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    • 1. 发明授权
    • Display device and display method
    • 显示设备和显示方式
    • US09030383B2
    • 2015-05-12
    • US13121168
    • 2009-09-14
    • Karsten LindigHans-Juergen DobschalGuenter Rudolph
    • Karsten LindigHans-Juergen DobschalGuenter Rudolph
    • G09G5/00G02B27/01G09G3/00F21V8/00
    • G02B27/017G02B6/0038G02B27/0172G02B2027/0118G02B2027/014G09G3/001G09G2320/0626G09G2360/144
    • A display device has a holding device wearable on a user's head and holding a multifunctional glass that comprises a first and second coupling-out section and a coupling-in section, an image generation module that generates and couples an image into the multifunctional glass through the coupling-in section to the first coupling-out section redirecting the image in the direction of the user such that the user can perceive the image in superimposition with the real environment, a control unit for the image generation module, and a detector which is connected to the control unit and which measures the intensity of ambient light coupled through the first coupling-out section to the second coupling-out section and coupled out of the multifunctional glass through the second coupling-out section. The control unit controls the brightness of the image of the image generation module, the brightness controlled according to the intensity measured by the detector.
    • 一种显示装置具有可佩戴在用户头部上的保持装置,并且保持包括第一和第二耦合部分和耦合部分的多功能玻璃,图像生成模块,其通过所述多功能玻璃产生和耦合图像 耦合入部分到第一耦合部分,以使用户方向的图像重定向,使得用户可以感知与真实环境叠加的图像,图像生成模块的控制单元和连接的检测器 并且其测量通过第一耦合输出部分耦合到第二耦合输出部分的环境光的强度,并通过第二耦合输出部分耦合出多功能玻璃。 控制单元控制图像生成模块的图像的亮度,根据由检测器测量的强度来控制亮度。
    • 3. 发明申请
    • HIGHLY SENSITIVE SPECTROSCOPIC UNIT
    • 高灵敏度光谱仪
    • US20100007878A1
    • 2010-01-14
    • US12444244
    • 2007-10-02
    • Ralf WolleschenskyHans-Juergen DobschalReinhard Steiner
    • Ralf WolleschenskyHans-Juergen DobschalReinhard Steiner
    • G01J3/18G01J3/36G01J3/28
    • G01J3/1804G01J3/02G01J3/021G01J3/0291G01J3/14G01J3/26G01J3/2803
    • The invention is directed to a highly sensitive spectrum analysis unit with a diffraction grating, wherein a parallel light bundle having a wavelength range impinges on a diffraction grating which splits the different wavelengths into spectra by diffraction in first directions, and wavelength partial ranges of the spectrally split light bundle can be focused on a detector row by means of camera optics, and evaluation electronics are connected to the detector row and acquire the generated spectrum as information and display it. The invention is characterized in that the light bundle passes a first optical element, and then wavelength partial ranges of a spectrally split light bundle impinge on respective partial regions of a diffraction grating, the diffraction grating having the same grating constant across all partial regions and a changing profile shape, the profile shapes generating different blaze wavelengths that lie in the respective wavelength partial ranges.
    • 本发明涉及一种具有衍射光栅的高灵敏度光谱分析单元,其中具有波长范围的平行光束照射在衍射光栅上,衍射光栅通过在第一方向上的衍射将不同波长分裂成光谱,并且光谱的波长部分范围 分光束可以通过相机光学器件聚焦在检测器行上,并且评估电子器件连接到检测器行并且获取所生成的光谱作为信息并显示它。 本发明的特征在于,光束通过第一光学元件,然后将光谱分裂的光束的部分范围波动在衍射光栅的各个部分区域上,衍射光栅在所有部分区域具有相同的光栅常数,并且 改变轮廓形状,产生位于相应波长部分范围内的不同火焰波长的轮廓形状。
    • 7. 发明授权
    • Imaging system for an extreme ultraviolet (EUV) beam-based microscope
    • 用于极紫外(EUV)光束显微镜的成像系统
    • US06894837B2
    • 2005-05-17
    • US10626130
    • 2003-07-24
    • Hans-Juergen DobschalThomas ScherueblRobert BrunnerNorbert RosenkranzJoern Greif-Wuestenbecker
    • Hans-Juergen DobschalThomas ScherueblRobert BrunnerNorbert RosenkranzJoern Greif-Wuestenbecker
    • G21K1/06G21K7/00G02B21/00
    • G21K1/06G21K7/00
    • Imaging system for a microscope based on extreme ultraviolet (EUV) radiation. The present invention is directed to a reflective imaging system for an x-ray microscope for examining and object in an object plane, wherein the object is illuminated by rays of a wavelength of less than 100 nm, particularly less than 30 nm, and is imaged in a magnified manner in an image plane. In the imaging system, according to the invention, for a microscope based on extreme ultraviolet (EUV) radiation with wavelengths in the range of less than 100 nm, with a magnification of 0.1× to 1000× and a structural length of less than 5 m, at least one of the imaging optical elements 2 and 3 in the beam path has a diffractive-reflective structure which is arranged on a spherical or plane area and has a non-rotationally symmetric, asymmetric shape. The arrangement according to the invention provides an imaging system which avoids the disadvantages of the prior art and ensures a high imaging quality. The manufacturing cost remains reasonable due to the exclusive use of spherical mirrors.
    • 基于极紫外(EUV)辐射的显微镜成像系统。 本发明涉及一种用于检查和物体在物平面中的X射线显微镜的反射成像系统,其中物体被小于100nm,特别是小于30nm的波长的光照射,并被成像 在图像平面中以放大的方式。 在成像系统中,根据本发明,对于具有波长在小于100nm,具有0.1x至1000x的放大倍数和小于5μm的结构长度的基于极紫外(EUV)辐射的显微镜, 光束路径中的成像光学元件2和3中的至少一个具有布置在球形或平面区域上并具有非旋转对称的不对称形状的衍射反射结构。 根据本发明的装置提供了一种避免现有技术的缺点并确保高成像质量的成像系统。 由于专门使用球面镜,制造成本仍然是合理的。
    • 8. 发明授权
    • Arrangement for detecting biomolecular reactions and interactions
    • 检测生物分子反应和相互作用的布置
    • US06483588B1
    • 2002-11-19
    • US09344650
    • 1999-06-25
    • Dieter GraefeGunther ElenderWolfgang GrauHans-Juergen DobschalGuenter Berthel
    • Dieter GraefeGunther ElenderWolfgang GrauHans-Juergen DobschalGuenter Berthel
    • G01N2100
    • G01N21/45G01N21/31
    • An arrangement for the detection of biomolecular reactions and interactions using the RS screening method and comprises a specimen plate or microtiter plate (PP or MTP), a white light source with subsequently arranged illumination beam path, a splitter plate on which the PP or the MTP is set for generating a detection beam path, and optical means for imaging the measurement beam path and reference beam path on a spatially resolving detector array of a CCD camera which is connected with an evaluating unit or with a computer for determining measurement values. The arrangement particularly provides optical imaging elements for imaging the measurement beam path and reference beam path at different positions on the detector array of the CCD camera simultaneously and without overlap, a monochromator which comprises a plurality of interference filters and which is arranged subsequent to the light source in the illumination beam path; a component assembly which collimates the illumination beam path, is formed of optical elements and is arranged between the monochromator and the splitter plate; and specimen plate or microtiter plate, and an optical imaging element for complete spatal separation of the measurement beam path and reference beam path in, or in the vicinity of, an intermediate inage plane or aperture diaphragm plane.
    • 使用RS筛选方法检测生物分子反应和相互作用的装置,包括样品板或微量滴定板(PP或MTP),具有随后布置的照明光束路径的白色光源,分离板,PP或MTP 被设置用于产生检测光束路径,以及光学装置,用于在与评估单元或计算机连接以确定测量值的CCD照相机的空间分辨检测器阵列上成像测量光束路径和参考光束路径。 该装置特别提供光学成像元件,用于在CCD照相机的检测器阵列上的不同位置上成像测量光束路径和参考光束路径,并且不重叠;单色器,其包括多个干涉滤光器,并且布置在光之后 照明光束路径中的源; 准直照明光束路径的部件组件由光学元件形成,并且布置在单色器和分离板之间; 和样品板或微量滴定板,以及光学成像元件,用于在测量光束路径和参考光束路径之间完全空间分离中间平面或孔径光阑平面中或其附近。
    • 9. 发明授权
    • Process and apparatus for detecting structural changes of specimens
    • 用于检测样品结构变化的方法和装置
    • US05999262A
    • 1999-12-07
    • US973653
    • 1997-12-18
    • Hans-Juergen DobschalWerner FuchsDieter GraefeGuenter GauglitzAndreas Brecht
    • Hans-Juergen DobschalWerner FuchsDieter GraefeGuenter GauglitzAndreas Brecht
    • G01N21/552G01B9/02
    • G01N21/553
    • A process and a device are described for detecting physical, chemical, biological or biochemical reactions and interactions on biochemically or chemically functionalized specimen carriers in the form of layers or films from the spectral reflection after irradiation of the specimens with light of different wavelengths. In so doing, parameters for the nature of the specimens are determined in an economical and highly accurate manner and with a high degree of parallelism in the measurements. According to the process, the specimens are arranged on a substrate plate with a carrier layer of a carrier plate and are irradiated with light. The following process steps are carried out: temporally resolved illumination of an areal arrangement of specimens to be analyzed by light of different wavelengths from a tunable light source or from a scanning monochromator which is arranged subsequent to a polychromatic light source; b) the imaging of the beam component reflected on at least one boundary surface of each specimen or of the beam components or interferences reflected and interfered, respectively, at boundary surfaces of each specimen which are arranged one behind the other in the direction of light, this imaging being carried out on a spatially resolving areal detector array or a video camera by means of subsequently arranged optical elements; and c) a wavelength-selective detection of the radiation intensities reflected and influenced by the specimens or of the intensities of the imaged interferences, determination of a wavelength spectrum associated with each specimen, and derivation of parameters characterizing the interactions and reactions to be analyzed.
    • PCT No.PCT / EP97 / 01809 Sec。 371 1997年12月18日第 102(e)1997年12月18日日期PCT 1997年4月11日提交PCT公布。 WO97 / 40366 PCT公开号 日期1997年10月30日描述了一种用于检测物理,化学,生物或生物化学反应的物理,化学,生物或生物化学反应的生物化学或化学反应的相互作用以及从样品的光照射后的光谱反射中的层或膜形式的相互作用 不同波长。 在这样做时,样本性质的参数以经济和高度准确的方式确定,并且在测量中具有高度的平行度。 根据该方法,将试样配置在具有载体板的载体层的基板上,并用光照射。 进行以下处理步骤:通过不同波长的光从可调谐光源或由多色光源之后布置的扫描单色仪分析的样本的面积排列的时间分辨照明; b)在每个样本的至少一个边界表面上反射的光束分量的成像或在每个样本的沿着光的方向一个接一个地布置的每个样本的边界面处反射和干涉的光束分量或干涉的反射和干涉, 该成像通过随后布置的光学元件在空间分辨的面积检测器阵列或摄像机上进行; 和c)由样本反射和影响的辐射强度的波长选择性检测或成像干扰的强度,与每个样品相关联的波长谱的确定以及表征待分析的相互作用和反应的参数的导出。