整合式拉曼光譜量測系統
    51.
    发明专利
    整合式拉曼光譜量測系統 审中-公开
    集成式拉曼光谱量测系统

    公开(公告)号:TW201708809A

    公开(公告)日:2017-03-01

    申请号:TW105141721

    申请日:2016-01-06

    Abstract: 一種整合式拉曼光譜量測系統,其包括複數個反射鏡、分光器、軸調整機構以及外殼。反射鏡配置於雷射光徑上。分光器配置於雷射光徑上,用以將入射至雷射光徑之雷射光束中之至少部份傳遞至待測的物體,並將物體反射出之訊號光傳遞至訊號收集單元。軸調整機構用以設定和調整雷射光束入射至雷射光徑時的座標軸與方位等參數中的至少二參數。外殼用以容置分光器與反射鏡。外殼可拆卸地連接至基座。

    Abstract in simplified Chinese: 一种集成式拉曼光谱量测系统,其包括复数个反射镜、分光器、轴调整机构以及外壳。反射镜配置于激光光径上。分光器配置于激光光径上,用以将入射至激光光径之激光光束中之至少部份传递至待测的物体,并将物体反射出之信号光传递至信号收集单元。轴调整机构用以设置和调整激光光束入射至激光光径时的座标轴与方位等参数中的至少二参数。外壳用以容置分光器与反射镜。外壳可拆卸地连接至基座。

    가스 분석용 분광기
    52.
    发明授权
    가스 분석용 분광기 有权
    气体分析仪

    公开(公告)号:KR101621903B1

    公开(公告)日:2016-05-17

    申请号:KR1020140133363

    申请日:2014-10-02

    Applicant: 식아게

    Abstract: 가스분석용분광기(10)가제공되며, 상기분광기는연구될가스를갖는측정셀(28), 광경로(16) 상의측정셀(28) 안으로의광(14)의전달을위한광원(12), 상기광 경로(16) 내에페브리페롯필터(24a 내지 24c)를가져서필터배열체(22)의투과스펙트럼에의해광(14)의주파수특성들을설정하는필터배열체(22), 뿐만아니라상기측정셀(28) 내의가스(30)에의해광(14)의흡수를측정하는검출기(36, 38)를포함한다. 이와관련하여, 필터배열체(22)는광 경로(14) 내에하나가다른하나의뒤에배열되는복수의페브리페롯필터(24a 내지 24c)들을가지며필터배열체(22)용제어유닛(44)이페브리페롯필터(24a 내지 24c)들중 하나이상을설정함으로써투과스펙트럼을변화시키기위해제공된다.

    스펙트럼 검출기
    53.
    发明公开
    스펙트럼 검출기 有权
    光谱检测器

    公开(公告)号:KR1020110001835A

    公开(公告)日:2011-01-06

    申请号:KR1020090075826

    申请日:2009-08-17

    Abstract: PURPOSE: A spectrum detector is provided to enable miniaturization and to realize a small size of spectrum detector, which does not require the optical-axis control of a complex optical system. CONSTITUTION: A spectrum detector(2000) comprises a substrate(2020), a photo-detector and a wavelength detecting circuit(2012). The photo-detector is formed on the substrate and comprises a semiconductor with a plurality of iron units. The wavelength detecting circuit detects the wavelength of one of incident lights of the photo-detector, which transmits the iron units. The wavelength detecting circuit detects the wavelength of incident light of the photo-detector. The photo-detector outputs photo-voltage when light enters. The wavelength detecting circuit comprises a photo-voltage measuring circuit, a memory, a waveform extracting circuit and a potential-difference calculating circuit. The photo-voltage measuring circuit measures photo-voltage, which is output from the photo-detector.

    Abstract translation: 目的:提供一种频谱检测器,以实现小型化和实现小尺寸的频谱检测器,不需要复杂光学系统的光轴控制。 构成:光谱检测器(2000)包括基板(2020),光检测器和波长检测电路(2012)。 光检测器形成在基板上,并且包括具有多个铁单元的半导体。 波长检测电路检测发送铁单元的光检测器的入射光中的一个的波长。 波长检测电路检测光检测器的入射光的波长。 当光线进入时,光电检测器输出光电压。 波长检测电路包括光电压测量电路,存储器,波形提取电路和电位差计算电路。 光电压测量电路测量从光电检测器输出的光电压。

    MULTISPECTRAL IMAGING COLOR MEASUREMENT SYSTEM AND METHOD FOR PROCESSING IMAGING SIGNALS THEREOF
    60.
    发明公开
    MULTISPECTRAL IMAGING COLOR MEASUREMENT SYSTEM AND METHOD FOR PROCESSING IMAGING SIGNALS THEREOF 有权
    与MULTISPEKTRALABBILDUNG测配色系统和方法为它处理图像信号

    公开(公告)号:EP2637004A4

    公开(公告)日:2015-09-23

    申请号:EP11837503

    申请日:2011-08-24

    Abstract: A multispectral imaging color measurement system, comprising a dark room (6), a sample platform and an imaging system (1) for photographing objects to be measured; also comprising a controllable illumination system, a filter wheel system, an imaging signal processing system and an electronic control system. The controllable illumination system provides a high spatially-homogeneous illuminated environment for the imaging system (1). The filter wheel system filters the reflected light emitted by the controllable illumination system and reflected by the sample to be measured, and provides a light band with a proper wave length for the imaging system (1) to image. The imaging signal processing system calibrates and performs reflective reconstruction for the image taken by the imaging system (1). The electronic control system controls the operation of each part of the multispectral imaging color measurement system. A method for processing imaging signals of the multispectral imaging color measurement is also proposed. The multispectral imaging color measurement system and the method for processing imaging signals thereof can overcome the defect of inaccuracy of traditional chroma imaging systems and spectrophotometer systems, and provide users in the textile industry with the basic functions of highly accurate color measurement and evaluation.

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