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    • 4. 发明授权
    • Variable focus lens having two liquids and electronic device
    • 具有两种液体和电子装置的可变焦距透镜
    • US07557999B2
    • 2009-07-07
    • US10599866
    • 2005-04-14
    • Stein KuiperBernardus H. W. Hendriks
    • Stein KuiperBernardus H. W. Hendriks
    • G02B3/12
    • G02B3/14G02B26/005
    • A variable focus lens comprises a container enclosing an insulating liquid (A) and a conducting liquid (B), the insulating liquid (A) and the conducting liquid (B) being immiscible, having different refractive indices and being in contact with each other via an interface (14), the liquids (A, B) being at least partially placed in a light path through the container. The variable focus lens further comprises an electrode arrangement (2, 12) for controlling the shape of the interface (14) by means of an applied voltage. The container further comprises a transparent end portion (4) in the light path, a part (4) the transparent end portion (4) defining the shape of a part of the interface (14) at a predefined value of the voltage. Consequently, a variable focus lens with a reduced building height (H) is achieved that suffers less from the gradual formation of is small droplets of the conducting liquid (B) on the inner surface of the end portion (4).
    • 可变焦距透镜包括封闭绝缘液体(A)和导电液体(B)的容器,绝缘液体(A)和导电液体(B)不混溶,具有不同的折射率并彼此接触通过 界面(14),所述液体(A,B)至少部分地放置在穿过所述容器的光路中。 可变焦距透镜还包括用于通过施加的电压来控制接口(14)的形状的电极装置(2,12)。 所述容器还包括在所述光路中的透明端部(4),所述透明端部(4)的部分(4)以所述电压的预定值限定所述界面(14)的一部分的形状。 因此,实现了具有降低的建筑物高度(H)的可变焦距透镜,其在端部(4)的内表面上的导电液体(B)的小液滴的逐渐形成较少。
    • 5. 发明授权
    • Variable focus lens
    • 可变焦距镜头
    • US07515349B2
    • 2009-04-07
    • US11911671
    • 2006-04-20
    • Christoph DobrusskinJohannus W. WeekampBernardus H. W. Hendriks
    • Christoph DobrusskinJohannus W. WeekampBernardus H. W. Hendriks
    • G02B1/06G02B15/00
    • G02B26/005G02B3/14
    • Optical apparatus for modifying a radiation beam, the apparatus including a variable focus lens (1) comprising a first fluid (A) and a second fluid (B) wherein the fluids are immiscible and are separated from each other by a fluid meniscus (6; 106; 206; 306) which is configurable into a configuration which is arranged to modify a predetermined vergence of an input radiation beam (15; 32; 33) and a focus control system. The optical apparatus is characterised in that the apparatus comprises a first redirector arranged to redirect the radiation beam, after having passed once through the fluid meniscus, back towards the fluid meniscus, and a second redirector arranged to further redirect the radiation beam, after having passed twice through the meniscus, back towards the fluid meniscus, wherein the configuration is arranged to further modify the vergence of the radiation beam following each of the redirections, the further modifications being arranged to provide the variable focus lens with an amplified focal power.
    • 用于修改辐射束的光学装置,该装置包括包括第一流体(A)和第二流体(B)的可变焦距透镜(1),其中流体是不混溶的,并且通过流体弯液面(6; 106; 206; 306),其可配置成布置成修改输入辐射束(15; 32; 33)和聚焦控制系统的预定聚光度的配置。 该光学装置的特征在于,该装置包括第一重定向器,其布置成在经过一次通过流体弯月面之后重新定向辐射束,朝向流体弯月面;以及第二重定向器,其布置成在已经通过之后进一步重定向辐射束 两次穿过弯液面,朝向流体弯液面,其中该配置被布置成进一步改变每个重定向之后的辐射束的聚光,其中进一步的修改被设置为向可变焦距透镜提供放大的焦点力。
    • 7. 发明授权
    • Colour management for biological samples
    • 生物样品的色彩管理
    • US08649581B2
    • 2014-02-11
    • US13124693
    • 2009-10-16
    • Maarten M. J. W. Van HerpenDirk L. J. VossenSjoerd StallingaBernardus H. W. HendriksErik M. H. P. Van Dijk
    • Maarten M. J. W. Van HerpenDirk L. J. VossenSjoerd StallingaBernardus H. W. HendriksErik M. H. P. Van Dijk
    • G06K9/00
    • G06T11/001H04N1/62
    • A method of determining a color transformation for images of biological material includes preparing a first set of biological test objects using a first preparation method, and preparing a second set of biological test objects using a second preparation method. Each test object in the second set of test objects corresponding to a counterpart test object in the first set of test objects, the test object and its counterpart being of the same biological type of material. For each test object in the first and second set of test objects, the color of the test object is determined thereby generating a first and second set of colors The method further includes generating a conversion table indicating a mapping between the colors in the first set of colors and the corresponding colors in the second set of colors. The first and second preparation methods include first and second staining methods, respectively.
    • 确定生物材料的图像的颜色变换的方法包括使用第一制备方法制备第一组生物测试对象,并使用第二制备方法制备第二组生物测试对象。 第二组测试对象中的每个测试对象对应于第一组测试对象中的对应测试对象,测试对象及其对应物具有相同的生物类型的材料。 对于第一和第二组测试对象中的每个测试对象,确定测试对象的颜色,从而生成第一和第二组颜色。该方法还包括生成表示第一组中的颜色之间的颜色之间的映射的转换表 颜色和相应的颜色在第二组颜色。 第一和第二种制备方法分别包括第一和第二染色方法。
    • 8. 发明授权
    • Zoom optical system
    • 变焦光学系统
    • US07515348B2
    • 2009-04-07
    • US10596761
    • 2005-01-05
    • Bernardus H. W. HendriksStein Kuiper
    • Bernardus H. W. HendriksStein Kuiper
    • G02B3/12
    • G02B3/14G02B15/00G02B26/005
    • A zoom optical system is provided which has a lens system which comprises a first lens which is arranged to provide a continuously variable focus for a beam of radiation. The lens system further comprises a switchable optical element including a first fluid, a second fluid and a wavefront modifier having a part through which said radiation beam is arranged to pass. In a first mode the switchable optical element has a first fluid configuration with said part being substantially covered by the first fluid, and in a second mode the switchable optical element has a second, different, fluid configuration with said part being substantially covered by the second fluid.
    • 提供一种变焦光学系统,其具有透镜系统,该透镜系统包括第一透镜,该第一透镜被布置成为辐射束提供连续可变的焦点。 透镜系统还包括可切换光学元件,其包括第一流体,第二流体和波前修正器,其具有所述辐射束布置成通过该部分的部分。 在第一模式中,可切换光学元件具有第一流体构造,其中所述部分基本上被第一流体覆盖,并且在第二模式中,可切换光学元件具有第二不同的流体构型,其中所述部分基本上被第二流体 流体。
    • 9. 发明授权
    • Optical system having an objective system and an optical aberration correcting element
    • 具有物镜系统和光学像差校正元件的光学系统
    • US07417935B2
    • 2008-08-26
    • US10874318
    • 2004-06-24
    • Bernardus H. W. HendriksNobuyoshi MoriTohru Kimura
    • Bernardus H. W. HendriksNobuyoshi MoriTohru Kimura
    • G11B7/00
    • G11B7/1367G11B7/1378G11B7/13925G11B2007/13727
    • An optical system for use in an optical pickup device for recording and/or reproducing information on an optical recording media, the optical system having an optical axis and comprising: an objective system for converging a light beam emitted from a light source on the optical recording media; an optical aberration correcting element comprising two lenses arranged on an optical path between the light source and the objective system and having an adjustable distance in the direction of the optical axis, the optical aberration correcting element comprising a ring-shaped phase structure formed in at least one lens surface of the optical aberration correcting element, and wherein the ring shaped phase structure is non-periodic and comprises a plurality of concentric ring surfaces k (k=1 . . . N), and each of the ring surfaces has a step in the direction of the optical axis between the adjacent ring surface.
    • 一种用于光学拾取装置中用于在光学记录介质上记录和/或再现信息的光学系统,所述光学系统具有光轴并且包括:用于将从光源发射的光束会聚在光学记录上的物镜系统 媒体; 一种光学像差校正元件,包括布置在光源和物镜系统之间的光路上并且具有在光轴方向上的可调节距离的两个透镜,光学像差校正元件包括至少形成的环形相位结构 所述光学像差校正元件的一个透镜表面,并且其中所述环形相结构是非周期性的,并且包括多个同心环表面k(k = 1 ... N),并且每个所述环表面具有 相邻环表面之间光轴的方向。