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    • 82. 发明申请
    • Light-emitting device and method for manufacturing the same
    • 发光装置及其制造方法
    • US20050112886A1
    • 2005-05-26
    • US10976987
    • 2004-11-01
    • Koji AsakawaAkira FujimotoHitoshi SugiyamaKenichi OhashiKenji SuzukiJunichi Tonotani
    • Koji AsakawaAkira FujimotoHitoshi SugiyamaKenichi OhashiKenji SuzukiJunichi Tonotani
    • H01L33/22B32B1/00H01L21/302H01L21/461
    • H01L33/22H01L21/0271
    • A nanometer size roughened structure is formed on a surface of a light-emitting element, and luminous efficiency is improved. The roughened structure on the surface of the light-emitting element of the invention is formed into the following shape such that the refractive index smoothly changes: (1) the mean diameter of projections on the roughened surface is smaller than the light wavelength; (2) a pitch of the roughened surface is irregular; and (3) positions of the top and bottom of the roughened surface are distributed from their mean values within the light wavelength in order to give a smooth gradient of the refractive index. The surface of such light-emitting element is obtained by forming a thin film on the surface of the light-emitting element using a resin composition which contains a block copolymer or graft copolymer and forms a micophase-separated structure in a self-organization manner; selectively removing at least one phase of the microphase-separated structure of the thin film formed on the surface; and etching the surface of the light-emitting element using the remaining phase as an etching mask.
    • 在发光元件的表面上形成纳米尺寸的粗糙结构,并提高发光效率。 本发明的发光元件表面上的粗糙结构形成为以下形状,使得折射率平滑地变化:(1)粗糙面上的突起的平均直径小于光波长; (2)粗糙表面的间距不规则; 和(3)粗糙表面的顶部和底部的位置从其在光波长内的平均值分布,以便给出折射率的平滑梯度。 这种发光元件的表面通过使用含有嵌段共聚物或接枝共聚物的树脂组合物在发光元件的表面上形成薄膜而以自组织形式形成微晶相分离结构而获得; 选择性地除去形成在表面上的薄膜的微相分离结构的至少一个相; 并使用剩余的相作为蚀刻掩模蚀刻发光元件的表面。
    • 85. 发明授权
    • Apparatus and method for aiding programming
    • 用于辅助编程的装置和方法
    • US06885984B1
    • 2005-04-26
    • US09273256
    • 1999-03-22
    • Kenji SuzukiToshiyuki MurakiMakoto TanahashiHirokazu Yoshida
    • Kenji SuzukiToshiyuki MurakiMakoto TanahashiHirokazu Yoshida
    • B23Q15/00B23P23/00G05B19/4068G05B19/4093G06F9/45G05B15/00G06F19/00
    • G05B19/4068
    • An apparatus for aiding a machinist in preparing a machining program. A machining simulator simulates a basic machining program. Values of machining variables are obtained during the simulation and stored in a simulation result data memory. A spindle load determiner, a cutting speed determiner, and a rotating speed determiner analyze the machining variable values of a certain machining process to determine the machining efficiency of that process. A navigation information memory stores a plurality of messages for giving advice on how to change the cutting conditions. A message, which depends on the analysis of the machining variable values, is selected from the memory and is shown on a display. Accordingly, an operator can easily modify the basic machining program by following the message on the display, even if the operator does not have much knowledge or experience.
    • 一种辅助机械师准备加工程序的装置。 加工模拟器模拟基本加工程序。 加工变量的值在仿真期间获得并存储在模拟结果数据存储器中。 主轴负载确定器,切割速度确定器和转速确定器分析某个加工过程的加工变量值,以确定该过程的加工效率。 导航信息存储器存储用于提供如何改变切割条件的建议的多个消息。 从存储器中选择一个取决于加工变量值分析的消息,并显示在显示屏上。 因此,即使操作者没有太多的知识或经验,操作者也可以通过跟随显示器上的消息来容易地修改基本加工程序。
    • 86. 发明授权
    • Current sensor
    • 电流传感器
    • US06876189B2
    • 2005-04-05
    • US10496400
    • 2002-11-26
    • Toshinori TakatsukaKenji SuzukiKenji Kuriyama
    • Toshinori TakatsukaKenji SuzukiKenji Kuriyama
    • G01R15/20G01R33/00
    • G01R15/202
    • A current sensor according to the present invention is provided with a U-shaped conductor through which current under measurement flows, a magnetic sensor disposed between two straight portions parallel to each other both of which form the U-shaped conductor, a magnetic material of surrounding shape which surrounds the two straight portions and the magnetic sensor and includes a convex opposed to the magnetic sensor and a supporting member for supporting the conductor, the magnetic sensor and the magnetic material so as to position ends of the conductor and terminals of the magnetic sensor at the same side with respect to the magnetic material.
    • 根据本发明的电流传感器设置有U形导体,通过该U形导体测量流动的电流,磁传感器设置在彼此平行的两个直线部分之间,二者形成U形导体,周围的磁性材料 围绕两个直线部分的形状和磁性传感器,并且包括与磁性传感器相对的凸起和用于支撑导体的支撑构件,磁性传感器和磁性材料,以便定位导体的端部和磁性传感器的端子 在与磁性材料相同的一侧。