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    • 42. 发明申请
    • HYDRAULIC CONTROL UNIT
    • 液压控制单元
    • US20150144207A1
    • 2015-05-28
    • US14405199
    • 2012-06-08
    • Takafumi InagakiYuji HattoriTomokazu InagawaKenta KimuraYu Nagasato
    • Takafumi InagakiYuji HattoriTomokazu InagawaKenta KimuraYu Nagasato
    • F16H61/02F16H61/14
    • F16H61/0251B60Y2400/72F16H61/00F16H61/143F16H61/66259F16H61/66272F16H2061/0253F16H2061/145Y10T137/7761
    • A hydraulic control unit is provided. A valve is comprised of a piston having a valve element, a cylinder holding the piston while allowing to reciprocate axially, a positive pressure chamber formed on one side of the piston to which pressure to open the valve is applied, a back pressure chamber formed on the other side of the piston to which the pressure to close the valve is applied, and a connection passage for differentiating pressures in the positive pressure chamber and the back pressure chamber. A pilot valve selectively connects the back pressure chamber with a site where the pressure is lower than that of the back pressure chamber. Hydraulic pressure lower than that applied to positive pressure chamber is applied to a low pressure section. The hydraulic control unit comprises a means to deliver the fluid from the low pressure section to the back pressure chamber if an opening motion of the valve is slower than a predetermined reference value, by opening the pilot valve to connect the back pressure chamber with the low pressure section.
    • 提供液压控制单元。 阀由具有阀元件的活塞,保持活塞同时允许往复运动的气缸构成,形成在活塞的一侧上的正压室,打开阀的压力被施加到压力室上, 施加关闭阀的压力的活塞的另一侧,以及用于分离正压室和背压室中的压力的​​连接通道。 先导阀选择性地将背压室与压力低于背压室的压力的位置连接。 低于施加在正压室上的液压压力应用于低压部分。 液压控制单元包括如果阀的打开运动比预定的参考值慢的话,将流体从低压段输送到背压室,通过打开先导阀将背压室与低压室连接 压力段。
    • 46. 发明申请
    • LUBRICATING DEVICE
    • 润滑装置
    • US20110308912A1
    • 2011-12-22
    • US13203432
    • 2009-03-11
    • Kenta KimuraYuji HattoriMichio Yoshida
    • Kenta KimuraYuji HattoriMichio Yoshida
    • F16D13/74
    • F16D25/123
    • To provide a lubricating device which can be made compact. In a lubricating device 1-1, as a clutch engagement pressure increases, the degree of opening of a flow rate adjusting valve 13 is mechanically increased. Thus, as the clutch engagement pressure increases, the flow rate of an oil sucked from an oil pan 12 to a suction portion 11b of a jet pump 11 is increased. Therefore, as the clutch engagement pressure increases, the flow rate of the oil ejected from an ejection portion 11d of the jet pump 11 is increased. That is, as the clutch engagement pressure increases, the flow rate of the oil for lubricating a lubrication portion 20a of a friction clutch 20 is increased. Accordingly, even if a torque/oil flow rate conversion mechanism, for example, a torque sensor is not used, the flow rate of the oil ejected from the jet pump 11 can be changed only by a flow rate adjusting valve 13. With the configuration, the device can be made compact.
    • 提供可以制造得紧凑的润滑装置。 在润滑装置1-1中,随着离合器接合压力的增加,流量调节阀13的开度被机械地增大。 因此,当离合器接合压力增加时,从油底壳12吸入喷射泵11的吸入部11b的油的流量增加。 因此,随着离合器接合压力的增加,从喷射泵11的喷射部11d喷出的油的流量增加。 也就是说,随着离合器接合压力增加,用于润滑摩擦离合器20的润滑部分20a的油的流量增加。 因此,即使不使用转矩/油流量转换机构,例如扭矩传感器,也可以仅通过流量调节阀13改变从喷射泵11喷出的油的流量。 ,可以使设备紧凑。
    • 49. 发明申请
    • ENDLESS BELT FOR POWER TRANSMISSION
    • 用于电力传输的无端皮带
    • US20090054189A1
    • 2009-02-26
    • US12282291
    • 2007-11-07
    • Hirofumi TaniHiroyuki YamaguchiYuji Hattori
    • Hirofumi TaniHiroyuki YamaguchiYuji Hattori
    • F16G1/28F16G5/16
    • F16G5/16
    • [Problems] To provide an endless belt for power transmission capable of efficiently improving the yawing attitude of the elements in a variable pulley.[Means for Solving the Problems] This endless belt (40) for power transmission includes the elements (42) and an annular band-like member (46) for supporting the elements (42). The endless belt is winched between a pair of variable pulleys (20, 30). Groove parts (60) extending from the front surface of the belt in the forward movement direction to a predetermined position not reaching to the rear surface of the belt in the forward movement direction are formed in the side surfaces (42A) of the elements (42) contacting with the belt sliding surfaces (26, 36) of the variable pulleys (20, 30).
    • 本发明提供一种能够有效地提高可变滑轮中的元件的偏转姿态的动力传递用环形带。 解决问题的手段这种用于动力传递的环形带(40)包括用于支撑元件(42)的元件(42)和环形带状构件(46)。 环形带在一对可变滑轮(20,30)之间绞合。 在所述元件(42)的侧面(42A)中形成有从所述带的前表面向前移动方向延伸到未到达所述带的向前移动方向的后表面的预定位置的槽部(60) )与可变皮带轮(20,30)的皮带滑动表面(26,36)接触。
    • 50. 发明授权
    • Spread spectrum type clock generation circuit for improving frequency modulation efficiency
    • 扩展频谱型时钟发生电路,提高调频效率
    • US07397883B2
    • 2008-07-08
    • US11043522
    • 2005-01-26
    • Yuji Hattori
    • Yuji Hattori
    • H03D3/24H04B1/69
    • H03L7/197
    • The present invention provides a spread spectrum type clock generation circuit whose EMI for peripheral equipment is reduced. The clock generation circuit comprises a phase-locked loop circuit and a clock modulation circuit. The clock modulation circuit comprises a ΔΣ modulator, to frequency-modulate an output clock by modulating the frequency division number of a frequency divider in the phase-locked loop circuit by a digital circuit, and further comprises a modulation pattern controller for distributing the peak of a triangular waveform which is a modulation waveform generated by a modulation pattern generator to change the amplitude and the period thereof, thereby making it possible to eliminate dullness and distortion of a modulation waveform in a modulating method using a conventional analog circuit and to obtain an output clock having higher modulation efficiency than that in a case where a normal triangular waveform is employed in a conventional modulating method using a digital circuit.
    • 本发明提供了一种扩展频谱型时钟发生电路,其EMI减少了周边设备。 时钟发生电路包括锁相环电路和时钟调制电路。 时钟调制电路包括DeltaSigma调制器,通过数字电路调制锁相环电路中的分频器的分频数来对输出时钟进行频率调制,并且还包括调制模式控制器,用于分配 三角波形是由调制图案发生器产生的调制波形以改变其幅度和周期的三角波形,从而可以消除使用常规模拟电路的调制方法中的调制波形的钝度和失真,并获得输出 时钟具有比在使用数字电路的常规调制方法中采用普通三角波形的情况下更高的调制效率。