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    • 2. 发明申请
    • OPTICAL BODY, WINDOW MEMBER, FITTING, AND SOLAR SHADING DEVICE
    • 光学体系,窗户会员,配件和太阳能遮光装置
    • US20120140316A1
    • 2012-06-07
    • US13155620
    • 2011-06-08
    • Masaki SuzukiTsutomu NagahamaHiroya TakenakaMasashi Enomoto
    • Masaki SuzukiTsutomu NagahamaHiroya TakenakaMasashi Enomoto
    • G02B5/08
    • G02B5/208
    • An optical body includes a first optical layer having a concave-convex surface, a wavelength-selective reflecting layer formed on the concave-convex surface, and a second optical layer formed on the wavelength-selective reflecting layer to embed the concave-convex surface, the wavelength-selective reflecting layer having a multilayer structure formed by successively stacking at least a first high refractive index layer, a metal layer, and a second high refractive index layer, wherein, given that optical film thicknesses of the first high refractive index layer and the second high refractive index layer are x and y, respectively, and a geometrical film thickness of the metal layer is z, x, y and z satisfy the following formula (1): z ≤ 12.1  exp  { - 1 2  ( x - 120 145.17 ) 2 - 1 2  ( y - 120 123.14 ) 2 } ( 1 )
    • 光学体包括具有凹凸表面的第一光学层,形成在凹凸表面上的波长选择反射层和形成在波长选择反射层上以嵌入凹凸表面的第二光学层, 所述波长选择反射层具有通过连续地堆叠至少第一高折射率层,金属层和第二高折射率层而形成的多层结构,其中,考虑到所述第一高折射率层和 第二高折射率层分别为x和y,并且金属层的几何膜厚度为z,x,y和z满足下列公式(1):z≤12.1exp exp { - 1 2 x - 120 145.17)2 - 1 2(y - 120 123.14)2}(1)
    • 9. 发明申请
    • OPTICAL DEVICE AND ILLUMINATING DEVICE
    • 光学装置和照明装置
    • US20130033873A1
    • 2013-02-07
    • US13639444
    • 2011-04-06
    • Masaki SuzukiHirofumi TsuikiHayato HasegawaMasashi Enomoto
    • Masaki SuzukiHirofumi TsuikiHayato HasegawaMasashi Enomoto
    • F21V7/04
    • G02B17/006F21S11/00
    • To provide an optical device which is capable of improving a light-introduction efficiency, and which may be made thinner. The optical device according to an embodiment of the present invention includes a structural layer including a plurality of reflection surfaces, which reflect light entering the light-incident surface toward the light-output surface. The above-mentioned reflection surface has a first length (h) in the X-axis direction. The reflection surfaces are arrayed in the Z-axis direction orthogonal to the X-axis direction at pitches (p). The reflection surfaces satisfy a relation of h=(2n−1)·p/tan θ, where θ is indicative of an incident angle of light with respect to the X-axis direction, the light being light travelling on an XZ plane out of light entering the reflection surface, and n is indicative of the number of reflection of incident light by the reflection surface, the angle θ being any angle satisfying the range of 6.5°≦θ≦87.5°.
    • 提供能够提高导光效率并且可以变薄的光学装置。 根据本发明的实施例的光学装置包括结构层,其包括多个反射表面,其将进入光入射表面的光朝向光输出表面反射。 上述反射面在X轴方向上具有第一长度(h)。 反射面以与间隔(p)的X轴方向正交的Z轴方向排列。 反射面满足h =(2n-1)·p /tanθ的关系,其中, 表示相对于X轴方向的入射角的光,该光是在XZ平面上从进入反射面的光中行进的光,n表示反射面的入射光的反射次数 角度和角度 满足6.5°&nlE的范围的任何角度;& nlE; 87.5°。