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    • 143. 发明申请
    • A BEAM LINE FOR A SOURCE OF EXTREME ULTRAVIOLET (EUV) RADIATION
    • 用于超极紫外线(EUV)辐射源的束线
    • WO2011116897A1
    • 2011-09-29
    • PCT/EP2011/001303
    • 2011-03-16
    • ETH ZURICHABHARI RezaGIOVANNINI AndreaDIETERICH, Franz
    • ABHARI RezaGIOVANNINI AndreaDIETERICH, Franz
    • G03F7/20
    • G02B27/0006G01J1/0411G02B19/0095G03F7/70033G03F7/70916
    • The invention relates to a beam line (30) for a source of extreme ultraviolet (EUV) radiation, wherein a EUV-radiating plasma is generated by irradiating droplets of a suitable target material with a focused laser beam (5) at a plasma generation point, said beam line (30) comprising within a vacuum chamber (7): a beam delivery system (2) comprising a focusing lens and means for cooling and shielding said focusing lens; a EUV mirror collector (1), which collects and focuses the radiated EUV in a EUV beam (6) at an intermediate focus (IF); a beam dump (3) capable of damping at least a portion of the laser beam (5) without imposing a shadow on the collected and focused EUV beam (6); and an intermediate focus module (4) for blocking particles from leaving the vacuum chamber (7) with the EUV beam (6).
    • 本发明涉及一种用于远紫外线(EUV)辐射源的射束线(30),其中通过在等离子体产生点处照射聚焦激光束(5)的适当目标材料的液滴来产生EUV辐射等离子体 ,所述光束线(30)包括在真空室(7)内:束传送系统(2),包括聚焦透镜和用于冷却和屏蔽所述聚焦透镜的装置; EUV镜收集器(1),其以中间焦点(IF)收集并聚焦在EUV光束(6)中的辐射EUV; 能够阻挡激光束(5)的至少一部分而不在收集和聚焦的EUV光束(6)上施加阴影的光束收集器(3); 以及中间聚焦模块(4),用于阻挡颗粒与EUV光束(6)离开真空室(7)。
    • 145. 发明申请
    • TEST LIGHTING SYSTEM AND METHOD FOR TESTING A QUALITY OF A PHOTOVOLTAIC SYSTEM
    • 测试照明系统和方法用于测试的光伏发电系统质量
    • WO2011061225A3
    • 2011-08-18
    • PCT/EP2010067682
    • 2010-11-17
    • SIEMENS AGMUSCHAWECK JULIUS
    • MUSCHAWECK JULIUS
    • G01J1/08G01J1/04
    • G01J1/08F21S8/006G01J1/04G01J1/0411
    • The invention relates to a test lighting system (2) for testing a quality of a photovoltaic system (5). The test lighting system (2) comprises an artificial light source (27, 28), a primary optic (1, 1', 1'', 41) and a secondary optic (3) having a microlens array (19) implemented and aligned to each other so that the primary optic (1, 1', 1'', 41) collimates light (9) of the light source (27) within a predefined range of angle of incidence (a) and thereby uniformly illuminates an inlet side of the microlens array (19) of the secondary optic (3), and wherein the light (9') exiting from an outlet side of the microlens array (19) impinges on an illumination area within a defined test acceptance angle range and comprises uniform angle distribution. The invention further relates to a method for testing a quality of a photovoltaic system and a test device (80) having such a test lighting system (2).
    • 本发明涉及一种用于测试光伏系统(5)的质量的测试照明系统(2)。 测试照明系统(2)包括人造光源(27,28),一个初级光学系统(1,1“ 1' ”,41)和辅助光学装置(3)带有微透镜阵列(19),其上形成有对准,并且彼此, 该主透镜(1,1“ 1' ”)的光(9)的预定义Einstrahlwinkelbereichs的(a)准直的,因此入射在微透镜阵列的次级光学器件的侧面均匀地照明(19)内的光源(27)的(3)和从 微透镜阵列(19)射出的光(9“)的出口侧位于一个定义的测试接收角范围内的照明的区域,并且具有均匀的角度分布。 本发明还包括用于与这样的测试照明系统(2)测试光电系统的质量和一个测试装置(80)的方法。
    • 147. 发明申请
    • HIGH SPECTRAL RESOLUTION COLOR SENSOR USING NON-DISPERSIVE ELEMENTS
    • 高分辨率色彩传感器使用非散射元件
    • WO2011027260A1
    • 2011-03-10
    • PCT/IB2010/053809
    • 2010-08-25
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.GOMMANS, Hendrikus, H., P.KRIJN, Marcellinus, P., C., M.CORNELISSEN, Hugo, J.
    • GOMMANS, Hendrikus, H., P.KRIJN, Marcellinus, P., C., M.CORNELISSEN, Hugo, J.
    • G01J3/36G01J1/32G01J1/42G01S3/784H05B33/08
    • G01J3/36G01J1/04G01J1/0411G01J1/0437G01J1/0488G01J1/32G01J1/4228G01J2003/1213G01S3/784
    • The invention describes a light sensor (1) comprising a filter arrangement (11), which filter arrangement (11) comprises a number of spectral filters (F 1 , F 2 ,..., F n ) for filtering incident light (L), wherein a spectral filter (F 1 , F 2 ,..., F n ) is realized to pass a distinct component of the incident light (L), an aperture arrangement (12) for admitting a fraction of the incident light (L), and a sensor arrangement (13) realized to collect the admitted filtered light (L'), which sensor arrangement (13) comprises an array of sensor elements (130) for generating image-related signals (S, S 1 , S 2 ,..., S n ) and which sensor array is sub-divided into a number of regions (R 1 , R 2 ,..., R n ), wherein a region (R 1 , R 2 ,..., R n ) of the sensor array is allocated to a corresponding spectral filter (Fi, F2,..., Fn) such that an image-related signal (S) generated by a sensor element (130) of a particular region (R 1 , R 2 ,..., R n ) comprises information pertaining to the direction of origin and/or the spectral composition of the light passed by the corresponding spectral filter (F 1 , F 2 ,..., F n ). The invention further describes a light sensor device (10) for determining the direction of origin and/or the spectral composition of light (L) incident at the light sensor device (10), a method of collecting incident light (L), and a method of determining the direction of origin and/or the spectral composition of incident light (L).
    • 本发明描述了一种包括滤光器装置(11)的光传感器(1),该滤光器装置(11)包括用于滤光入射光(L)的多个光谱滤光器(F1,F2,...,Fn),其中 光谱滤波器(F1,F2,...,Fn)被实现为通过入射光(L)的不同分量,用于允许入射光(L)的一部分的孔径布置(12),以及传感器装置 (13)被实现以收集被允许的滤波光(L'),所述传感器装置(13)包括用于产生图像相关信号(S,S1,S2,...,Sn)的传感器元件阵列(130)和 该传感器阵列被细分为多个区域(R1,R2,...,Rn),其中传感器阵列的区域(R1,R2,...,Rn)被分配给相应的光谱滤波器 Fi,F2,...,Fn),使得由特定区域(R1,R2,...,Rn)的传感器元件(130)生成的图像相关信号(S)包括与 原点和/或光谱 l由相应的光谱滤光器(F1,F2,...,Fn)通过的光的组成。 本发明还描述了一种用于确定入射在光传感器装置(10)处的光(L)的原点方向和/或光谱组成的光传感器装置(10),收集入射光(L)的方法和 确定入射光的原点方向和/或光谱组成的方法(L)。
    • 149. 发明申请
    • OPTICAL SENSOR FOR VEHICLE
    • 车用光学传感器
    • WO2007123282A1
    • 2007-11-01
    • PCT/KR2006/001547
    • 2006-04-25
    • AUTO ELECTRONIC CORPORATIONKIM, Tae-JungKO, Jei-Hyoung
    • KIM, Tae-JungKO, Jei-Hyoung
    • G01J1/32
    • G01J1/4228G01J1/04G01J1/0411G01J1/0418
    • An optical sensor for a vehicle is provided, including: a cap which is made of a light- transmissive material and has a lens unit formed at a central portion of the cap to condense light; a left light-sensing unit which is provided on one side of a condensing area of the cap to generate a sensing signal equivalent to the amount of light passing through the cap; a right light-sensing unit which is provided on the other side of the condensing area of the cap and generates a sensing signal equivalent to the amount of light passing through the cap; and a partition wall which is made of a light-transmissive material and is provided between the left and right light-sensing units. The light passing through the cap is transmitted through the partition wall to the left or right light-sensing unit depending on the direction of the light, and the amount of the light is reduced after the light passes through the partition wall.
    • 本发明提供一种车辆用光学传感器,其特征在于,包括:由透光性材料构成的盖,其具有形成在所述盖的中央部的透镜单元,以使光聚光; 左光感测单元,其设置在所述盖的聚光区域的一侧,以产生与通过所述盖的光量相当的感测信号; 右侧光​​感测单元,其设置在所述盖的聚光区域的另一侧,并产生与通过所述盖的光量相当的感测信号; 以及由透光材料制成并设置在左右感光单元之间的分隔壁。 通过盖的光根据光的方向通过分隔壁传递到左或右光感测单元,并且在光通过分隔壁之后光量减少。
    • 150. 发明申请
    • DOME TYPE INFRARED RAY SENSOR
    • 半球型红外线传感器
    • WO2007081099A1
    • 2007-07-19
    • PCT/KR2006/005748
    • 2006-12-27
    • SEMYUNG ELECTRONICS CO., LTD.LEE, Hwa-Sook
    • LEE, Hwa-Sook
    • G01J1/02G01J5/02
    • G01J5/08G01J1/0271G01J1/04G01J1/0403G01J1/0411G01J5/0025G01J5/0205G01J5/04G01J5/047G01J5/0806G01J5/084G01J5/0843G08B13/191
    • This application relates to a dome type infrared ray sensor, which is not only simple and easy to assemble but is easy to install because a lens assembly having a lens unit whose lens is angle-adjustable in the vertical direction is mounted rotatably 360 ° left or right on the center of a base fixed on the ceiling so the directions can be easily and accurately adjusted with the said sensor assembled on the wall. The said sensor (1000) comprises a through hole (1130) of a predetermined diameter formed in the center of said base (1100); and a rotating plate (1300) mounted in a through hole (1130) of said base (1100) so as to rotate freely together with said lens assembly (1200), and combined with a lens unit holder (1210) of said lens assembly (1200) while inserted into said through hole (1130) on one side of said base (1100).
    • 本申请涉及一种圆顶式红外线传感器,其不仅简单易于组装,而且易于安装,因为具有透镜单元的透镜组件的透镜单元的透镜在垂直方向上可调角度可旋转360°左右 就在固定在天花板上的基座的中心,使得所述传感器组装在墙壁上可以容易且准确地调整方向。 所述传感器(1000)包括形成在所述基座(1100)的中心的预定直径的通孔(1130); 以及安装在所述基座(1100)的通孔(1130)中以便与所述透镜组件(1200)一起自由旋转的旋转板(1300),并与所述透镜组件的透镜单元保持器(1210)组合( 1200),同时插入到所述基座(1100)的一侧上的所述通孔(1130)中。