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    • 21. 发明申请
    • PATTERN FORMING METHOD
    • 图案形成方法
    • US20120127454A1
    • 2012-05-24
    • US13239449
    • 2011-09-22
    • Hiroko NAKAMURAKoji AsakawaShigeki HattoriSatoshi TanakaToshiya Kotani
    • Hiroko NAKAMURAKoji AsakawaShigeki HattoriSatoshi TanakaToshiya Kotani
    • G03B27/32
    • G03F7/0002B81C1/00031B81C2201/0149B82Y10/00B82Y40/00
    • According to one embodiment, a pattern including first and second block phases is formed by self-assembling a block copolymer onto a film to be processed. The entire block copolymer present in a first region is removed under a first condition by carrying out energy beam irradiation and development, thereby leaving a pattern including the first and second block phases in a region other than the first region. The first block phase present in a second region is selectively removed under a second condition by carrying out energy beam irradiation and development, thereby leaving a pattern including the first and second block phases in an overlap region between a region other than the first region and a region other than the second region, and leaving a pattern of second block phase in the second region excluding the overlap region. The film is etched with the left patterns as masks.
    • 根据一个实施方案,通过将嵌段共聚物自组装成待加工的膜来形成包括第一和第二嵌段相的图案。 存在于第一区域中的整个嵌段共聚物在第一条件下通过进行能量束照射和显影而除去,从而在第一区域以外的区域留下包括第一和第二嵌段相的图案。 存在于第二区域中的第一块相位通过进行能量束照射和显影而在第二条件下被选择性地去除,从而在包括第一区域和第一区域之间的重叠区域中留下包括第一和第二块相的图案, 区域,并且在除了重叠区域之外的第二区域中留下第二块相位的图案。 用左图案蚀刻该胶片作为掩模。
    • 25. 发明授权
    • Displaying device and lighting device employing organic electroluminescence element
    • 使用有机电致发光元件的显示装置和照明装置
    • US07928353B2
    • 2011-04-19
    • US12392691
    • 2009-02-25
    • Akira FujimotoKoji AsakawaTsutomu NakanishiEishi TsutsumiRyota Kitagawa
    • Akira FujimotoKoji AsakawaTsutomu NakanishiEishi TsutsumiRyota Kitagawa
    • H01J1/46
    • H01L51/5203H01L51/5234H01L2251/5315
    • The Present invention provides an organic EL display and a lighting device having high efficiency. The organic EL display comprises a substrate, a pixel-driving circuit unit, and pixels arranged in the form of a matrix on the substrate. The pixel comprises a light-emitting part, and the light-emitting part is composed of a first electrode placed near to the substrate, a second electrode placed far from the substrate, and at least one organic layer placed between the first and second electrodes. The second electrode has a metal electrode layer having a thickness of 10 nm to 200 nm, and the metal electrode layer comprises a metal part and plural openings penetrating through the layer. The metal part is seamless and formed of metal continuously connected without breaks between any points therein. The openings have an average opening diameter of 10 nm to 780 nm, and are arranged so periodically that the distribution of the arrangement is represented by a radial distribution function curve having a half-width of 5 nm to 300 nm.
    • 本发明提供一种高效率的有机EL显示器和照明装置。 有机EL显示器包括基板,像素驱动电路单元和在基板上以矩阵形式布置的像素。 像素包括发光部分,并且发光部分由放置在基板附近的第一电极,远离基板的第二电极和放置在第一和第二电极之间的至少一个有机层组成。 第二电极具有厚度为10nm至200nm的金属电极层,并且金属电极层包括金属部分和贯穿该层的多个开口。 金属部件是无缝的,并且由连续连接的金属形成,其中任何点之间没有断裂。 开口的平均开口直径为10nm〜780nm,并且周期性地布置,使得布置的分布由半宽度为5nm至300nm的径向分布函数曲线表示。
    • 27. 发明授权
    • Electrostatic spraying device
    • 静电喷涂装置
    • US07823808B2
    • 2010-11-02
    • US10588437
    • 2004-02-09
    • Naoki YamaguchiKoji AsakawaDavid Edward WilsonShunichi Nagasawa
    • Naoki YamaguchiKoji AsakawaDavid Edward WilsonShunichi Nagasawa
    • B05B5/00A62C13/62A62C11/00B01D17/00B04B9/04A61M11/00A61M15/00B65D35/28B65D35/00B65D1/32G01F11/00B05B7/00
    • B05B5/0531B05B5/1691
    • An electrostatic spraying device having a removable cartridge with a reservoir containing a volume of liquid compositions to be electrically sprayed on a user's skin. The device includes a nozzle for dispensing the liquid as well as an emitter electrode disposed adjacent to the nozzle for charging the liquid composition just being dispensed from the nozzle. A field electrode surrounds the reservoir in order to charge the liquid composition within the reservoir, thereby avoiding an occurrence of electric current which would otherwise flow in the liquid composition and would deteriorate the composition remaining in the reservoir. The reservoir is devoid of the field electrode, and therefor can be designed into a simple and compact structure without being restricted by the field electrode, assuring to have an enhanced liquid containing volume in relation to the bulk of the removable cartridge.
    • 一种静电喷涂装置,其具有可移除的墨盒,该墨盒具有储存器,该储存器包含一定量的液体组合物,以电喷涂在使用者的皮肤上。 该装置包括用于分配液体的喷嘴以及邻近喷嘴设置的用于对从喷嘴分配的液体组合物进行充电的发射电极。 场电极围绕储存器,以便对储存器内的液体组合物进行充电,从而避免电流的发生,否则会流入液体组合物中,并且会使残留在储存器中的组合物劣化。 储存器没有场电极,因此可以将其设计成简单紧凑的结构,而不受场电极的限制,确保相对于可移除盒的体积具有增强的液体容积。
    • 30. 发明申请
    • SEMICONDUCTOR LIGHT EMITTING DEVICE AND METHOD FOR MANUFACTURING THE SAME
    • 半导体发光器件及其制造方法
    • US20090042325A1
    • 2009-02-12
    • US12246099
    • 2008-10-06
    • Akira FujimotoKoji AsakawaKenichi Ohashi
    • Akira FujimotoKoji AsakawaKenichi Ohashi
    • H01L21/02
    • H01L33/22
    • In a semiconductor light emitting device, a semiconductor light emitting element has a light extracted surface on which a plurality of convex structures is formed. The convex structures each have a conical mesa portion constituting a refractive index gradient structure, a cylindrical portion constituting a diffraction grating structure, and a conical portion constituting a refractive index gradient structure. The mesa portion, cylindrical portion, and conical portion are arranged in this order from the light extracted surface. The period between the convex structures is longer than 1/(the refractive index of an external medium+the refractive index of the convex structures) of an emission wavelength and equal to or shorter than the emission wavelength. The circle-equivalent average diameter of the cylindrical portion is ⅓ to 9/10 of that of the bottom of the mesa portion.
    • 在半导体发光器件中,半导体发光元件具有在其上形成有多个凸起结构的光提取表面。 凸起结构各自具有构成折射率梯度结构的圆锥台面部分,构成衍射光栅结构的圆筒部分和构成折射率梯度结构的锥形部分。 台面部分,圆柱形部分和锥形部分从光提取表面依次排列。 凸结构之间的周期长于发射波长的1 /(外部介质的折射率+凸起结构的折射率)等于或小于发射波长。 圆筒部的圆当量平均直径为台面部的底部的圆当量平均直径的1/3〜9/10。