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    • 141. 发明申请
    • SENSOR-EQUIPPED BEARING FOR WHEEL
    • 传感器轴承轴承
    • US20100262383A1
    • 2010-10-14
    • US12449451
    • 2008-02-01
    • Hiroshi IsobeToru TakahashiTakayoshi Ozaki
    • Hiroshi IsobeToru TakahashiTakayoshi Ozaki
    • G01L1/10
    • G01L5/0019F16C19/186F16C19/522F16C2326/02
    • There is provided a sensor equipped wheel support bearing assembly including an outer member having an inner periphery formed with a plurality of rolling surfaces defined therein, an inner member having an outer periphery formed with rolling surfaces opposed to those rolling surfaces and a plurality of rows of rolling elements interposed between those rolling surfaces. One of the outer and inner members serving as a stationary member is provided with a strain amplifying mechanism for amplifying a strain in the stationary member, which occurs when the rolling elements pass by. A strain sensor element is provided for detecting the strain amplified by the strain amplifying mechanism. A calculator is provided for calculating from an output of the strain sensor element, the load acting on the bearing assembly or the load acting between the vehicle wheel and the road surface.
    • 提供一种具有传感器的轮支撑轴承组件,其包括:外部构件,其具有形成有限定在其中的多个滚动面的内周;内部构件,其外周形成有与该滚动面相对的滚动面, 插入在这些滚动表面之间的滚动元件。 作为固定部件的外部和内部部件中的一个设置有用于放大在滚动元件通过时发生的固定部件中的应变的应变放大机构。 提供一种应变传感器元件,用于检测由应变放大机构放大的应变。 提供了一种计算器,用于根据应变传感器元件的输出,作用在轴承组件上的负载或作用在车轮和路面之间的负载进行计算。
    • 142. 发明申请
    • WHEEL BEARING WITH SENSOR
    • 车轮与传感器轴承
    • US20100202718A1
    • 2010-08-12
    • US12733677
    • 2008-09-16
    • Hiroshi IsobeToru Takahashi
    • Hiroshi IsobeToru Takahashi
    • F16C41/00
    • G01L5/0019B60B27/0068F16C19/186F16C19/522F16C2326/02
    • A sensor-equipped wheel support bearing assembly capable of accurately detecting load without affected by hysteresis is provided. The assembly includes a vehicle body fitting flange having bolt holes at respective circumferential portions in the form of projecting pieces. A sensor unit including a strain generating member having contact fixing segments to be fixed to the stationary member and a cutout portion, and a sensor element for detecting strain in a periphery of the cutout portion is provided with the contact fixing segments at positions of the same size in an axial direction relative to the outer diametric surface of the stationary member. The contact fixing segments are spaced each other an angle about an axis of the stationary member, and the angle between the contact fixing segments at respective end portions of the sensor unit is smaller than half the angle between the projecting pieces.
    • 提供了一种能够精确检测负载而不受滞后影响的传感器配置的车轮支撑轴承组件。 组件包括车身安装凸缘,其在突出件形式的相应圆周部分处具有螺栓孔。 一种传感器单元,包括具有固定到固定构件上的接触固定部分和切口部分的应变发生部件,以及用于检测切口部分周围的应变的传感器元件,在相同的位置设置有接触固定部件 在相对于固定构件的外径表面的轴向上的尺寸。 接触固定部分彼此隔开一定角度关于固定部件的轴线,并且传感器单元各自端部处的接触固定部分之间的角度小于突出片之间的角度的一半。
    • 145. 发明授权
    • Image processing apparatus, image processing program, and image processing method with error diffusion
    • 图像处理装置,图像处理程序和具有误差扩散的图像处理方法
    • US07733531B2
    • 2010-06-08
    • US11333719
    • 2006-01-17
    • Toru TakahashiAtsushi Oshima
    • Toru TakahashiAtsushi Oshima
    • G06K15/00
    • H04N1/4052
    • An image processing apparatus includes: an image data acquiring unit that acquires image data formed of plural pixel data having an M-ary (M≧3) gradation value; a grouping unit that divides the image data acquired into J (J≧2) image data areas and sections the J image data areas into K (2≦K≦J) groups; a pixel data selecting unit that selects, for each of the image data areas forming the respective groups, predetermined pixel data out of pixel data included in the image data area; an N-arization processing unit that applies the N-arization (M>N≧2) processing to the pixel data selected on the basis of a predetermined threshold value; and an error diffusing unit that diffuses a difference between a value of the selected pixel data and a value after the N-arization processing for the selected pixel data to pixel data not subjected to the N-arization processing, wherein the error diffusing unit diffuses the difference in directions different from one another in two or more groups of the K groups.
    • 一种图像处理装置,包括:图像数据获取单元,其获取由具有M元(M≥3)灰度值的多个像素数据形成的图像数据; 分割单元,将获取的图像数据分割为J(J≥2)个图像数据区域,并将J个图像数据区域分割成K(2& NlE; K&n; E; J)组; 像素数据选择单元,对于构成各个组的每个图像数据区域,从包括在图像数据区域中的像素数据中选择预定像素数据; 一个N值化处理单元,其对基于预定阈值选择的像素数据应用N值化(M>N≥2)处理; 以及误差扩散单元,其将所选择的像素数据的值和所选择的像素数据的N次化处理后的值之间的差扩散到未进行N值化处理的像素数据,其中,所述误差扩散单元将 两组或更多组K组的方向差异不同。
    • 147. 发明申请
    • PRINTING METHOD AND PRINTER
    • 打印方法和打印机
    • US20100060691A1
    • 2010-03-11
    • US12556501
    • 2009-09-09
    • Kazuyoshi TanaseToru TakahashiToru MiyamotoHirokazu Kasahara
    • Kazuyoshi TanaseToru TakahashiToru MiyamotoHirokazu Kasahara
    • B41J29/38
    • B41J29/393B41J2/04508B41J2/0458B41J2/04581B41J2/04588B41J2/0459B41J2/04593B41J2/04596
    • [Task] To achieve reduction of the number of correction value tables.[Means for Resolution] A printing method includes: printing a test pattern, in which a plurality of pixel rows including a plurality of pixels arranged in a predetermined direction are arranged in a direction intersecting the predetermined direction, on a kind of medium; reading the test pattern printed on the kind of medium by using a reading unit; obtaining a density correction value for each pixel row on the basis of the read result of the test pattern, and creating a correction value table in which each pixel row is associated with each correction value; performing correction on each pixel row using the correction value table when the printing is performed on the kind of medium; and performing correction on each pixel row using the correction value table for the kind of medium when the printing is performed on another kind of printing target medium.
    • [任务]减少修正值表的数量。 [解决方法]一种打印方法包括:打印一种测试图案,其中将包括沿预定方向布置的多个像素的多个像素行布置在与预定方向相交的方向上; 通过读取单元阅读印刷在介质上的测试图案; 基于测试图案的读取结果获得每个像素行的浓度校正值,并创建其中每个像素行与每个校正值相关联的校正值表; 当对介质的种类进行打印时,使用校正值表对每个像素行执行校正; 并且当对另一种打印目标介质执行打印时,使用用于介质种类的校正值表对每个像素行执行校正。
    • 148. 发明申请
    • Broken piece detecting sensor
    • 断片检测传感器
    • US20090320567A1
    • 2009-12-31
    • US12311312
    • 2007-09-05
    • Toru TakahashiTomomi Ishikawa
    • Toru TakahashiTomomi Ishikawa
    • G01N15/00
    • G01V9/00G01N33/2858G01N33/2888
    • To provide a broken piece detecting sensor assembly capable of stably detecting broken piece admixed in a fluid, which broken piece is made of material characterized by non-metal, non-magnetic and non-electroconductive characteristics such as ceramics. This broken piece detecting sensor assembly is a sensor for detecting broken piece admixed in a fluid. Provided are two opposed flat plates, a shift mechanism for moving at least one of the two flat plates in a confronting direction to allow the broken piece to be sandwiched between those two flat plates, and measuring and determining section. The measuring and determining section is operable to measure the distance between the two flat plates to thereby detect the presence or absence of the broken piece, the size of the broken piece or the amount of the broken piece accumulated.
    • 为了提供能够稳定地检测流体中混合的破碎片的断片检测传感器组件,该断裂片由非金属,非磁性和非导电特性如陶瓷的材料制成。 该断片检测传感器组件是用于检测流体中混合的破碎片的传感器。 设置有两个相对的平板,用于使两个平板中的至少一个在相对的方向上移动以允许断裂片夹在这两个平板之间以及测量和确定部分的移位机构。 测量和确定部分可操作以测量两个平板之间的距离,从而检测碎片的存在或不存在,破碎片的尺寸或累积的碎片的量。