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公开(公告)号:KR101415808B1
公开(公告)日:2014-07-04
申请号:KR1020110110552
申请日:2011-10-27
Applicant: 캐논 가부시끼가이샤
CPC classification number: G01J3/502 , G01J3/02 , G01J3/0237 , G01J3/0248 , G01J3/04 , G01J3/20 , G01J3/28 , G01J3/2803 , G01J3/50 , G01J2003/2866
Abstract: 분광 측색 장치는 측벽을 포함하는 하우징을 포함한다. 측벽의 외측 면은 리니어 센서를 조정면에 부착한 상태에서, 이동됨으로써 리니어 센서의 위치를 조정할 수 있는 조정면이다. 리니어 센서는 조정면에 맞닿은 상태에서 하우징의 측벽에 의해 지지되고, 오목면 반사형 회절 소자에 의해 분광되어 개구부를 통과하는 광속을 수광한다. 조정면은 오목면 반사형 회절 소자의 로우랜드 원 중 리니어 센서가 수광하는 광속이 통과하는 부분에 있어서의 접선과 평행한다.
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公开(公告)号:KR1020100017086A
公开(公告)日:2010-02-16
申请号:KR1020097001454
申请日:2008-06-05
Applicant: 하마마츠 포토닉스 가부시키가이샤
IPC: G01J3/02
CPC classification number: G01J3/02 , G01J3/0208 , G01J3/0243 , G01J3/0259 , G01J3/04
Abstract: A spectroscopic module (1) comprises a body section (2) for transmitting lights (L1, L2), a spectroscopic section (3) for dispersing the light (L1) which has entered the body section (2) from a front face (2a) of the body section (2) and reflecting the dispersed light toward the front face (2a), a light detecting element (4) having a light detecting section (41) for detecting the light (L2) dispersed and reflected by the spectroscopic section (3) and electrically connected to wiring (9) formed on the front face (2a) of the body section (2) by face down bonding, and an underfill material (12), filled into a portion on the body section (2) side of the light detecting element (4), for transmitting the lights (L1, L2). The light detecting element (4) has a light passing hole (42) through which the light (L1) travelling to the spectroscopic section (3) passes, and a gathering portion (43) is formed at a rear face (4a) on the body section (2) side of the light detecting element (4) so as to surround a light emitting opening (42b) of the light passing hole (42).
Abstract translation: 分光模块(1)包括用于传输光(L1,L2)的主体部分(2),用于分散从前表面(2a)进入主体部分(2)的光(L1)的分光部分(3) ),并且将分散的光反射到前面(2a);光检测元件(4),具有光检测部(41),用于检测由分光部分分散和反射的光(L2) (3),并且通过面朝下接合与主体部分(2)的前表面(2a)上形成的布线(9)电连接;以及填充到主体部分(2)上的部分中的底部填充材料(12) 光检测元件(4)的一侧,用于传输光(L1,L2)。 光检测元件(4)具有通过分光部(3)的光(L1)通过的通光孔(42),在该光检测元件(4)的背面(4a)上形成有聚光部 所述光检测元件(4)的主体部分(2)侧围绕所述光通过孔(42)的发光开口(42b)。
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公开(公告)号:KR1020100017081A
公开(公告)日:2010-02-16
申请号:KR1020097000424
申请日:2008-06-05
Applicant: 하마마츠 포토닉스 가부시키가이샤
IPC: G01J3/02
CPC classification number: G01J3/02 , G01J3/0202 , G01J3/0243 , G01J3/0259 , G01J3/0262 , G01J3/0291 , G01J3/04 , G01J3/2803
Abstract: In this spectroscopic module (1), a light detecting element (4) has a light passing opening (4b) through which light entering a body section (2) passes. Therefore, the displacement of the relative positional relationship between the light passing opening (4b) and a light detecting section (4a) of the light detecting element (4) can be prevented from occurring. Moreover, an optical element (7) for guiding the light entering the body section (2) is placed in the light passing opening (4b). Consequently, light to enter the body section (2) can be certainly guided without part of the light to enter the body section (2) being blocked off by the edge on the light-entering side of the light passing opening (4b). Accordingly, this spectroscopic module (1) enables improved reliability.
Abstract translation: 在该分光模块(1)中,光检测元件(4)具有通过主体部(2)的光通过的光通过开口(4b)。 因此,可以防止光通过开口(4b)与光检测元件(4)的光检测部分(4a)之间的相对位置关系的位移发生。 此外,用于引导进入身体部分(2)的光的光学元件(7)被放置在光通过开口(4b)中。 因此,能够可靠地引导进入身体部(2)的光而不会使一部分光进入身体部(2)被光通过开口(4b)的光入射侧的边缘阻挡。 因此,该分光模块(1)能够提高可靠性。
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公开(公告)号:KR1020090006220A
公开(公告)日:2009-01-14
申请号:KR1020087029037
申请日:2007-04-23
Applicant: 코닝 인코포레이티드
Inventor: 콤스탁,로벨,이.,Ⅱ
CPC classification number: G01J3/18 , G01J3/02 , G01J3/0208 , G01J3/0259 , G01J3/04 , G01J3/2823 , G02B5/1852
Abstract: A monolithic Offner spectrometer is described herein as are various components like a diffraction grating and a slit all of which are manufactured by using a state-of-the-art diamond machining process. In one embodiment, a monolithic Offner spectrometer is directly manufactured by using a diamond machining process. In another embodiment, a monolithic Offner spectrometer is manufactured by using molds which are made by a diamond machining process. In yet another embodiment, a diffraction grating is directly manufactured by using a diamond machining process. In still yet another embodiment, a diffraction grating is manufactured by using a mold which is made by a diamond machining process. In yet another embodiment, a slit is directly manufactured by using a diamond machining process.
Abstract translation: 本文中描述了单片Offner光谱仪,其是各种部件,例如衍射光栅和狭缝,所有这些都是通过使用最先进的金刚石加工工艺制造的。 在一个实施例中,通过使用金刚石加工工艺直接制造单片Offner光谱仪。 在另一个实施例中,通过使用通过金刚石加工工艺制造的模具制造单片偏光谱仪。 在另一个实施例中,通过使用金刚石加工工艺直接制造衍射光栅。 在另一个实施例中,通过使用通过金刚石加工工艺制造的模具来制造衍射光栅。 在另一个实施例中,通过使用金刚石加工工艺直接制造狭缝。
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公开(公告)号:KR100432764B1
公开(公告)日:2004-09-13
申请号:KR1019980705070
申请日:1997-01-02
Applicant: 엘제이 레버러토리 엘.엘.씨
Inventor: 중,웨인,디. , 중,러셀,더블유. , 라우더밀크,알란,알.
CPC classification number: A61C19/10 , A61B2560/0233 , G01J3/02 , G01J3/0218 , G01J3/04 , G01J3/10 , G01J3/46 , G01J3/50 , G01J3/508 , G01J3/51 , G01J3/513 , G01J3/524 , G01N21/474 , G01N21/57
Abstract: Color measuring systems and methods are disclosed. Perimeter receiver fiber optics are spaced apart from a central source fiber optic and receive light reflected from the surface of the object being measured. Light from the perimeter fiber optics pass to a variety of filters. The system utilizes the perimeter receiver fiber optics to determine information regarding the height and angle of the probe with respect to the object being measured. Under processor control, the color measurement may be made at a predetermined height and angle. Various color spectral photometer arrangements are disclosed. Translucency, fluorescence and/or surface texture data also may be obtained. Audio feedback may be provided to guide operator use of the system. The probe may have a removable or shielded tip for contamination prevention.
Abstract translation: 公开了颜色测量系统和方法。 周边接收器光纤与中央源光纤间隔开并接收从被测物体表面反射的光。 来自周边光纤的光线通过各种滤光片。 该系统利用周边接收器光纤来确定关于探头相对于被测物体的高度和角度的信息。 在处理器控制下,颜色测量可以在预定的高度和角度下进行。 公开了各种颜色光谱光度计布置。 也可以获得半透明,荧光和/或表面纹理数据。 可以提供音频反馈以指导操作员使用该系统。 探头可能有一个可拆卸或屏蔽的尖端用于防止污染。
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公开(公告)号:KR1020020013061A
公开(公告)日:2002-02-20
申请号:KR1020000046419
申请日:2000-08-10
Applicant: 유일정공 주식회사
IPC: G02B27/10
CPC classification number: G01J3/2803 , G01J3/0237 , G01J3/04 , G01J3/20 , G01J3/36
Abstract: PURPOSE: A method for measuring spectrum using a multi slit, and a multi channel spectroscope using the same are provided, which can make it easy to control a position of optical components like a detection member and a slit, and also to control a position of a measured light. CONSTITUTION: The multi channel spectroscope(1) has an optical part(10) controlling a path and a position of a measured light(2) incident on the spectroscope, a detection part(20) measuring a wavelength and a path of the incident measured light, and a control part(30) generating measured data on the basis of the optical information measured from the detection part. The measured light from a light source(4) is incident on the inside of the spectroscope through a focusing lens(12a). Then, a focus of the incident light is focused on a multi slit(14), and the focus on the multi slit is detected by a CCD camera(12b), and then a focus controller(12c) checks whether the incident light is focused on the multi slit accurately. If the incident light is not focused accurately on the multi slit, the focus controller moves a focus lens(14a) by operating a movement unit(14d) prepared in the focus lens.
Abstract translation: 目的:提供一种使用多缝测量光谱的方法和使用该狭缝的多通道光谱仪,其可以容易地控制诸如检测部件和狭缝的光学部件的位置,并且还可以控制位置 一个测量的光。 构成:多通道光谱仪(1)具有控制入射到分光镜上的测量光(2)的路径和位置的光学部件(10),测量入射的入射波长和路径的检测部件(20) 光和控制部分(30),其根据从检测部分测量的光学信息产生测量数据。 来自光源(4)的测量光通过聚焦透镜(12a)入射到分光镜的内部。 然后,入射光的焦点聚焦在多狭缝(14)上,并且通过CCD照相机(12b)检测多缝的聚焦,然后聚焦控制器(12c)检查入射光是否聚焦 在多缝上准确。 如果入射光没有精确地聚焦在多狭缝上,则聚焦控制器通过操作在聚焦透镜中制备的移动单元(14d)来移动聚焦透镜(14a)。
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公开(公告)号:KR20180048725A
公开(公告)日:2018-05-10
申请号:KR20187007754
申请日:2016-06-14
CPC classification number: G01J3/0229 , G01J3/0202 , G01J3/0218 , G01J3/0221 , G01J3/0291 , G01J3/04 , G01J3/18 , G01J3/2803
Abstract: 개시된분광기(100)는, 하우징의벽(104)이제1, 제2 및제3 개구(106, 108, 110)를구비하는하우징(102), 제1 개구(106)에위치하며하우징(102)의내부에서빛이제1 부분의광로(LP1)를따라향하도록구성된입구슬릿(112), 제2 개구(108)에위치하며상기제1 부분의광로를따라상기입구슬릿으로부터빛을수광하고상기하우징의내부에서빛이제2 부분의광로(LP2)를따라향하도록구성된분산부재(114), 제3 개구(110)에위치하며상기제2 부분의광로를따라상기분산부재로부터빛을수광하도록구성된검출기(116)를포함한다. 상기검출기는제1 및제2 그룹의감광영역(118, 120)을포함할수 있다. 커버(105)는상기광로로부터상기제1 그룹의감광영역을분리하고, 상기제2 그룹의감광영역이상기광로에노출되도록위치하도록위치할수 있다.
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公开(公告)号:KR101546494B1
公开(公告)日:2015-08-21
申请号:KR1020140028992
申请日:2014-03-12
Applicant: 성균관대학교산학협력단
IPC: G01J3/04
Abstract: 백색 광원의 분광 스펙트럼 평탄 장치 및 방법에 관한 것으로, 광원; 광원에서 출력된 광을 분산시키는 분광 소자; 분광 소자에 결합되어 분광 소자의 각도를 조절하는 제 1 모터; 분광 소자에 의하여 분산된 빛의 세기의 감쇠율을 조정하는 ND 필터; ND 필터에 결합되어, ND 필터의 회전 상태를 조절하는 제 2 모터; ND 필터를 통과한 빛의 세기를 감쇠시키는 액정 소자; 액정 소자를 통과한 빛 중 특정 파장의 빛을 통과시키는 슬릿; 슬릿을 통과하여 대상체로 조사된 빛을 감지하는 광 검출기 및 광검출기를 통해 감지된 빛의 파장별 세기에 기초하여 제 1 모터 및 제 2 모터의 구동 상태를 조절하는 제어부를 포함한다.
Abstract translation: 本发明涉及一种用于平坦化白光源的光谱谱的装置和方法,包括:光源; 分散从光源发射的光的光谱元件; 连接到光谱元件以调节光谱元件的角度的第一马达; 调整由光谱元素分散的光的强度的衰减率的ND滤光器; 连接到ND滤波器的第二电动机,以调节ND滤波器的旋转状态; 液晶元件衰减通过ND滤光器的光的强度; 在通过液晶元件的光中透射具有特定波长的光的狭缝; 光检测器,检测穿过狭缝并照射到目标物体上的光; 以及控制单元,其基于由所述光检测器检测到的每个波长的波长的强度来控制所述第一和第二电动机的驱动。
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公开(公告)号:KR1020120036949A
公开(公告)日:2012-04-18
申请号:KR1020127000357
申请日:2010-05-25
Applicant: 씨8 메디센서스, 인크.
CPC classification number: G02B6/26 , G01J3/02 , G01J3/0205 , G01J3/0229 , G01J3/024 , G01J3/04 , G02B6/0076 , G02B6/10 , G02B27/0994 , G02B6/12011 , G02B6/12016
Abstract: 출력이 수직으로 얻갈린, 적층된 슬래브 도파로들로 구성된 장치가 개시된다. 적층된 도파로들에 대한 입력에서, 각 스래브들에 대한 입구가 거의 동일한 수직 평면에 놓인다. 입력에 이미지를 생성하는 지점은 출력에서 밝기의 실질적 손실 없이, 엇갈린 직사각형의 세트(set of staggered rectangles)로 변환될 것이고, 엇갈린 직사각형들은 분광기 장치에 대한 편리한 입력으로 제공될 수 있다. 슬릿 마스크가 그 확산에 평행한 분광기 장치의 평면에서 원하는 횡단 폭을 표시하기 위해 그 출력들을 공간적으로 필터링하도록 추가될 수 있다.
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公开(公告)号:KR1020110008155A
公开(公告)日:2011-01-26
申请号:KR1020107015310
申请日:2009-05-07
Applicant: 하마마츠 포토닉스 가부시키가이샤
CPC classification number: G01J3/0205 , G01J3/02 , G01J3/0208 , G01J3/0243 , G01J3/0259 , G01J3/0262 , G01J3/04 , G01J3/18 , G01J3/2803 , G02B7/027 , H01L31/18
Abstract: The present invention provides a highly reliable spectral module. When light L1 proceeding to a spectroscopic unit (4) passes through a light transmitting hole (50) in the spectral module (1) in accordance with the present invention, only the light having passed through a light entrance side unit (51) formed such as to become narrower toward a substrate (2) and entered a light exit side unit (52) formed such as to oppose a bottom face (5 1b) of the light entrance side unit (51) is emitted from a light exit opening (52a). Therefore, stray light M incident on a side face (51c) or bottom face (51b) of the light entrance side unit (51) is reflected to the side opposite to the light exit side unit (52) and thus is inhibited from entering the light exit side unit (52). Therefore, the reliability of the spectral module (1) can be improved.
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