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    • 5. 发明授权
    • Optical circuit device and optical transceiver
    • 光电路设备和光收发器
    • US06775439B2
    • 2004-08-10
    • US10183529
    • 2002-06-28
    • Hideaki TakanoMasahiko Kobayashi
    • Hideaki TakanoMasahiko Kobayashi
    • G02B626
    • G02B6/12007G02B6/29364G02B6/29367G02B6/2938G02B6/4215
    • An optical circuit device makes lightwaves respectively having different wavelengths fall on a filter at different incident angles, respectively. The optical circuit device includes a filter, a mirror and a planar lightwave circuit provided with grooves holding the filter and the mirror therein, and an optical waveguide. The optical waveguide has a receiving part that guides a lightwave to the filter, a multipath reflection part in which the lightwave is reflected repeatedly, and an emitting part that guides lightwaves transmitted by the filter to an emitting end surface. The lightwave falls on the filter at least at two incident angles. The multipath reflection part is provided with a bend waveguide. The filter and the mirror are disposed substantially parallel to each other.
    • 光电路装置使不同波长的光波分别以不同的入射角落在滤光器上。 光电路装置包括滤光器,反射镜和设置有保持滤光器和反射镜的槽的平面光波电路和光波导。 光波导具有将光波引导到滤光器的接收部,反射反射光波的多路径反射部和将由滤光器透射的光波引导到发光端面的发光部。 光波至少在两个入射角落在滤光片上。 多径反射部分设置有弯曲波导。 过滤器和反射镜基本上彼此平行地设置。
    • 9. 发明授权
    • Inertial sensor
    • 惯性传感器
    • US08250920B2
    • 2012-08-28
    • US12342137
    • 2008-12-23
    • Kiyoko YamanakaHideaki Takano
    • Kiyoko YamanakaHideaki Takano
    • G01C23/00G01C19/56
    • G01P15/0802B81B7/02B81B2201/0235B81B2201/0242G01C19/5719G01P1/02G01P15/125
    • An angular rate sensor and an acceleration sensor are sealed at the same sealing pressure. The sealing pressure at this time is put into a reduced pressure state below the atmospheric pressure in view of improving a detection sensitivity of the angular rate sensor. Even in the reduced pressure atmosphere, to improve the detection sensitivity of the acceleration sensor, a shift suppressing portion (damper) for suppressing shifts of a movable body of the acceleration sensor is provided. This shift suppressing portion includes a plurality of protruding portions integrally formed with the movable body and a plurality of protruding portions integrally formed with a peripheral portion, and the protruding portions are alternately disposed separately at equal intervals.
    • 在相同的密封压力下密封角速率传感器和加速度传感器。 鉴于提高角速度传感器的检测灵敏度,此时的密封压力被置于低于大气压的减压状态。 即使在减压气氛中,为了提高加速度传感器的检测灵敏度,提供了用于抑制加速度传感器的移动体的移动的偏移抑制部(阻尼器)。 该偏移抑制部包括与可动体一体形成的多个突出部和与周缘部一体形成的多个突出部,突出部以相等的间隔分开交替设置。
    • 10. 发明申请
    • Device for Tread
    • 胎面设备
    • US20110017374A1
    • 2011-01-27
    • US12812420
    • 2009-01-08
    • Patrick BervasJean-Claude-John FaureHideaki TakanoLudovic Greverie
    • Patrick BervasJean-Claude-John FaureHideaki TakanoLudovic Greverie
    • B60C11/13
    • B60C11/12B60C11/0306B60C11/0323B60C11/1218B60C11/1281B60C19/002Y10T152/10027
    • Tire comprising a tread having a tread surface (11) and comprising a plurality of grooves (2) of generally circumferential orientation and of depth H, these grooves (2) defining a plurality of rubber elements (3, 30), at least one of which comprises a plurality of cavities (6), each cavity (6) of volume Vc of generally elongate shape with a total length Lc and being designed to communicate with a single groove (2) of generally circumferential orientation, each cavity (6) being extended all the way along its length Lc by an incision (80) which extends radially outwardly to emerge at the tread surface (11), this tire being such that the incision (80) comprises an incision portion (81) beginning at the cavity and forming an angle A of at least 10° with a line perpendicular to the tread surface and passing through the point of intersection of the incision with the cavity (6).
    • 轮胎包括具有胎面表面(11)的胎面,并且包括大致圆周方向和深度H的多个槽(2),这些槽(2)限定多个橡胶元件(3,30),至少一个 其包括多个空腔(6),体积为Vc的每个空腔(6)具有总体长度Lc的大致细长形状,并被设计成与大致圆周方向的单个凹槽(2)连通,每个空腔(6) 所述切口(80)包括从所述腔体开始的切口部分(81),并且所述切口(80)包括从所述凹部开始的切口部分(81),所述切口(80)沿径向向外延伸以在所述胎面表面(11)处出现, 用垂直于胎面表面的线形成至少10°的角度A,并通过切口与腔体(6)的交点。