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    • 1. 发明授权
    • Braking control device
    • 制动控制装置
    • US07099764B2
    • 2006-08-29
    • US10726498
    • 2003-12-04
    • Yoji SetoMinoru TamuraYoshinori YamamuraSeiki TakahashiMasahide Nakamura
    • Yoji SetoMinoru TamuraYoshinori YamamuraSeiki TakahashiMasahide Nakamura
    • B60T8/32
    • B60T7/22
    • A braking control device performs a steering and/or avoidance possibility determination based on the state of the vehicle to execute automatic vehicle braking when an obstacle in front of the vehicle cannot be avoided by steering and/or braking. The device determines that the obstacle can be avoided by steering when the correlation value between steering avoidance time and relative velocity is smaller than the distance from the vehicle to the obstacle. The steering avoidance time is set to a shorter value when the suspension characteristic is stiffer and the sideways force generated by the front wheels is larger. The steering avoidance time is set successively shorter for low, high, and medium speed travel regions, respectively, to reflect the behavior response characteristic of the vehicle with respect to steering input. The vehicle deceleration that would occur if the driver released the accelerator pedal is considered in the braking avoidance possibility determination.
    • 当通过转向和/或制动不能避免车辆前方的障碍物时,制动控制装置基于车辆的状态来执行自动车辆制动的转向和/或回避可能性判定。 当转向避免时间和相对速度之间的相关值小于从车辆到障碍物的距离时,该装置确定可以通过转向避免障碍物。 当悬架特性较硬且前轮产生的侧向力较大时,将转向避免时间设定为较短的值。 对于低速,高速和中速行驶区域,转向避免时间分别设定得更短,以反映车辆相对于转向输入的行为响应特性。 在制动回避可能性判定中考虑驾驶员释放加速踏板时发生的车辆减速度。
    • 2. 发明授权
    • Optical waveguide device, and method of manufacturing optical waveguide device
    • 光波导器件及其制造方法
    • US07092607B2
    • 2006-08-15
    • US11046859
    • 2005-02-01
    • Chie FukudaTetsuya Hattori
    • Chie FukudaTetsuya Hattori
    • G02B6/10C23C16/00
    • G02B6/132G02B6/136
    • The present invention provides a glass optical waveguide device that comprises silica glass and is usable despite a relatively large refractive index difference between its core layer and cladding layer, and a method of manufacturing such device. This optical waveguide device includes a core layer on or over a substrate and a cladding layer that covers the core layer, wherein the core layer is made of silica glass containing an additive for raising the refractive index, and the relative refractive index difference of the core layer with respect to the cladding layer is at least 2.5%. The method of manufacturing this optical waveguide device includes the steps of placing a substrate over an electrode plate that is connected to a first high-frequency power supply within a vacuum vessel, introducing a raw material gas into the vacuum vessel and generating a plasma within the vacuum vessel with high-frequency power supplied from a second high-frequency power supply, and simultaneously forming an optical waveguide film over the substrate while supplying high-frequency power from the first high-frequency power supply to the electrode plate.
    • 本发明提供了一种玻璃光波导器件,其包括石英玻璃,并且尽管其芯层和包层之间的折射率差较大,但可以使用,以及制造该器件的方法。 该光波导装置包括在基板上或基板上的芯层和覆盖芯层的包覆层,其中芯层由含有用于提高折射率的添加剂的石英玻璃制成,并且芯体的相对折射率差 相对于包覆层的层为至少2.5%。 制造该光波导装置的方法包括以下步骤:将基板放置在与真空容器内的第一高频电源连接的电极板上,将原料气体引入真空容器内, 从第二高频电源供给的具有高频电力的真空容器,同时在从第一高频电源向电极板提供高频电力的同时在衬底上形成光波导膜。
    • 9. 发明授权
    • Roof ditch molding structure
    • 屋顶沟模压结构
    • US07029060B1
    • 2006-04-18
    • US11003494
    • 2004-12-06
    • Gary OsterbergRob Blanchard
    • Gary OsterbergRob Blanchard
    • B60R27/00
    • B60R13/04
    • A roof ditch molding structure is provided with a body member having a drainage groove that receives a roof ditch molding which is preferably coupled thereto by a double sided tape formed of thermally cured urethane. The roof ditch molding has a rigid carrier member and a resilient cover member that substantially covers an outer surface of the carrier member. The rigid carrier member has a first transverse free end disposed between first and second vertical portions of the body member, and a second transverse free end disposed between the first transverse free end and the second vertical portion of the body member. The first transverse free end has a step portion extending substantially toward the second vertical portion of the body member. The cover member has first and second lip portions extending from the first and second transverse free ends of the carrier member, respectively, to form seals between the roof ditch molding and the drainage groove.
    • 屋顶沟模制结构设置有主体构件,该主体构件具有排水槽,该排水槽容纳优选地通过由热固化的聚氨酯形成的双面带与其连接的屋顶沟模。 屋顶沟模制件具有刚性承载构件和基本上覆盖承载构件的外表面的弹性盖构件。 刚性承载构件具有设置在本体构件的第一和第二垂直部分之间的第一横向自由端和设置在主体构件的第一横向自由端和第二垂直部分之间的第二横向自由端。 第一横向自由端具有基本上朝向主体构件的第二垂直部分延伸的台阶部分。 盖构件具有分别从承载构件的第一和第二横向自由端延伸的第一和第二唇缘部分,以在屋顶沟槽模制件和排水槽之间形成密封。
    • 10. 发明授权
    • Reel unit for spinning reel
    • 卷轴单元用于旋转卷轴
    • US07028937B2
    • 2006-04-18
    • US10764587
    • 2004-01-27
    • Yasuhiro HitomiTomohiro Nishikawa
    • Yasuhiro HitomiTomohiro Nishikawa
    • A01K89/01
    • A01K89/01
    • A reel unit has a housing unit, a first lid, a second lid, and a rod-attachment portion. The housing unit has an accommodation space formed in the interior thereof that accommodates and supports a drive mechanism. The drive mechanism has a master gear non-rotatably coupled to a master gear shaft. The first lid is made of a metal and is fixedly coupled to the housing unit to interpose the master gear with the housing unit. The second lid is made of a synthetic resin and is fixedly coupled to the housing unit to close the accommodation space. The rod-attachment portion is formed integrally with the housing unit and can be mounted onto a fishing rod.
    • 卷轴单元具有壳体单元,第一盖,第二盖和杆附接部。 壳体单元具有形成在其内部的容纳和支撑驱动机构的容纳空间。 驱动机构具有不可旋转地联接到主齿轮轴的主齿轮。 第一盖由金属制成并且固定地联接到壳体单元以将主齿轮与壳体单元相插入。 第二盖由合成树脂制成并且固定地联接到壳体单元以闭合容纳空间。 杆安装部与壳体单元一体地形成,并且可以安装在钓鱼杆上。