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    • 1. 发明授权
    • Low emissivity glass and glass articles made of low emissivity glass
    • 低辐射玻璃和低辐射玻璃制成的玻璃制品
    • US06447921B1
    • 2002-09-10
    • US09531899
    • 2000-03-20
    • Hodaka NorimatsuMasahiro HirataYukio SueyoshiAkira FujisawaToru Yamamoto
    • Hodaka NorimatsuMasahiro HirataYukio SueyoshiAkira FujisawaToru Yamamoto
    • B32B1706
    • C03C17/3417
    • A low emissivity (low-E) glass and glass articles made of the low emissivity glass are provided, which permit controlling the solar heat shading property within a certain range without spoiling the transparency and heat insulating property thereof, to thereby realize a comfortable living condition in a wide region of the world or in a wide location of installment. A plurality of metallic oxide based films comprising metallic oxide are laminated on the surface of a glass substrate. The metallic oxide based films include a tin oxide based film containing antimony (SnSbOx film), and a tin oxide based film containing fluorine (SnO2:F film), and further may include a tin oxide based film consisting essentially of tin oxide, and a silicon oxide based film. The SnSbOx film contains antimony in an amount of 0.01 to 0.2 in terms of mole ratio relative to an amount of tin (=Sb mol/Sn mol), to avoid an excessive decrease in visible light transmittance.
    • 提供由低辐射玻璃制成的低辐射率(低E)玻璃和玻璃制品,其允许将太阳能遮光性能控制在一定范围内,而不会破坏其透明性和隔热性,从而实现舒适的生活条件 在世界广泛地区或分期付款的广泛地区。 在玻璃基板的表面上层叠多个金属氧化物系金属氧化物系膜。 金属氧化物系膜包含含有锑(SnSbOx膜)的锡氧化物系膜和含氟(SnO 2 :F膜)的氧化锡系膜,还可以含有氧化锡系膜,其主要由氧化锡构成, 氧化硅基膜。 SnSbOx膜相对于锡的摩尔比(= Sbmol / Sn mol)含有0.01〜0.2的锑,以避免可见光透射率的过度降低。
    • 4. 发明授权
    • Substrate for photoelectric conversion device, method of manufacturing the same, and photoelectric conversion device using the same
    • 光电转换装置用基板及其制造方法以及使用该基板的光电转换装置
    • US06504139B1
    • 2003-01-07
    • US09579757
    • 2000-05-26
    • Masahiro HirataTsuyoshi OtaniAkira FujisawaHodaka Norimatsu
    • Masahiro HirataTsuyoshi OtaniAkira FujisawaHodaka Norimatsu
    • H01J4014
    • H01L31/1884C03C17/3417H01L31/02363H01L31/02366H01L31/03921Y02E10/50
    • A substrate for a photoelectric conversion device that is effective in trapping light in a photovoltaic layer and can be manufactured by industrial mass-production, a method of manufacturing the same, and a photoelectric conversion device using the same. On a glass sheet containing an alkaline component, a first undercoating film containing tin oxide as a main component, a second undercoating film, and a conductive film containing tin oxide as a main component are formed in this order, thus obtaining a substrate. The first undercoating film is formed by a thermal decomposition oxidation reaction of coating-film forming materials containing chlorine on glass with a temperature of at least 600° C. In the first undercoating film, holes are formed without an after-treatment. The surface of the conductive film above the holes has larger irregularities, thus scattering incident light on a photovoltaic unit. Further, on the photovoltaic unit, a back electrode is formed, thus obtaining a photoelectric conversion device.
    • 一种用于光电转换装置的基板,其有效地捕获光伏层中的光并且可以通过工业量产制造,其制造方法和使用该光电转换装置的光电转换装置。 在含有碱性成分的玻璃片上,依次形成含有氧化锡作为主要成分的第一底涂膜,第二底涂膜和含有氧化锡作为主要成分的导电膜,得到基材。 第一底涂膜通过在玻璃上含有氯的涂膜形成材料在至少600℃的温度下进行热分解氧化反应而形成。在第一底涂膜中,形成无后处理的孔。 孔上方的导电膜的表面具有较大的不规则性,从而将入射光散射到光电单元上。 此外,在光电单元上形成背面电极,从而获得光电转换装置。
    • 5. 发明授权
    • Manufacturing method of rod with optical thin film and rod block for use in the method
    • 该方法用于制造具有光学薄膜和棒块的棒
    • US07154685B2
    • 2006-12-26
    • US10730790
    • 2003-12-09
    • Hodaka Norimatsu
    • Hodaka Norimatsu
    • G02B6/00
    • G02B3/0075G02B3/0012G02B3/0056G02B3/0087Y10T428/10
    • A method for manufacturing a rod with an optical thin film which comprises forming a rod block by arranging a plurality of rods each having a circular cross section in parallel to one another along the axis of each rod and by allowing a resin to enter gaps between rods adjacent to one another to fix the rods to one another. The rod block is cut into a predetermined length. The endfaces of each rod positioned on the cut endface of the rod block are then polished. An optical thin film is formed on the polished endfaces of each rod. The resin has a melting point higher than the temperature used in forming the film. The rods are separated from one another by removing the resin from the rod block.
    • 一种用于制造具有光学薄膜的棒的方法,包括通过沿着每个杆的轴线彼此平行地布置具有圆形横截面的多个杆并且通过使树脂进入杆之间的间隙来形成杆块 彼此相邻以将杆固定到彼此。 将棒块切割成预定长度。 然后抛光位于杆块的切割端面上的每个杆的端面。 在每个棒的抛光端面上形成光学薄膜。 该树脂的熔点高于用于形成膜的温度。 通过从棒块中除去树脂将棒彼此分离。