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    • 1. 发明专利
    • Image acquisition device
    • 图像采集设备
    • JP2013090230A
    • 2013-05-13
    • JP2011230443
    • 2011-10-20
    • Topcon Corp株式会社トプコン
    • OTOMO FUMIOOTANI HITOSHIMOMIUCHI MASAYUKIOSARAGI KAZUKI
    • H04N9/04G01C11/06G06T3/00H04N5/225
    • PROBLEM TO BE SOLVED: To provide an image acquisition device capable of acquiring a real image and a light spectrum image by a single camera.SOLUTION: The image acquisition device comprises: an optical characteristic change unit 15; an optical system 45 which includes an objective lens 47 and guides light from the objective lens to the optical characteristic change unit; and an imaging device 52 which receives light having passed through the optical characteristic change unit. The optical characteristic change unit comprises plural division units and is configured to selectively dispose one of the division units to an optical path. The division unit comprises: a first region which selects a specific wavelength from light from the optical system and a second region which prohibits change of the optical characteristic of light from the optical system.
    • 要解决的问题:提供能够通过单个相机获取实际图像和光谱图像的图像获取装置。 解决方案:图像采集装置包括:光学特性改变单元15; 光学系统45,其包括物镜47并将来自物镜的光引导到光学特性改变单元; 以及摄像装置52,其接收通过了光学特性变化部的光。 光学特性改变单元包括多个分割单元,并且被配置为选择性地将一个分割单元配置到光路。 分割单元包括:从光学系统的光中选择特定波长的第一区域和禁止来自光学系统的光的光学特性变化的第二区域。 版权所有(C)2013,JPO&INPIT
    • 2. 发明专利
    • Joining method of opttical components, optical component integrated structure, and laser oscillator
    • 光学元件,光学元件集成结构和激光振荡器的接合方法
    • JP2008016833A
    • 2008-01-24
    • JP2007150335
    • 2007-06-06
    • Topcon Corp株式会社トプコン
    • KONO TAIZOGOTO YOSHIAKIMOMIUCHI MASAYUKI
    • H01S3/094G02F1/37
    • PROBLEM TO BE SOLVED: To provide a method for integrating an optical component that is not, which is not degraded by high-output laser beams and high temperature, and also to provide a laser oscillator made of integrated multiple optical components. SOLUTION: The joining method of optical components comprises steps of: forming one dielectric thin film on the junction surface of one optical component 8; forming the other dielectric thin film on the junction surface of the other optical component 9; and joining the one dielectric thin film to the other dielectric thin film without dispersion of light. Predetermined optical wavelength properties are obtained by joining the other dielectric thin film to the one dielectric thin film. COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供一种不会被高输出激光束和高温劣化的光学部件的集成的方法,并且还提供由集成的多个光学部件制成的激光振荡器。 解决方案:光学部件的接合方法包括以下步骤:在一个光学部件8的接合表面上形成一个电介质薄膜; 在另一个光学部件9的接合表面上形成另一个电介质薄膜; 并且在不分散光的情况下将一个电介质薄膜连接到另一个电介质薄膜。 通过将另一个电介质薄膜与一个电介质薄膜接合来获得预定的光学波长特性。 版权所有(C)2008,JPO&INPIT
    • 3. 发明专利
    • Solid-state laser device
    • 固态激光器件
    • JP2006196866A
    • 2006-07-27
    • JP2005268846
    • 2005-09-15
    • Topcon Corp株式会社トプコン
    • KONO TAIZOMOMIUCHI MASAYUKIGOTO YOSHIAKI
    • H01S3/109G02F1/35
    • H01S3/082H01S3/07H01S3/08086H01S3/09415H01S3/105H01S3/109H01S3/11H01S3/1611H01S3/1673
    • PROBLEM TO BE SOLVED: To provide a solid-state laser device which can project laser beams with a plurality of wavelengths by using a simple mechanism. SOLUTION: A solid-state laser device comprises a first optical axis 20 and a second optical axis 29 which have a common optical axis portion 20a and are separated by an optical axis separating means 34, a first resonator 30 formed on the first optical axis, a second resonator 37 formed on the second optical axis, a first light emitter 27 for allowing an excitation light λ to enter the first resonator, a second light emitter 35 for allowing an excitation light to enter the second resonator, a wavelength conversion portion 25 provided on the common optical axis portion, and an output mirror 26 provided on the exit side of the wavelength conversion portion. The wavelength conversion portion has a plurality of wavelength conversion optical crystals 25a, 25b, and 25c. The output mirror has a plurality of individual output mirrors 26a, 26b, 26c, 26d, and 26e. The wavelength of a laser beam to be projected is determined by selection of turning-on or turning-off of the first light emitter and the second light emitter, and also by selection of the wavelength conversion optical crystals and the individual output mirrors depending on turning-on and turning-off of the first light emitter and the second light emitter. COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供一种通过使用简单的机构来投射具有多个波长的激光束的固态激光装置。 解决方案:固体激光装置包括第一光轴20和第二光轴29,第一光轴20和第二光轴29具有共同的光轴部分20a并由光轴分离装置34分开,第一谐振器30形成在第一光轴 光轴,形成在第二光轴上的第二谐振器37,用于使激发光λ进入第一谐振器的第一光发射器27,用于使激发光进入第二谐振器的第二发光器35,波长转换 设置在公共光轴部分上的部分25和设置在波长转换部分的出射侧的输出反射镜26。 波长转换部分具有多个波长转换光学晶体25a,25b和25c。 输出反射镜具有多个单独的输出反射镜26a,26b,26c,26d和26e。 要投射的激光束的波长通过选择第一光发射器和第二光发射器的导通或关断来确定,并且还通过根据转动选择波长转换光学晶体和各个输出反射镜来确定 并且关闭第一光发射器和第二光发射器。 版权所有(C)2006,JPO&NCIPI
    • 4. 发明专利
    • Ophthalmologic apparatus
    • 眼科手术
    • JP2005334232A
    • 2005-12-08
    • JP2004156093
    • 2004-05-26
    • Topcon Corp株式会社トプコン
    • HARUMOTO YUKOKOIZUMI HIROSHIMOMIUCHI MASAYUKIOYAGI WATARU
    • A61F9/007A61B18/20A61F9/00A61F9/008
    • A61F9/008A61F9/0079A61F2009/00872
    • PROBLEM TO BE SOLVED: To realize a higher level of an optical capacity by increasing the degree of freedom of designing an optical system. SOLUTION: An ophthalmologic apparatus includes a main body of the ophthalmologic apparatus (12 and 212) and a light source unit (14 and 114). The above main body of the ophthalmologic apparatus (12 and 212) includes an illumination means (16) to illuminate a subject eye (E) with the illumination light and an observation means (18 and 218) to observe the reflected light from the subject eye (E). The above light source unit (14 and 114) includes a light source means (40 and 140) to generate the treatment light having a subscribed wavelength, a light guiding means (42 and 142) which guides the treatment light generated by the above light source means (40 and 140) to a desired region of the above subject eye (E) to illuminate, and a housing (52). The above light source means (40 and 140) and the above light guiding means (42 and 142) are integrally contained in the above housing (52) and the treatment light enters into the above light guiding means (42 and 142) directly from the above light source means (40 and 140). COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:通过增加设计光学系统的自由度来实现更高水平的光学容量。 解决方案:眼科装置包括眼科装置(12和212)的主体和光源单元(14和114)。 上述眼科装置(12,212)的主体包括用照明光照射被检眼(E)的照明装置(16)和观察装置(18,218),以观察来自被检眼的反射光 (E)。 上述光源单元(14和114)包括用于产生具有预定波长的处理光的光源装置(40和140),引导由上述光源产生的处理光的导光装置(42和142) 用于照亮上述被摄体(E)的所需区域的装置(40和140)以及壳体(52)。 上述光源装置(40和140)和上述导光装置(42和142)一体地容纳在上述壳体(52)中,并且处理光直接从上述光源装置(42和142)进入上述导光装置 上述光源装置(40和140)。 版权所有(C)2006,JPO&NCIPI
    • 5. 发明专利
    • Solid state laser apparatus
    • 固态激光装置
    • JP2005333065A
    • 2005-12-02
    • JP2004151970
    • 2004-05-21
    • Topcon Corp株式会社トプコン
    • KONO TAIZOMOMIUCHI MASAYUKIGOTO YOSHIAKI
    • G02F1/37H01S3/109H01S3/23
    • PROBLEM TO BE SOLVED: To provide a solid state laser apparatus radiating laser beams of a plurality of wavelengths, maintaining low-cost and high-accuracy characteristics and improving radiation efficiency of laser beams. SOLUTION: The solid state laser apparatus is provided with: a first optical resonator having a first optical axis 24; a second optical resonator having a second optical axis; a third optical resonator having a third optical axis 30; an optical path switching means 37 formed on an intersecting part between the second optical axis 32 and the third optical axis 30; a first wavelength transforming optical member 28 arranged on the first optical axis 24 and the second optical axis 32; and a second wavelength transforming optical member 38 arranged on the third optical axis 30 passing the optical path switching means 28. In the solid state laser apparatus, a laser beam of sum frequency is radiated by the first wavelength transforming optical member in a state of transmitting a second basic wave oscillated from the second optical resonator, and in a state of the optical path switching means transmitting a first basic wave oscillated from the first optical resonator, a laser beam of secondary higher harmonic is projected by a third basic wave oscillated from the third optical resonator and the second wavelength transforming optical member 38. COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供一种照射多个波长的激光束的固态激光装置,保持低成本和高精度特性并提高激光束的辐射效率。 固体激光装置设置有:具有第一光轴24的第一光谐振器; 具有第二光轴的第二光谐振器; 具有第三光轴30的第三光谐振器; 形成在第二光轴32和第三光轴30之间的交叉部分上的光路切换装置37; 布置在第一光轴24和第二光轴32上的第一波长变换光学构件28; 以及布置在通过光路切换装置28的第三光轴30上的第二波长转换光学部件38.在固态激光装置中,以第一波长转换光学部件的透射状态辐射和频激光, 从所述第二光谐振器振荡的第二基本波,并且在所述光路切换装置发送从所述第一光谐振器振荡的第一基波的状态下,由所述第二光谐振器振荡的第三基波投射次级高次谐波的激光束, 第三光学谐振器和第二波长转换光学构件38.版权所有:(C)2006,JPO&NCIPI
    • 9. 发明专利
    • Interference microscope and measuring apparatus
    • 干涉显微镜和测量装置
    • JP2011038829A
    • 2011-02-24
    • JP2009184584
    • 2009-08-07
    • Topcon Corp株式会社トプコン
    • OTOMO FUMIONUNOKAWA KAZUOMOMIUCHI MASAYUKIISOZAKI HISASHIMIYAGAWA KAZUHIRO
    • G01B9/02G01B9/04G01B11/24G02B21/06
    • G01B9/02032G01B9/02007G01B9/0209G01B9/04G01B11/2441G01B2290/45G01N21/9501G02B21/0016
    • PROBLEM TO BE SOLVED: To provide an interference microscope and a measuring apparatus, capable of measuring the surface shape of a sample (object to be measured) such as a wafer just by slightly inclining a reference mirror by a simple structure, identify accurate coordinate positions of dirt, pole pieces, etc., transmit and receive their accurate data to a charged particle beam device such as an electronic microscope and an image drawing device, and contribute more to an improvement in workability.
      SOLUTION: In the interference microscope and the measuring apparatus wherein the sample such as the wafer is irradiated with a laser beam, and the surface inside of the sample is observed and inspected by using an interferometer, a reference optical path for guiding light between a beam splitter and the reference mirror is provided, and a measuring optical path for guiding light between the beam splitter and the sample is also provided, and thereby an optical light path difference is made between the reference optical path and the measuring optical path. Furthermore, interference fringes are formed in a detecting means by slightly inclining the reference mirror by a minute amount.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题为了提供一种干涉显微镜和测量装置,其能够通过简单的结构轻微倾斜参考反射镜来测量诸如晶片的样品(待测物体)的表面形状,识别 污垢,极片等的精确坐标位置,将其准确的数据传送到电子显微镜和图像绘制装置等带电粒子束装置,并且对于可操作性的提高作出更大的贡献。 解决方案:在干涉显微镜和其中用激光照射诸如晶片的样品的测量装置中,并且通过使用干涉仪观察和检查样品内部的表面,用于引导光的参考光路 提供了分束器和参考反射镜之间,并且还提供了用于在分束器和样品之间引导光的测量光路,从而在参考光路和测量光路之间形成光学光程差。 此外,通过将参考镜稍微倾斜微小的量,在检测装置中形成干涉条纹。 版权所有(C)2011,JPO&INPIT
    • 10. 发明专利
    • Laser system and distance measuring instrument
    • 激光系统和距离测量仪器
    • JP2008249658A
    • 2008-10-16
    • JP2007094550
    • 2007-03-30
    • Topcon Corp株式会社トプコン
    • KONO TAIZOMOMIUCHI MASAYUKI
    • G01S17/10
    • PROBLEM TO BE SOLVED: To compactify a system for generation a laser beam, and to reduce a cost, in a distance measuring instrument using the laser beam. SOLUTION: A nonlinear crystal 107 or transparent medium member 108 is selectively arranged in an optical axis in an output side of a laser amplifying part 103. The laser beam output from the laser amplifying part 103 is selected by selecting the transparent medium member 108, and a higher-harmonic laser beam output from the laser amplifying part 103 is selected by selecting the nonlinear crystal 107. The system is compactified and the cost is reduced because two wavelengths are selectively output, using a laser oscillator 101 and the laser amplifying part 103 in common. COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:在使用激光束的距离测量仪器中,压实产生激光束的系统并降低成本。 解决方案:在激光放大部分103的输出侧中的光轴中选择性地布置非线性晶体107或透明介质构件108.从激光放大部分103输出的激光束通过选择透明介质构件 108,并且通过选择非线性晶体107来选择从激光放大部分103输出的高次谐波激光束。由于使用激光振荡器101和激光放大器选择性地输出两个波长,系统被压缩并且成本降低 第103部分共同点。 版权所有(C)2009,JPO&INPIT