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    • 92. 发明授权
    • Reaction mechanism for booster
    • 助推器的反应机理
    • US5802952A
    • 1998-09-08
    • US874373
    • 1997-06-19
    • Masahiro Ikeda
    • Masahiro Ikeda
    • B60T13/573F15B9/10
    • B60T13/573
    • According to the invention, the booster is not provided with a brake reaction transmission mechanism, and hence a reaction cannot be transmitted to a brake pedal. On the other hand, a pseudo-reaction imparting means is provided to impart a pseudo-reaction of suitable magnitude which depends on the degree of depression of the brake pedal. The pseudo-reaction imparting means is arranged so that when the brake pedal is depressed relatively rapidly, a relatively smaller braking reaction is imparted than during a usual depression. With this arrangement, the transmission of an abnormally high braking reaction to a driver which is experienced in a conventional booster during a quick braking operation due to an operational rag of the booster is avoided. The pseudo-reaction imparting means allows a reaction of a suitable magnitude which depends on the rate of depression of the brake pedal by a driver to be imparted, thus permitting a high output to be obtained with a reduced force of depression during a quick braking operation.
    • 根据本发明,增压器不设置制动反作用传动机构,因此反作用力不能传递到制动踏板。 另一方面,提供了伪反应赋予装置,以提供取决于制动踏板的压下程度的适当大小的伪反应。 假反应赋予装置被布置成使得当制动踏板相对较快地被压下时,施加比在通常的凹陷期间相对较小的制动反作用。 通过这种布置,避免了由于加速器的操作性破坏而在快速制动操作期间在常规助力器中经历的驾驶员异常高的制动反应的传递。 伪反应赋予装置允许通过驾驶员施加的取决于制动踏板的下压速率的适当大小的反应,从而允许在快速制动操作期间以减小的压力获得高输出 。
    • 93. 发明授权
    • Drop-out detecting circuit
    • 掉电检测电路
    • US5418656A
    • 1995-05-23
    • US972174
    • 1992-11-04
    • Hiromi FukazawaMasahiro Ikeda
    • Hiromi FukazawaMasahiro Ikeda
    • G11B20/18H04N5/94
    • H04N5/94G11B20/18
    • To set the drop-out detection level constant in the drop-out detecting circuit used for a magnetic recording apparatus, without regulating the output level of a magnetic recording head and the gain of a preamplifier, the detecting circuit comprises an envelope detection section for detecting the envelope of a reproduced signal; a voltage division section for dividing the output signal voltage of the envelope detection section; and a comparator for comparing the output signal of the voltage division section with the reproduced signal to detect a drop-out of the reproduced signal. Therefore, it is possible to reduce the number of parts and the number of adjustment process to reduce the manufacturing cost thereof. Further, to detect the drop-out portion throughout as defective tape locations, irrespective of the length of the drop-out portion, the detecting circuit further comprises a drop-out start detection section, a drop-out end detection section, and an OR gate.
    • 为了在用于磁记录装置的脱出检测电路中设定脱出检测电平的常数,而不调节磁记录头的输出电平和前置放大器的增益,检测电路包括用于检测 再生信号的包络; 分压部,其对所述包络检测部的输出信号电压进行分压; 以及比较器,用于将分压部分的输出信号与再现信号进行比较,以检测再现信号的退出。 因此,可以减少部件的数量和调整过程的数量,以降低其制造成本。 此外,为了检测作为有缺陷的磁带位置的丢失部分,与检出电路的长度无关,检测电路还包括一个出口开始检测部分,一个退出结束检测部分和一个OR 门。
    • 97. 发明申请
    • PARTICLE BEAM TREATMENT DEVICE AND IRRADIATION DOSE SETTING METHOD OF THE PARTICLE BEAM TREATMENT DEVICE
    • 颗粒束处理装置和颗粒束处理装置的辐照剂量设定方法
    • US20120313002A1
    • 2012-12-13
    • US13318866
    • 2011-03-08
    • Masahiro IkedaHisashi HaradaOsamu Takahashi
    • Masahiro IkedaHisashi HaradaOsamu Takahashi
    • A61N5/10
    • A61N5/1036A61N5/1043A61N2005/1087
    • A particle beam treatment device includes an irradiation nozzle which moves a particle beam in a direction which is perpendicular to an advancing direction; a dose monitor which measures the dose of the particle beam; a planning part which sets the irradiation dose applied to a target volume; and a controlling part which controls the irradiation dose applied to a target volume based on irradiation dose set value which is set by a value measured by the dose monitor and the planning part, wherein the planning part stores the absorbed dose distribution data in the depth direction which is prepared in advance using the absorbed dose at the reference depth which is a predetermined position nearer to an incident side of the particle beam than the position of Bragg peak as the reference and calculates the irradiation dose set value using the absorbed dose at the reference depth.
    • 粒子束处理装置包括使粒子束沿与前进方向正交的方向移动的照射喷嘴; 测量粒子束剂量的剂量监测器; 将照射剂量设定在目标体积上的规划部分; 以及控制部,其基于由所述剂量监视器和所述规划部测量的值设定的照射剂量设定值来控制施加于目标体积的照射剂量,其中,所述规划部将所述吸收剂量分布数据存储在所述深度方向 其预先使用在比布拉格峰位置作为基准更靠近粒子束的入射侧的预定位置处的参考深度处的吸收剂量来计算,并且使用参考的吸收剂量来计算照射剂量设定值 深度。
    • 98. 发明授权
    • Dynamic damper for hollow rotating shaft
    • 中空旋转轴动力阻尼器
    • US08323118B2
    • 2012-12-04
    • US12968574
    • 2010-12-15
    • Masahiro Ikeda
    • Masahiro Ikeda
    • F16F7/108
    • F16F15/1442F16C3/02Y10T464/50
    • In order to achieve downsizing, and to prevent a cleaning fluid from staying inside, a dynamic damper for a hollow rotating shaft is provided with a mass body floatingly inserted to an inner periphery of the hollow rotating shaft, of which a vibration is to be reduced, and an elastic body structured such that an inner diameter portion is fitly attached to an outer periphery of the mass body and an outer diameter portion is brought into pressure contact with an inner peripheral surface of the hollow rotating shaft, and made of a rubber-like elastic material, wherein grooves having both ends open to spaces at both sides in an axial direction of the elastic body are formed in one of fitted surfaces to each other of the mass body and the elastic body.
    • 为了实现小型化,并且为了防止清洗液停留在内部,中空旋转轴的动力阻尼器设置有浮动地插入中空旋转轴的内周的质量体,其中振动将被减小 以及弹性体,其构造成使得内径部分适配地附接到所述质量体的外周,并且外径部与所述中空旋转轴的内周面压力接触,并且由橡胶 - 其特征在于,在所述弹性体的轴向的两侧的空间的两端开口的槽形成在所述质量体和所述弹性体的彼此嵌合的一个表面上。