Apparatus and method for determining centering data for spectacles
    1.
    发明申请
    Apparatus and method for determining centering data for spectacles 有权
    用于确定眼镜中心数据的装置和方法

    公开(公告)号:US20070035697A1

    公开(公告)日:2007-02-15

    申请号:US11484666

    申请日:2006-07-12

    IPC分类号: G02C7/06

    CPC分类号: G02C13/005

    摘要: An apparatus (3) for determining centering data for eyeglasses (2) comprises a fixation device (5) and a recording unit (4) that can be triggered by a computer, records electronic images, and is disposed behind a divider element (8). The fixation device (5) produces at least one speckle pattern. The speckles can be superposed by different patterns, for example, a cross shape. The invention further relates to a method for determining centering data. The inventive method and apparatus allow test persons having the most different acuity of vision to measure the relative centering data from a short distance while maintaining their usual posture.

    摘要翻译: 一种用于确定眼镜(2)的定心数据的装置(3)包括可由计算机触发的记录装置(5)和记录单元(4),记录电子图像,并设置在分隔元件(8)的后面, 。 固定装置(5)产生至少一个散斑图案。 斑点可以由不同的图案叠加,例如十字形。 本发明还涉及一种用于确定对中数据的方法。 本发明的方法和装置允许具有最不同视力的测试人员在保持其通常姿势的同时从短距离测量相对居中数据。

    Diffraction-optical component, illumination system and exposure system comprising such a diffraction-optical component as well as an exposure method employing such an exposure system
    2.
    发明授权
    Diffraction-optical component, illumination system and exposure system comprising such a diffraction-optical component as well as an exposure method employing such an exposure system 失效
    衍射光学部件,照明系统和包括这种衍射光学部件的曝光系统以及采用这种曝光系统的曝光方法

    公开(公告)号:US06885491B2

    公开(公告)日:2005-04-26

    申请号:US10102613

    申请日:2002-03-20

    摘要: A diffraction-optical component for providing a radiation-diffracting grating structure is proposed, comprising a surface wave device including a substrate 43, a surface wave source 47 excitable with an adjustable frequency for producing surface waves on a surface 45 of the substrate 43 and an interaction region 17 of the substrate surface 45 which is provided for the radiation to interact with a grating structure provided by the surface waves produced.To this end, the surface wave source 47 may have a directional characteristic and emits surface waves stronger in a preferred direction 53 than in a direction 54 opposite thereto, the surface wave source may comprises an electro-acoustic transducer which includes spaced apart sections for emitting surface waves at different wavelengths, an electro-acoustic transducer of the surface wave source may be operated as a voltage divider with an intermediate electrode, the frequency for exciting the surface wave source may be adjusted in response to a measuring signal which is obtained by a surface wave receiver 73, a surface wave damper 73, 87 may be provided in the form of an acousto-electric transducer, a closed propagation path may be provided for the surface waves and the grating structure may be formed by standing surface waves.Moreover, an exposure system is proposed which comprises such a diffraction-optical component and a radiation source.

    摘要翻译: 提出了一种用于提供辐射衍射光栅结构的衍射光学部件,其包括表面波器件,其包括衬底43,可调频率激发的表面波源47,用于在衬底43的表面45上产生表面波,以及 衬底表面45的相互作用区域17,其被提供用于辐射与由所产生的表面波提供的光栅结构相互作用。 为此,表面波源47可以具有方向特性并且在优选方向53上发射比在与其相反的方向54更强的表面波,表面波源可以包括电声换能器,其包括用于发射的间隔开的部分 不同波长的表面波,表面波源的电声换能器可以作为具有中间电极的分压器来操作,激励表面波源的频率可以响应于由a 表面波接收器73,表面波阻尼器73,87可以以声电换能器的形式提供,可以为表面波提供闭合传播路径,并且可以通过驻波表面波形成光栅结构。 此外,提出了包括这样的衍射光学部件和辐射源的曝光系统。

    Spectrometer arrangement
    3.
    发明授权

    公开(公告)号:US06597763B2

    公开(公告)日:2003-07-22

    申请号:US09933879

    申请日:2001-08-21

    IPC分类号: G01T136

    CPC分类号: G01J3/20 G01J3/18 G02B5/1828

    摘要: A spectrometer arrangement is disclosed for the determination of a radiation wavelength of radiation emitted from a radiation source to be measured. The arrangement includes a diffraction grating on which the radiation of the radiation source to be measured is incident at a predetermined angle, wherein the diffraction grating is provided by a reflection grating having a variable lattice constant. The arrangement also includes a radiation detector for receiving from the radiation source to be measured radiation diffracted at a predetermined angle at the diffraction grating.

    RFID-transponder and device having an RFID-transponder as well as a method of making an antenna for an RFID-transponder
    4.
    发明授权
    RFID-transponder and device having an RFID-transponder as well as a method of making an antenna for an RFID-transponder 失效
    RFID应答器和具有RFID应答器的设备以及制造用于RFID应答器的天线的方法

    公开(公告)号:US08519849B2

    公开(公告)日:2013-08-27

    申请号:US12318875

    申请日:2009-01-12

    IPC分类号: G08B13/14

    摘要: The invention relates to an RFID-transponder, an optical element (150) with an RFID-transponder and an antenna (110) for an RFID-transponder. According to the invention, the antenna (110) is constructed to be optically transparent. The invention additionally relates to a method for producing an antenna (110) for an RFID-transponder. The inventive method for producing an antenna (110) of an RFID-transponder is characterized by the following method steps: a) providing an object (150) having a surface to be equipped with the RFID-transponder, b) application of a transparent conductive coating to the surface, c) lithographic structuring of the transparent conductive coating in order to form the antenna (110).

    摘要翻译: 本发明涉及RFID应答器,具有RFID应答器的光学元件(150)和用于RFID应答器的天线(110)。 根据本发明,天线(110)被构造为光学透明的。 本发明还涉及一种用于生产用于RFID应答器的天线(110)的方法。 用于生产RFID应答器的天线(110)的本发明的方法的特征在于以下方法步骤:a)提供具有要被配备有RFID应答器的表面的物体(150),b)施加透明导电 涂覆到表面,c)透明导电涂层的平版印刷结构以形成天线(110)。

    Mirror arrangement and method of manufacturing thereof, optical system and lithographic method of manufacturing a miniaturized device
    5.
    发明申请
    Mirror arrangement and method of manufacturing thereof, optical system and lithographic method of manufacturing a miniaturized device 审中-公开
    镜面布置及其制造方法,制造小型化装置的光学系统和光刻方法

    公开(公告)号:US20060018045A1

    公开(公告)日:2006-01-26

    申请号:US10971002

    申请日:2004-10-25

    IPC分类号: G02B5/08

    CPC分类号: G03F7/70266 G02B5/10

    摘要: A mirror arrangement for reflecting electromagnetic radiation, the mirror arrangement comprising: a substrate having a mirror side facing towards the radiation to be reflected and a back side opposite to the mirror side, wherein a mirror surface is provided on the mirror side and wherein an actuator arrangement for generating a deformation of the substrate is mounted on the back side of the substrate, wherein the actuator arrangement comprises at least one active layer having an areal adhering contact with a portion of the back side of the substrate; wherein the at least one active layer has a first layer thickness at a first location within the portion and a second layer thickness at a second location disposed at a distance from the first location within the portion, wherein the first layer thickness differs from the second layer thickness by more than 1%; and wherein the at least one active layer comprises at least one of a ferroelectric material, a piezoelectric material, a magnetostrictive material, an electrostrictive material and a memory metal alloy.

    摘要翻译: 一种用于反射电磁辐射的反射镜装置,所述反射镜装置包括:基板,其具有面向待反射的辐射的反射镜侧和与所述反射镜侧相反的后侧,其中在所述反射镜侧设置有镜面, 用于产生基板的变形的布置安装在基板的背面上,其中致动器装置包括至少一个有源层,其与基板的背面的一部分具有面接合接触; 其中所述至少一个活性层在所述部分内的第一位置处具有第一层厚度,并且在第二位置处具有第二层厚度,所述第二层厚度设置在所述部分内与所述第一位置相距一定距离处,其中所述第一层厚度与所述第二层厚度不同 厚度超过1%; 并且其中所述至少一个有源层包括铁电材料,压电材料,磁致伸缩材料,电致伸缩材料和记忆金属合金中的至少一种。

    RFID-Transponder and device having an RFID-Transponder as well as a method of making an antenna for an RFID-Transponder
    6.
    发明申请
    RFID-Transponder and device having an RFID-Transponder as well as a method of making an antenna for an RFID-Transponder 失效
    具有RFID应答器的RFID应答器和设备以及制造用于RFID应答器的天线的方法

    公开(公告)号:US20090212953A1

    公开(公告)日:2009-08-27

    申请号:US12318875

    申请日:2009-01-12

    IPC分类号: G08B13/14

    摘要: The invention relates to an RFID-transponder, an optical element (150) with an RFID-transponder and an antenna (110) for an RFID-transponder. According to the invention, the antenna (110) is constructed to be optically transparent. The invention additionally relates to a method for producing an antenna (110) for an RFID-transponder. The inventive method for producing an antenna (110) of RFID-transponder is characterized by the following method steps: a) providing an object (150) having a surface to be equipped with the RFID-transponder, b) application of a transparent conductive coating to the surface, c) lithographic structuring of the transparent conductive coating in order to form the antenna (110).

    摘要翻译: 本发明涉及RFID应答器,具有RFID应答器的光学元件(150)和用于RFID应答器的天线(110)。 根据本发明,天线(110)被构造为光学透明的。 本发明还涉及一种用于生产用于RFID应答器的天线(110)的方法。 用于制造RFID应答器的天线(110)的本发明的方法的特征在于以下方法步骤:a)提供具有要被配备有RFID应答器的表面的物体(150),b)施加透明导电涂层 c)透明导电涂层的平版印刷结构以形成天线(110)。

    Apparatus and method for determining centering data for spectacles
    7.
    发明授权
    Apparatus and method for determining centering data for spectacles 有权
    用于确定眼镜中心数据的装置和方法

    公开(公告)号:US07384144B2

    公开(公告)日:2008-06-10

    申请号:US11484666

    申请日:2006-07-12

    IPC分类号: A61B3/10 A61B3/14

    CPC分类号: G02C13/005

    摘要: An apparatus (3) for determining centering data for eyeglasses (2) comprises a fixation device (5) and a recording unit (4) that can be triggered by a computer, records electronic images, and is disposed behind a divider element (8). The fixation device (5) produces at least one speckle pattern. The speckles can be superposed by different patterns, for example, a cross shape. The invention further relates to a method for determining centering data. The inventive method and apparatus allow to measure for test persons having the most different acuity of vision the relative centering data from a short distance while maintaining their usual posture.

    摘要翻译: 一种用于确定眼镜(2)的定心数据的装置(3)包括可由计算机触发的记录装置(5)和记录单元(4),记录电子图像,并设置在分隔元件(8)的后面, 。 固定装置(5)产生至少一个散斑图案。 斑点可以由不同的图案叠加,例如十字形。 本发明还涉及一种用于确定对中数据的方法。 本发明的方法和装置允许对具有最不同视力的测试人员测量相对定心数据从短距离同时保持其通常的姿势。

    Optical apparatus for diffracting radiation having wavelength ≦160 nm
    9.
    发明授权
    Optical apparatus for diffracting radiation having wavelength ≦160 nm 失效
    用于衍射具有波长<= 160nm的辐射的光学装置

    公开(公告)号:US06700952B2

    公开(公告)日:2004-03-02

    申请号:US09760091

    申请日:2001-01-11

    IPC分类号: G21K106

    摘要: There is provided an optical apparatus for radiation with a wavelength ≦160 nm. The apparatus comprises a mirror with a mirror surface, and a first device for generating elastic oscillations with different acoustic wavelengths on the mirror surface due to surface deformations. Radiation impinging on the mirror surface is diffracted in a predetermined range of angles (&agr;).

    摘要翻译: 提供了一种波长<= 160nm的辐射光学装置。 该装置包括具有镜面的反射镜,以及用于由于表面变形而在镜面上产生具有不同声波长的弹性振荡的第一装置。 撞击在镜面上的辐射在预定的角度范围(α)被衍射。

    Electron-optical imaging system having controllable elements
    10.
    发明授权
    Electron-optical imaging system having controllable elements 失效
    具有可控元件的电子光学成像系统

    公开(公告)号:US5519216A

    公开(公告)日:1996-05-21

    申请号:US296678

    申请日:1994-08-26

    摘要: The invention is directed to an electron-optical imaging system such as for an electron microscope. The imaging system has magnetic lenses, current and voltage sources corresponding thereto, a computer, a permanent memory and a touch panel. The electron microscope is manually calibrated when first taken into use by a discrete sequence of different operating conditions. Polynomes of the second degree are adapted to the experimentally calibrated parameter values for the lens currents. The computer polynome coefficients are stored in a permanent memory. Operating states are adjustable via the touch panel on the operating console of the electron microscope. These operating states lie between the calibrated operating states. The lens currents necessary for these operating states are computed in the computer based on the function coefficients stored in the memory and are subsequently emitted to the current sources by the computer. The step width in which the operating states are adjustable is preselectable via the keyboard independently of the position of the calibrated operating conditions.

    摘要翻译: 本发明涉及电子显微镜等电子光学成像系统。 成像系统具有磁性透镜,对应于其的电流和电压源,计算机,永久存储器和触摸面板。 当通过不同操作条件的离散序列首次使用时,电子显微镜被手动校准。 第二度的多义性适用于透镜电流的实验校准参数值。 计算机多项式系数存储在永久存储器中。 操作状态可通过电子显微镜操作台上的触摸面板进行调节。 这些操作状态位于校准的操作状态之间。 这些操作状态所需的镜头电流在计算机中基于存储在存储器中的功能系数来计算,随后由计算机发射到当前的源。 可以通过键盘预先选择操作状态可调节的台阶宽度,而与校准的操作条件的位置无关。