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    • 77. 发明授权
    • Pedal support structure for vehicle
    • 车辆踏板支撑结构
    • US07398708B2
    • 2008-07-15
    • US10851501
    • 2004-05-21
    • Hitoshi HarashimaTakamune OonoOsamu Yamaguchi
    • Hitoshi HarashimaTakamune OonoOsamu Yamaguchi
    • G05G1/14B60K28/10
    • G05G1/32B60R21/09B60T7/065Y10T74/20528Y10T74/20534Y10T74/20888
    • A pedal support structure for a vehicle includes a main body provided between a catcher and a toe board. A front end of the main body is connected to the toe board, and a rear end thereof is spaced apart from a downwardly inclined surface of the catcher. A pedal bracket support part has a supporting surface supported on a bulkhead. The pedal bracket has a connecting surface, and the connecting surface is connected to the supporting surface. When a force is applied to a front part of the vehicle, the load rearwardly moves the main body, the connecting surface slides on the supporting surface, and the rear end of the main body slides downwardly along the inclined surface of the catcher. Accordingly, a pedal on the pedal support structure is moved toward an engine compartment of the vehicle without moving toward a passenger.
    • 用于车辆的踏板支撑结构包括设置在捕获器和脚趾板之间的主体。 主体的前端与脚趾板连接,其后端与捕获器的向下倾斜的表面间隔开。 踏板支架支撑部分具有支撑在隔板上的支撑表面。 踏板支架具有连接表面,连接表面连接到支撑表面。 当向车辆的前部施加力时,负载向后移动主体,连接面在支撑面上滑动,主体的后端沿着捕获器的倾斜面向下滑动。 因此,踏板支撑结构上的踏板向车辆的发动机舱移动,而不向乘客移动。
    • 78. 发明申请
    • TEG system for acquiring FET capacity and method of capacity acquisition
    • 用于获取FET容量的TEG系统和容量采集方法
    • US20080076196A1
    • 2008-03-27
    • US11896688
    • 2007-09-05
    • Osamu Yamaguchi
    • Osamu Yamaguchi
    • H01C17/00G01R31/26
    • H01L29/78615G01R31/2648H01L22/14H01L29/42384H01L2924/0002H01L2924/00
    • Two TEGs are used for acquiring FET capacity. A first TEG includes a first base section of the same shape and same dimensions as a gate electrode of the FET whose capacity is to be acquired, and a first additional section added at one end of the first base section. A second TEG includes a second base section of the same shape and same dimensions as the first base section, a second additional section having the same shape and same dimensions as the first additional section and added to one end of the second base section, and a third additional section having the same shape and same dimensions as the second additional section and added to the other end of the second base section. The capacity between the body and source or between the body and drain of the FET whose capacity is to be acquired is estimated from the difference in capacity between the body and source or between the body and drain of the first TEG and second TEG.
    • 两个TEG用于获取FET容量。 第一TEG包括与要获取容量的FET的栅电极相同形状和尺寸相同的第一基部,以及在第一基部的一端附加的第一附加部。 第二TEG包括与第一基部相同的形状和相同尺寸的第二基部,具有与第一附加部相同的形状和相同尺寸的第二附加部分,并且被添加到第二基部的一端, 第三附加部分具有与第二附加部分相同的形状和相同的尺寸,并且被添加到第二基部的另一端。 从物体和源极之间或第一TEG和第二TEG的主体和漏极之间的容量差异估计要获取容量的FET之间的物体和源极之间或体内和漏极之间的容量。
    • 79. 发明申请
    • Pattern recognition apparatus and method therefor
    • 模式识别装置及其方法
    • US20070258644A1
    • 2007-11-08
    • US11712392
    • 2007-03-01
    • Tomokazu KawaharaOsamu YamaguchiKenichi Maeda
    • Tomokazu KawaharaOsamu YamaguchiKenichi Maeda
    • G06K9/00
    • G06K9/00288G06K9/627
    • A pattern recognition apparatus includes an image inputting unit, a face-area extracting unit, a face-characteristic-point detecting unit, a normalized-image generating unit, a subspace generating unit, a similarity calculating unit, a reference-subspace storing unit, a judging unit, and a display unit. The pattern recognition apparatus calculates an input subspace from an input pattern, calculates a reference subspace from a reference pattern, and sets, with respect to orthogonal bases Φ1, . . . , ΦM of the input subspace and orthogonal bases Ψ1, . . . , ΨN of the reference subspace, an average of distances between Φi and Ψj (i=1, . . . , M and j=1, . . . , N) as a similarity, and performs identification using this similarity.
    • 模式识别装置包括图像输入单元,面部区域提取单元,面部特征点检测单元,归一化图像生成单元,子空间生成单元,相似度计算单元,参考子空间存储单元, 判断单元和显示单元。 图案识别装置从输入图案计算输入子空间,从参考图案计算参考子空间,并相对于正交基底Phi 1设定。 。 。 ,PhiM的输入子空间和正交基Psi 1,。 。 。 ,参考子空间的PsiN,Phii和Psij(i = 1,...,M和j = 1,...,N)之间的距离的平均值作为相似度,并且使用该相似性进行识别。