Optical emission spectroscopic (OES) instrument with automatic top and bottom slit curtains
    251.
    发明授权
    Optical emission spectroscopic (OES) instrument with automatic top and bottom slit curtains 有权
    具有自动顶部和底部狭缝窗帘的光学发射光谱仪(OES)仪器

    公开(公告)号:US09494463B2

    公开(公告)日:2016-11-15

    申请号:US14293405

    申请日:2014-06-02

    Inventor: Mark A. Hamilton

    Abstract: An optical emission spectroscopic (OES) instrument includes a spectrometer, a processor and an adjustable mask controlled by the processor. The adjustable mask defines a portion of an analytical gap imaged by the spectrometer. The instrument automatically adjusts the size and position of an opening in the mask, so the spectrometer images an optimal portion of plasma formed in the analytical gap, thereby improving signal and noise characteristics of the instrument, without requiring tedious and time-consuming manual adjustment of the mask during manufacture or use.

    Abstract translation: 光发射光谱(OES)仪器包括光谱仪,处理器和由处理器控制的可调掩模。 可调节掩模定义了由光谱仪成像的分析间隙的一部分。 仪器自动调整面罩开口的尺寸和位置,因此光谱仪将分析间隙中形成的等离子体的最佳部分图像化,从而提高仪器的信号和噪声特性,而不需要繁琐乏味的手动调节 面具在制造或使用过程中。

    Microscope spectrometer, optical axis shift correction device, spectroscope and microscope using same
    252.
    发明授权
    Microscope spectrometer, optical axis shift correction device, spectroscope and microscope using same 有权
    显微镜光谱仪,光轴偏移校正装置,分光镜和显微镜使用相同

    公开(公告)号:US09442013B2

    公开(公告)日:2016-09-13

    申请号:US13897981

    申请日:2013-05-20

    Inventor: Mitsuhiro Iga

    Abstract: A microscope spectrometer in which, when an excitation light from a light source illuminates a sample, a light emitted from the sample that enters a microscope is analyzed, may include: a first optical means that forms the light emitted from the sample as a parallel beam; a first variable bandpass filter means having a variable wavelength passband that transmits incident light, which of the parallel beam of incident light, is light of a pre-established wavelength passband; a two-dimensional array light detection means that images the light in the wavelength passband; and a control means that controls the timing of the imaging by the two-dimensional array light detection means and, in accordance with the timing, changes the wavelength passband of the first variable bandpass filter means.

    Abstract translation: 一种显微镜光谱仪,其中当来自光源的激发光照射样品时,从进入显微镜的样品发射的光被分析,可以包括:第一光学装置,其形成从样品发射的光作为平行光束 ; 第一可变带通滤波器装置,其具有透射入射光的可变波长通带,入射光中的哪一个是预先建立的波长通带的光; 二维阵列光检测装置,其对波长通带中的光进行成像; 以及控制装置,其通过二维阵列光检测装置来控制成像的定时,并且根据该定时改变第一可变带通滤波器装置的波长通带。

    SPECTROMETRY DEVICE, IMAGE FORMING APPARATUS, AND SPECTROMETRY METHOD
    253.
    发明申请
    SPECTROMETRY DEVICE, IMAGE FORMING APPARATUS, AND SPECTROMETRY METHOD 有权
    光谱仪器,图像形成装置和光谱方法

    公开(公告)号:US20160258813A1

    公开(公告)日:2016-09-08

    申请号:US15058527

    申请日:2016-03-02

    Inventor: Ryohei KURI

    Abstract: A printer includes a spectroscope and a carriage moving unit. The spectroscope includes a wavelength-selective interference filter on which light from a measurement target is incident, and the carriage moving unit moves the spectroscope in an X direction with respect to the measurement target. If the measurement target is a color patch, the spectroscope performs spectrometry by changing a wavelength of light passing through the wavelength-selective interference filter in a first period during which the spectroscope is moved in the X direction, and passes light of an initial wavelength through the wavelength-selective interference filter at a start of measurement and at an end of measurement in the first period. A first output value that is a measured value from the spectrometry at the start of measurement is compared with a second output value that is a measured value from the spectrometry at the end of measurement.

    Abstract translation: 打印机包括分光镜和滑架移动单元。 分光镜包括波长选择性干涉滤光器,来自测量对象的光入射到该波长选择干涉滤光器上,滑架移动单元相对于测量对象在X方向移动分光器。 如果测量对象是色标,则分光器通过在X方向上移动分光器的第一周期内改变穿过波长选择干涉滤光器的光的波长来进行光谱测定,并使初始波长的光通过 所述波长选择性干涉滤波器在测量开始时和所述第一周期中的测量结束时。 作为测定开始时的光谱测定值的测定值的第一输出值与作为测定结束时的光谱测定值的测定值的第二输出值进行比较。

    IMAGING SPECTROMETER WITH EXTENDED RESOLUTION
    255.
    发明申请
    IMAGING SPECTROMETER WITH EXTENDED RESOLUTION 有权
    具有扩展分辨率的成像光谱仪

    公开(公告)号:US20150369667A1

    公开(公告)日:2015-12-24

    申请号:US14312740

    申请日:2014-06-24

    Abstract: Interferometric transform spectrometer (ITS) systems and methods of operation thereof. In one example, an ITS system includes a Michelson interferometer that introduces a varying optical path length difference (OPD) between its two arms so as to produce an interferogram, a detector that receives and samples the interferogram, and a scan controller coupled to the detector and to Michelson interferometer. The scan controller controls the Michelson interferometer to vary the OPD in discrete steps such that the detector provides M samples of the interferogram for each of two scan segments. In the first scan segment, the M samples have a uniform or non-uniform sample spacing and the OPD has a first maximum value. In the second scan segment, the M samples have an incrementally increasing sample spacing and the OPD has a second maximum value that is at least twice the first maximum value.

    Abstract translation: 干涉测量变换光谱仪(ITS)系统及其操作方法。 在一个示例中,ITS系统包括迈克尔逊干涉仪,其在其两个臂之间引入变化的光程长度差(OPD),以产生干涉图,接收和采样干涉图的检测器,以及耦合到检测器的扫描控制器 和迈克尔逊干涉仪。 扫描控制器控制迈克尔逊干涉仪以离散步骤改变OPD,使得检测器为两个扫描段中的每一个提供干涉图的M个采样。 在第一扫描段中,M个样本具有均匀或不均匀的采样间隔,并且OPD具有第一最大值。 在第二扫描段中,M个采样具有逐渐增加的采样间隔,并且OPD具有至少为第一最大值的两倍的第二最大值。

    Interferometer having multiple scan carriages
    256.
    发明授权
    Interferometer having multiple scan carriages 有权
    干涉仪具有多个扫描架

    公开(公告)号:US09200885B2

    公开(公告)日:2015-12-01

    申请号:US14561425

    申请日:2014-12-05

    Abstract: An interferometer includes a first assembly having a base, a beam splitter assembly to split light into first and second portions, and a fixed mirror for reflecting the first portion of light; and a second assembly movable with respect to the first assembly, and having first and second scan carriages, and a movable mirror connected to the second scan carriage for reflecting the second portion of light. The beam splitter assembly combines the reflected first and second portions of light into a recombined radiation beam. Inner bearing flexures enable movement of the first scan carriage relative to the base, and outer bearing flexures enable movement of the second scan carriage relative to the first scan carriage, such that a plane containing the movable mirror is maintained parallel to multiple planes containing the movable mirror at respective distances between the second and first assemblies during scan movement of the movable mirror.

    Abstract translation: 干涉仪包括具有底座的第一组件,将光分成第一和第二部分的分束器组件以及用于反射第一部分光的固定镜; 以及第二组件,其可相对于所述第一组件移动,并且具有第一和第二扫描支架,以及连接到所述第二扫描托架的用于反射所述第二部分光的可移动反射镜。 分束器组件将反射的第一和第二部分光合并成复合辐射束。 内部轴承挠曲能够使第一扫描滑架相对于基座移动,而外轴承挠曲使第二扫描滑架相对于第一扫描滑架能够移动,使得包含可移动反射镜的平面保持平行于包含可移动的多个平面的多个平面 在可移动镜的扫描运动期间在第二组件和第一组件之间的相应距离处的镜子。

    All graphite interferometer bearing assembly
    258.
    发明授权
    All graphite interferometer bearing assembly 有权
    所有石墨干涉仪轴承总成

    公开(公告)号:US09068599B2

    公开(公告)日:2015-06-30

    申请号:US14133174

    申请日:2013-12-18

    Inventor: John R. Iverson

    CPC classification number: F16C33/16 F16C29/02 G01J3/0202 G01J3/06 G01J3/4535

    Abstract: An all-graphite interferometer bearing assembly is introduced that allows the movement of a movable mirror in a Michelson interferometer without degradation during use. The assembly includes a stationary hollow graphite tube and a movable assembly which includes a mirror and a monolithic graphite member slidably disposed within the bore of the graphite tube that is composed of the same grade of graphite material as the monolithic graphite member. The result is a robust novel moving mirror arrangement in a Michelson interferometer that enables precise mirror alignment control, a long stroke length, excellent vibration damping and reduced sensitivity to external vibrations.

    Abstract translation: 引入了全石墨干涉仪轴承组件,其允许在迈克尔逊干涉仪中移动可移动镜而不会在使用过程中退化。 组件包括固定的中空石墨管和可移动组件,其包括反射镜和可滑动地设置在石墨管的孔内的整体石墨构件,该石墨管由与整体式石墨构件相同等级的石墨材料组成。 结果是在迈克尔逊干涉仪中采用了坚固的新型移动反射镜装置,能够进行精确的镜面对准控制,长行程长度,优异的振动阻尼和对外部振动的灵敏度降低。

    Drug detection device and drug detection method
    259.
    发明授权
    Drug detection device and drug detection method 有权
    药物检测装置及药物检测方法

    公开(公告)号:US08963089B2

    公开(公告)日:2015-02-24

    申请号:US14129625

    申请日:2012-06-27

    CPC classification number: G01J3/42 G01J3/06 G01N21/359 G01N21/94

    Abstract: A device for detecting a drug remaining in a target area that includes an irradiation unit configured to irradiate the area with a light beam including near-infrared light, a spectroscope on which reflected light from the area is incident, and a near-infrared imaging unit configured to capture a spectrum obtained through dispersion of the reflected light by the spectroscope, to generate image data, and to capture each spectrum of a predetermined number of pixels within the area. A control unit is configured to process the image data, to compute average spectral data of the area by averaging the spectrums of the pixels, and to compute an amount of the drug corresponding to the average spectral data, based on an equation. A storage unit is configured to store an equation expressing a relationship between a prescribed amount of a drug and spectral data based on the spectrum.

    Abstract translation: 一种用于检测残留在目标区域中的药物的装置,包括被配置为用包括近红外光的光束照射该区域的照射单元,来自该区域的反射光入射的分光器和近红外成像单元 被配置为捕获通过分光镜的反射光的分散而获得的光谱,以生成图像数据,并且捕获该区域内的预定数量的像素的每个光谱。 控制单元被配置为处理图像数据,以通过对像素的频谱进行平均来计算该区域的平均光谱数据,并且基于等式计算与平均光谱数据相对应的药物的量。 存储单元被配置为基于频谱存储表示药物的规定量与光谱数据之间的关系的方程式。

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