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    • 1. 发明授权
    • Film mirror, production process of same and reflection device for solar power generation comprising same
    • 电影镜,相同的制作工艺及包括太阳能发电的反射装置
    • US09316415B2
    • 2016-04-19
    • US13517014
    • 2010-12-13
    • Hitoshi AdachiYayoi Eguro
    • Hitoshi AdachiYayoi Eguro
    • G02B5/26F24J2/10G02B5/08
    • F24S23/81F24S23/82G02B5/0808G02B5/085Y02E10/40
    • There are disclosed a film mirror, which can be prevented from decrease in specular reflectance when a silver layer that serves as a reflective layer is deteriorated, is lightweight and flexible, can be produced at low cost, can have an enlarged surface area, can be produced on a large scale, exhibits excellent light stability and weather resistance, and exhibits good specular reflectance to solar light; a process for producing the film mirror; and a reflection device for solar power generation, which is equipped with such a film mirror. The film mirror comprises at least an adhesive layer, a silver reflection layer and an upper adjacent layer as constituent layers provided on the resin substrate sequentially in this order, in which at least the upper adjacent layer contains a binder and a corrosion inhibitor for silver.
    • 公开了一种薄膜反射镜,当可以以低成本制造用作反射层的银层劣化,重量轻且柔软的银层时,可以防止镜面反射率的降低,可以具有扩大的表面积 大规模生产,具有优异的光稳定性和耐候性,并且对太阳光具有良好的镜面反射率; 制造薄膜镜的方法; 以及配备有这样的胶片镜的太阳能发电用反射装置。 至少上层相邻层含有粘合剂和银的防腐剂,所述胶片反射镜至少包括粘合剂层,银反射层和作为构成层的上部相邻层,其顺序地设置在树脂基板上。
    • 3. 发明授权
    • Method of manufacturing light-emitting device
    • 制造发光装置的方法
    • US09153752B2
    • 2015-10-06
    • US13817320
    • 2011-08-02
    • Takeshi Kojima
    • Takeshi Kojima
    • H01L21/00H01L33/50H01L33/52H01L21/66H01L33/00H01L33/56
    • H01L33/502H01L22/10H01L33/005H01L33/50H01L33/52H01L33/56H01L2933/0041
    • A method of manufacturing a light-emitting device including a light-emitting element which emits light with a predetermined wavelength and a wavelength conversion portion including a fluorescent substance which is excited by the light emitted from the light-emitting element to emit fluorescence with a wavelength different from the predetermined wavelength, includes the followings. First, spraying so as to apply a liquid mixture containing a layered silicate mineral and a translucent ceramic precursor on the light-emitting element from a nozzle is performed while the nozzle is moved relative to the light-emitting element. Subsequently, forming of the wavelength conversion portion by heating the sprayed and applied liquid mixture is performed.
    • 一种制造发光装置的方法,所述发光装置包括发射具有预定波长的光的发光元件和包括荧光物质的波长转换部分,所述荧光物质被从所述发光元件发射的光激发以发射具有波长的荧光 与预定波长不同,包括以下内容。 首先,在喷嘴相对于发光元件移动的同时,进行喷涂,以从喷嘴将含有层状硅酸盐矿物和半透明陶瓷前体的液体混合物施加到发光元件上。 随后,进行通过加热喷射和施加的液体混合物来形成波长转换部分。
    • 5. 发明授权
    • Wafer lens, laminated wafer lens, wafer lens cutting method and laminated wafer lens cutting method
    • 晶片透镜,层压晶片透镜,晶片透镜切割方法和层压晶片透镜切割方法
    • US08928982B2
    • 2015-01-06
    • US13642654
    • 2011-04-20
    • Tougo TeramotoAkira SatoTohru Tominami
    • Tougo TeramotoAkira SatoTohru Tominami
    • G02B27/10G02B13/00G02B3/00
    • G02B13/0085G02B3/0012G02B3/0056G02B13/006Y10T83/0524Y10T156/1052
    • A laminated wafer lens includes a wafer lens and a spacer substrate bonded to each other. The wafer lens includes a resin section provided on a surface of a glass substrate. The resin section includes lens portions and interval portions, each interval portion provided between adjacent lens portions. The spacer substrate has openings at positions corresponding to the respective lens portions. The lens portions are arrayed in row and column directions in a matrix fashion. The interval portions include first and second interval portions, the second interval portion longer than the first interval portion. The spacer substrate includes interval portions each of which is provided between adjacent openings. The interval portions include third and fourth interval portions corresponding to the first and second interval portions, respectively, the fourth interval portion being longer than the third interval portion.
    • 层叠晶片透镜包括彼此结合的晶片透镜和间隔基板。 晶片透镜包括设置在玻璃基板的表面上的树脂部。 树脂部分包括透镜部分和间隔部分,每个间隔部分设置在相邻透镜部分之间。 间隔基板在对应于各个透镜部分的位置处具有开口。 透镜部分以矩阵方式排列在行和列方向上。 间隔部分包括第一和第二间隔部分,第二间隔部分比第一间隔部分长。 间隔基板包括间隔部分,每个间隔部分设置在相邻的开口之间。 间隔部分分别包括对应于第一和第二间隔部分的第三和第四间隔部分,第四间隔部分比第三间隔部分长。
    • 10. 发明申请
    • METHOD OF MANUFACTURING LIGHT-EMITTING DEVICE
    • 制造发光装置的方法
    • US20130149801A1
    • 2013-06-13
    • US13817371
    • 2011-08-02
    • Takeshi Kojima
    • Takeshi Kojima
    • H01L33/50
    • H01L33/502H01L22/10H01L33/005H01L33/50H01L33/52H01L33/56H01L2933/0041
    • A method of manufacturing a light-emitting device includes forming a wave length conversion portion on a light-emitting element. The light emitting device includes a light-emitting element which emits light of a predetermined wavelength and a wavelength conversion portion which includes a fluorescent substance which is excited by the light emitted from the light-emitting element so as to emit fluorescence of a wavelength different from the predetermined wavelength, which wavelength conversion portion is formed by including the fluorescent substance, a layered silicate mineral, and an organometallic compound. The forming the wavelength conversion portion includes forming a fluorescent substance layer on the light-emitting element using a fluorescent substance dispersion liquid including a fluorescent substance and a layered silicate mineral, applying a precursor solution including an organometallic compound on the light-emitting element, and heating the precursor solution applied on the fluorescent substance layer.
    • 一种制造发光器件的方法包括在发光元件上形成波长转换部分。 发光器件包括发射预定波长的光的发光元件和波长转换部分,其包括被从发光元件发射的光激发的荧光物质,以便发射波长不同于 通过包括荧光物质,层状硅酸盐矿物和有机金属化合物形成该波长转换部分的预定波长。 形成波长转换部分包括使用包括荧光物质和层状硅酸盐矿物质的荧光物质分散液在发光元件上形成荧光物质层,在发光元件上施加包含有机金属化合物的前体溶液,以及 加热施加在荧光物质层上的前体溶液。