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    • 5. 发明授权
    • Organic light emitting device having surface-treated bottom electrode
    • 具有表面处理底部电极的有机发光器件
    • US08058796B2
    • 2011-11-15
    • US12087465
    • 2007-01-08
    • Jae Seung LeeJung Bum KimYoung Chul Lee
    • Jae Seung LeeJung Bum KimYoung Chul Lee
    • G09G3/30H01J35/24H01J1/62
    • C09K11/06H05B33/14
    • Disclosed is a method of manufacturing an organic light emitting device, which comprises the steps of successively stacking a bottom electrode, an organic layer including an emission layer, and a top electrode, the method further comprising the step of: surface-treating the bottom electrode with ion beam etching before stacking the organic layer. By effectively removing impurities such as polymer materials or oxidation films, which are formed on the bottom electrode of the organic light emitting device, not only electron injection and hole injection in the organic light emitting device progress smoothly, but also an operation voltage is lowered and performance reliability can ensured because the surface roughness of the bottom electrode is maintained at the same level before and after ion milling.
    • 公开了一种制造有机发光器件的方法,其包括以下步骤:连续堆叠底电极,包括发射层的有机层和顶电极,所述方法还包括以下步骤:对所述底电极进行表面处理 在堆叠有机层之前进行离子束蚀刻。 通过有效地除去形成在有机发光器件的底部电极上的诸如聚合物材料或氧化膜的杂质,不仅有机发光器件中的电子注入和空穴注入进行顺利,还降低了操作电压, 由于底电极的表面粗糙度在离子研磨前后维持在相同的水平,所以可确保性能的可靠性。
    • 6. 发明申请
    • X-RAY SYSTEM WITH EFFICIENT ANODE HEAT DISSIPATION
    • 具有高效阳极散热的X射线系统
    • US20110051895A1
    • 2011-03-03
    • US12990814
    • 2009-05-04
    • Gereon VogtmeierRainer PietigAstrid LewalterRolf Karl Otto Behling
    • Gereon VogtmeierRainer PietigAstrid LewalterRolf Karl Otto Behling
    • H05G1/70H01J35/24B82Y99/00
    • H01J35/14A61B6/032A61B6/4021A61B6/4028A61B6/4085A61B6/4488H01J35/26H01J35/30
    • X-ray systems for use in high-resolution imaging applications with an improved power rating are provided. An X-ray source comprises at least one integrated actuator unit (206, 206′, 206a or 206b) for performing at least one translational and/or rotational displacement by moving the position of the X-ray source's anode (204, 204′, 204a′ or 204b′) relative to a stationary reference position. This helps to overcome power limitations due to an overheating of the anode at its focal ̂spot position (205). In addition to that, a focusing unit (203) for allowing an adapted focusing of the anode's focal spot (205) which compensates deviations in the focal spot size resulting from said anode displacements and/or a deflection means (211, 21 Ia or 21 Ib) for generating an electric and/or magnetic field deflecting the electron beam (202, 202a or 202b) in a direction opposite to the direction of the rotary anode's displacement movement may be provided.
    • 提供了用于具有改进的额定功率的高分辨率成像应用中的X射线系统。 X射线源包括至少一个用于通过移动X射线源的阳极(204,204'和206b)的位置来执行至少一个平移和/或旋转位移的集成致动器单元(206,206',206a或206b) 204a'或204b')。 这有助于克服由于阳极在其焦点位置(205)处的过热而引起的功率限制。 除此之外,聚焦单元(203)用于允许补偿阳极焦点(205)的适应聚焦,其补偿由所述阳极位移引起的焦点尺寸偏差和/或偏转装置(211,211a或21 可以提供用于产生沿着与旋转阳极的位移运动的方向相反的方向偏转电子束(202,202a或202b)的电和/或磁场的电流(Ib)。
    • 9. 发明申请
    • X-ray tube apparatus, x-rya exposure determiner, x-ray generator using them, and radiograph
    • X射线管装置,x-rya曝光确定器,使用它们的X射线发生器和射线照相
    • US20050226384A1
    • 2005-10-13
    • US10500700
    • 2003-01-24
    • Takuya DomotoHiroshi Takano
    • Takuya DomotoHiroshi Takano
    • H05G1/56H05G1/66H01J35/10H01J35/24H01J35/26H01J35/28
    • H05G1/66H05G1/56
    • An X-ray tube apparatus (2) having an anode rotating mechanism for preventing damage of the anode (23) of the X-ray tube apparatus thereby to shorten the X-ray exposure waiting time. When the measured number of revolutions of a rotary anode is determined to be predetermined number from only the impedance or current information on the basis of both voltage information and current information on a stator coil (22) of motor constituent elements for rotating the rotary anode, a DC high voltage outputted from an X-ray high-voltage unit (1) is applied between the anode (23) and a cathode (24) of the X-ray tube apparatus, thus exposing a subject (130) to X-rays and imaging the subject. An X-ray generating device and a radiograph are also disclosed.
    • 一种具有用于防止X射线管装置的阳极(23)的损坏的阳极旋转机构的X射线管装置(2),从而缩短了X射线曝光等待时间。 当基于用于旋转阳极旋转的电动机构成元件的定子线圈(22)上的电压信息和电流信息两者将旋转阳极的测量转数从仅基于阻抗或电流信息确定为预定数量时, 从X射线高压单元(1)输出的直流高电压被施加在X射线管装置的阳极(23)和阴极(24)之间,从而使被摄体(130)暴露于X射线 并对受试者进行成像。 还公开了X射线产生装置和放射照片。
    • 10. 发明申请
    • X-ray generating equipment
    • X射线发生设备
    • US20050207537A1
    • 2005-09-22
    • US10516524
    • 2003-07-17
    • Masaaki Ukita
    • Masaaki Ukita
    • G21K5/02G21K5/08H01J35/08H01J35/28H01J35/10H01J35/24H01J35/26
    • H01J35/28
    • An X-ray generating apparatus for generating X-rays by irradiating a target with an electron beam. Wherein the apparatus includes a vibration applying means for vibrating the target in directions parallel to a surface thereof. A colliding spot of the electron beam is movable on the target while maintaining an X-ray focus in the same position on the electron beam without fluctuating the X-ray focal position. This enlarges an actual area of electron collision on the target to disperse the generated heat, thereby to suppress a local temperature rise of the target due to the electron collision. The X-ray generating apparatus is compact, and has a long life and a high X-ray intensity.
    • 一种用于通过用电子束照射靶来产生X射线的X射线产生装置。 其中,该装置包括振动施加装置,用于使靶在与其表面平行的方向上振动。 电子束的碰撞点可以在靶上移动,同时将X射线焦点保持在电子束的相同位置,而不会影响X射线焦点位置。 这扩大了目标上的电子碰撞的实际面积,以分散发热,从而抑制由于电子碰撞导致的目标物的局部温度升高。 X射线发生装置紧凑,寿命长,X射线强度高。