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    • 3. 发明授权
    • Three dimensional screen display
    • 三维屏幕显示
    • US06714173B2
    • 2004-03-30
    • US09824839
    • 2001-04-04
    • Osamu Shinoura
    • Osamu Shinoura
    • G09G300
    • G03B21/56H04N13/305H04N13/307
    • A screen display apparatus is capable of visually presenting to a viewer E a secondary image 30 (virtual image and/or a real image) as an “inclined” a primary image (subject) 10, and is vertically inclined with respect to said viewer at a position, which is different from a position of said primary image 10. This is realized through an action of a lens 20. With the “inclination, the viewer E views the secondary image 30 with a three-dimensional feeling. The “inclination” is effective when the upper part of the secondary image 30 is located farther from the viewer E than the lower part thereof, and when its angle &thgr; is within a range of 3° to 40°. Further, a screen display apparatus, a plurality of secondary images 30 (in the figures, virtual images 31 and 32) on a primary image 10 as a subject are formed by a microlens array 20 including convex microlenses 221 and concave microlenses 223. The screen display apparatus visually presents those secondary images 30 to a viewer E so that those images are viewed as a single image. As a result, an image is displayed with an intensive three-dimensionally feeling.
    • 屏幕显示装置能够以视觉方式向观众E呈现作为主要图像(被摄体)10的“倾斜”的次要图像30(虚像和/或实像),并且相对于所述观看者垂直倾斜 与所述主图像10的位置不同的位置,这是通过透镜20的动作来实现的。利用“倾斜度”,观看者E以三维感觉观看次要图像30,“倾斜度” 当副图像30的上部比观察者E的下部远离其下部,并且当其角度θ在3°至40°的范围内时是有效的,此外,屏幕显示装置,多个 作为被摄体的原始图像10上的辅助图像30(在图中,虚拟图像31和32)由包括凸出的微透镜221和凹入的微透镜223的微透镜阵列20形成。屏幕显示装置可视地将这些次级图像30呈现到 观众E就这样 这些图像被视为单个图像。 结果,以强烈的三维感觉显示图像。
    • 5. 发明授权
    • Capacitor and method of manufacturing same
    • 电容器及其制造方法
    • US07592626B2
    • 2009-09-22
    • US11635000
    • 2006-12-07
    • Yumiko OzakiOsamu Shinoura
    • Yumiko OzakiOsamu Shinoura
    • H01L27/108
    • H01G4/206H01L28/55H05K1/162H05K2201/0175H05K2201/0195H05K2201/0355H05K2201/09309H05K2203/1105H05K2203/135
    • A capacitor comprises: a lower electrode formed of a foil made of a polycrystalline metal; an upper conductor layer; and a dielectric layer disposed between the lower electrode and the upper electrode layer. Grain boundaries of the polycrystalline metal appear at the top surface of the lower electrode. The capacitor further comprises an insulator that is disposed between the top surface of the dielectric layer and the bottom surface of the upper electrode layer and that is present only in part of a region in which the top surface of the dielectric layer and the bottom surface of the upper electrode layer face each other. The insulator is disposed to cover at least part of the grain boundaries appearing at the top surface of the lower electrode when seen from above the top surface of the dielectric layer. The insulator is formed by electrophoresis.
    • 电容器包括:由多晶金属制成的箔形成的下电极; 上导体层; 以及设置在下电极和上电极层之间的电介质层。 多晶金属的晶界出现在下电极的顶表面。 电容器还包括设置在电介质层的顶表面和上电极层的底表面之间的绝缘体,并且其仅存在于介电层的顶表面和底表面的部分区域中的一部分 上电极层彼此面对。 当从电介质层的顶表面上方观察时,绝缘体设置成覆盖出现在下电极的顶表面处的晶界的至少一部分。 绝缘体通过电泳形成。
    • 7. 发明授权
    • Magnetic recording medium
    • 磁记录介质
    • US4511629A
    • 1985-04-16
    • US463419
    • 1983-02-03
    • Ryozo KonnoMakio SugaiYuichi KubotaMasaharu NishimatsuYukihiro IsobeKazushi TanakaOsamu Shinoura
    • Ryozo KonnoMakio SugaiYuichi KubotaMasaharu NishimatsuYukihiro IsobeKazushi TanakaOsamu Shinoura
    • C09D5/23G11B5/738H01F10/00B05D5/12
    • G11B5/738Y10S428/90Y10T428/31935
    • In a magnetic recording medium made by applying a non-magnetic undercoat and a magnetic top coat on a base, the undercoat comprises a radiation-curable coating material which contains a compound with a molecular weight of not less than 400, having one type of double bond selected from among acrylic, allylic, and maleic double bonds, the undercoat being formed by exposure to radiation. Specifically, the undercoating material contains at least two types of compounds selected from (A) those having a molecular weight of over 5000, preferably over 8000 and having two or more double bonds selected as above, (B) those having a molecular weight of 400 or more but less than 500, preferably in the range of 600 to 3000, and two or more double bonds selected as above, and (C) those having a molecular weight of less than 400 and one or more double bonds selected from among acrylic, allylic, maleic, and styrenic double bonds. At least two types of the compounds are used in a mixing ratio of 0-90 wt % (A), 0-80 wt % (B), and 0-50 wt % wt % (C).
    • 在通过在基底上施加非磁性底涂层和磁性面漆制成的磁记录介质中,底涂层包含含有分子量不小于400的化合物的辐射固化涂层材料,具有一种类型的双 键从丙烯酸,烯丙基和马来双键中选择,底涂层通过暴露于辐射形成。 具体地说,底涂层材料含有至少两种选自(A)分子量超过5000,优选超过8000,具有两个以上选自上述双键的化合物,(B)分子量为400 或更多但小于500,优选在600至3000的范围内,以及如上选择的两个或更多个双键,和(C)分子量小于400的那些和选自丙烯酸, 烯丙基,马来酸和苯乙烯双键。 以0-90重量%(A),0-80重量%(B)和0-50重量%重量(C)的混合比使用至少两种类型的化合物。
    • 9. 发明授权
    • Method of manufacturing capacitor
    • 制造电容器的方法
    • US07773364B2
    • 2010-08-10
    • US11779597
    • 2007-07-18
    • Tomohiko KatoYuko SayaOsamu Shinoura
    • Tomohiko KatoYuko SayaOsamu Shinoura
    • H01G4/06
    • H01G4/005H01G4/33Y10T29/417Y10T29/435
    • One capacitor fabrication process including metal layer forming a metal layer on one surface of a substrate, dielectric layer forming a dielectric layer on the metal layer, metal foil forming a metal foil on the dielectric layer, separating the noble metal layer from the dielectric layer, and electrode layer forming an electrode layer on the second surface of the dielectric layer, wherein the second surface faces away from the first surface of the dielectric layer with the metal foil. Another capacitor fabrication process includes separation layer forming a separation layer on one surface of a substrate, dielectric layer forming a dielectric layer on the separation layer, metal foil forming a metal foil the dielectric layer, separating the substrate from the separation layer, and an electrode layer forming an electrode layer on the second surface of the dielectric layer, wherein the second surface faces away from the first surface of said dielectric layer with the metal foil. A thin-film capacitor has higher capacity, is so slimmed down and has a form well fit for being buried in a base board, and can be used even at high frequencies.
    • 一种电容器制造方法,包括在基板的一个表面上形成金属层的金属层,在金属层上形成电介质层的介电层,在介电层上形成金属箔的金属箔,将贵金属层与电介质层分离, 以及在所述电介质层的第二表面上形成电极层的电极层,其中所述第二表面与所述金属箔相离离所述电介质层的所述第一表面。 另一种电容器制造方法包括在基板的一个表面上形成分离层的分离层,在分离层上形成电介质层的介电层,形成介电层的金属箔,从分离层分离基板的金属箔和电极 在所述电介质层的第二表面上形成电极层,其中所述第二表面用所述金属箔离开所述电介质层的所述第一表面。 薄膜电容器具有更高的容量,如此薄型化,并且具有很好地埋入基板中的形状,并且甚至可以在高频下使用。
    • 10. 发明申请
    • Capacitor and method of manufacturing same
    • 电容器及其制造方法
    • US20070131935A1
    • 2007-06-14
    • US11635000
    • 2006-12-07
    • Yumiko OzakiOsamu Shinoura
    • Yumiko OzakiOsamu Shinoura
    • H01L27/108
    • H01G4/206H01L28/55H05K1/162H05K2201/0175H05K2201/0195H05K2201/0355H05K2201/09309H05K2203/1105H05K2203/135
    • A capacitor comprises: a lower electrode formed of a foil made of a polycrystalline metal; an upper conductor layer; and a dielectric layer disposed between the lower electrode and the upper electrode layer. Grain boundaries of the polycrystalline metal appear at the top surface of the lower electrode. The capacitor further comprises an insulator that is disposed between the top surface of the dielectric layer and the bottom surface of the upper electrode layer and that is present only in part of a region in which the top surface of the dielectric layer and the bottom surface of the upper electrode layer face each other. The insulator is disposed to cover at least part of the grain boundaries appearing at the top surface of the lower electrode when seen from above the top surface of the dielectric layer. The insulator is formed by electrophoresis.
    • 电容器包括:由多晶金属制成的箔形成的下电极; 上导体层; 以及设置在下电极和上电极层之间的电介质层。 多晶金属的晶界出现在下电极的顶表面。 电容器还包括设置在电介质层的顶表面和上电极层的底表面之间的绝缘体,并且其仅存在于介电层的顶表面和底表面的部分区域中的一部分 上电极层彼此面对。 当从电介质层的顶表面上方观察时,绝缘体设置成覆盖出现在下电极的顶表面处的晶界的至少一部分。 绝缘体通过电泳形成。