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    • 31. 发明申请
    • Iris type light quantity adjusting device, lens device, and image-taking apparatus
    • 虹膜式光量调节装置,透镜装置和摄像装置
    • US20030007802A1
    • 2003-01-09
    • US10175467
    • 2002-06-19
    • Kazuhiro Noguchi
    • G03B009/10G02B009/08
    • F21V11/10G03B9/10
    • An iris type light quantity adjusting device is disclosed that includes: a plurality of shading blades, each shading blade pivoting around each shaft provided around a fixed opening in a fixed member. At least one shading blade has extended portion overlapping the other shading blade in order to keep overlapping order with the other shading blade that pivots around the shaft not adjacent to the shaft as a pivot of the abovementioned at least one shading blade. Each of the shading blades has one or none intersection between an outer edge of the shading blade at an outside in the direction orthogonal to the optical axis and a peripheral edge of the fixed opening within an entire pivoting range, and one of a pair of shading blades approaching from substantially opposite directions during pivoting to a closing direction has, at the tip thereof, a shape not overlapping the other shading blade in a closed position.
    • 公开了一种虹膜型光量调节装置,其包括:多个遮光叶片,每个遮光叶片围绕设置在固定构件中的固定开口周围的每个轴线枢转。 至少一个遮光叶片具有与另一个遮光叶片重叠的延伸部分,以便与另一个遮光叶片保持重叠的顺序,该遮光叶片围绕不与轴相邻的轴枢转,作为上述至少一个遮光叶片的枢轴。 阴影叶片中的每一个在遮光叶片的外边缘之间在与光轴正交的方向上的外侧和整个旋转范围内的固定开口的周边边缘之间具有一个或不相交,并且一对阴影 在枢转到关闭方向的过程中从基本上相反的方向接近的刀片在其顶端处具有与闭合位置不重叠的另一个阴影刀片的形状。
    • 33. 发明申请
    • METHOD OF MANUFACTURING PROTECTIVE LENS FOR DISPLAY
    • 制造保护用镜片的方法
    • US20020130428A1
    • 2002-09-19
    • US10141386
    • 2002-05-07
    • Wei Te Chung of Foxconn International, Inc.
    • Che-Yuan Hsu
    • B29D011/00B05D005/06G02B003/00G02B009/00G02B009/08
    • G02B3/00G02B5/201G02B5/223
    • A method for manufacturing a protective lens (10) for a display is disclosed. The protective lens includes a transparent glass substrate (12) and a piece of filtering film (14) attached to the glass substrate. A plurality of parallel ink stripes (16) being formed on a surface of the film is distributed symmetrically from middle to opposite sides of the film in a predetermined pattern. The method includes: providing a mold (20) having a plurality of recesses (24) formed by etching a surface of the mold; filling the recesses of the mold with ink; positioning an elastically deformable body (50) on the mold or attaching the ink in the recesses to the elastically deformable body; positioning the elastically deformable body on a membrane (60) to transfer the ink to the membrane, thus forming the film; attaching the film to a surface of the glass substrate.
    • 公开了一种用于制造用于显示器的保护透镜(10)的方法。 保护透镜包括透明玻璃基板(12)和安装在玻璃基板上的一片过滤膜(14)。 在膜的表面上形成的多个平行墨条(16)以预定图案从膜的中间到相对侧对称地分布。 该方法包括:提供具有通过蚀刻模具表面而形成的多个凹部(24)的模具(20) 用油墨填充模具的凹槽; 将可弹性变形的主体(50)定位在所述模具上或将所述凹部中的墨水附着到所述弹性变形体; 将弹性变形体定位在膜(60)上以将油墨转移到膜上,从而形成膜; 将膜附着到玻璃基板的表面。
    • 34. 发明申请
    • Zoom lens system
    • 变焦镜头系统
    • US20020089761A1
    • 2002-07-11
    • US09965087
    • 2001-09-27
    • Masatoshi Hirose
    • G02B015/14G02B003/00G02B009/00G02B009/08
    • G02B13/22G02B15/177
    • A zoom lens system has, sequentially from enlarging side to reducing side, first lens unit having negative optical power; second lens unit having positive optical power, the second lens unit having a positive lens element positioned nearest the reducing side; diaphragm; third lens unit having positive optical power, the third lens unit comprising, sequentially from enlarging side to reducing side, a cemented lens unit having a positive lens element and a negative lens element with a concave surface facing the reducing side, and a positive lens element having a concave surface facing the reducing side; fourth lens unit having negative optical power; and fifth lens unit having positive optical power. The second, third, and fourth lens units move from enlarging side to reducing side when zooming from telephoto end to wide angle end. The zoom lens system satisfies a predetermined condition.
    • 变焦透镜系统从扩大侧到减光侧依次具有负光学功率的第一透镜单元; 具有正光焦度的第二透镜单元,所述第二透镜单元具有位于最靠近所述还原侧的正透镜元件; 隔膜 具有正光焦度的第三透镜单元,第三透镜​​单元从扩大侧依次包括具有正透镜元件和具有面向减光侧的凹面的负透镜元件的胶合透镜单元,以及正透镜元件 具有面向所述还原侧的凹面; 具有负光焦度的第四透镜单元; 和具有正光焦度的第五透镜单元。 当从长焦端到广角端放大时,第二,第三和第四透镜单元从放大侧移动到减小侧。 变焦透镜系统满足预定条件。
    • 37. 发明申请
    • Zoom lens, camera and portable information terminal device
    • 变焦镜头,相机和便携式信息终端设备
    • US20020024745A1
    • 2002-02-28
    • US09851388
    • 2001-05-09
    • RICOH COMPANY, LTD.
    • Kazuyasu Ohashi
    • G02B015/14G02B009/00G02B009/08
    • G02B15/173
    • A zoom lens comprises a first lens group having a positive focal length, a second lens group having a negative focal length, an aperture stop member, a third lens group having a positive focal length, disposed in the stated order from an object. The first lens group includes a 1-1 negative meniscus lens having a convex surface facing the object, a positive 1-2 lens having a surface having a large curvature facing the object and joined to the 1-1 lens, and a positive meniscus 1-3 lens having a convex surface facing the object, disposed in the stated order from the object. A reflection preventing part is formed on a surface at which the 1-1 lens and the 1-2 lens are joined.
    • 变焦透镜包括具有正焦距的第一透镜组,具有负焦距的第二透镜组,具有正焦距的孔径光阑部件,具有正焦距的第三透镜组,从物体按照所述顺序设置。 第一透镜组包括具有面向物体的凸表面的1-1负弯月形透镜,具有面向物体的具有大曲率的表面并且连接到1-1透镜的正1-2透镜,以及正弯月面1 -3透镜,其具有面向物体的凸形表面,从物体按照所述顺序设置。 在1-1透镜和1-2透镜接合的表面上形成防反射部分。
    • 38. 发明申请
    • Gaussian lens
    • 高斯镜头
    • US20010036022A1
    • 2001-11-01
    • US09800662
    • 2001-03-08
    • Akiko Takatsuki
    • G02B009/62G02B009/00G02B009/08
    • G02B9/62
    • A Gaussian lens having no more than six lens elements of refractive power is formed of, in order from the object side: a first lens element which is biconvex, a second lens element which is a positive meniscus lens with its convex surface on the object side, a third lens element which is biconcave, a stop, a joined lens formed of a fourth lens element which is biconcave that is joined to a fifth lens element which is biconvex; and a sixth lens element having positive refractive power. Specified conditions are satisfied in order to provide a compact lens having an f-number FNO of 1.44 or less, an image angle 2null of 23.8 degrees or more, and wherein the various aberrations are favorably corrected. The Gaussian lens of the invention is intended for mounting in monitor cameras.
    • 具有折射能力不超过六个的透镜元件的高斯透镜从物体侧依次形成:第一透镜元件是双凸面,第二透镜元件是其正面弯曲透镜,其凸面在物体侧 作为双凹槽的第三透镜元件,止挡件,由作为双凸部的第五透镜元件接合的双凹部的第四透镜元件形成的接合透镜; 以及具有正屈光力的第六透镜元件。 满足规定的条件以提供具有1.44以下的f数FNO,23μm以上的图像角度2μm的紧凑型透镜,并且其中各种像差被有利地校正。 本发明的高斯透镜旨在安装在监视摄像机中。
    • 39. 发明申请
    • Optical system for crystallization tool
    • 结晶工具光学系统
    • US20010005286A1
    • 2001-06-28
    • US09746639
    • 2000-12-21
    • Kag Hyeon LeeDoh Hoon KimSang Soo ChoiHai Bin ChungDae Yong Kim
    • G02B009/00G02B009/08
    • H01L21/02686G02B5/3083G02B7/04G02B13/143G02B26/0891G02B27/28H01L21/2026
    • The present invention provides an optical system for crystallization tool for producing an crystallized silicon thin film by using an excimer laser as a light source to crystallize an amorphous silicon thin film through a fine stripped pattern, including 1st to 10th lenses sequentially arranged along an optical axis from said excimer laser, wherein the 1st lens having both side made convex; the 2nd lens having one side made convex toward the light source and the other side concave; the 3rd lens having one side made convex toward the light source and the other side concave; the 4th lens having both side concave; the 5th lens having both side made convex; the 6th lens having one side concave toward the light source and the other side made convex; the 7th lens having one side made convex toward the light source and the other side concave; the 8th lens having both side made convex; the 9th lens having one side made convex toward the light source and the other side concave; and the 10th lens having both side made convex.
    • 本发明提供了一种用于通过使用准分子激光器作为光源来生产结晶硅薄膜的光学系统,以通过精细剥离图案使非晶硅薄膜结晶,包括沿着光轴顺序排列的第1至第10透镜 从所述准分子激光器,其中所述第一透镜具有两个侧面凸起; 第二透镜,其一侧朝向光源凸出,另一侧为凹面; 第三透镜的一侧朝向光源凸出,另一侧凹入; 第四透镜具有两侧凹面; 第五透镜具有两侧凸起; 第六透镜的一侧朝向光源凹入,另一侧为凸面; 第七透镜的一侧朝向光源凸出,另一侧为凹面; 第八透镜具有两侧凸起; 第九透镜的一侧朝向光源凸出,另一侧为凹面; 并且具有两个侧面凸起的第十个透镜。
    • 40. 发明申请
    • Iris diaphragm device
    • 虹膜隔膜装置
    • US20040174616A1
    • 2004-09-09
    • US10791404
    • 2004-03-02
    • Leica Microsystems Wetzlar GmbH
    • Stefan BambergerAlbrecht Weiss
    • G02B009/08G03B007/093G03B007/083G02B009/00
    • G03B9/22G02B5/005G02B21/06
    • An iris diaphragm device for a microscope includes an iris diaphragm having a stationary mount ring, a rotatable adjusting ring, and a plurality of blades. The plurality of blades form a diaphragm opening, which is steplessly adjustable, by rotation of the adjusting ring, between a maximum and a minimum opening size. A coupling linkage is connected to the adjusting ring and includes two levers. An actuation element drives the coupling linkage. A closure element is arranged on one of the levers in a way such that after a predefined size of the diaphragm opening has been established, a further actuation of the actuation element causes the closure element to pivot and cover the diaphragm opening.
    • 用于显微镜的虹膜隔膜装置包括具有固定安装环,可旋转调节环和多个叶片的虹膜隔膜。 多个叶片通过调节环的旋转在最大和最小开口尺寸之间形成可无级调节的隔膜开口。 联轴器连接到调节环,并包括两个杠杆。 致动元件驱动联接器。 闭合元件以这样的方式布置在其中一个杆上,使得在已经建立了隔膜开口的预定尺寸之后,致动元件的进一步致动导致封闭元件枢转并覆盖隔膜开口。