK ERIK M H PBOAMFA MARIUS IBALISTRERI MARCELLO L MWIMBERGER-FRIEDL REINHOLD
    • VAN DIJK ERIK M H PBOAMFA MARIUS IBALISTRERI MARCELLO L MWIMBERGER-FRIEDL REINHOLD
    • G01N21/64
    • G01N21/6452
    • A detection system is described allowing scanning of an excitation irradiation beam over a substrate (8) for detecting luminescence sites. The scanning thereby is performed by using an optical deflector (5) for varying an angle of incidence of the excitation irradiation beam on a single focusing element (7) on an irradiation path between the deflector (5) and the substrate (8). By varying the angle of incidence on the single focusing element (7), the focus point of the excitation irradiation beam is shifted in the focal plane of the focusing element (7), where the substrate (8) is positioned. The latter allows fast scanning of the excitation irradiation beam. In a preferred embodiment, an additional scanning motion in a substantially different direction is furthermore superimposed, resulting in the possibility for scanning an appropriate area of the substrate (8). The additional scanning motion may be obtained using a split optics system, whereby substantially only the single focusing element (7) and the optical deflector (5) are moved with respect to the substrate (8), whereas other optical components typically are fixed with respect to the substrate (8) during the scanning.
    • 描述了一种检测系统,其允许在用于检测发光部位的基板(8)上扫描激发照射束。 通过使用用于改变偏转器(5)和基板(8)之间的照射路径上的单个聚焦元件(7)上的激发照射光束的入射角的光学偏转器(5)来进行扫描。 通过改变单个聚焦元件(7)上的入射角,激发照射光束的焦点在基底(8)所在的聚焦元件(7)的焦平面上移动。 后者允许激发照射束的快速扫描。 在优选实施例中,进一步叠加基本不同方向的附加扫描运动,导致扫描基板(8)的适当区域的可能性。 可以使用分离光学系统获得附加的扫描运动,从而基本上只有单个聚焦元件(7)和光学偏转器(5)相对于基板(8)移动,而其它光学部件通常相对于 在扫描期间到基板(8)。