FLUORESCENCE REMOVAL FROM RAMAN SPECTRA BY POLARIZATION SUBTRACTION
    22.
    发明申请
    FLUORESCENCE REMOVAL FROM RAMAN SPECTRA BY POLARIZATION SUBTRACTION 审中-公开
    通过极化分离从拉曼光谱中去除荧光

    公开(公告)号:US20160103073A1

    公开(公告)日:2016-04-14

    申请号:US14883269

    申请日:2015-10-14

    Abstract: A method for utilizing polarization as a scheme for fluorescence removal from UV Raman spectra collected in a standoff detection scheme has been invented. In this scheme, a linearly polarized ultraviolet (UV) laser interacts with a material on a surface or in a container. The material generates Raman scattering with polarization contributions relative to that of the laser. The material possibly fluoresces as well, but the fluorescence is generally unpolarized. By subtracting a scaled version of the perpendicular component from the parallel component of the returned signal both relative to the laser source polarization—it is possible to generate a spectrum that is fluorescence free and contains the strongest features of the Raman scattered light.

    Abstract translation: 已经发明了利用偏振作为在间隔检测方案中收集的UV拉曼光谱进行荧光去除的方案的方法。 在该方案中,线偏振紫外(UV)激光与表面或容器中的材料相互作用。 该材料产生相对于激光的偏振贡献的拉曼散射。 该材料也可能发荧光,但荧光通常是非极化的。 通过从相对于激光源极化的返回信号的并行分量中减去垂直分量的缩放版本,可以产生无荧光的光谱,并且包含拉曼散射光的最强特征。

    IMAGE SENSOR HAVING IMPROVED LIGHT UTILIZATION EFFICIENCY AND METHOD OF MANUFACTURING THE SAME
    24.
    发明申请
    IMAGE SENSOR HAVING IMPROVED LIGHT UTILIZATION EFFICIENCY AND METHOD OF MANUFACTURING THE SAME 有权
    具有改进的光利用效率的图像传感器及其制造方法

    公开(公告)号:US20160054173A1

    公开(公告)日:2016-02-25

    申请号:US14640418

    申请日:2015-03-06

    Abstract: An image sensor including a color filter array layer, which includes a plurality of color filters transmitting light of different colors; and reflective partitioning walls, which define the color filters and have a lower refractive index than that of the color filters; a color separation device, which separates incident light into a plurality of colors, such that the plurality colors are incident on the plurality of color filters, respectively; and a sensor substrate, on which a plurality of light detection devices for respectively sensing light transmitted through the plurality of color filters are arranged in an array shape.

    Abstract translation: 一种包括滤色器阵列层的图像传感器,其包括透射不同颜色的光的多个滤色器; 以及反射分隔壁,其限定滤色器并且具有比滤色器更低的折射率; 分色装置,将入射光分为多种颜色,使得所述多种颜色分别入射到所述多个滤色器上; 以及传感器基板,其上分别感测透过多个滤色器的光的多个光检测装置排列成阵列形状。

    IMAGE MODULE PACKAGE AND MANUFACTURING METHOD THEREOF
    25.
    发明申请
    IMAGE MODULE PACKAGE AND MANUFACTURING METHOD THEREOF 审中-公开
    图像模块包装及其制造方法

    公开(公告)号:US20160041029A1

    公开(公告)日:2016-02-11

    申请号:US14453199

    申请日:2014-08-06

    Abstract: There is provided an image module package including a substrate, a photo sensor chip, a molded transparent layer and a glass filter. The substrate has an upper surface. The photo sensor chip is attached to the upper surface of the substrate and electrically connected to the substrate. The molded transparent layer covers the photo sensor chip and a part of the upper surface of the substrate, wherein a top surface of the molded transparent layer is formed with a receptacle opposite to the photo sensor chip. The glass filter is accommodated in the receptacle.

    Abstract translation: 提供了一种包括基板,光传感器芯片,模制透明层和玻璃滤光片的图像模块封装。 基板具有上表面。 光传感器芯片附接到基板的上表面并与基板电连接。 模制的透明层覆盖光传感器芯片和基板的上表面的一部分,其中模制的透明层的顶表面形成有与光传感器芯片相对的插座。 玻璃过滤器容纳在容器中。

    SPECTRAL CHARACTERISTIC OBTAINING APPARATUS, IMAGE EVALUATION APPARATUS AND IMAGE FORMING APPARATUS
    28.
    发明申请
    SPECTRAL CHARACTERISTIC OBTAINING APPARATUS, IMAGE EVALUATION APPARATUS AND IMAGE FORMING APPARATUS 审中-公开
    光谱特征获取装置,图像评估装置和图像形成装置

    公开(公告)号:US20150253190A1

    公开(公告)日:2015-09-10

    申请号:US14718499

    申请日:2015-05-21

    Abstract: A spectral characteristic obtaining apparatus including a light irradiation unit configured to emit light onto a reading object; a spectroscopic unit configured to separate at least a part of diffused reflected light from the light emitted onto the reading object by the light irradiation unit into a spectrum; and a light receiving unit configured to receive the diffused reflected light separated into the spectrum by the spectroscopic unit and to obtain a spectral characteristic. The light receiving unit is configured to be a spectroscopic sensor array including plural spectroscopic sensors arranged in a direction, and the spectroscopic sensors include a predetermined number of pixels arranged in the direction to receive lights with different spectral characteristics from each other.

    Abstract translation: 一种光谱特征获取装置,包括被配置为将光发射到读取对象上的光照射单元; 分光单元,被配置为将由所述光照射单元发射到所述读取对象的光的漫反射光的至少一部分分离成光谱; 以及光接收单元,被配置为接收由分光单元分离成光谱的扩散反射光并获得光谱特性。 光接收单元被配置为包括沿方向排列的多个分光传感器的分光传感器阵列,并且分光传感器包括沿着彼此具有不同光谱特性的光的方向排列的预定数量的像素。

    SPECTROPHOTOMETER AND SPECTROPHOTOMETRIC MEASUREMENT METHOD
    29.
    发明申请
    SPECTROPHOTOMETER AND SPECTROPHOTOMETRIC MEASUREMENT METHOD 有权
    分光光度计和分光光度法测量方法

    公开(公告)号:US20150241276A1

    公开(公告)日:2015-08-27

    申请号:US14424442

    申请日:2014-02-26

    Inventor: Hisashi Shiraiwa

    Abstract: A spectrophotometer includes a photodetection unit configured to convert received light into an electric signal to output the electric signal; a circuit unit including a plurality of gain amplifiers and a plurality of AD converters configured to amplify an output signal from the photodetection unit by a plurality of gains using the plurality of gain amplifiers and configured to convert the amplified output signals into digital signals using the plurality of AD converters to output the digital signals as a plurality of pieces of light amount data; a saturation determination unit configured to determine whether or not each of the plurality of pieces of light amount data from the circuit unit has been saturated; and a measurement result calculation unit configured to calculate, in accordance with a result of the determination by the saturation determination unit, a measurement result of the received light using a part or all of the plurality of pieces of light amount data.

    Abstract translation: 分光光度计包括被配置为将接收的光转换成电信号以输出电信号的光电检测单元; 电路单元,包括多个增益放大器和多个AD转换器,其被配置为使用所述多个增益放大器通过多个增益放大来自所述光电检测单元的输出信号,并且被配置为使用所述多个增益放大器将放大的输出信号转换为数字信号 的AD转换器,作为多个光量数据输出数字信号; 饱和判定单元,其被配置为确定来自所述电路单元的所述多个光量数据中的每一个是否已经饱和; 以及测量结果计算单元,被配置为根据饱和度确定单元的确定结果,使用所述多个光量数据的一部分或全部来计算接收到的光的测量结果。

    IMAGING DEVICE
    30.
    发明申请
    IMAGING DEVICE 有权
    成像装置

    公开(公告)号:US20150234150A1

    公开(公告)日:2015-08-20

    申请号:US14404552

    申请日:2013-05-23

    Abstract: Provided is an imaging device (1) having: a front optical system (10) that transmits light from an object; a spectral filter array (20) that transmits light from the front optical system (10) via a plurality of spectral filters; a small lens array (30) that transmits the light from the plurality of spectral filters via a plurality of small lenses respectively, and forms a plurality of object images; a picture element (50) that captures the plurality of object images respectively; and an image processor (60) that determines two-dimensional spectral information on the object images based on image signals output from the picture element (50). The front optical system (10) is configured to transmit the light from the focused object to collimate the light into a parallel luminous flux.

    Abstract translation: 提供了一种成像装置(1),具有:从物体透射光的前光学系统(10) 经由多个光谱滤光器从前光学系统(10)透射光的光谱滤波器阵列(20); 分别通过多个小透镜透过来自所述多个光谱滤光器的光的小透镜阵列(30),并形成多个物体图像; 分别捕获多个对象图像的图像元素(50); 以及图像处理器(60),其基于从所述图像元素(50)输出的图像信号来确定所述对象图像上的二维光谱信息。 前光学系统(10)被配置为透射来自被聚焦物体的光以将光准直成平行光通量。

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