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    • 2. 发明申请
    • Solid-state imaging device and production method thereof
    • 固态成像装置及其制造方法
    • US20090115011A1
    • 2009-05-07
    • US11921102
    • 2006-07-13
    • Toshihiko UshiroKazuhiko OdaTakashi Matsuura
    • Toshihiko UshiroKazuhiko OdaTakashi Matsuura
    • H01L31/0232G02B5/32H01L21/77
    • H01L27/14627H01L27/14621
    • A solid-state imaging device includes a plurality of photodiode regions arranged in an array, a non-transparent border region existing around each photodiode region, and a microlens array including a plurality of microlenses arranged in an array corresponding to the plurality of photodiode regions; wherein each microlens functions to converge incident light advancing straight toward the non-transparent border region around the corresponding photodiode region into that photodiode region, and the microlens array is formed using a transparent diamond-like carbon (DLC) film, the DLC film including a region where its refractive index is modulated corresponding to each microlens, and a light-converging effect being caused when light flux passes through the region where the refractive index was modulated.
    • 固态成像装置包括以阵列排列的多个光电二极管区域,存在于每个光电二极管区域周围的不透明边界区域,以及包括以与多个光电二极管区域对应的阵列排列的多个微透镜的微透镜阵列; 其特征在于,每个微透镜用于使入射到所述光电二极管区域的相应光电二极管区域周围的非透明边界区域的直线前进的会聚光,并使用透明金刚石碳(DLC)膜形成所述微透镜阵列,所述DLC膜包括 区域,其折射率对应于每个微透镜调制,并且当光束通过折射率被调制的区域时产生聚光效应。
    • 3. 发明授权
    • Method of making ceramic electronic element
    • 制造陶瓷电子元件的方法
    • US07413699B2
    • 2008-08-19
    • US10942959
    • 2004-09-17
    • Shuichi MiuraTetsuji MarunoKazuhiko OdaAkira SasakiKouji Tanaka
    • Shuichi MiuraTetsuji MarunoKazuhiko OdaAkira SasakiKouji Tanaka
    • C04B33/32
    • B32B18/00B32B2311/22C04B37/021C04B2235/6562C04B2235/6565C04B2235/6567C04B2235/6582C04B2237/346C04B2237/405C04B2237/407C04B2237/68C04B2237/704C04B2237/706H01G4/008H01G4/012H01G4/30
    • A ceramic electronic element having improved the continuity of inner electrode layers while suppressing the decrease in adhesion between its dielectric layers and inner electrode layers and the deterioration in functions of the inner electrode layers, and a method of making the same are provided. In the method of making a ceramic capacitor (10) in accordance with the present invention, an electrode paste (22) is applied to a surface (20a) of a green sheet (20) and fired, so as to form a dielectric layer (12) laminated with an electrode layer (14). Since the electrode paste (22) is doped with a BaTiO3 powder, the adhesion between the dielectric layer (22) and inner electrode layer (14) after firing is significantly restrained from lowering, and the sintering start temperature of the electrode paste (22) is close to that of the green sheet (20). Since the electrode paste (22) is doped with a metal resinate, functions of the inner electrode layer (14) are significantly restrained from deteriorating when the insulating BaTiO3 powder is added to the electrode paste (22), and the sintering start temperature of the electrode paste (22) approaches that of the green sheet (20).
    • 一种陶瓷电子元件及其制造方法,其特征在于提供了内部电极层的连续性,同时抑制了其电介质层和内部电极层之间的粘附力的降低以及内部电极层的功能的劣化。 在根据本发明的制造陶瓷电容器(10)的方法中,将电极浆料(22)施加到生片(20)的表面(20a)上并烧制,以形成电介质层 (12)层压有电极层(14)。 由于电极浆料(22)掺杂有BaTiO 3 N 3粉末,烧结后的电介质层(22)和内部电极层(14)之间的粘附性被显着抑制,并且烧结开始 电极浆料(22)的温度接近生片(20)的温度。 由于电极浆料(22)掺杂有金属树脂酸盐,当将绝缘的BaTiO 3粉末添加到电极浆料(22)中时,内部电极层(14)的功能被显着抑制,从而劣化, ,并且电极浆料(22)的烧结开始温度接近生片(20)的烧结开始温度。
    • 5. 发明申请
    • Transmission-Type Display Panel and Method of Manufacturing the Same
    • 传动型显示面板及其制造方法
    • US20080094716A1
    • 2008-04-24
    • US11662254
    • 2005-08-12
    • Toshihiko UshiroKazuhiko OdaTakashi Matsuura
    • Toshihiko UshiroKazuhiko OdaTakashi Matsuura
    • G02B27/10C03B37/018
    • G02B3/0087G02B3/0018G02B3/0031G02F1/133526
    • A transmission-type display panel according to the present invention includes a plurality of transparency control regions arranged in an array, a non-transparent border region existing around each of the transparency control regions, and a microlens array including a plurality of microlenses arranged in an array so as to correspond to the plurality of transparency control regions. Each of the microlenses serves to converge incident light, which is about to advance straight to the non-transparent border region, into corresponding one of the transparency control regions. The microlens array is formed by use of a transparent diamond-like carbon (DLC) film. The DLC film includes a region having its refractive index modulated corresponding to each of the microlenses, and produces a light convergence effect when light flux passes through the region having its refractive index modulated. By applying the microlens array in the DLC film to a transmission-type display panel (e.g., a liquid crystal display panel), it is possible to provide a transmission-type display panel having improved display brightness, in a simple manner and at a low cost.
    • 根据本发明的透射型显示面板包括排列成阵列的多个透明度控制区域,存在于每个透明度控制区域周围的不透明边界区域,以及包括多个微透镜的微透镜阵列, 阵列,以对应于多个透明度控制区域。 每个微透镜用于将要直接前进到非透明边界区域的入射光会聚到相应的一个透明度控制区域中。 微透镜阵列通过使用透明的类金刚石碳(DLC)膜形成。 DLC膜包括其对应于每个微透镜调制的折射率的区域,并且当光通量通过其折射率调制的区域时产生光会聚效应。 通过将DLC膜中的微透镜阵列应用于透射型显示面板(例如,液晶显示面板),可以以简单的方式和低的位置提供具有改善的显示亮度的透射型显示面板 成本。