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    • 32. 发明授权
    • Vehicle lower structure
    • 车辆下部结构
    • US09352792B2
    • 2016-05-31
    • US14426559
    • 2013-12-10
    • Keita ItoShinya WatanabeHirokatsu FukunagaAkihiko Ishikawa
    • Keita ItoShinya WatanabeHirokatsu FukunagaAkihiko Ishikawa
    • B62D25/18B62D35/02
    • B62D35/02B62D25/18Y02T10/88
    • A vehicle lower structure includes a plurality of spat body portions and a guide portion. The spat body portions are provided side by side in a vehicle longitudinal direction on a vehicle front side of a wheel, are protruded from an underfloor of the vehicle toward a vehicle lower side, and extend in a vehicle width direction. The guide portion constitutes vehicle-width-direction outer regions of the spat body portions in at least one of second and subsequent rows from a vehicle rear side, is inclined toward the vehicle rear side and outward in the vehicle width direction to guide a traveling wind, and has a vehicle-width-direction outer end that is arranged more outward in the vehicle width direction than a vehicle-width-direction outer end of the spat body portion that is adjacent to the vehicle rear side.
    • 车辆下部结构包括多个臀部部分和引导部分。 在车辆的车辆前侧沿车辆纵向方向并排设置的臀部部分从车辆的地板下方朝向车辆下侧突出,并且在车辆宽度方向上延伸。 引导部分构成从车辆后侧到第二列和后续列中的至少一个中的臀部部分的车宽方向外部区域,朝向车辆后侧倾斜并且在车辆宽度方向上向外引导行驶风 并且具有比与车辆后侧相邻的臀部部分的车宽方向外端在车宽方向上更向外配置的车宽方向外端。
    • 35. 发明授权
    • Optical waveguide device and method of manufacturing thereof
    • 光波导器件及其制造方法
    • US08594477B2
    • 2013-11-26
    • US13256168
    • 2010-03-15
    • Shinya Watanabe
    • Shinya Watanabe
    • G02B6/10
    • G02B6/423
    • In an optical waveguide device of the present invention, optical element mount (17) includes first base block (19a) for supporting first optical element (18a) and second base block (19b) for supporting second optical element (18b) that has an active layer depth smaller than that of first optical element (18a). Second base block (19b) is formed from stacks of upper clad layers whose number of stacks is larger than that of first base block (19a). Difference (h1) in height between the first and second base blocks is equal to difference (d1−d2) in active layer depth between the first and second optical elements.
    • 在本发明的光波导装置中,光学元件安装件(17)包括用于支撑第一光学元件(18a)的第一基座块(19a)和用于支撑第二光学元件(18b)的第二基座块(19b) 层深度小于第一光学元件(18a)的深度。 第二基块(19b)由堆叠的堆叠数量大于第一基块(19a)的堆叠构成。 第一和第二基本块之间的高度差(h1)等于第一和第二光学元件之间有效层深度的差(d1-d2)。
    • 36. 发明授权
    • Optical waveguide circuit and manufacturing method of optical waveguide circuit
    • 光波导电路及其制造方法
    • US08442364B2
    • 2013-05-14
    • US13048358
    • 2011-03-15
    • Shinya Watanabe
    • Shinya Watanabe
    • G02B6/42B32B38/00B32B37/02H01L21/00
    • G02B6/12007G02B6/125
    • An optical waveguide device includes an optical branch device for branching a first input light and outputting the branched first input light to a first and a second optical waveguides, another optical branch device, arranged between the first and the second optical waveguides, for branching a second input light and outputting the branched second input light to a third and a fourth optical waveguides, an optical coupler which couples the lights traveling along the first and the third optical waveguides, then branches the coupled lights, and outputs them; and another optical coupler which couples the lights traveling along the second and the fourth optical waveguides, then branches the coupled lights, and outputs them, wherein optical path lengths of either a pair of the first and the second optical waveguides or a pair of the third and the fourth optical waveguides are set to be equal.
    • 光波导装置包括:光分支装置,用于分支第一输入光并将分支的第一输入光输出到第一和第二光波导,另一光分支装置,布置在第一和第二光波导之间,用于分支第二光波导 输入光并将分支的第二输入光输出到第三和第四光波导,耦合沿着第一和第三光波导传播的光的光耦合器然后分支耦合的光并输出它们; 以及耦合沿着第二和第四光波导传播的光的另一光耦合器,然后分支耦合的光并输出它们,其中一对第一和第二光波导的光路长度或一对第三光波导 并且第四光波导被设置为相等。
    • 37. 发明申请
    • KNIFE FOLDING MACHINE
    • 刀具折叠机
    • US20120302415A1
    • 2012-11-29
    • US13521321
    • 2010-01-18
    • Hiroki YamamotoShinya WatanabeTsuyoshi MatsumotoTakehito YokogiTatsuaki IdaFriedhelm Pfeiffer
    • Hiroki YamamotoShinya WatanabeTsuyoshi MatsumotoTakehito YokogiTatsuaki IdaFriedhelm Pfeiffer
    • B65H45/18B65H43/00
    • B65H45/18
    • A knife folding machine comprises: a support surface (4) for supporting a lower surface of a sheet (S); a knife blade (5); a pair of folding rollers (6a, 6b) opposed to the knife blade (5) at a fold position with the support surface (4) therebetween. The knife blade (5) is reciprocated between first and second positions by a knife drive unit 7. The first position is away from an upper surface of the support surface, and the second position is adjacent a gap between the folding rollers. The reciprocal movement of the knife blade (5) effects a folding operation every time the sheet (S) is set at the fold position. The sheet (S) is conveyed to the fold position by the conveyer belt (13). The conveyer belt (13) is driven by a first servomotor (11). The control unit (12) controls the rotation of the first servomotor (11) so as to decelerate the sheet (S) before its abutment against the stopper (14) without its rebounding against the stopper (14).
    • 一种刀折叠机包括:支撑表面(4),用于支撑片材(S)的下表面; 刀片(5); 与刀片(5)相对的一对折叠辊(6a,6b),折叠位置处于支撑表面(4)之间。 刀片(5)通过刀驱动单元7在第一和第二位置之间往复运动。第一位置远离支撑表面的上表面,第二位置与折叠辊之间的间隙相邻。 每当片材(S)设置在折叠位置时,刀片(5)的往复运动实现折叠操作。 纸张(S)由输送带(13)输送到折叠位置。 传送带(13)由第一伺服电动机(11)驱动。 控制单元(12)控制第一伺服电动机(11)的旋转,以在不抵抗止动件(14)的情况下使片材(S)抵靠止动件(14)之前减速。
    • 38. 发明申请
    • SHEET FOLDING APPARATUS
    • 薄板折叠装置
    • US20120172189A1
    • 2012-07-05
    • US13391888
    • 2009-08-26
    • Shinya WatanabeTatsuaki IdaYoshikazu Nakamura
    • Shinya WatanabeTatsuaki IdaYoshikazu Nakamura
    • B31F1/08
    • B65H45/144B65H7/10B65H9/04B65H11/002B65H45/142B65H2403/52B65H2511/10B65H2511/20B65H2511/22B65H2551/10B65H2557/23B65H2557/24B65H2220/01B65H2220/03B65H2220/02B65H2220/11
    • A paper folding device is configured so that a folding line is always formed at a predetermined position of paper sheets. A paper supply section is provided with a conveyor belt for conveying paper sheets (P) sequentially supplied from a paper sheet stack. A guide plate (4) for aligning the positions of the conveyed paper sheets is provided on a conveying surface of the conveyor belt. A paper folding section has a buckle (10) comprising an outer frame (11) and bars (12) which extend between opposite sides (11a, 11b) of the outer frame and are arranged at intervals from each other. Paper sheet introducing gaps extended in the direction of the length of the bars are provided in the buckle. Before the start of paper folding operation, a control section calculates and processes data relating to the size of paper sheets and data relating to the position of the bars, so that the distance to the guide plate from a reference point in the direction perpendicular to the conveying direction (R) is set to a value with which a side edge of each paper sheet introduced into the paper sheet introducing gaps in the buckle is separated by a distance not less than a predetermined level from a side edge of a bar located closest to the side edge of the paper sheet. Then, the control section sets the position of the guide plate according to the set value.
    • 纸折叠装置被构造成使得折纸线总是形成在纸张的预定位置。 供纸部设置有用于输送从纸张叠层依次供给的纸张(P)的输送带。 在传送带的传送表面上设置有用于对准所输送的纸张的位置的引导板(4)。 纸折叠部具有包括外框架(11)和在外框的相对侧(11a,11b)之间延伸并彼此间隔设置的杆(12)的带扣(10)。 在带扣的长度方向延伸的纸张引入间隙。 在纸张折叠操作开始之前,控制部分计算和处理与纸张的尺寸有关的数据和与条的位置有关的数据,使得从垂直于纸张的方向的参考点到引导板的距离 输送方向(R)被设定为使得引入到纸张中的每个纸张的引导间隙的侧边缘的带边缘的距离不小于预定水平的距离, 纸张的侧边缘。 然后,控制部根据设定值设定导板的位置。
    • 39. 发明授权
    • Thermo-optical phase shifter
    • 热光移相器
    • US08150218B2
    • 2012-04-03
    • US12530588
    • 2008-02-29
    • Morio TakahashiShinya Watanabe
    • Morio TakahashiShinya Watanabe
    • G02F1/01
    • G02F1/011G02B2006/12142G02F1/0147G02F2203/15G02F2203/50
    • Provided is a thermo-optical phase shifter including a composite body having an optical waveguide formed by a core and a clad and having a ratio Δ of a difference between a core refractivity and a clad refractivity against the core refractivity which is 4% or above and a heater attached to the optical waveguide. The composite body has: a bridge structure portion arranged along a substrate surface and separate from the substrate surface via a void; and a fixed portion which supports the bridge structure portion with respect to the substrate and is continuous to the both ends of the bridge structure portion. The bridge structure has a half-circle-arc shape in the plane along the surface of the substrate.
    • 提供了一种热光学移相器,其包括具有由芯和包层形成的具有比率&Dgr的光波导的复合体; 核心折射率与包层折射率之间的差异相对于4%以上的纤芯折射率和附着在光波导上的加热器。 所述复合体具有:桥接结构部分,沿着基板表面布置并且经由空隙与所述基板表面分离; 以及固定部分,其相对于基板支撑桥结构部分,并且与桥结构部分的两端连续。 桥结构沿着基板的表面在平面中具有半圆弧形状。
    • 40. 发明授权
    • Vehicular illumination device
    • 车载照明装置
    • US07824085B2
    • 2010-11-02
    • US12000272
    • 2007-12-11
    • Shinya Watanabe
    • Shinya Watanabe
    • B60Q1/00
    • B60Q1/085B60Q1/143B60Q2300/056B60Q2300/132B60Q2300/324B60Q2300/41B60Q2300/42B60Q2300/45
    • A vehicular illumination device includes a light distribution control unit, a determination unit and a control unit. The light distribution control unit performs an alteration control of a vehicular illumination unit so as to alter a light distribution with respect to an illumination object detected by a detection unit. When the illumination object ceases to be detected, the determination unit determines whether or not there is a need to maintain the alteration control in a current state. When it is determined that there is a need to maintain the alteration control in the current state, the control unit controls the light distribution control unit so as to maintain the alteration control in the current state.
    • 车辆照明装置包括配光控制单元,判定单元和控制单元。 配光控制单元进行车辆照明单元的改变控制,以改变相对于由检测单元检测到的照明对象的光分布。 当照明对象停止检测时,确定单元确定是否需要将改变控制保持在当前状态。 当确定需要保持当前状态的变更控制时,控制单元控制配光控制单元,以便将变更控制保持在当前状态。