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    • 1. 发明授权
    • Emulsion paint type damping coatings
    • 乳液漆型阻尼涂料
    • US09458328B2
    • 2016-10-04
    • US12600933
    • 2008-05-20
    • Masazumi TeramotoHirotaka MaedaJunichi KawaiYutaka Ohashi
    • Masazumi TeramotoHirotaka MaedaJunichi KawaiYutaka Ohashi
    • C09D5/02
    • C09D5/028C09D5/02
    • Emulsion paint type damping coatings show an excellent film forming property even if it leaves at low temperature from 5 to 20° C. It does not generate a defective coated film like swellings after baking drying and brings out an excellent damping performance within a range of 20 to 60° C. That is, it contains one or more than two kinds of organic chemicals within a range of 0.5% to 5% by weight in total and the MFT, the minimum film forming temperature of the entire resin emulsion is within a range of 5 to 15° C. and the boiling point for a film forming assistant is within a range of 150 to 240° C., thus, it enables to obtain an excellent film forming property at 5° C. and even in baking drying and does not generate a defective coated film like swellings as well. As a result, emulsion paint type damping coatings bring out an excellent damping performance within a range of 20 to 60° C.
    • 乳液漆型阻尼涂层即使在5〜20℃的低温下脱落,也显示出优异的成膜性。烘烤后,不会产生不均匀的涂膜,例如溶胀,在20℃以下的范围内产生优异的阻尼性能 也就是说,它含有一种或两种以上有机化学物质的总量在0.5%至5%的范围内,并且MFT是整个树脂乳液的最低成膜温度在一个范围内 5〜15℃,成膜助剂的沸点在150〜240℃的范围内,因此能够在5℃下即使在烘烤中得到优异的成膜性, 也不会产生类似溶胀的有缺陷的涂膜。 因此,乳液漆型阻尼涂料在20至60℃的范围内具有优异的阻尼性能。
    • 2. 发明授权
    • Sensitivity switchable detection circuit and method
    • 灵敏度可切换检测电路及方法
    • US07382150B2
    • 2008-06-03
    • US11326344
    • 2006-01-06
    • Yutaka OhashiJirou Hayashi
    • Yutaka OhashiJirou Hayashi
    • G01R31/34B62D5/04G05F5/00
    • B62D5/046
    • A sensitivity switchable detection circuit includes a high gain circuit for outputting a first signal, a low gain circuit for outputting a second signal, and an output switching circuit for switching between the first signal and the second signal. When the first signal is smaller than a lower limit, the first signal determines a detected signal. When the second signal is larger than an upper limit, the second signal determines the detected signal. When the first signal is larger than the lower limit and the second signal is lower than the upper limit, a weighting function that uses the first signal and the second signal as input variables determines the detected signal.
    • 灵敏度可切换检测电路包括用于输出第一信号的高增益电路,用于输出第二信号的低增益电路和用于在第一信号和第二信号之间切换的输出开关电路。 当第一信号小于下限时,第一信号确定检测到的信号。 当第二信号大于上限时,第二信号确定检测到的信号。 当第一信号大于下限,第二信号低于上限时,使用第一信号和第二信号作为输入变量的加权函数确定检测信号。
    • 5. 发明授权
    • Combustion state detecting device for an internal combustion engine
    • 用于内燃机的燃烧状态检测装置
    • US06222367B1
    • 2001-04-24
    • US09322003
    • 1999-05-28
    • Takeshi ShimizuKoichi OkamuraMituru KoiwaYutaka Ohashi
    • Takeshi ShimizuKoichi OkamuraMituru KoiwaYutaka Ohashi
    • G01M1500
    • F02P17/12F02P2017/125
    • There is provided a combustion state detecting device for an internal combustion engine even in the case where disconnection of a secondary current path or misfire in an ignition plug occurs. A voltage developed at the secondary winding low voltage side is suppressed so that the high voltage can be prevented from being leaked. The combustion state detecting device for an internal combustion engine includes a capacitor 8 for charging a positive bias voltage necessary for detecting ions generated when an ignition plug 4 discharges upon application of the ignition high voltage, a resistor 5 disposed between the low voltage side of the secondary winding and the capacitor for suppressing the drop of the bias voltage, ion current detecting means 30 for detecting a discharge current from the capacitor as an ion current flowing through the ignition plug, an ECU 20 for detecting a combustion state in the ignition plug on the basis of a detection value of the ion current detecting means, and a Zener diode 9 for suppressing a voltage developed when a path in which the ion current flows is disconnected.
    • 即使在发生火花塞中的二次电流路径断开或失火的情况下,也提供了用于内燃机的燃烧状态检测装置。 抑制在次级绕组低压侧产生的电压,从而可以防止高电压泄漏。 用于内燃机的燃烧状态检测装置包括电容器8,用于对点火高电压时点火塞4放电时产生的离子进行检测所需的正偏置电压充电;电阻器5, 次级绕组和用于抑制偏置电压下降的电容器,用于检测作为流过火花塞的离子电流的来自电容器的放电电流的离子电流检测装置30,用于检测火花塞中的燃烧状态的ECU20 离子电流检测装置的检测值的基础,以及用于抑制当离子电流流动的路径断开时产生的电压的齐纳二极管9。
    • 9. 发明授权
    • Hall-effect sensor arrangement
    • 霍尔效应传感器布置
    • US4931719A
    • 1990-06-05
    • US389468
    • 1989-08-04
    • Shigemi MurataYutaka Ohashi
    • Shigemi MurataYutaka Ohashi
    • G01D5/14G01D5/245G01R33/07G01R33/09G01V9/00H01L43/02H03K17/95
    • H03K17/9517G01D5/147H03K17/9505
    • A Hall-effect magnetic sensor arrangement comprises a sensor element utilizing the Hall-effect and disposed in a magnetic circuit including a magnetic pole unit in an opposing relationship with respect to the magnetic pole unit with a predetermined distance therebetween, a sensor frame surrounding the sensor element and having a cave defined at the opposite side of the magnetic pole unit with respect to the sensor element and at a side perpendicular to a magnetic path and a soft filler material filled in the cave for protecting the sensor element. The sensor arrangement comprises a nonmagnetic thin plate member disposed at the side of the sensor element opposite to the magnetic pole unit and supported at its outer edge by the sensor frame for preventing the filler material to flow out from the cave.
    • 霍尔效应磁传感器装置包括利用霍尔效应的传感器元件,并且设置在包括相对于磁极单元的相对关系的磁极单元的磁路中,其间具有预定距离;传感器框架,围绕传感器 并且具有相对于传感器元件限定在磁极单元的相对侧处并且在垂直于磁路的一侧和填充在洞穴中的软填料的洞穴,用于保护传感器元件。 传感器装置包括设置在与磁极单元相对的传感器元件侧面的非磁性薄板构件,并通过传感器框架在其外边缘处被支撑,以防止填充材料从洞穴中流出。