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    • 102. 发明授权
    • Fluorometers
    • 荧光计
    • US07567347B2
    • 2009-07-28
    • US10584294
    • 2004-12-20
    • Søren Aasmul
    • Søren Aasmul
    • G01N21/25
    • G01N21/645G01J1/04G01J1/0422G01N2021/6463G01N2201/0636
    • In apparatus for the production and detection of fluorescence at a sample surface, the height of the apparatus above the sample surface is reduced, and loss of the emitted fluorescence due to reflection loss and light scattering is minimized. The apparatus comprises a three-dimensionally curved light reflecting surface (40) that directs light from a light source (32) transversely to its original path and focuses the light on to an illumination zone (30) at or below the sample surface. The reflecting surface (40) also collects, directs and at least partially collimates emitted fluorescence transversely to its original path and towards a detector (46).
    • 在用于在样品表面生产和检测荧光的装置中,样品表面上方的装置的高度减小,并且由于反射损失和光散射引起的发射的荧光的损失最小化。 该装置包括三维弯曲的光反射表面(40),其将来自光源(32)的光横向于其原始路径引导并将光聚焦到在样品表面处或下方的照明区域(30)。 反射表面(40)还收集,引导并至少部分地将发射的荧光横向于其原始路径并朝向检测器(46)准直。
    • 103. 发明授权
    • Photometer for tracking a moving light source
    • 用于跟踪移动光源的光度计
    • US07531775B1
    • 2009-05-12
    • US11251006
    • 2005-09-30
    • Anthony W. Strawa
    • Anthony W. Strawa
    • G01C21/02G01J1/20
    • G01J1/04G01J1/0266G01J1/0422G01J1/0459G01J1/06G01J2001/4266G01S3/784
    • A photometer that tracks a path of a moving light source with little or no motion of the photometer components. The system includes a non-moving, truncated paraboloid of revolution, having a paraboloid axis, a paraboloid axis, a small entrance aperture, a larger exit aperture and a light-reflecting inner surface, that receives and reflects light in a direction substantially parallel to the paraboloid axis. The system also includes a light processing filter to receive and process the redirected light, and to issue the processed, redirected light as processed light, and an array of light receiving elements, at least one of which receives and measures an associated intensity of a portion of the processed light. The system tracks a light source moving along a path and produces a corresponding curvilinear image of the light source path on the array of light receiving elements. Undesired light wavelengths from the light source may be removed by coating a selected portion of the reflecting inner surface or another light receiving surface with a coating that absorbs incident light in the undesired wavelength range.
    • 一个光度计,跟踪光度计部件运动很少或没有运动的移动光源的路径。 该系统包括不移动的截断的旋转抛物面,具有抛物面轴,抛物面轴,小入口孔,较大出口孔和光反射内表面,其接收并反射基本平行于 抛物面轴。 该系统还包括光处理过滤器,用于接收和处理重定向的光,并且发出经处理的重定向光作为经处理的光,以及光接收元件阵列,其中至少一个接收和测量相关联的一部分强度 的加工光。 该系统跟踪沿着路径移动的光源并且产生光接收元件阵列上的光源路径的对应曲线图像。 可以通过用吸收不期望的波长范围内的入射光的涂层涂覆反射内表面或另一光接收表面的选定部分来去除来自光源的不期望的光波长。
    • 109. 发明申请
    • System and method for sensitive photon detection
    • 敏感光子检测系统和方法
    • US20060243909A1
    • 2006-11-02
    • US11384574
    • 2006-03-20
    • Stephen CerwinDavid Chang
    • Stephen CerwinDavid Chang
    • G01J1/00
    • G01J1/42G01J1/02G01J1/0295G01J1/04G01J1/0422G01J1/044G01J1/0459
    • A sensitive photon detection system generates an electronic photon sensor signal as a K factor times a number N photons per unit time. The system is configured by combining a separate optical amplifier with a gain factor K1 with a photo detector with a gain factor K2 such that K may be realized as the product of K1 and K2. The values of K1 and K2 are chosen to meet a predetermined K while optimizing a signal quality of the photon sensor signal. The optical amplifier may be preceded by a photon gathering device and/or a light chopping device to further optimize system performance. Further, the photon sensor signal may be further processed analog circuitry or may be digitized and processed using digital signal processing to generate an enhanced photon sensor signal with enhanced signal quality by adding gain and/or bandwidth limiting.
    • 敏感光子检测系统产生电子光子传感器信号作为每单位时间数N个光子的K因子。 该系统通过将具有增益因子K 1的单独光学放大器与增益因子K 2的光电检测器组合,使得可以实现K作为K 1和K 2的乘积来配置该系统。 选择K 1和K 2的值以在优化光子传感器信号的信号质量的同时满足预定的K。 光放大器之前可以有光子收集装置和/或光斩波装置,以进一步优化系统性能。 此外,光子传感器信号可以进一步处理模拟电路,或者可以使用数字信号处理进行数字化和处理,以通过增加增益和/或带宽限制来产生增强的信号质量的增强的光子传感器信号。
    • 110. 发明申请
    • Apparatus and method for collecting and detecting light emitted by a lighting apparatus
    • 用于收集和检测由照明装置发射的光的装置和方法
    • US20060226336A1
    • 2006-10-12
    • US11387232
    • 2006-03-23
    • Allan YorkShane RobinsonIan AshdownIngo Speier
    • Allan YorkShane RobinsonIan AshdownIngo Speier
    • G01J1/44
    • F21V23/0457F21K9/00F21Y2115/10G01J1/02G01J1/0271G01J1/0407G01J1/0422G01J1/32G02B6/4298
    • The present invention provides a method and apparatus for collecting and detecting light emitted from a plurality of light-emitting elements. The light-emitting elements are grouped into two or more clusters of one or more light-emitting elements with the clusters arranged such that a portion of the light emitted from each cluster is directly incident upon a central axis, wherein every point along the central axis is equidistant from each cluster. A light collection means also having a central axis associated therewith is placed such that the central axis of the clusters and the central axis of the collection means coincide. The light collection means collects a substantially equal portion of light from each cluster and propagates the collected light to a detection means comprising an optical sensor for conversion to an electrical signal representative of the light emitted by the clusters. The electrical signal provided by the light detection means may be fed back to a controller for use in controlling the properties of the light emitted by the light-emitting elements.
    • 本发明提供一种用于收集和检测从多个发光元件发出的光的方法和装置。 发光元件被分组为一个或多个发光元件的两个或更多个簇,其中簇被布置为使得从每个簇发射的光的一部分直接入射在中心轴上,其中沿着中心轴的每个点 与每个群集等距。 还具有与其相关联的具有中心轴的光收集装置,使得簇的中心轴线和收集装置的中心轴线重合。 光收集装置收集来自每个簇的基本相等的光部分,并将收集的光传播到包括光学传感器的检测装置,该光学传感器转换成代表簇发射的光的电信号。 由光检测装置提供的电信号可以反馈到控制器,以用于控制由发光元件发射的光的特性。