会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明授权
    • Method for acquiring data by means of an image sensor
    • 通过图像传感器采集数据的方法
    • US08089540B2
    • 2012-01-03
    • US11585470
    • 2006-10-24
    • Christof BallwegJoachim Knittel
    • Christof BallwegJoachim Knittel
    • H04N5/335H04N3/28H04N9/68H04N5/235
    • H01L27/14601H01L27/14683H01L31/02024
    • A method for reading data from a holographic storage medium is described. An image sensor is used for acquiring data. The holographic storage medium, which contains binary information in the form of at least one two-dimensional data page, is illuminated by means of a laser beam bundle and the retrieved data page is read out by means of the image sensor, for which purpose the latter is provided with an activatable area having a multiplicity of pixels. It achieves the object of configuring a method of this type in such a way that the read-out of the information is accelerated with a number of pixels remaining the same. For this purpose, the activatable area of the image sensor is subdivided into different regions which are in each case assigned to a region having a specific intensity of the light beam. In this case, a longer exposure time and/or a higher sensitivity are/is determined for regions assigned to regions having lower intensity than for regions assigned to regions having a higher intensity.
    • 描述了从全息存储介质读取数据的方法。 图像传感器用于采集数据。 包含至少一个二维数据页形式的二进制信息的全息存储介质通过激光束束被照亮,并且通过图像传感器读出检索的数据页,为此, 后者具有多个像素的可激活区域。 它实现了以这种方式配置这种方法的目的,即,读取信息以保持相同数量的像素被加速。 为此,图像传感器的可激活区域被细分为不同的区域,每个区域分配给具有特定光束强度的区域。 在这种情况下,对于具有比分配给具有较高强度的区域的区域强的区域分配的区域,确定较长的曝光时间和/或较高的灵敏度。
    • 4. 发明申请
    • Method for acquiring data by means of an image sensor
    • 通过图像传感器采集数据的方法
    • US20070091186A1
    • 2007-04-26
    • US11585470
    • 2006-10-24
    • Christof BallwegJoachim Knittel
    • Christof BallwegJoachim Knittel
    • H04N5/235
    • H01L27/14601H01L27/14683H01L31/02024
    • Method for acquiring data by means of an image sensor The invention relates to a method for acquiring data by means of an image sensor, in which a holographic storage medium that has binary information in the form of at least one two-dimensional data page is exposed by means of a laser beam bundle and the exposed data page is read out by means of an image sensor, for which purpose the latter is provided with an activatable area having a multiplicity of pixels. It achieves the object of configuring a method of this type in such a way that the read-out of the information is accelerated with a number of pixels remaining the same. For this purpose, the activatable area of the image sensor is subdivided into different regions which are in each case assigned to a region having a specific intensity of the light beam. In this case, a longer exposure time and/or a higher sensitivity are/is determined for regions assigned to regions having lower intensity than for regions assigned to regions having a higher intensity.
    • 借助于图像传感器获取数据的方法本发明涉及一种通过图像传感器获取数据的方法,其中具有至少一个二维数据页形式的二进制信息的全息存储介质被曝光 通过激光束束并且借助于图像传感器读出暴露的数据页,为此,后者被提供有具有多个像素的可激活区域。 它实现了以这种方式配置这种方法的目的,即,读取信息以保持相同数量的像素被加速。 为此,图像传感器的可激活区域被细分为不同的区域,每个区域分配给具有特定光束强度的区域。 在这种情况下,对于具有比分配给具有较高强度的区域的区域强的区域分配的区域,确定较长的曝光时间和/或较高的灵敏度。
    • 5. 发明授权
    • Compatible optical recording medium
    • 兼容光学记录介质
    • US08213289B2
    • 2012-07-03
    • US12311671
    • 2007-09-24
    • Joachim KnittelHartmut RichterAlan Bruce Hamersley
    • Joachim KnittelHartmut RichterAlan Bruce Hamersley
    • G11B7/00
    • G11B7/24079G11B7/1374G11B2007/24308G11B2007/24314
    • The optical recording medium has a recording layer sensitive for recording at a first wavelength and sensitive for reading at a second wavelength, the recording layer having a groove structure, wherein at the first wavelength the groove structure has a diffraction efficiency into a first diffraction order sufficiently large to generate a push-pull signal, and at the second wavelength it has a diffraction efficiency into a first diffraction order close to zero. The optical pickup for recording on an optical recording medium intended to be read with a second wavelength and a second numerical aperture is characterized in that it has a light source for generating a light beam at a first wavelength and a numerical aperture given by the second numerical aperture multiplied with a ration of the first wavelength and the second wavelength.
    • 光记录介质具有对第一波长进行记录敏感并对第二波长进行读取敏感的记录层,记录层具有凹槽结构,其中在第一波长处,凹槽结构的衍射效率充分地成为第一衍射级 大以产生推挽信号,并且在第二波长处,它具有接近零的第一衍射级的衍射效率。 用于在旨在用第二波长和第二数值孔径读取的光记录介质上记录的光学拾取器的特征在于,其具有用于产生第一波长的光束和由第二数值给出的数值孔径的光源 孔径乘以第一波长和第二波长的比例。
    • 8. 发明授权
    • Multilayer coaxial holographic storage system
    • 多层同轴全息存储系统
    • US08199628B2
    • 2012-06-12
    • US13138540
    • 2010-02-25
    • Joachim KnittelHeiko Trautner
    • Joachim KnittelHeiko Trautner
    • G11B7/00
    • G11B7/0065G11B7/083G11B7/1353G11B7/1376G11B2007/0013
    • An apparatus for reading from a multilayer holographic storage medium with a coaxial arrangement of a reference beam and a reconstructed object beam is described. The apparatus has an objective lens for focusing the reference beam into the multilayer holographic storage medium such that the reference beam has a focal point behind or in front of a reflective layer of the multilayer holographic storage medium, wherein a distance between the objective lens and the multilayer holographic storage medium is set in accordance with an addressed layer of the multilayer holographic storage medium, and an imaging system with a fixed lens of focal length f and a movable lens of focal length f for re-collimating a reconstructed object beam, wherein for a specific position of the movable lens the imaging system assumes a 4f configuration. For re-collimating the reconstructed object beam the apparatus is adapted to shift the movable lens of the 4f imaging system by substantially twice the shift of the objective lens necessary for addressing a specific layer of the multilayer holographic storage medium.
    • 描述了一种用于从具有参考光束和重构物体光束的同轴布置的多层全息存储介质读取的装置。 该装置具有用于将参考光束聚焦到多层全息存储介质中的物镜,使得参考光束具有在多层全息存储介质的反射层之后或之前的焦点,其中物镜和 多层全息存储介质根据多层全息存储介质的寻址层和具有焦距f的固定透镜的成像系统和焦距为f的可移动透镜进行重新校准重建对象光束而设置,其中, 成像系统呈现4f配置的可移动透镜的特定位置。 为了重新校准重建的物体光束,该装置适于将4f成像系统的可移动透镜移动大致两倍于寻址多层全息存储介质的特定层所需的物镜的两倍。
    • 9. 发明授权
    • Objective lens and optical data storage apparatus comprising the objective lens
    • 物镜和包括物镜的光学数据存储装置
    • US08036094B2
    • 2011-10-11
    • US12806783
    • 2010-08-20
    • Joachim Knittel
    • Joachim Knittel
    • G11B7/00
    • G11B7/1387G11B7/1369G11B7/1374G11B2007/0006G11B2007/13727
    • An objective lens is described, which is switchable between a far-field mode and a near-field mode. The objective lens comprises a lens, an optical element having a variable refractive index and a solid immersion lens, which are disposed on a common optical axis, wherein the optical element is arranged at a convex side of the solid immersion lens and has a top and a bottom surface arranged adjacent to each other in a direction of the optical axis, the bottom surface having a concave shape that is adapted to the shape of the convex side of the solid immersion lens and the top surface having a curvature that is lower than a curvature of the convex side of the solid immersion lens, and wherein a difference between a refractive index of the optical element and the solid immersion lens is small in the far-field mode so that the solid immersion lens and the optical element act substantially as a single optical element in the far-field mode, whereas the difference is large in the near-field mode so that the optical effect of the solid immersion lens is significant in the near-field mode.
    • 描述了可在远场模式和近场模式之间切换的物镜。 物镜包括透镜,具有可变折射率的光学元件和固体浸没透镜,它们设置在公共光轴上,其中光学元件布置在固体浸没透镜的凸侧,并且具有顶部和 在所述光轴方向上彼此相邻布置的底面,所述底面具有适合所述固体浸没透镜的凸面的形状的凹面形状,并且所述顶面的曲率低于 固体浸没透镜的凸侧的曲率,并且其中在远场模式中光学元件和固体浸没透镜的折射率之间的差小,使得固体浸没透镜和光学元件基本上作为 在远场模式中的单个光学元件,而近场模式的差异较大,使得固体浸没透镜的光学效应在近场模式中是显着的。