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    • 3. 发明专利
    • High-pressure discharge lamp and lighting fixture
    • 高压放电灯和照明灯具
    • JP2010123489A
    • 2010-06-03
    • JP2008297917
    • 2008-11-21
    • Toshiba Lighting & Technology Corp東芝ライテック株式会社
    • WATANABE MIHOSAKAGUCHI SADAO
    • H01J61/35
    • PROBLEM TO BE SOLVED: To provide a high-pressure discharge lamp with diffusion property and total luminous flux improved by being equipped with a light diffusion film in which a diffusion material having a specific structure is electrostatic-coated, and provide a lighting fixture equipped with the lamp.
      SOLUTION: The high-pressure discharge lamp includes a translucent airtight vessel 1, at least one pair of electrodes 2, 2 arranged in the translucent airtight vessel, an arc tube IT having an ionized medium enclosed inside the translucent airtight vessel, an outer tube OT which surrounds the arc tube and the inside of which is kept vacuum against the atmosphere or which encloses inert gas atmosphere, and a light diffusion film LD formed by being coated with hollow metal oxide particulates on the inside face of the outer tube without including a binding material.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:为了提供具有扩散特性和总光通量的高压放电灯,通过配备光漫射膜,其中具有特定结构的扩散材料被静电涂覆,并提供照明 配有灯具的灯具。 解决方案:高压放电灯包括半透明气密容器1,布置在半透明气密容器中的至少一对电极2,2,具有封闭在透光性气密容器内部的电离介质的电弧管IT, 围绕电弧管的外管OT,其内部保持真空抵抗大气或包围惰性气体气氛;以及光散射膜LD,其通过在外管的内表面上涂覆有中空金属氧化物微粒而形成,而没有 包括装订材料。 版权所有(C)2010,JPO&INPIT
    • 4. 发明专利
    • Light source
    • 光源
    • JP2007180002A
    • 2007-07-12
    • JP2006126913
    • 2006-04-28
    • Toshiba Lighting & Technology Corp東芝ライテック株式会社
    • WATANABE MIHOOKAMURA KAZUYOSHIOKAWA HIDEKI
    • H01J61/35
    • PROBLEM TO BE SOLVED: To provide a light source with reduced insect attraction factor while securing a performance as a lighting.
      SOLUTION: In the light source, an ultraviolet shielding layer which is formed of an ultraviolet ray shielding material that is expressed by a general formula: (ZnO)
      k In
      2 O
      3 (k is an odd number) and has zinc complex oxide particulates as a main component with a crystal structure being trigonal is installed on an inner face or outer face of a translucent container, and a light-emitting means is installed on the inside of the container, and the average particle size of the zinc complex oxide particulates is 0.03-1.0 μm.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供具有降低的昆虫吸引因子的光源,同时确保作为照明的性能。 解决方案:在光源中,由紫外线屏蔽材料形成的紫外线屏蔽层,其由以下通式表示:(ZnO) 2 <3> (k为奇数),并且具有锌复合氧化物微粒作为主要成分,其晶体结构为三角形安装在半透明容器的内表面或外表面上,并且光 其特征在于,将所述装置安装在所述容器的内部,所述锌复合氧化物微粒的平均粒径为0.03〜1.0μm。 版权所有(C)2007,JPO&INPIT
    • 8. 发明专利
    • Fluorescent lamp and luminaire
    • 荧光灯和荧光灯
    • JP2008091139A
    • 2008-04-17
    • JP2006269160
    • 2006-09-29
    • Toshiba Lighting & Technology Corp東芝ライテック株式会社
    • WATANABE MIHONISHIMURA KIYOSHI
    • H01J61/35
    • PROBLEM TO BE SOLVED: To provide a fluorescent lamp in which management and adjustment of a protection layer material is easy and the occurrence of cracks and separation of the protection layer and a phosphor layer can be suppressed, and to provide a luminaire installing this lamp.
      SOLUTION: The fluorescent lamp includes a glass bulb 1 having a curved portion, an electrode generating means 2 which generates discharge in the glass bulb 1, a discharge medium filled into the glass bulb 1, a protection layer 3 which is formed on the inner face of the glass bulb 1 and has a particulate layer 3a consisting of particulates with an average particle size of 100 nm or less and spherical particles 3b which consist of a coagulate of the particulates and have larger diameter than the particulates, and a part of which is embedded in the particulate layer 3a and the rest is formed to protrude from the particulate layer 3a, and a phosphor layer 4 formed on the protection layer 3.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供一种荧光灯,其中保护层材料的管理和调整容易,并且可以抑制保护层和荧光体层的裂纹和分离的发生,并且提供照明装置 这盏灯 解决方案:荧光灯包括具有弯曲部分的玻璃灯泡1,在玻璃灯泡1中产生放电的电极产生装置2,填充到玻璃灯泡1中的放电介质,形成在玻璃灯泡1上的保护层3 玻璃灯泡1的内表面,具有由平均粒径为100nm以下的微粒构成的粒子层3a和由微粒的凝结物构成且直径大于粒子的球状粒子3b, 嵌入在颗粒层3a中,其余部分形成为从颗粒层3a突出,以及形成在保护层3上的荧光体层4.版权所有(C)2008,JPO&INPIT