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    • 53. 发明申请
    • Light detection device
    • 光检测装置
    • US20050259258A1
    • 2005-11-24
    • US11130491
    • 2005-05-17
    • Kenichi Nakama
    • Kenichi Nakama
    • G01N21/64G01N21/25
    • G01N21/6452G01N21/253
    • A microplate reader includes a light emitting portion for irradiating each of a plurality of test samples with excitation light, a light receiving portion for receiving return light from each of the test samples, and an XY stage for moving the light emitting portion and the light receiving portion to traverse and scan the test samples. The light emitting portion and the light receiving portion are defined at the same location on a reflection surface, which is formed on a distal end of a glass light guide rod. The light emitting portion irradiates each test sample with a sufficient amount of excitation light so that a sufficient amount of return light enters the light receiving portion.
    • 酶标仪包括用于照射激发光的多个测试样品中的每一个的发光部分,用于从每个测试样品接收返回光的光接收部分和用于使发光部分和光接收的XY平台 部分遍历和扫描测试样品。 发光部分和光接收部分被限定在形成在玻璃导光棒的远端上的反射面上的相同位置上。 发光部分对每个测试样品照射足够量的激发光,使得足够量的返回光进入光接收部分。
    • 54. 发明授权
    • Light-receiving element array device and optical demultiplexer using the same
    • 光接收元件阵列器件和使用其的光解复用器
    • US06710330B1
    • 2004-03-23
    • US09744541
    • 2001-01-25
    • Takashi TagamiKenichi Nakama
    • Takashi TagamiKenichi Nakama
    • H01J314
    • H01L27/14643G02B6/29307G02B6/2931G02B6/4245G02B6/4249G02B6/4265G02B6/4274H01L27/14618H01L2224/05554H01L2224/48091H01L2224/48137H01L2924/00014H01L2924/15192H01L2224/45099
    • In the light-receiving element array device according to the present invention, a light-receiving section can be arranged at a position close to an input optical fiber so that the light-receiving element array device can be used as an optical demultiplexer based on the Littrow arrangement. Further the present invention enables suppression of coma aberration and minimization of an optical demultiplexer by shortening a length of the optical system. To achieve the above-described object, a rectangular chip having a light-receiving section with a number of light-receiving elements arrayed in row thereon is sealed in a rectangular package having external leads and the bonding pads on the chip and the bonding terminals of the packages are connected with a bonding wire or the like. This light-receiving element array device has any of the following constructions: (1) in which no bonding pad is provided along one longer edge of the chip in an area around a light-receiving section of the chip, (2) in which no bonding terminal is provided along one longer edge of the package, or (3) in which no external lead is provided along one longer edge of the package, or a combination of the constructions, and the chip is accommodated in the package at a position displaced to one side of the package.
    • 在根据本发明的光接收元件阵列器件中,光接收部分可以布置在靠近输入光纤的位置处,使得光接收元件阵列器件可以用作基于 Littrow安排。 此外,本发明通过缩短光学系统的长度能够抑制彗形像差和光解复用器的最小化。 为了实现上述目的,将具有多个排列在其上的光接收元件的受光部分的矩形芯片密封在具有外部引线的矩形封装中,并且芯片上的接合焊盘和接合端子 封装与接合线等连接。 该光接收元件阵列器件具有以下结构之一:(1)其中在芯片的光接收部分周围的区域中沿着芯片的一个较长边缘没有设置焊盘,(2)其中不存在 沿着封装的一个较长的边缘设置接合端子,或者(3)其中沿着封装的一个较长边缘没有设置外部引线或者这些结构的组合,并且芯片被容纳在封装中的位置处 到包装的一边。
    • 55. 发明授权
    • Planar microlens array having high converging efficiency
    • 具有高收敛效率的平面微透镜阵列
    • US5982552A
    • 1999-11-09
    • US141473
    • 1998-08-28
    • Kenichi NakamaSatoshi TaniguchiKenjiro HamanakaHiroshi Hamada
    • Kenichi NakamaSatoshi TaniguchiKenjiro HamanakaHiroshi Hamada
    • G02B3/00G02B27/10G09F9/00
    • G02B3/0087G02B3/0012G02B3/0056Y10S359/90
    • A microlens array of high converging efficiency is provided, independently of the array and lens filling rate of microlens arrays, with a method of manufacturing microlens arrays using the diffusion process. A multitude of refractive-index distribution type microlenses formed by diffusing in a planar transparent substrate a substance contributing to increasing the refractive index of the substrate are two-dimensionally and regularly arranged on the surface of the substrate. The microlenses are densely arranged on the surface of the substrate, and diffusion fronts of the microlenses form regions where the diffusion fronts are fused with those of the adjoining microlenses. The length of a region where certain two adjoining microlenses are fused together, in the direction of a straight line connecting the centers of the two microlenses is less than 20% of the array pitch of the microlenses in the above-mentioned direction.
    • 提供了与微透镜阵列的阵列和透镜填充速率无关的高收敛效率的微透镜阵列,其具有使用扩散过程制造微透镜阵列的方法。 通过在平面透明基板中漫射形成的多个折射率分布型微透镜,有助于提高基板的折射率的物质被二维规则地布置在基板的表面上。 微透镜密集地布置在衬底的表面上,并且微透镜的扩散前沿形成区域,其中扩散前沿与邻接的微透镜的那些熔融。 在连接两个微透镜的中心的直线的方向上将某些两个相邻的微透镜熔合在一起的区域的长度小于上述方向上的微透镜的阵列间距的20%。
    • 56. 发明授权
    • Illuminating apparatus
    • 照明装置
    • US5613767A
    • 1997-03-25
    • US423701
    • 1995-04-18
    • Kenjiro HamanakaTakashi KishimotoKoichi NishizawaKenichi Nakama
    • Kenjiro HamanakaTakashi KishimotoKoichi NishizawaKenichi Nakama
    • F21S8/00F21V7/09F21V8/00F21V13/04
    • G02B6/0006F21S8/00F21V13/04F21V7/09
    • The improved illuminating apparatus comprises a spheroidal mirror, a light source, a spherical mirror and a condenser lens. The spheroidal mirror has such a shape that it is deficient of a portion that would otherwise reflect light that illuminates any portions other than the object to be illuminated, and that the light from the light source which is directed toward said missing portion is reflected by the spherical mirror positioned on the rear side of said missing portion as seen from the light source and makes another reflection by that part of the spheroidal mirror which faces away said missing portion, thereby illuminating the object. The light source is positioned at the first focal point of the spheroidal mirror in such a way that it faces the mirror, and the spherical mirror is positioned in such a way that its reflecting face lies at the second focal point of the spheroidal mirror. An open window for the exit of light beams is provided in the spherical mirror at a position near the second focal point of the spheroidal mirror, and the condenser lens is provided further ahead of the open window (closer to the object to be illuminated).
    • 改进的照明装置包括球形反射镜,光源,球面镜和聚光透镜。 球形反射镜具有这样的形状,即,否则将反射照射除被照射物体以外的任何部分的光的部分的缺陷,并且来自朝向所述缺失部分的光源的光被反射 球面镜定位在从光源看去的所述缺失部分的后侧,并且通过面向所述缺失部分的球形反射镜的那部分进一步反射,从而照亮物体。 光源位于球状反射镜的第一焦点处,使其面向镜子,并且球面镜以这样的方式定位,使得其反射面位于球镜的第二焦点处。 在球镜的靠近球球镜的第二焦点的位置处设置有用于出射光束的开放窗口,并且聚光透镜设置在开窗(更靠近被照射物体)的前方。