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    • 81. 发明授权
    • Electric power steering apparatus
    • 电动助力转向装置
    • US07577505B2
    • 2009-08-18
    • US11739366
    • 2007-04-24
    • Shigeki Nagase
    • Shigeki Nagase
    • B62D6/00
    • B62D5/0463B62D5/046H02P21/06
    • A first restrict value calculating unit obtains a first restrict value Im1 on the basis of the integration value (Id2+Iq2) of a d-axis current detection value and a q-axis current detection value. A second restrict value calculator 50 calculates a second restrict value Im2 on the basis of the maximum value of the integration values of the squares Iu2, Iv2, and Iw2 of 3-phase current detection values. A target current value It calculated by a target current calculating unit 21 is restricted by so that a current value limiter so as to be not greater than the first restrict value Im1 and the second restrict value Im2. By using the two restrict value restricting the motor driving current, it is possible to control properly the motor driving current in accordance with a general driving condition and various steering conditions.
    • 第一限制值计算单元基于d轴电流检测值和q轴电流检测值的积分值(Id2 + Iq2)获得第一限制值Im1。 第二限制值计算器50基于三相电流检测值的平方Iu2,Iv2和Iw2的积分值的最大值来计算第二限制值Im2。 由目标电流计算单元21计算的目标电流值被限制为使得电流值限制器不大于第一限制值Im1和第二限制值Im2。 通过使用限制电机驱动电流的两个限制值,可以根据一般的驾驶状况和各种转向条件适当地控制电动机的驱动电流。
    • 82. 发明授权
    • Developing unit having improved agent recovery and supply system and image forming apparatus using the same
    • 具有改进的药剂回收和供给系统的显影单元和使用其的成像装置
    • US07577387B2
    • 2009-08-18
    • US11493618
    • 2006-07-27
    • Hirokatsu Suzuki
    • Hirokatsu Suzuki
    • G03G15/09G03G15/08
    • G03G15/0921G03G15/0815G03G2215/0609G03G2215/0634G03G2215/0827
    • A developing unit for an image forming apparatus including an agent carrying member, a supply compartment, a supply screw, a recovery compartment, a recovery screw, an agitation compartment, and an agitation screw. The agent carrying member carries and supplies developing agent to an image carrying member. The supply screw in the supply compartment supplies the developing agent to the agent carrying member. The recovery screw in the recovery compartment, provided under the agent carrying member, transports the developing agent dropped from the agent carrying member. The agitation screw in the agitation compartment receives the developing agent from the supply compartment and recovery compartment, and transports the developing agent to the supply compartment. The recovery compartment, supply compartment, and agitation compartment are provided side-by-side in a horizontal direction. A magnetic flux density in a given area of the agent carrying member is set to 10 mT or less.
    • 一种用于图像形成装置的显影单元,其包括试剂承载构件,供应室,供应螺杆,回收室,回收螺杆,搅拌室和搅拌螺杆。 药剂承载构件将显影剂携带并提供给图像承载构件。 供应室中的供应螺丝将显影剂供应到试剂承载构件。 设置在药剂承载构件下方的回收室中的回收螺杆输送从药剂承载构件落下的显影剂。 搅拌室中的搅拌螺杆从供应室和回收室接收显影剂,并将显影剂运送到供应室。 回收室,供应室和搅拌室在水平方向上并排设置。 试剂承载构件的给定区域中的磁通密度设定为10mT以下。
    • 85. 发明授权
    • Sample inspection apparatus, image alignment method, and program-recorded readable recording medium
    • 采样检查装置,图像对准方法和程序记录可读记录介质
    • US07577288B2
    • 2009-08-18
    • US11287419
    • 2005-11-28
    • Kyoji Yamashita
    • Kyoji Yamashita
    • G06K9/00
    • G06T7/001G01N21/95607G03F1/84G06K9/6203G06T7/32G06T2207/30148
    • A sample inspection apparatus according to an aspect of the present invention includes a first SSD calculating unit which calculates the displacement amount from a preliminary alignment position of an optical image and a reference image to a position where the SSD of a pixel value of the optical image and a pixel value of the reference image is minimized, and a least-square method calculating unit which calculates the displacement amount by a least-square method from the preliminary alignment position of the optical image and the reference image, wherein the alignment position of the optical image and the reference image is corrected to a position where the smaller SSD of the minimum SSD obtained as the result of the calculation by the first SSD calculating unit and the SSD obtained as the result of the calculation by the determined by the least-square method calculating unit is obtained.
    • 根据本发明的一个方面的样本检查装置包括:第一SSD计算单元,其计算从光学图像的初步对准位置和参考图像到光学图像的像素值的SSD的位置的位移量 并且参考图像的像素值最小化;以及最小二乘法计算单元,其根据光学图像和参考图像的初步对准位置以最小二乘法计算位移量,其中, 光学图像和参考图像被校正为作为由第一SSD计算单元计算的结果获得的最小SSD的较小SSD和作为计算结果获得的SSD的位置,由最小二乘法确定的SSD 获得方法计算单元。
    • 89. 发明授权
    • Polyorganosiloxane and curable composition containing same
    • 聚有机硅氧烷和含有它们的可固化组合物
    • US07576142B2
    • 2009-08-18
    • US11572502
    • 2005-08-02
    • Kunikazu TauchiHiroshi Suzuki
    • Kunikazu TauchiHiroshi Suzuki
    • C08G65/18
    • C08G77/46C08G65/18C08G65/336C08G77/50C08L83/14
    • The object of the present invention is to provide a polyorganosiloxane that has a specific structure and is superior to curability and a curable composition which is high in workability during curing, which leads to a cured product excellent in ultraviolet-ray transparency and heat resistance, and further wherein toughness thereof and occurrence of a crack by cyclic heat-cool are improved. The present polyorganosiloxane is one obtained by conducting hydrolysis and condensation of a silicon-containing organic compound represented by the general formula (1) below in the presence of an organic polyol compound having two or more hydroxyl groups and has an oxetanyl group.
    • 本发明的目的是提供具有特定结构并且优于固化性的聚有机硅氧烷,以及在固化期间加工性高的固化性组合物,其导致紫外线透射性和耐热性优异的固化物,以及 此外,通过循环热冷却的韧性和裂纹的发生得到改善。 本发明的聚有机硅氧烷是通过在具有两个以上羟基的有机多元醇化合物的存在下,通过下述通式(1)表示的含硅有机化合物的水解和缩合得到的,并具有氧杂环丁烷基。