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    • 11. 发明申请
    • Image Pick-Up Module And Method For Assembling Such An Image Pick-Up Module
    • 图像拾取模块和组装这样的图像拾取模块的方法
    • US20090027491A1
    • 2009-01-29
    • US12243197
    • 2008-10-01
    • Klaus M. IrionPeter SchwarzMark KocherUlrich Kehr
    • Klaus M. IrionPeter SchwarzMark KocherUlrich Kehr
    • H04N9/47
    • H04N5/2253A61B1/0011A61B1/051H04N5/2251H04N2005/2255
    • An image pick-up module comprises an electronic image sensor, single-piece circuit board electrically bonded to the image sensor, and at least one cable electrically bonded and leading away from the circuit board. The circuit board has at least three sections, first and second section extending in relation to the other and obliquely or crosswise to the image sensor, and third section arranged between first and second section. The image sensor is arranged on the circuit board opposite the third section. In a method for assembling the image pick-up module, the circuit board has the form of a planar board blank comprising at least three sections folded along flexible connecting sections whereby the at least one cable is bonded to the board, and the board folds whereby a third section is located between first and second section, and the image sensor is bonded to the circuit board opposite the third section.
    • 图像拾取模块包括电子图像传感器,电连接到图像传感器的单件电路板,以及电连接并远离电路板的至少一个电缆。 电路板具有至少三个部分,第一部分和第二部分相对于另一部分延伸并且倾斜或横向于图像传感器,第三部分布置在第一和第二部分之间。 图像传感器布置在与第三部分相对的电路板上。 在组装图像拾取模块的方法中,电路板具有平面板坯件的形式,其包括沿着柔性连接部分折叠的至少三个部分,由此至少一个电缆结合到板上,并且板折叠,由此 第三部分位于第一和第二部分之间,并且图像传感器结合到与第三部分相对的电路板。
    • 12. 发明授权
    • Image pick-up module and method for assembling such an image pick-up module
    • 图像拾取模块和组装这种图像拾取模块的方法
    • US07773122B2
    • 2010-08-10
    • US09994178
    • 2001-11-26
    • Klaus M. IrionPeter SchwarzMark KocherUlrich Kehr
    • Klaus M. IrionPeter SchwarzMark KocherUlrich Kehr
    • H04N5/228A61B1/00
    • H04N5/2253A61B1/0011A61B1/051H04N5/2251H04N2005/2255
    • An image pick-up module, especially for an endoscope, comprises an electronic image sensor, a single-piece circuit board which is electrically bonded to the image sensor, with at least one cable leading away from the circuit board being further electrically bonded to the circuit board. The circuit board has at least three sections, with a first section and a second section extending in spaced relation one to the other and obliquely or crosswise to the image sensor and a third section being arranged between the first and the second section. In order to provide for strain relief of the at least one cable, it is proposed that the image sensor be arranged on one side of the circuit board opposite the third section. In a method for assembling the image pick-up module the circuit board initially has the form of a planar board blank comprising at least three sections that can be folded along flexible connecting sections whereby the at least one cable is bonded to the board blank, whereafter the board blank is folded in such a way that a third section is located between a first section and a second section, and finally the image sensor is bonded to the circuit board at an end of the circuit board opposite the third section.
    • 特别是内窥镜的图像拾取模块包括电子图像传感器,电连接到图像传感器的单片电路板,至少一根远离电路板的电缆进一步电连接到 电路板。 电路板具有至少三个部分,第一部分和第二部分彼此间隔开并且相对于图像传感器倾斜或横向延伸,第二部分布置在第一和第二部分之间。 为了提供至少一个电缆的应变消除,建议将图像传感器布置在电路板的与第三部分相对的一侧上。 在用于组装图像拾取模块的方法中,电路板最初具有平面板坯件的形式,其包括至少三个可以沿着柔性连接部分折叠的部分,由此至少一个电缆结合到电路板坯件上,之后 板坯被折叠成使得第三部分位于第一部分和第二部分之间,最后图像传感器在与第三部分相对的电路板的端部处接合到电路板。
    • 13. 发明申请
    • Endoscope Or Exoscope
    • 内窥镜或外镜
    • US20150085093A1
    • 2015-03-26
    • US14495322
    • 2014-09-24
    • Andreas HeniMarkus KupferschmidDaniel UlmschneiderChristian GrafPeter SchwarzKevin Pilz
    • Andreas HeniMarkus KupferschmidDaniel UlmschneiderChristian GrafPeter SchwarzKevin Pilz
    • A61B1/04
    • An endoscope or exoscope having a shaft and at least one objective and at least one electronic image recorder for recording an image of an object field, wherein the objective and image recorder are arranged in a distal end region of the endoscope or exoscope, and includes at least one cable, routed within the endoscope or exoscope, for supply of and/or image transmission from the electronic image recorder, wherein the electronic image recorder includes an optical unit, which is rotatable about a first axis of rotation identical or approximately parallel to a direction of view of the scope, and on which the cable is connected and can be wound on a circumferential surface of the optical unit, and wherein the distal end region includes a cavity, in which storage for holding a section of the cable is held.
    • 一种具有轴和至少一个物镜的内窥镜或外窥镜,至少一个用于记录物体的图像的电子图像记录器,其中所述物镜和图像记录器被布置在所述内窥镜或外窥镜的远端区域中,并且包括在 在内窥镜或外窥镜内布线的至少一个电缆,用于从电子图像记录器提供和/或图像传输,其中电子图像记录器包括光学单元,该光学单元可绕与第一旋转轴相同或近似平行的第一旋转轴线旋转 视线的方向,并且电缆连接并且可以缠绕在光学单元的圆周表面上,并且其中远端区域包括空腔,其中保持用于保持电缆的一部分的存储。
    • 17. 发明申请
    • METHOD AND DEVICE FOR DETERMINING PROPERTIES OF TEXTURED SURFACES
    • 用于确定纹理表面特性的方法和装置
    • US20110013176A1
    • 2011-01-20
    • US12834689
    • 2010-07-12
    • Peter SchwarzUwe Sperling
    • Peter SchwarzUwe Sperling
    • G01N21/00G01J3/46G01B11/24
    • G01B11/0608G01N21/55
    • A method of determining properties of textured surfaces with the steps: irradiation of radiation onto the surface (10) to be investigated; detection of at least part of the radiation irradiated onto the surface (10) and reflected by the latter by means of a detector device (4) which permits a location-resolved evaluation of the radiation striking it; determination of a first characteristic value (ΔP) from the radiation detected, wherein the first characteristic value (ΔP) is characteristic of a texture of the surface (10); determination of a second characteristic value (ΔE) from the radiation detected, wherein the second characteristic value is characteristic of a further optical property of the surface (10); determination of a result value (ΔI) on the basis of the first characteristic value (ΔP) and the second characteristic value (ΔE).
    • 一种确定纹理表面性质的方法,其步骤为:将待研究的表面(10)上的辐射照射; 检测照射到所述表面(10)上并由其通过检测器装置(4)反射的辐射的至少一部分,所述检测器装置(4)允许对所述辐射的位置分辨评估; 确定来自所检测的辐射的第一特征值(&Dgr; P),其中所述第一特征值(&Dgr; P)是所述表面(10)的纹理的特征; 从所检测的辐射确定第二特征值(&Dgr; E),其中所述第二特征值是所述表面(10)的另外的光学性质的特征。 根据第一特征值(&Dgr; P)和第二特征值(&Dgr; E)确定结果值(&Dgr; I)。
    • 18. 发明授权
    • Determining surface properties with angle offset correction
    • 用角度偏移校正确定表面特性
    • US07834991B2
    • 2010-11-16
    • US11774376
    • 2007-07-06
    • Peter SchwarzKonrad Lex
    • Peter SchwarzKonrad Lex
    • G01N21/00
    • G01N21/4738G01N21/55
    • An apparatus for determining surface properties, comprises at least a first radiation device which emits radiation onto a surface to be analyzed, at least a first radiation detector device which receives at least part of the radiation emitted by the at least one radiation device and then scattered or reflected by the surface and outputs at least a first measurement signal which is characteristic of the reflected or scattered radiation, and at least a further radiation detector device which receives at least part of the radiation emitted by the at least one radiation device and then scattered or reflected by a surface and outputs at least a second measurement signal which is characteristic of the reflected or scattered radiation.
    • 用于确定表面性质的装置包括至少第一辐射装置,其将辐射发射到待分析的表面上,至少第一辐射检测器装置,其接收由至少一个辐射装置发射的辐射的至少一部分,然后散射 或由表面反射并输出至少是反射或散射辐射的特征的第一测量信号,以及至少另外的辐射检测器装置,其接收由至少一个辐射装置发射的辐射的至少一部分,然后散射 或由表面反射,并且输出至少是反射或散射的辐射的特征的第二测量信号。
    • 19. 发明授权
    • Device for a goniometric examination of optical properties of surfaces
    • 用于测量表面光学性能的测量装置
    • US07679756B2
    • 2010-03-16
    • US11187694
    • 2005-07-22
    • Uwe SperlingPeter Schwarz
    • Uwe SperlingPeter Schwarz
    • G01B11/30
    • G01N21/57G01J3/504G01N2021/575
    • A device for examining the optical properties of surfaces includes at least one first radiation device emitting radiation to a surface to be examined at least at a first predetermined spatial angle, at least one first detector for capturing the radiation emitted to and reflected back from the surface, wherein the detector, allowing a local resolution of detected radiation, is positioned at least at a second predetermined spatial angle relative to the surface. At least one spatial angle at which the radiation device and/or the detector are positioned, is variable and the radiation device and the detector are positioned in a space at least part of which exhibits light-reflecting properties.
    • 用于检查表面的光学特性的装置包括至少一个第一辐射装置,至少以第一预定空间角发射到待检测表面的辐射,至少一个第一检测器,用于捕获从表面发射并从表面反射的辐射 ,其中允许检测到的辐射的局部分辨率的所述检测器相对于所述表面至少位于第二预定空间角度。 辐射装置和/或检测器所在的至少一个空间角度是可变的,并且辐射装置和检测器被定位在其至少一部分呈现光反射性质的空间中。