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    • 1. 发明授权
    • Coarse and fine drives for an objective
    • 粗略和精细的驱动器为目标
    • US5630771A
    • 1997-05-20
    • US406412
    • 1995-03-20
    • Uwe WeberWerner Fl other
    • Uwe WeberWerner Fl other
    • G02B7/04G02B7/08F16H57/08
    • G02B7/04
    • The invention is directed to an arrangement for displacing the parts of an objective with at least one adjusting ring 6. A fine adjusting ring 40 is also provided and there is no switchover device which must be actuated by the operator. The fine adjusting ring 40 is at standstill when it is not actively rotated by the operator. A coarse adjusting ring 6 is rotatably journalled in the housing 10 of an objective. A transmission or gearing for suitably fine adjusting this coarse adjusting ring 6 includes a sun gear wheel 1 mounted fixedly on the objective housing 10, a fine adjusting ring 40 which includes a shaft pin 4 on which planetary gear wheels 2 are journalled and an output gear wheel 3 rotatably mounted on the coarse adjusting ring 6 via a slip clutch 5.
    • 本发明涉及一种用至少一个调节环6来移动物镜的部件的装置。还提供了微调环40,并且没有必须由操作者致动的切换装置。 当调节环40不被操作者主动地旋转时,微调环40处于静止状态。 粗调节环6可旋转地轴颈安装在物镜的壳体10中。 用于适当调整该粗调节环6的传动装置和齿轮装置包括:固定地安装在物镜壳体10上的太阳齿轮1,一个细调节环40,其包括轴销4,行星齿轮2被轴颈安装在轴销4上, 轮3通过滑动离合器5可旋转地安装在粗调环6上。
    • 2. 发明授权
    • Device for equalizing the back foci of objective and camera
    • 用于均衡物镜和相机背部焦点的装置
    • US07236310B2
    • 2007-06-26
    • US10405682
    • 2003-04-01
    • Uwe WeberGebhard Müller
    • Uwe WeberGebhard Müller
    • G02B15/14G02B7/02
    • G02B27/40G02B7/028G02B27/62H04N5/2254H04N5/23212
    • A device for adjusting the back foci of an objective and a camera to one another has a housing by which a graphic pattern and an optics are mounted at a predetermined distance F′ from each other. The temperature compensation for the distance F′ is constant to ±2 mm for a temperature change of Delta 20° Celsius. The device also includes an apparatus for matching the back foci of an objective and a camera to each other, in which a housing has a fastening mechanism for fastening an object-side end of the objective and a graphic pattern is arranged in the housing on the end of the device opposite the fastening mechanism. The invention also includes a method for equalizing the back foci of an objective and camera using specific steps.
    • 用于将物镜和相机的背焦点彼此调整的装置具有外壳,通过该外壳,图形图案和光学元件彼此以预定距离F'安装。 对于20°C的温度变化,距离F'的温度补偿恒定为±2 mm。 该装置还包括用于将物镜的后焦点和相机彼此匹配的装置,其中壳体具有用于紧固物镜的物体侧端部的紧固机构,并且在壳体中布置有图形图案 设备的端部与紧固机构相对。 本发明还包括使用特定步骤均衡物镜和照相机的后焦点的方法。
    • 3. 发明授权
    • Objective for a movie camera
    • 目的是为电影摄影机
    • US06717742B2
    • 2004-04-06
    • US10404313
    • 2003-03-31
    • Uwe Weber
    • Uwe Weber
    • G02B1514
    • G03B3/00
    • An objective for a movie camera for digital cinematography comprises a cylindrical main barrel with a bayonet or K mount, an inner tube, fixed optical elements, adjustable optical sliding elements and drive rings with scales for adjusting the optical sliding elements that are mounted rotatably in the axial direction on the main barrel. The objective also comprises an iris diaphragm with a diaphragm ring rotating on the main barrel, an internal focusing system and a back focus correction device. The inner tube is mounted on the main barrel in a fashion displaceable along the optical axis for the purpose of back focus correction by means of the back focus correction device. The fixed optical elements, the iris diaphragm and sliding holders for holding the adjustable optical sliding elements are inserted into the inner tube.
    • 用于数字摄影的电影摄影机的目的包括具有卡口或K安装座的圆柱形主镜筒,内管,固定光学元件,可调节的光学滑动元件和带有用于调整可旋转地安装在所述光学滑动元件中的光学滑动元件的标尺的驱动环。 主轴上的轴向。 该目的还包括具有在主镜筒上旋转的光圈环的虹膜光阑,内聚焦系统和后聚焦校正装置。 内管以可沿着光轴移动的方式安装在主镜筒上,用于通过后聚焦校正装置进行后聚焦校正。 固定光学元件,用于保持可调光学滑动元件的光圈隔膜和滑动保持器插入到内管中。
    • 4. 发明授权
    • Method for identifying and locating markers in a 3D volume data set
    • 用于识别和定位3D体积数据集中的标记的方法
    • US06359960B1
    • 2002-03-19
    • US09630968
    • 2000-08-02
    • Eric WahlUwe WeberNorbert RahnRainer Graumann
    • Eric WahlUwe WeberNorbert RahnRainer Graumann
    • A61B603
    • G06T7/66A61B6/12G06T7/70G06T2207/30016
    • In a method for automatically determining coordinates, relative to a reference coordinate system, of markers contained in a 3D volume data set of a subject provided with markers imaged in 2D projections of the 3D volume data set are detected, the centers of gravity of the imaged markers are determined, and back projection straight lines through the markers are established. The intersection points of the back projection straight lines with each other are identified, or the points with the smallest distance from one another on different back projection straight lines are determined if the back projection lines arc skewed. Spatially limited areas are identified, which contain an accumulation of intersection points of back projection straight lines or an accumulation of points with the smallest distance from one another. The coordinates of the centers of gravity of these spatially limited areas are calculated and are used as the coordinates for the respective markers.
    • 在用于自动确定相对于参考坐标系的坐标的方法中,检测包含在设置有3D体积数据集的2D投影中的标记的受试者的3D体积数据集中的标记的坐标,所成像的重心 确定标记,建立通过标记的背投直线。 识别背投直线的交点,或者如果背投影线歪斜,则确定在不同背投直线上彼此之间具有最小距离的点。 识别空间有限的区域,其包含背投影直线的交叉点的累积或彼此具有最小距离的点的累积。 计算这些空间受限区域的重心的坐标,并将其用作相应标记的坐标。
    • 5. 发明申请
    • CAMERA LENS ASSEMBLY AND ADAPTATION SET
    • 相机镜头组件和适配器
    • US20110249966A1
    • 2011-10-13
    • US13023972
    • 2011-02-09
    • Uwe WeberHolger SehrHelmut Lenhof
    • Uwe WeberHolger SehrHelmut Lenhof
    • G03B17/00
    • G03B17/02G03B17/12G03B17/14
    • The camera lens assembly (1) of the invention includes: (1) a focusing mount (2) having: (a) a defined distance from the camera-side contact surface (3) of the focusing mount (2) to the camera image plane (BE) of XAF-BE≧57.9 mm when the camera lens assembly (1) is attached to a camera (4); (b) a receiving lug (5) having an outer diameter of DAZ, outer≦52 mm for receiving an adapter ring (6); and, (c) optical elements (15), which are arranged in the focusing mount (2), and define an optical axis (A); (2) the adapter ring (6) having a first planar surface (9) and a second planar surface (10), which are parallel to each other; the first planar surface (9) being in contact engagement against the camera-side contact surface (3) of the focus mount (2) and the second planar surface (10) being in contact engagement with a lens-side contact surface (11) of the lens mount (8); (3) attachment element (7) for attaching the adapter ring (6) to the focusing mount (2); (4) the lens mount (8) having: (a) a tubular-shaped lens mount socket; and, (b) lens mount attachment elements (13), which are configured to coact with the camera mount attachment elements (14) of a camera (4); and, (5) attachment elements (12) for attaching the lens mount (8) to the adapter ring (6).
    • 本发明的相机镜头组件(1)包括:(1)聚焦装置(2),其具有:(a)从聚焦装置(2)的相机侧接触表面(3)到相机图像的限定距离 当相机镜头组件(1)附接到相机(4)时,XAF-BE的平面(BE)≥57.9mm; (b)具有DAZ外径的接收凸耳(5),用于接收适配器环(6)的外径为52mm。 和(c)布置在聚焦装置(2)中并限定光轴(A)的光学元件(15); (2)具有彼此平行的第一平面(9)和第二平面(10)的接合环(6); 所述第一平坦表面(9)与所述聚焦装置(2)的相机侧接触表面(3)接触接合,并且所述第二平面表面(10)与透镜侧接触表面(11)接触接合, 的透镜座(8); (3)用于将适配环(6)附接到聚焦装置(2)的附接元件(7); (4)透镜座(8)具有:(a)管状透镜安装座; 以及(b)透镜安装附接元件(13),其被构造成与相机(4)的相机安装附件元件(14)共同作用; 和(5)用于将透镜支架(8)附接到适配器环(6)的附接元件(12)。
    • 6. 发明申请
    • Apparatus for the thermal compensation of an optical system
    • 光学系统热补偿装置
    • US20070097529A1
    • 2007-05-03
    • US11542771
    • 2006-10-04
    • Uwe WeberKarl-Heinz RoesnerHans-Joachim Weippert
    • Uwe WeberKarl-Heinz RoesnerHans-Joachim Weippert
    • G02B7/02
    • G02B7/028
    • An apparatus for the thermal compensation of an optical system is disclosed. The apparatus comprises a housing, at least one optical element adapted to be displaced relative to the housing, and at least one piston-and-cylinder unit positioned directly between the housing and the optical element. The piston-and-cylinder unit acts on the position of the optical element within the housing. It contains a fluid. The coefficients of volumetric thermal expansion of the piston, the cylinder and the fluid are selected such that for a predetermined change in temperature of the apparatus a defined relative displacement between the piston and the cylinder takes place which compensates the change of the optical properties of the optical system caused by the change in temperature. The fluid is a polymer system.
    • 公开了一种用于光学系统的热补偿的装置。 该装置包括壳体,适于相对于壳体移位的至少一个光学元件以及直接位于壳体和光学元件之间的至少一个活塞和缸单元。 活塞和气缸单元作用在壳体内的光学元件的位置。 它含有液体。 选择活塞,气缸和流体的体积热膨胀系数,使得对于装置的预定温度变化,发生活塞和气缸之间的限定的相对位移,这些位移补偿了活塞和气缸的光学特性的变化 光学系统由温度变化引起。 流体是聚合物体系。
    • 9. 发明授权
    • Impact protected cam drive free of backlash
    • 防撞凸轮驱动器无间隙
    • US5586467A
    • 1996-12-24
    • US412587
    • 1995-03-29
    • Uwe Weber
    • Uwe Weber
    • F16H25/12F16H25/18F16H53/06G02B7/04G02B7/08
    • F16H25/186F16H53/06G02B7/04Y10T74/18312Y10T74/2101Y10T74/2107
    • The invention is directed to a backlash-free cam drive which can be subjected to an impact load. The cam drive includes: a housing defining a longitudinal axis; a cam follower assembly mounted in the housing so as to be displaceable along the axis fixed against rotation about the axis; an adjusting member mounted on the housing so as to be rotatable about the axis and relative to the cam follower assembly; and, a cam formed in said adjusting member so as to define two mutually adjacent guide cams extending along a guide path. The cam follower assembly includes: a frame; first and second contact rollers mounted on the frame so as to be displaceable relative to each other; a spring for resiliently biasing the first and second contact rollers relative to each other and against corresponding ones of the guide cams whereby the cam follower assembly is displaced along the axis as the adjusting member is rotated; an ancillary part fixedly mounted to the frame to extend into the guide path between the guide cams but not touching the guide cams during normal operation of the cam drive in the absence of the impact load; the ancillary part including a shock absorber for contact engaging one of the guide cams in response to the impact load applied transversely to the guide cams; and, the adjusting member defining the guide cams being made of a first material and the shock absorber being made of a second material elastically softer than the first material.
    • 本发明涉及一种能够承受冲击载荷的无间隙凸轮驱动装置。 凸轮驱动器包括:限定纵向轴线的壳体; 凸轮从动件组件,其安装在所述壳体中,以便沿着所述轴线可移动,以抵抗围绕所述轴线的旋转而被固定; 安装在所述壳体上以便能够围绕所述轴线和相对于所述凸轮从动件组件旋转的调节构件; 以及形成在所述调节构件中以便限定沿着引导路径延伸的两个相互相邻的导向凸轮的凸轮。 凸轮从动件组件包括:框架; 第一和第二接触辊,其安装在所述框架上以能够相对于彼此移动; 弹簧,用于相对于彼此弹性地偏置第一接触辊和第二接触辊,并抵靠相应的引导凸轮,由此当调节构件旋转时,凸轮从动件组件沿轴线移位; 固定地安装到框架上的辅助部件,以在没有冲击载荷的情况下在凸轮驱动器的正常操作期间延伸到导向凸轮之间的引导路径中,但不接触导向凸轮; 所述辅助部件包括响应于横向于所述引导凸轮施加的冲击载荷的用于接触所述引导凸轮中的一个的触点的减震器; 并且所述调节构件限定所述导向凸轮由第一材料制成,并且所述减震器由比所述第一材料弹性柔软的第二材料制成。
    • 10. 发明授权
    • Camera lens assembly and adaptation set
    • 相机镜头组合和适配套装
    • US08430581B2
    • 2013-04-30
    • US13023972
    • 2011-02-09
    • Uwe WeberHolger SehrHelmut Lenhof
    • Uwe WeberHolger SehrHelmut Lenhof
    • G03B17/00
    • G03B17/02G03B17/12G03B17/14
    • A camera lens assembly includes a focusing mount having a receiving lug and optical elements, which are arranged in the focusing mount, and define an optical axis. An adapter ring has a first planar surface and a second planar surface which are parallel to each other. The first planar surface is in contact engagement against a camera-side contact surface of the focus mount and the second planar surface is in contact with a lens-side contact surface of a lens mount. The lens mount has a tubular-shaped lens mount socket and lens mount attachment elements which are configured to coact with the camera mount attachment elements of a camera.
    • 相机透镜组件包括具有接收凸耳和光学元件的聚焦装置,所述接收凸耳和光学元件布置在聚焦装置中并且限定光轴。 适配环具有彼此平行的第一平坦表面和第二平坦表面。 第一平坦表面与聚焦装置的相机侧接触表面接触接触,并且第二平面与透镜支架的透镜侧接触表面接触。 透镜支架具有管状透镜安装插座和透镜安装附接元件,其被配置为与照相机的照相机安装附件相配合。