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    • 11. 发明申请
    • EXTERNAL ENVIRONMENT RECOGNITION DEVICE FOR VEHICLE AND VEHICLE SYSTEM USING SAME
    • 使用其的车辆和车辆系统的外部环境识别装置
    • US20120035846A1
    • 2012-02-09
    • US13264190
    • 2010-04-13
    • Hiroshi SakamotoKazutoshi TsuchiyaTakehito Ogata
    • Hiroshi SakamotoKazutoshi TsuchiyaTakehito Ogata
    • G08G1/16
    • B60T8/17558G01S13/867G01S13/931G01S2013/9346G01S2013/9353G01S2013/9375G06K9/00805G08G1/166
    • An external environment recognition device for a vehicle and a vehicle system capable of assuring safety and reducing the processing load in a compatible manner are provided. An external environment recognition device 100 for a vehicle includes: first collision determination means 103 for computing a risk of collision of a host vehicle with a detected object in front of the host vehicle on the basis of information of a predicted course of the host vehicle and the detected object; and second collision determination means 104 for determining whether the detected object enters the predicted course from the outside of the predicted course or not. This device further includes object selection means 105 for selecting the detected object having a risk at least a first threshold and the detected object determined to enter the predicted course as selection candidate objects from among the detected objects, and for selecting the selection candidate object having a minimum relative distance to the host vehicle as a pedestrian determination request object from among the selected selection candidate objects. This device further includes pedestrian determination means 106 for determining whether the selected pedestrian determination request object is a pedestrian or not using image information.
    • 提供了一种用于车辆和车辆系统的外部环境识别装置,其能够以兼容的方式确保安全性并降低处理负荷。 用于车辆的外部环境识别装置100包括:第一碰撞判定装置103,用于根据本车辆的预测路线的信息计算本车辆与本车辆前方的被检测物体的碰撞风险;以及 被检测物体; 以及第二碰撞确定装置104,用于确定检测对象是否从预测路线的外部进入预测路线。 该装置还包括对象选择装置105,用于选择具有至少第一阈值的风险的检测对象,并且将被检测对象确定为从检测对象中选择候选对象进入预测路线,并且用于选择具有 作为来自所选择的候选对象中的步行者确定请求对象的与本车辆的最小相对距离。 该装置还包括步行者确定装置106,用于使用图像信息来确定所选择的步行者确定请求对象是否是行人。
    • 15. 发明申请
    • COPPER ALLOY, COPPER ALLOY PLATE, AND PROCESS FOR PRODUCING THE SAME
    • 铜合金,铜合金板及其制造方法
    • US20090116996A1
    • 2009-05-07
    • US11916730
    • 2006-06-08
    • Yasuhiro ArugaKoya NomuraKatsura KajiharaYukio SugishitaHiroshi Sakamoto
    • Yasuhiro ArugaKoya NomuraKatsura KajiharaYukio SugishitaHiroshi Sakamoto
    • C22C9/02C22C9/06
    • C22C9/06C22C9/02C22F1/08
    • A copper alloy with an excellent stress relaxation resistance including Ni: 0.1 through 3.0 mass %, Sn: 0.01 through 3.0 mass %, P: 0.01 through 0.3 mass % and remainder copper and inevitable impurities, and the Ni content in extracted residues separated and left on a filter having filter mesh size of 0.1 μm by using an extracted residues method accounting for 40 mass % or less of the Ni content in the copper alloy, wherein the extracted residues method requires that 10 g of the copper alloy is immersed in 300 ml of a methanol solution which contains 10 mass % of ammonium acetate, and using the copper alloy as the anode and platinum as the cathode, constant-current electrolysis is performed at the current density of 10 mA/cm2, and the solution in which the copper alloy is thus dissolved is subjected to suction filtration using a membrane filter of polycarbonate whose filter mesh size is 0.1 μm, thereby separating and extracting undissolved residues on said filter, and the Ni content in the extracted residues is identified through analysis by ICP after dissolving said undissolved residues separated and left on said filter into a solution prepared by mixing aqua regia and water at the ratio of 1:1.
    • 具有Ni:0.1〜3.0质量%,Sn:0.01〜3.0质量%,P:0.01〜0.3质量%,Cu和不可避免的杂质的余量为好的耐应力松弛性的铜合金,残渣分离残留的Ni含量 通过使用在铜合金中的Ni含量为40质量%以下的提取残渣法,在筛网尺寸为0.1μm的过滤器上,其中提取的残渣法要求将10g铜合金浸渍在300ml 的含有10质量%的乙酸铵的甲醇溶液,使用铜合金作为阳极,将铂作为阴极,以10mA / cm 2的电流密度进行恒流电解,将其中的铜 溶解的合金使用过滤网尺寸为0.1μm的聚碳酸酯膜过滤器进行抽滤,由此分离和提取所述过滤器上的未溶解残余物,并且Ni含量 在将所分离的未溶解的残留物溶解在所述过滤器上后,通过ICP分析鉴定提取的残留物,使其以1:1的比例混合王水和水混合制成的溶液。
    • 17. 发明申请
    • Portable Quide Device and Portable Telephone
    • 便携式Quide设备和便携式电话
    • US20070208502A1
    • 2007-09-06
    • US11579412
    • 2005-04-27
    • Hiroshi SakamotoKeisuke Onishi
    • Hiroshi SakamotoKeisuke Onishi
    • G01C21/00
    • G01C21/20G08G1/096811H04M2250/10H04M2250/12
    • A portable guide device is characterized by comprising a transport facility start judgment means for judging that a transport facility has begun to move if a period where an acceleration detected by an acceleration sensor (SN3) is included continuously in an acceleration range at the time of starting movement is not shorter than the acceleration continuation time; a distance calculation means for calculating the moving distance of the transport facility according to an acceleration detected by the acceleration sensor (SN3) when start of movement of the transport facility is detected; a route information storage means (KC6A) for storing route information including information on a distance between stations of the transport facility and station identifying information for identifying each station; and an announcement device control means (KC1) for controlling an announcement unit (11) which announces guidance of a station to a user of the portable guide device according to the station identification information on an entraining station, route information, and the moving distance.
    • 一种便携式引导装置的特征在于,包括:传送设备开始判断装置,用于在由加速度传感器(SN 3)检测到的加速度连续地包括在加速度范围内的加速度范围内的情况下判断传送设备已经开始移动 开始运动不迟于加速持续时间; 距离计算装置,用于在检测到运送设施的运动开始时根据由加速度传感器检测到的加速度(SN 3)计算运送设施的移动距离; 路线信息存储装置(KC6A),用于存储包括关于运输设施的车站之间的距离的信息和用于识别每个车站的车站识别信息的路线信息; 以及通知装置控制装置(KC1),用于根据携带站上的车站识别信息,路线信息和移动距离,控制向便携式引导装置的用户通知车站的通知单元(11)。
    • 20. 发明授权
    • Automatic transmission
    • 自动变速器
    • US07222551B2
    • 2007-05-29
    • US10239149
    • 2001-04-24
    • Mitsuo KayanoToshimichi MinowaTakashi OkadaTatsuya OchiHiroshi Sakamoto
    • Mitsuo KayanoToshimichi MinowaTakashi OkadaTatsuya OchiHiroshi Sakamoto
    • F16H63/00
    • F16H3/0915F16H3/12F16H2061/0407Y10T74/19242Y10T74/19251Y10T74/1926Y10T74/19284
    • A mesh-type automatic transmission includes a power input shaft for introducing power of an engine, a plurality of transmission gears, a plurality of cogged clutches, a power output shaft for outputting driving force, a counter shaft, and a plurality of counter gears, for transmitting power of the engine to the power output shaft by rotating the power input shaft with the power of the engine, rotating the counter shaft, and transmitting rotation of the counter shaft to the power output shaft with automatic gear change by engaging and disengaging the cogged clutches to one of the transmission gears corresponding to the speed. The counter shaft is provided with an assist mechanism for transmitting rotational force of the power input shaft to the power output shaft by transmitting rotation of the counter shaft via the assist gear, during the period of disengagement of a gear to the engagement of a new gear during gear change.
    • 网状自动变速器包括用于引入发动机功率的动力输入轴,多个变速齿轮,多个齿轮离合器,用于输出驱动力的动力输出轴,副轴和多个反转齿轮, 用于通过利用发动机的动力旋转动力输入轴来将发动机的动力传递到动力输出轴,旋转相对轴,并通过接合和分离来自相位轴的自动变速齿轮将副轴的转动传递到动力输出轴 齿轮离合器对应于速度的传动齿轮之一。 副轴设有辅助机构,用于通过在齿轮脱离啮合的新齿轮的啮合期间通过辅助齿轮传递副轴的旋转而将动力输入轴的旋转力传递到动力输出轴 换档时