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    • 1. 发明申请
    • Plasma display apparatus
    • 等离子显示装置
    • US20050140591A1
    • 2005-06-30
    • US10510253
    • 2003-03-19
    • Antonius HoltslagMarkus KleinDerk KortFransiscus Vossen
    • Antonius HoltslagMarkus KleinDerk KortFransiscus Vossen
    • G09G3/20G09G3/296G09G3/28
    • G09G3/2965G09G2330/06
    • A plasma display apparatus comprises a waveform generator (WG) coupled between first and the second electrodes (SEl, CEl) to supply, across plasma cells (PCij), a sustain voltage (VCP) with slopes comprising a main part (MA) and a minor part (MI) succeeding the main part (MA). The main part has a duration longer than a formative time 5 lag (FTL) of the plasma cells (PCij), and the minor part has a smaller amplitude than the main part (MA). The plasma cells (pCij) are ignited and sustained by the minor part (MI). The main part (MA) has less steep slopes than the prior-art waveform. Consequently, the EMI produced by the main part (MA) will be at a lower frequency. The minor part (MI) has an amplitude which is relatively low and thus does not add considerably to the EMI, even 10 when its slopes are relatively steep. As the plasma is neither ignited nor sustained by the main part (MA), the main part (MA) further has a lower amplitude than the slope of the prior art and thus produces less EMI.
    • 等离子体显示装置包括耦合在第一和第二电极(SE1,CE1)之间的波形发生器(WG),以跨等离子体电池(PCij)提供具有包括主要部分(MA)和 继续主要部分(MA)的小部分(MI)。 主要部分的持续时间长于等离子体细胞(PCij)的形成时间5滞后(FTL),次要部分的幅度小于主要部分(MA)。 浆细胞(pCij)被小部分(MI)点燃和维持。 主要部分(MA)具有比现有技术波形更少的陡峭斜率。 因此,由主要部分(MA)产生的EMI将处于较低的频率。 次要部分(MI)的幅度相对较低,因此不会显着增加EMI,甚至在其斜率相对陡峭时也是10。 由于等离子体既不被主要部分(MA)点燃也不维持,所以主要部分(MA)还具有比现有技术的斜率更低的振幅,因此产生较小的EMI。
    • 8. 发明授权
    • Opto-electronic component
    • 光电元件
    • US08314547B2
    • 2012-11-20
    • US12679138
    • 2008-08-04
    • Markus KleinNorwin Von MalmBenjamin Claus Krummacher
    • Markus KleinNorwin Von MalmBenjamin Claus Krummacher
    • H01L51/00
    • H01L51/5036H01L51/5262
    • An optoelectronic device comprises an organic layer sequence (1), which emits an electromagnetic radiation (15) having a first wavelength spectrum during operation, and also a structured layer (2) which is disposed downstream of the organic layer sequence (1) in the beam path of the electromagnetic radiation (15) emitted by the organic layer sequence (1) and has first and second regions (2A, 2B). In this case, the first regions (2A) each have a wavelength conversion layer (3) designed to convert at least partially electromagnetic radiation (15) having the first wavelength spectrum into an electromagnetic radiation (16) having a second wavelength spectrum. Furthermore, the second regions (2B) each have a filter layer (4), which is opaque to an electromagnetic radiation having a third wavelength spectrum, which corresponds to at least one part of the second wavelength spectrum.
    • 光电子器件包括在操作期间发射具有第一波长光谱的电磁辐射(15)的有机层序列(1),以及设置在有机层序列(1)的下游的结构化层(2) 由有机层序列(1)发射的电磁辐射(15)的光束路径,并具有第一和第二区域(2A,2B)。 在这种情况下,第一区域(2A)各自具有被设计成将具有第一波长谱的至少部分电磁辐射(15)转换成具有第二波长谱的电磁辐射(16)的波长转换层(3)。 此外,第二区域(2B)各自具有过滤层(4),其对于具有第三波长谱的电磁辐射是不透明的,其对应于第二波长频谱的至少一部分。
    • 9. 发明申请
    • METHOD FOR SERVICING FIELD DEVICES IN AN AUTOMATION PLANT
    • 用于维护自动化设备中的现场设备的方法
    • US20120159366A1
    • 2012-06-21
    • US13311846
    • 2011-12-06
    • Markus KleinJan MerkelPeter Jack
    • Markus KleinJan MerkelPeter Jack
    • G06F3/048
    • H04L41/22G05B19/0426G05B2219/25056G05B2219/25059G05B2219/25067G05B2219/25092G05B2219/31121G05B2219/31132G05B2219/32144H04L12/2814H04L12/282
    • A method for servicing field devices. The servicing of field devices occurs via at least one service unit and corresponding device driver comprehensively describing the field devices, wherein the method comprises method steps as follows: a user is provided on a display a menu structure with a plurality of different menus, wherein the menus describe properties of the field device and/or of the process, in which the field device is installed; the user selects a successive individual menu, which are required for the particular application; the menu elements predetermined by the menu are made available; the user selects from the menu elements those, which are suited for the particular application and configures a user-defined menu structure for the corresponding field device; the configured user-defined menu structure is stored, and, based on the user defined menu structure, the field device is serviced via the device driver associated with the field device.
    • 一种维护现场设备的方法。 现场设备的服务通过综合描述现场设备的至少一个服务单元和对应设备驱动器进行,其中该方法包括以下方法步骤:用户在显示器上提供具有多个不同菜单的菜单结构,其中, 菜单描述现场设备和/或过程的属性,其中安装现场设备; 用户选择特定应用所需的连续单独菜单; 提供由菜单预定的菜单元素可用; 用户从菜单中选择适合特定应用的元素,并配置用于相应现场设备的用户定义的菜单结构; 存储配置的用户定义的菜单结构,并且基于用户定义的菜单结构,通过与现场设备相关联的设备驱动程序对现场设备进行服务。