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    • 11. 发明申请
    • OPTICAL CABLE CONNECTING CLOSURE AND OPTICAL INTERCONNECTION SYSTEM
    • 光电连接闭合和光互连系统
    • US20100074578A1
    • 2010-03-25
    • US12530739
    • 2008-03-11
    • Tsuyoshi ImaizumiKenichiro OhtsukaAkio KishiShinya WatanabeAkira MurozonoTetsuya Oosugi
    • Tsuyoshi ImaizumiKenichiro OhtsukaAkio KishiShinya WatanabeAkira MurozonoTetsuya Oosugi
    • G02B6/28G02B6/38G02B6/26
    • G02B6/4446
    • [Summary] [Problem] To provide an optical cable connecting closure and optical interconnection system which can easily respond to changes in required connection functions if any.[Solving Means] An optical cable connecting closure 118 has a case 121, while a plurality of connecting modules 123 are arranged (stored) so as to be erected with respect to the bottom face of a closure main body 119 along the width direction in a module storing section 122 of the case 121. The connecting module 123 has a rectangular parallelepiped board-like module main body 127, while a plurality of MT connectors 128, 129 are attached in a vertical row to one end face of the module main body 127. In the module main body 127, an optical connecting section 130 for connecting the MT connectors 128, 129 to each other is arranged. The module storing section 122 can store a different kind of connecting module having a connecting configuration (function) different from that of the connecting module 123.
    • [摘要] [问题]提供连接闭合和光互连系统的光缆,其可以容易地响应所需的连接功能的变化(如果有的话)。 [解决方案]光缆连接闭合件118具有壳体121,而多个连接模块123被布置(存放),以相对于闭合器主体119的宽度方向的底面竖立 模块存储部分122.连接模块123具有矩形平行六面体板状模块主体127,而多个MT连接器128,129垂直地附接到模块主体127的一个端面 在模块主体127中,配置有用于将MT连接器128,129彼此连接的光连接部130。 模块存储部分122可以存储具有与连接模块123不同的连接配置(功能)的不同种类的连接模块。
    • 12. 发明申请
    • PROJECTION TYPE LIQUID CRYSTAL DISPLAY AND COMPENSATION PLATE
    • 投影式液晶显示和补偿板
    • US20090086112A1
    • 2009-04-02
    • US12235678
    • 2008-09-23
    • Hirokazu KaidaShinya Watanabe
    • Hirokazu KaidaShinya Watanabe
    • G02F1/13363
    • G03B21/2066G03B21/2073G03B33/12
    • A projection type liquid crystal display includes a light source, a reflective liquid crystal element modulating light from the light source based on an image signal, a polarization beam splitter disposed on an optical path between the light source and the liquid crystal element, a compensation plate disposed on an optical path between the liquid crystal element and the beam splitter, and projection means for projecting light impinging thereon through an optical path extending through the compensation plate and the beam splitter upon a screen, the light impinging upon the projection means after being modulated by the liquid crystal element. The compensation plate has in-plane retardation Re being one-fourth the wavelength of the incident light and retardation RthL in the thickness direction which is equal to retardation RthC in the thickness direction of the liquid crystal element in absolute value and is the reverse of the retardation RthC in polarity.
    • 投影型液晶显示器包括光源,基于图像信号调制来自光源的光的反射型液晶元件,设置在光源和液晶元件之间的光路上的偏振分束器,补偿板 设置在液晶元件和分束器之间的光路上,以及投影装置,用于通过延伸穿过补偿板和分束器的屏幕上的光路投射光,投影装置在被调制之后照射在投影装置上 通过液晶元件。 补偿板的面内相位差Re为入射光的波长的四分之一,厚度方向的延迟RthL与液晶元件的厚度方向的相位差RthC相等,为绝对值的相反, 延迟RthC极性。
    • 15. 发明申请
    • Vehicle illumination device, vehicle illumination control method and recording medium storing a vehicle illumination control program
    • 车辆照明装置,车辆照明控制方法以及存储车辆照明控制程序的记录介质
    • US20080101077A1
    • 2008-05-01
    • US11978598
    • 2007-10-30
    • Shinya Watanabe
    • Shinya Watanabe
    • B60Q1/08
    • B60Q1/1423B60Q2300/056B60Q2300/314B60Q2300/42
    • In light that is irradiated from a front light of a vehicle illumination device, a portion thereof is modulated to include a light signal, and a camera captures light from the front of the vehicle. The vehicle illumination device identifies luminance point(s) in the captured images of the camera, and also detects for the light signal, and extracts the luminance point(s) in the captured images other than the luminance point(s) with the detected light signal. The vehicle illumination device identifies segmented region(s) in the light distribution range of the front light that correspond to the extracted luminance point(s), and control is undertaken of the light distribution such that the identified segmented regions are made in a non-illuminating state, and the segmented regions other than those identified are illuminated. By doing so, control of the light distribution for light that is irradiated from the vehicle itself may be prevented.
    • 在从车辆照明装置的前灯照射的光中,其一部分被调制为包括光信号,并且相机从车辆的前方拍摄光。 车辆照明装置识别摄像机的拍摄图像中的亮度点,并且还检测光信号,并且利用检测到的光提取除了亮度点之外的捕获图像中的亮度点 信号。 车辆用照明装置识别与所提取的亮点对应的前灯的配光范围内的分割区域,并且进行光分布的控制,使得所识别的分割区域成为非限制性区域, 照明状态,并且被识别的分割区域被照亮。 通过这样做,可以防止对从车辆本身照射的光的配光的控制。
    • 16. 发明申请
    • Cutting method for substrate and cutting apparatus therefor
    • 基板切割方法及切割装置
    • US20070134890A1
    • 2007-06-14
    • US11634768
    • 2006-12-06
    • Shinya Watanabe
    • Shinya Watanabe
    • H01L21/00
    • H01L21/67092
    • A cutting method for substrates includes: preparing a substrate which has a predetermined circular cut line set thereon; chucking the substrate on a surface of a chuck table which is rotatably supported around a rotation axis of the chuck table such that the predetermined circular cut line of the substrate is concentric with the chuck table; disposing a disc-shaped cutting blade having a rotation axis so that the cutting blade faces the substrate; and cutting the substrate along the predetermined circular cut line of the substrate by the cutting blade while rotating the substrate by rotating the chuck table. The substrate has two cut points which are set on one side and the other side of the predetermined circular cut line such that a rotation center of the substrate is positioned between the one side and the other side of the predetermined circular cut line. The cutting blade is disposed so that the rotation axis of the cutting blade perpendicularly crosses the rotation axis of the chuck table. The cutting blade is reciprocatably supported along the rotation axis of the cutting blade, and alternately cuts into the two cut points of the substrate.
    • 基板的切割方法包括:准备在其上设置预定的圆形切割线的基板; 将基板夹持在卡盘台的表面上,该卡盘台围绕卡盘台的旋转轴线可旋转地支撑,使得基板的预定圆形切割线与卡盘台同心; 设置具有旋转轴线的盘形切割刀片,使得切割刀片面向基底; 以及通过所述切割刀沿着所述基板的预定圆形切割线切割所述基板,同时通过旋转所述卡盘台旋转所述基板。 基板具有设置在预定圆形切割线的一侧和另一侧上的两个切割点,使得基板的旋转中心位于预定圆形切割线的一侧和另一侧之间。 切割刀片被设置成使得切割刀片的旋转轴线垂直于卡盘台的旋转轴线。 切割刀片沿着切割刀片的旋转轴线可往复运动,并且交替地切入基片的两个切割点。
    • 17. 发明授权
    • Wiring board comprising granular magnetic film
    • 包含粒状磁性膜的接线板
    • US06953899B1
    • 2005-10-11
    • US10656619
    • 2003-09-05
    • Yoshio AwakuraShinya WatanabeSatoshi ShiratoriHiroshi Ono
    • Yoshio AwakuraShinya WatanabeSatoshi ShiratoriHiroshi Ono
    • H05K1/02H05K3/24H05K1/03H05K1/09
    • H05K3/244H05K1/0233
    • In order to provide a wiring board comprising a magnetic material effective in suppressing spurious radiation in semiconductor devices and electronic circuits and the like that operate at high speeds, a wiring board (15) comprises an insulative base material (17), conductor patterns (19a to 19f) formed thereon, and magnetic thin films (21a to 21f) formed on the conductor patterns (19a to 19f. The magnetic thin film is configured of a magnetic loss material represented by M—X—Y, where M is at least one of Fe, Co, and Ni, X is at least one element other than M or Y, and Y is at least one of F, N, and O, the maximum value μ″max of the loss factor μ″ that is an imaginary component in the complex permeability characteristic of the magnetic loss material exists within a frequency range of 100 MHz to 10 GHz, and a relative bandwidth bwr is not greater than 200% or not smaller than 150% where the relative bandwidth bwr is obtained by extracting a frequency bandwidth between two frequencies at which the value of μ″ is 50% of the maximum μ″max and normalizing the frequency bandwidth at the center frequency thereof.
    • 为了提供一种包括有效抑制在高速运转的半导体装置和电子电路等中的杂散辐射的磁性材料的布线板,布线板(15)包括绝缘基材(17),导体图案(19) a至19f)和形成在导体图案(21a至19f)上的磁性薄膜(21a至21f),磁性薄膜由MXY表示的磁性损耗材料构成,M为 Fe,Co和Ni中的至少一种,X是除了M或Y以外的至少一种元素,Y是F,N和O中的至少一种,损失因子mu“的最大值mu''max 磁损耗材料的复磁导率特性中的虚分量存在于100MHz〜10GHz的频率范围内,相对带宽bwr不大于相对带宽bwr为200%或150%以下 通过提取tw之间的频带宽度获得 o“mu”的值为最大“最大”的50%的频率,并使其中心频率处的频率带宽归一化。