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    • 51. 发明申请
    • Reflective film
    • 反光膜
    • US20070092710A1
    • 2007-04-26
    • US10595393
    • 2004-10-13
    • Takayuki Watanabe
    • Takayuki Watanabe
    • B32B3/26
    • G02B5/0841B32B27/36G02B5/0825Y10T428/249953
    • One object of this invention is to provide a reflecting film that has a good light reflectivity over a wide wavelength region including a wavelength region of 400 nm to 420 nm. [Means for solving] The reflecting film includes a layer B that contains rutile type titanium oxide and a layer A that contains fine powder filler other than rutile type titanium oxide. The layer A is positioned outermost on the side of a surface used for reflection. Each of the layers A and B has voids formed by drawing and is independently formed from a resin composition containing a thermoplastic resin. The thermoplastic resin is an aliphatic polyester. The reflecting film may have a two-layer construction including the layer A and the layer B, or a three-layer construction including the layer A, the layer B, and the layer A in this order.
    • 本发明的一个目的是提供一种在包括400nm至420nm的波长区域的宽波长区域具有良好的光反射率的反射膜。 [解决方法]反射膜包括含有金红石型氧化钛的层B和含有金红石型氧化钛以外的细粉末填料的层A. 层A位于用于反射的表面的最外侧。 层A和B各自具有通过拉伸形成的空隙,并且由含有热塑性树脂的树脂组合物独立地形成。 热塑性树脂是脂肪族聚酯。 反射膜可以具有包括层A和层B的两层结构,或者依次包括层A,层B和层A的三层结构。
    • 52. 发明申请
    • Navigation apparatus
    • 导航仪
    • US20060082495A1
    • 2006-04-20
    • US11249154
    • 2005-10-11
    • Koutaro WakamatsuTakayuki Watanabe
    • Koutaro WakamatsuTakayuki Watanabe
    • G01S5/14
    • G01S19/24G01S19/28G01S19/40G01S19/49G01S19/50
    • A navigation apparatus includes a GPS receiver, an error-circle-radius calculating subunit, and a vehicle-position calculating unit. The GPS receiver receives radio waves transmitted from a plurality of GPS satellites and produces a GPS position. The error-circle-radius calculating subunit detects elevation angles of the plurality of GPS satellites used for calculating the GPS position and a center-of-gravity position of the plurality of GPS satellites, and determines an error range around the GPS position on the basis of the detected elevation angles and the center-of-gravity position. The vehicle-position calculating unit calculates a current position using the GPS position obtained from the GPS receiver and the error range determined by the error-circle-radius calculating subunit.
    • 导航装置包括GPS接收器,误差圆半径计算子单元和车辆位置计算单元。 GPS接收器接收从多个GPS卫星发送的无线电波并产生GPS位置。 误差圆半径计算单元检测用于计算GPS位置的多个GPS卫星和多个GPS卫星的重心位置的仰角,并且基于GPS位置确定误差范围 的检测仰角和重心位置。 车位计算单元使用从GPS接收机获得的GPS位置和由误差圆半径计算子单元确定的误差范围来计算当前位置。
    • 59. 发明授权
    • Collective connection structure of a plurality of optical connectors, optical connector arraying member, and adapter
    • 多个光学连接器,光学连接器排列构件和适配器的集合连接结构
    • US06220762B1
    • 2001-04-24
    • US09481532
    • 2000-01-12
    • Ken KanaiMasata ShiinoTakayuki WatanabeOsamu Suzuki
    • Ken KanaiMasata ShiinoTakayuki WatanabeOsamu Suzuki
    • G02B600
    • G02B6/3825G02B6/3879
    • The prevent invention relates to a collective connection structure, optical connector arraying member, and adapter, which are suitable for application in the field of optical transmission, and which are able to collectively, easily and accurately connect a plurality of optical connectors with fewer number of parts. Optical connectors (3a) through (3f) and (4a) through (4f) corresponding to the first and second plugs (5) and (6) are arrayed and accommodated in a float-like state. The tip ends of the respective optical connectors protrude from the tip end of the first and second plugs (5) and (6) corresponding thereto. The connection end face (45) side of the respective optical connector groups (3) and (4) is inserted from both sides of the adapter (8) along guides (31) and (33) at both sides of the adapter (8). The optical connectors of the respective connection pairs are position-regulated in the X direction orthogonal to the optical axis and Y direction, thereby causing the axes to be matched, wherein the optical connector groups (3) and (4) are collectively connected via the adapter (8).
    • 本发明涉及适用于光传输领域的集体连接结构,光连接器排列构件和适配器,并且能够以更少的数量容易且准确地连接多个光连接器 部分。 对应于第一和第二插头(5)和(6)的光学连接器(3a)至(3f)和(4a)至(4f)以浮子状态排列并容纳。 各个光学连接器的前端从对应于其的第一和第二插头(5)和(6)的末端突出。 各个光连接器组(3)和(4)的连接端面(45)侧沿适配器(8)两侧的引导件(31)和(33)从适配器(8)的两侧插入, 。 各连接对的光连接器在与光轴和Y方向正交的X方向上进行位置调节,从而使轴匹配,其中光连接器组(3)和(4)经由 适配器(8)。
    • 60. 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。