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    • 1. 发明授权
    • Optical fiber cable fixing structure and cable holder used for fixing
the cable
    • 用于固定电缆的光纤电缆固定结构和电缆夹
    • US5530785A
    • 1996-06-25
    • US322488
    • 1994-10-14
    • Jun SakamotoTakayuki Watanabe
    • Jun SakamotoTakayuki Watanabe
    • G02B6/00G02B6/36G02B6/44G02B6/46
    • G02B6/4471
    • An optical fiber cable fixing structure capable of properly meeting any optical fiber cable having a wide range of diameters without deteriorating optical transmission characteristics when the optical fiber cable is fixed to a fixed-member. The optical fiber cable fixing structure includes an arcuate inner peripheral surface which is to be contacted with a side surface of the optical fiber cable, a first cable holding member secured to the fixed-member, an arcuate inner peripheral surface which is to be contacted with a side surface of the optical fiber cable, a second cable holding member slidably mounted on the fixed-member for sliding toward and away from the first cable holding member, and a stopper for removably securing the second cable holding member at any desired position. A plurality of protuberances each having a sharp tip are provided on the inner peripheral surfaces of the first and second cable holding members, respectively.
    • 一种光纤电缆固定结构,其能够在将光纤电缆固定在固定部件上时,适当地满足宽范围的任意光纤电缆而不会劣化光传输特性。 光缆固定结构包括与光纤电缆的侧面接触的弧形内周面,固定在固定部件上的第一电缆保持部件,将与 光纤电缆的侧表面,可滑动地安装在固定构件上用于朝向和远离第一电缆保持构件滑动的第二电缆保持构件和用于将第二电缆保持构件可移除地固定在任何期望位置的止动件。 在第一和第二电缆保持构件的内周面分别设置有具有尖端的多个突起。
    • 8. 发明授权
    • Position measuring method and mobile communication terminal
    • 位置测量方法和移动通信终端
    • US07432923B2
    • 2008-10-07
    • US11650476
    • 2007-01-08
    • Masanori FujiwaraSatoshi MiyataSeiichi KawakamiJun SakamotoKazuya KawakamiAtsushi Wada
    • Masanori FujiwaraSatoshi MiyataSeiichi KawakamiJun SakamotoKazuya KawakamiAtsushi Wada
    • G01S5/14
    • G01S19/48G01S2205/008
    • When a user of a mobile communication terminal makes a request for a position-measuring of a current location, at step S101, a position-measuring method determining section checks a position-measuring method specified. When the method specified is a “cell ID position-measuring”, and it is performed, when the method specified is a “base station radio waves position-measuring”; a base station radio waves position-measuring is performed, when the method specified is a “GPS position-measuring” or a “not specified”, at step S102, a judgment of whether an area in which the mobile communication terminal exist is an area suitable for data communication is made. When the judgment is negative, an autonomous GPS position-measuring is performed. When the judgment is affirmative, an assisted GPS position-measuring is performed. In this case, when the assisted GPS position-measuring has failed, in process to deal with failure of assisted GPS position-measuring at step S108, in a case of predetermined conditions, further the autonomous GPS position-measuring or a supplementary cell ID position-measuring is performed.
    • 当移动通信终端的用户请求当前位置的位置测量时,在步骤S101中,位置测量方法确定部分检查指定的位置测量方法。 当指定的方法是“小区ID位置测量”,并且执行时,当指定的方法是“基站无线电波位置测量”时; 执行基站无线电波位置测量时,当指定的方法是“GPS位置测量”或“未指定”时,在步骤S102,判断移动通信终端存在的区域是否为 进行适合数据通信的区域。 当判断为否定时,执行自主的GPS位置测量。 当判断为肯定时,执行辅助GPS位置测量。 在这种情况下,当辅助GPS位置测量失败时,在步骤S108处理处理辅助GPS位置测量的失败时,在预定条件的情况下,还可以进行自主GPS位置测量或辅助小区ID 进行位置测量。
    • 10. 发明授权
    • Scribe device
    • 划痕装置
    • US06804889B2
    • 2004-10-19
    • US10389799
    • 2003-03-18
    • Hirokazu IshikawaToshio HayashiFujio TatedaJun SakamotoHideo Oka
    • Hirokazu IshikawaToshio HayashiFujio TatedaJun SakamotoHideo Oka
    • B26D308
    • B25H7/045B43L13/00Y10T83/0333
    • A holder 20 is rotatably connected to a body 10. A scribe tool 30 is attached to one end of the holder 20. A plate spring 16 is fixed to the body 10, and a receiving plate 26 is fixed to the holder 20. A piezo-actuator 40 is interposed between the plate spring 16 and the receiving plate 26. One end of a plate spring 50 having a small spring constant is fixed to the holder 20. The body 10 is provided with an adjustment screw 60. When a lower end part 65 of the adjustment screw 60 is protruded, the lower end part 65 presses the plate spring 50 for flexure, thereby generating a resilient force to the plate spring 50. By this, a rotational force is given to the holder 20 and thus a pressing load directing toward a workpiece is given to the scribe tool 30.
    • 保持器20可旋转地连接到主体10.切割工具30附接到保持器20的一端。板簧16固定到主体10,并且接收板26固定到保持器20.压电 致动器40插入在板簧16和接收板26之间。具有小弹簧常数的板簧50的一端固定在保持器20上。主体10设置有调节螺钉60.当下端 调节螺钉60的部分65突出,下端部65按压板簧50弯曲,从而对板簧50产生弹性力。由此,向保持器20施加旋转力, 向切割工具30施加指向工件的载荷。