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    • 1. 发明申请
    • DIFFRACTIVE OPTICAL ELEMENT AND METHOD FOR MANUFACTURING SAME
    • 衍射光学元件及其制造方法
    • US20090180186A1
    • 2009-07-16
    • US12295525
    • 2007-04-05
    • Takamasa AndoTsuguhiro KorenagaMasa-aki SuzukiYuka Okada
    • Takamasa AndoTsuguhiro KorenagaMasa-aki SuzukiYuka Okada
    • G02B5/18G02B1/00B05D5/06
    • G02B1/14B29C39/025B29C39/026B29L2011/00G02B1/105G02B1/111G02B5/18G02B5/1847
    • A diffractive optical element that can maintain transparency and be molded easily, and a method for manufacturing the same are provided.A diffractive optical element (10) includes a substrate (11), a protective film (13a, 13b), and a diffraction grating (12a, 12b) disposed between the substrate (11) and the protective film (13a, 13b), wherein the diffraction grating (12a, 12b) is formed of a composite material containing a resin and inorganic particles, a volume ratio of the inorganic particles with respect to the composite material is equal to or smaller than 50% by volume, and the diffraction grating (12a, 12b) has a thickness of equal to or smaller than 20 μm. Since the diffractive optical element (10) uses the composite material containing the resin and the inorganic particles as a material for the diffraction grating (12a, 12b), which is relatively difficult to process, the moldability improves compared with the conventional case of using glass, etc.
    • 可以容易地保持透明性和模制性的衍射光学元件及其制造方法。 衍射光学元件(10)包括基板(11),保护膜(13a,13b)和设置在基板(11)和保护膜(13a,13b)之间的衍射光栅(12a,12b),其中 衍射光栅(12a,12b)由包含树脂和无机颗粒的复合材料形成,无机颗粒相对于复合材料的体积比等于或小于50体积%,衍射光栅 12a,12b)具有等于或小于20μm的厚度。 由于衍射光学元件(10)使用包含树脂和无机颗粒的复合材料作为相对难以处理的衍射光栅(12a,12b)的材料,与使用玻璃的常规情况相比,成型性提高 等等
    • 10. 发明申请
    • Electron-emitting element, fluorescent light-emitting element, and image displaying device
    • 电子发射元件,荧光发光元件和图像显示装置
    • US20070108887A1
    • 2007-05-17
    • US11646407
    • 2006-12-28
    • Masahiro DeguchiMasa-aki SuzukiAkira TaomotoToyokazu OzakiMotoshi Shibata
    • Masahiro DeguchiMasa-aki SuzukiAkira TaomotoToyokazu OzakiMotoshi Shibata
    • H01J63/04H01J9/24H01J9/00
    • H01J1/304B82Y10/00H01J1/312H01J9/022H01J9/025H01J31/125H01J2329/00
    • A principal object of the present invention is to provide efficiently an electron-emitting element demonstrating performance equal or superior to that attained with the conventional technology. The electron-emitting element of the present invention comprises: (a) a substrate, (b) a lower electrode layer provided on the substrate, (c) an electron-emitting layer provided on the lower electrode layer, and (d) a control electrode layer so disposed as not to be in contact with the electron-emitting layer, wherein the electron-emitting layer comprises an electron-emitting material for emitting electrons in an electric field, (1) the electron-emitting material being a porous body having a 3D-network structure skeleton, (2) the 3D-network structure skeleton being composed on an inner portion and a surface portion, (3) the surface portion comprising an electron-emitting component, (4) the inner portion being occupied by (i) at least one of an insulating material and a semiinsulating material, (ii) an empty space, or (iii) at least one of an insulating material and a semiinsulating material and an empty space.
    • 本发明的主要目的是提供一种电子发射元件,该电子发射元件表现出与传统技术相同或优于其性能的电子发射元件。 本发明的电子发射元件包括:(a)衬底,(b)设置在衬底上的下电极层,(c)设置在下电极层上的电子发射层,和(d)控制 电极层,其设置成不与电子发射层接触,其中电子发射层包括用于在电场中发射电子的电子发射材料,(1)电子发射材料是多孔体,其具有 3D网络结构骨架,(2)在内部和表面部分上组成的3D网络结构骨架,(3)包括电子发射部件的表面部分,(4)内部被 i)绝缘材料和半绝缘材料中的至少一种,(ii)空的空间,或(iii)绝缘材料和半绝缘材料和空的空间中的至少一种。