분광 측정 장치, 분광 측정 방법 및 시료 용기
    211.
    发明公开
    분광 측정 장치, 분광 측정 방법 및 시료 용기 审中-公开
    光谱测量装置谱测量方法和样品容器

    公开(公告)号:KR20180031809A

    公开(公告)日:2018-03-28

    申请号:KR20187007646

    申请日:2013-09-17

    Abstract: 측정대상이되는시료에여기광을조사하고, 피측정광을검출하는분광측정장치로서, 여기광을발생시키는광원과, 여기광이입사되는입사개구부와, 피측정광을출사하는출사개구부를가지는적분기와, 적분기내에배치되어, 시료를수용하는수용부와, 시료에여기광을입사시키는입사광학계와, 출사개구부로부터출사된피측정광을검출하는광검출기와, 광검출기로검출된검출치에기초하여시료의양자수율을산출하는해석수단을구비하고, 여기광은시료를내포하도록당해시료에조사된다.

    Abstract translation: 一种光谱测量装置,用激励光照射作为测量对象的样本并检测待测量的光包括产生激发光的光源; 具有用于输入激励光的输入开口部和输出被测量光的输出开口部的积分器; 壳体部分,其布置在积分器中并容纳样品; 入射光学系统,使激发光入射到样品; 检测从所述输出开口部输出的测定对象的光的光检测器; 以及分析装置,基于由光电检测器检测的检测值计算样品的量子产率,并且将激发光施加到样品以包括样品。

    분광기
    212.
    发明公开
    분광기 审中-实审
    光谱仪

    公开(公告)号:KR1020160117418A

    公开(公告)日:2016-10-10

    申请号:KR1020167017281

    申请日:2015-02-03

    Abstract: 분광기(1A)는, 분광유닛(2A, 2B, 2C)을구비한다. 분광유닛(2A)이가지는광 통과부(21A), 반사부(11A), 공통반사부(12), 분광부(40A) 및광 검출부(22A)는, Z축방향으로부터본 경우에, 기준선(RL1)을따라서늘어서있다. 분광유닛(2B)이가지는광 통과부(21B), 반사부(11B), 공통반사부(12), 분광부(40B) 및광 검출부(22B)는, Z축방향으로부터본 경우에, 기준선(RL2)을따라서늘어서있다. 분광유닛(2C)이가지는광 통과부(21C), 반사부(11C), 공통반사부(12), 분광부(40C) 및광 검출부(22C)는, Z축방향으로부터본 경우에, 기준선(RL3)을따라서늘어서있다. 기준선(RL1)은, 기준선(RL2, RL3)과교차하고있다.

    Abstract translation: 光谱仪1A包括光谱单元2A,2B和2C。 沿Z轴方向观察时,分光单元2A中包括的光通过部分21A,反射部分11A,共同反射部分12,色散部分40A和光检测部分22A沿着参考线RL1布置。 在Z轴方向观察时,沿着基准线RL2配置分光单元2B所包含的光通过部21B,反射部11B,共用反射部12,色散部40B,光检测部22B。 沿Z轴方向观察时,分光单元2C中包括的光通过部分21C,反射部分11C,共同反射部分12,色散部分40C和光检测部分22C被布置在基准线RL3上。 参考线RL1,参考线RL2和参考线RL3彼此相交。

    분광 광학계 및 분광기
    215.
    发明公开
    분광 광학계 및 분광기 审中-实审
    光谱系统和光谱仪

    公开(公告)号:KR1020130100686A

    公开(公告)日:2013-09-11

    申请号:KR1020130012857

    申请日:2013-02-05

    Abstract: PURPOSE: A spectrometric optical system and a spectrometer are provided to reduce the generation of interference patterns and speckles in both directions to long and short axes and to make the emission of lights from both directions to a screen uniform. CONSTITUTION: A spectrometric optical system (500) includes a reflective member (51), a diffraction grating (52), and an input device. The reflective member includes the concave plane along a first circle (C1). The diffraction grating includes an edge unit (52a) and is formed into a convex shape along a second circle concentric to the first circle. The lights reflected by the concave plane are incident into the diffraction grating. The input device is arranged at a predetermined position spaced from the reflective member and the diffraction grating so that the diffracted lights having a frequency domain more than 600 nm and less than 1100 nm pass through an interval between lights inputted into the spectrometric optical system and the edge unit.

    Abstract translation: 目的:提供光谱光学系统和光谱仪,以减少长轴和短轴在两个方向上的干涉图案和斑点的产生,并使光从两个方向发射到屏幕均匀。 构成:光谱光学系统(500)包括反射构件(51),衍射光栅(52)和输入装置。 反射构件包括沿着第一圆(C1)的凹面。 衍射光栅包括边缘单元(52a),并且沿着与第一圆周同心的第二圆形形成凸形。 由凹面反射的光入射到衍射光栅中。 输入装置布置在与反射构件和衍射光栅间隔开的预定位置处,使得具有大于600nm且小于1100nm的频域的衍射光通过输入到光谱系统的光的间隔和 边缘单位。

    회절격자 분광기
    217.
    发明授权
    회절격자 분광기 有权
    衍射光谱仪

    公开(公告)号:KR101039627B1

    公开(公告)日:2011-06-08

    申请号:KR1020110001091

    申请日:2011-01-05

    Inventor: 이은성 이재용

    CPC classification number: G01J3/1804 G01J3/021 G01J3/0256

    Abstract: PURPOSE: A diffraction grating spectrometer is provided to improve resolving power even if a diffraction grating with a small size is used by expanding diffracted light using an intensity division/wavefront recombination unit. CONSTITUTION: A diffraction grating spectrometer comprises an intensity division/wavefront recombination unit(3). The intensity division/wavefront recombination unit comprises a semitransparent mirror(31) and a total reflection mirror(32). The semitransparent mirror reflects a part of a beam diffracted by a diffraction grating(2) and penetrates the other part of the beam. The total reflection mirror locates the wavefront of the reflected beam at the same phase as the wavefront of the penetrated beam. The total reflection mirror re-combines the wavefronts of the reflected and penetrated beam and expands the re-combined wavefront of the beam.

    Abstract translation: 目的:提供衍射光栅光谱仪,以便即使通过使用强度分割/波阵面复合单元扩散衍射光来使用具有小尺寸的衍射光栅来提高分辨率。 构成:衍射光栅光谱仪包括强度分割/波前复合单元(3)。 强度分割/波前复合单元包括半透明镜(31)和全反射镜(32)。 半透明镜反射由衍射光栅(2)衍射的光束的一部分并且穿透光束的另一部分。 全反射镜将反射光束的波前位于与穿透光束的波前相同的相位。 全反射镜将反射和穿透光束的波前重新组合,并扩大了光束的重组合波前。

    배기가스 분석장치
    218.
    发明公开
    배기가스 분석장치 无效
    排气分析仪

    公开(公告)号:KR1020080013949A

    公开(公告)日:2008-02-13

    申请号:KR1020077027646

    申请日:2006-04-28

    Abstract: An exhaust gas analyzer capable of real time analyzing of exhaust gas by measuring, on a spot-by-spot basis, the concentration, temperature, etc. of the exhaust gas components at one cross-section of an exhaust path. Using the analyzer reduces analysis costs. An exhaust gas analyzer (10) has a sensor section (11-14) in an exhaust path, the sensor section (11-14) having an optical fiber (25) for irradiating exhaust gas with laser light and a detector (26) for receiving the laser light emitted from the optical fiber and transmitted through the exhaust gas, the exhaust path being constructed from an exhaust manifold (3) for discharging the exhaust gas of an engine (2), an exhaust pipe (4), a first catalyst device (5), a second catalyst device (6), a muffler (7), and an exhaust pipe (8). The exhaust gas analyzer (10) analyses the exhaust gas by measuring conditions such as the concentration, temperature, etc., of its components based on the laser light received by the detector. The sensor section has a through-hole (21) having a shape matching a cross-sectional shape of the exhaust path. Infrared laser light (R) is emitted from the optical fiber (25) to the through-hole (21) and received by the detector (26) after crossing the exhaust path.

    Abstract translation: 一种废气分析装置,其能够通过逐点测量排气路径的一个截面处的排气成分的浓度,温度等来实时分析废气。 使用分析仪降低分析成本。 排气分析器(10)在排气路径中具有传感器部(11-14),所述传感器部(11-14)具有用于利用激光照射废气的光纤(25)和用于 接收从所述光纤发射并透过所述废气的激光,所述排气路径由用于排放发动机(2)的废气的排气歧管(3),排气管(4),第一催化剂 装置(5),第二催化剂装置(6),消声器(7)和排气管(8)。 排气分析器(10)通过基于由检测器接收的激光测量其组分的浓度,温度等条件来分析废气。 传感器部分具有与排气路径的横截面形状匹配的形状的通孔(21)。 红外激光(R)从光纤(25)发射到通孔(21),并在穿过排气路径之后被检测器(26)接收。

    혼성 화상-동공 광학 재포맷기
    219.
    发明公开
    혼성 화상-동공 광학 재포맷기 审中-实审
    混合图像瞳孔光学重组器

    公开(公告)号:KR1020170103959A

    公开(公告)日:2017-09-13

    申请号:KR1020177022756

    申请日:2016-01-21

    CPC classification number: G01J3/024 G01J3/0208 G01J3/021 G02B27/30

    Abstract: 동공공간내에빔 슬라이싱을수행하고화상공간내의동공빔슬라이스로부터발생된입력소스의복제본을적층하는분광계와함께선택적사용을위한혼성화상-동공광학재포맷기및 방법이개시된다. 광학재포맷기는입력광을수용하고시준된빔을생성하는시준기와, 시준된빔을수용하고, 시준된빔의부분을재촬상된빔으로서시준기를향해재지향하고시준된빔의부분이통과되게허용하는제1 광학요소와, 재촬상빔을수용하고시준기및 제1 광학요소를향해재촬상빔을재차재지향하여, 제1 광학요소에의해시준기를향해재지향되지않은시준된빔의부분을포함하는출력빔을형성하는제2 광학요소를포함한다. 분광계시스템의입력광을재포맷하기위한재포맷기의사용, 및분광계디바이스의일부로서재포맷기의사용이또한개시된다.

    Abstract translation: 执行在光瞳切片空间和混合的图像用于与层压从图像切片空间瞳光学格式化基和方法在光瞳中产生的输入束源的复制品的光谱仪选择性地使用一个光束中公开。 光重新格式化组接收所述输入光准直仪和,并产生一个准直光束接收的准直光束,并使其朝向准直器被重定向穿过作为重新成像准直光束的一部分光束的准直光束的所述部分 第一接收光元件,重新摄像光束,以及准直器,并且第一和再次重定向到重新摄像光束朝向所述光学元件,所述输出包括不是由所述第一光学元件朝向所述准直器重定向准直光束的一部分 以及形成光束的第二光学元件。 用于重新格式化光谱仪的输入光学系统的使用重新格式化的,并且作为光谱测定装置的一部分在研究组格式用于也被公开。

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