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    • 6. 发明授权
    • Optical characteristic measuring apparatus and optical characteristic measuring method
    • 光学特性测量装置和光学特性测量方法
    • US08582124B2
    • 2013-11-12
    • US13548210
    • 2012-07-13
    • Yusuke YamazakiSota Okamoto
    • Yusuke YamazakiSota Okamoto
    • G01B11/28G01B11/06
    • G01B11/06G01B11/0625G01B11/0641G01N21/211G01N2021/213
    • An optical characteristic measuring apparatus includes a light source, a detector and a data processing unit. Data processing unit includes a modeling unit, an analyzing unit and a fitting unit. The plurality of film model equations are solved, and prescribed calculation is performed on the assumption that the optical constants included in the plurality of film model equations is identical. Fitting is performed between a waveform obtained by substituting the obtained film thickness and the obtained optical constants of the film into the film model equations and a waveform of the wavelength distribution characteristic obtained by detector, thereby determining that the optical constants included in the plurality of film model equations is identical and that the film thickness and the optical constants obtained by the analyzing unit are correct values.
    • 光学特性测量装置包括光源,检测器和数据处理单元。 数据处理单元包括建模单元,分析单元和装配单元。 解决了多个胶片模型方程式,并且在包含在多个胶片模型方程中的光学常数相同的假设下执行规定的计算。 在通过将获得的膜厚度取得的波形与所获得的膜的光学常数成膜为膜模型方程之间进行拟合的波形和由检测器获得的波长分布特性的波形,从而确定包含在多个膜中的光学常数 模型方程是相同的,并且由分析单元获得的膜厚度和光学常数是正确的值。
    • 10. 发明申请
    • ELECTROLUMINESCENT ELEMENT, DISPLAY DEVICE AND LIGHTING DEVICE
    • 电致发光元件,显示装置和照明装置
    • US20130161664A1
    • 2013-06-27
    • US13819895
    • 2011-08-12
    • Masaru TajimaYusuke YamazakiYoshiaki Takahashi
    • Masaru TajimaYusuke YamazakiYoshiaki Takahashi
    • H01L33/08
    • H01L51/5215H01L51/5234H01L51/5275H01L2251/55H05B33/22H05B33/28
    • An electroluminescent element (10) is provided with: a lamination section in which a first conductive layer (12), a dielectric layer (13), a second conductive layer (14), a light-emitting layer (15) and a third conductive layer (16) are laminated in order; and contact holes (17) for at least penetrating through the dielectric layer (13) and electrically connecting the first conductive layer (12) and the second conductive layer (14). When viewed from the light-emitting surface side, the electroluminescent element (10) (i) has at least one continuous light-emitting region, and (ii) the number of contact holes (17) is 102 or more per one light-emitting region and such that the ratio of the area of the contact holes (17) to the area of the light-emitting region is 0.1 or less. Thus, it is possible to provide an electroluminescent element, etc., that is easily manufactured and has high light emission uniformity.
    • 电致发光元件(10)具有:层叠部,其中第一导电层(12),电介质层(13),第二导电层(14),发光层(15)和第三导电层 层(16)依次层压; 和用于至少穿透介电层(13)并且电连接第一导电层(12)和第二导电层(14)的接触孔(17)。 当从发光面侧观察时,电致发光元件(10)(i)具有至少一个连续的发光区域,(ii)接触孔(17)的数量为每个发光 使得接触孔(17)的面积与发光区域的面积的比例为0.1以下。 因此,可以提供易于制造并且具有高发光均匀性的电致发光元件等。