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    • 1. 发明授权
    • Electroluminescent panel having a layer of germanium nitride between an
electroluminescent layer and a back electrode
    • 电致发光面板在电致发光层和背面电极之间具有氮化锗层
    • US4870322A
    • 1989-09-26
    • US852296
    • 1986-04-15
    • Takeo MatsudairaYasumoto Shimizu
    • Takeo MatsudairaYasumoto Shimizu
    • G09F9/33H05B33/22
    • H05B33/22G09F9/33
    • In an electroluminescent panel comprising a transparent electrode, a back electrode, and an electroluminescent layer between the transparent and the back electrodes, an intermediate layer is interposed between the electroluminescent layer and the back electrode and essentially consists of germanium and nitrogen. The intermediate layer serves as a light absorption layer for absorbing ambient light. A nitrogen distribution in the intermediate layer may be either substantially uniform or decreased from the electroluminescent layer side towards the back electrode side. The decrease may be made stepwise or continuously. The intermediate layer may be superposed through a dielectric layer or directly on the electroluminescent layer. Only oxygen may be added in intermediate layer to the germanium and the nitrogen, to provide either a substantially uniform oxygen distribution or a variable oxygen distribution which is continuously or stepwise decreased from the electroluminescent layer side towards the back electrode side.
    • 在透明电极和后电极之间的透明电极,背面电极和电致发光层的电致发光面板中,介于电致发光层和背面电极之间,并且基本上由锗和氮组成的中间层。 中间层用作吸收环境光的光吸收层。 中间层中的氮分布可以从电致发光层侧向后电极侧基本上均匀或者减小。 可以逐步地或连续地进行减少。 中间层可以通过电介质层或直接在电致发光层上叠加。 可以在中间层中仅向氧和氮中加入氧,以提供基本上均匀的氧分布或从电致发光层侧向后电极侧连续或逐步降低的可变氧分布。
    • 3. 发明授权
    • Method of manufacturing an electroluminescent panel without any adverse
influence on an underlying layer
    • 制造电致发光面板的方法,对底层没有任何不利影响
    • US4683044A
    • 1987-07-28
    • US879050
    • 1986-06-26
    • Yasumoto ShimizuTakeo Matsudaira
    • Yasumoto ShimizuTakeo Matsudaira
    • H05B33/10C23C14/00
    • H05B33/10
    • In an electroluminescent panel which in turn comprises a transparent electrode member on a transparent substrate, a first dielectric layer, an electroluminescent layer, a second dielectric layer, and a back electrode member, at least one of the first and the second dielectric layers is divided into first and second partial dielectric films nearer to and farther from the transparent electrode member, respectively. The first partial dielectric film is deposited in a nonoxidization atmosphere by the use of a pellet which essentially consists of silicon and oxygen. Thereafter, the second partial dielectric film is deposited on the first partial dielectric film in an oxygen atmosphere and has a relative dielectric constant greater than the first partial dielectric film. Alternatively, each of the first and the second dielectric layers may comprise the first partial dielectric film of silicon and oxide and the second partial dielectric film mentioned above.
    • 在电致发光面板中,其又包括在透明基板上的透明电极部件,第一电介质层,电致发光层,第二电介质层和背面电极部件,第一和第二电介质层中的至少一个被分割 分别进入离透明电极部件更靠近并远离透明电极部件的第一和第二部分电介质膜。 第一部分介电膜通过使用基本上由硅和氧组成的颗粒在非氧化气氛中沉积。 此后,第二部分电介质膜在氧气氛中沉积在第一部分电介质膜上,并且具有大于第一部分电介质膜的相对介电常数。 或者,第一和第二电介质层中的每个可以包括硅和氧化物的第一部分电介质膜和上述第二部分电介质膜。
    • 9. 发明授权
    • Beam splitter having a partial semitransparent layer assigned to a
plurality of outgoing light beams
    • 分束器具有分配给多个出射光束的部分半透明层
    • US4765715A
    • 1988-08-23
    • US69659
    • 1987-07-06
    • Takeo MatsudairaTeiji Inoue
    • Takeo MatsudairaTeiji Inoue
    • G02B5/00G02B5/28G02B27/10G02B27/14
    • G02B27/106G02B27/142G02B27/144
    • In a beam splitter for splitting a single input light beam into a plurality of outgoing light beams, a transparent block has first and second planar surfaces substantially parallel to each other. Antireflection and reflection layers are laid on incident and reflection areas defined on the first planar surface while a plurality of partial semitransparent layers are attached to an outgoing area defined on the second planar surface. The incident light beam enters through the antireflection layer into the block and exits as the outgoing light beams through the partial semitransparent layers. At least one of the partial semitransparent layers has a width wide enough to at least two of the outgoing light beams. The partial semitransparent layers may be deposited on the first planar surface in the vicinity of the antireflection layer. In this event, the reflection layer is deposited on the second planar surface.
    • 在用于将单个输入光束分成多个输出光束的分束器中,透明块具有基本上彼此平行的第一和第二平面。 防反射层被放置在限定在第一平面表面上的入射和反射区域上,而多个部分半透明层附着到限定在第二平面表面上的出射区域。 入射光束通过反射防止层进入该块并且随着出射光束穿过部分半透明层而离开。 部分半透明层中的至少一个具有足够宽度的至少两个出射光束的宽度。 部分半透明层可以沉积在防反射层附近的第一平面表面上。 在这种情况下,反射层沉积在第二平面上。
    • 10. 发明授权
    • Electroluminescent panel comprising a dielectric layer of a mixture of
tantalum oxide and aluminum oxide
    • 电致发光面板包括氧化钽和氧化铝的混合物的电介质层
    • US4670355A
    • 1987-06-02
    • US706003
    • 1985-02-27
    • Takeo Matsudaira
    • Takeo Matsudaira
    • H05B33/12H05B33/14H05B33/22B32B17/06
    • H05B33/145H05B33/22Y10S428/917
    • In an electroluminescent panel comprising a first or transparent electrode, a second or back electrode, and an intermediate layer between the first and the second electrodes, a dielectric layer is included in the intermediate layer and comprises a mixture of tantalum oxide and aluminum oxide. The dielectric layer results from a target of tantalum pentoxide and aluminum oxide by the use of sputtering. Preferably, the target comprises the tantalum oxide and aluminum oxide in a ratio selected between 50:50 and 95:5 by weight. The dielectric layer may be divided into first and second dielectric films which underlies and overlies the electroluminescent layer, respectively. The electroluminescent layer may also be divided into first and second electroluminescent films with a transparent dielectric film interposed therebetween.
    • 在包括第一或透明电极,第二或背面电极以及第一和第二电极之间的中间层的电致发光面板中,介电层包括在中间层中并且包括氧化钽和氧化铝的混合物。 介电层由五氧化二钽和氧化铝的靶用溅射法制成。 优选地,靶包含比例为50:50至95:5的重量比的氧化钽和氧化铝。 电介质层可分为第一和第二电介质膜,其分别位于电致发光层的下面并覆盖着电致发光层。 电致发光层也可以分为具有介于其间的透明电介质膜的第一和第二电致发光膜。