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    • 3. 发明申请
    • VEHICLE CONTROL APPARATUS
    • 车辆控制装置
    • US20120012086A1
    • 2012-01-19
    • US13262121
    • 2009-04-01
    • Keiji YoedaKichiro KatoOsamu IgarashiSatoshi SugiyamaNaruto Yamane
    • Keiji YoedaKichiro KatoOsamu IgarashiSatoshi SugiyamaNaruto Yamane
    • F02B33/00
    • F02B29/083F02B37/00F02D2009/0242F02M26/05Y02T10/146Y02T10/42
    • In an internal combustion engine provided with a rotary intake control valve, preferable position convergence at the end of inertia supercharging is ensured while avoiding an influence on combustion performance. In an engine provided with an impulse valve, if the implementation of the inertia supercharging is stopped and a request to maintain the impulse valve at a fully-opened position is made, an ECU stops the supply of a braking force to the impulse valve until the rotational phase of the impulse valve enters dead band, and the ECU performs a BRK mode for stopping the impulse valve under the condition that the rotational phase enters the dead band and that the impulse valve is in a deceleration state. At this time, electrification or power distribution for acceleration of the impulse valve during stop control of the impulse valve is forbidden. Moreover, the converging position of the impulse valve by the BRK mode is allowed to deviate in a range with an allowable width set in advance with respect to a target.
    • 在设置有旋转进气控制阀的内燃机中,确保在惯性增压结束时优选的位置收敛,同时避免对燃烧性能的影响。 在设置有脉冲阀的发动机中,如果停止实施惯性增压,并且使脉冲阀保持在完全打开位置的请求,ECU停止向脉冲阀供给制动力,直到 脉冲阀的旋转相位进入死区,ECU执行BRK模式,用于在旋转相位进入死区并且脉冲阀处于减速状态的条件下停止脉冲阀。 此时,禁止在脉冲阀的停止控制期间加速脉冲阀的通电或配电。 此外,通过BRK模式的脉冲阀的会聚位置允许在相对于目标预先设定的容许宽度的范围内偏离。
    • 4. 发明申请
    • Rotation sensor and coupling for rotation sensor
    • 旋转传感器和旋转传感器联轴器
    • US20050211001A1
    • 2005-09-29
    • US10844509
    • 2004-05-13
    • Satoshi Sugiyama
    • Satoshi Sugiyama
    • G01D5/245B62D5/04B62D5/06B62D6/10B62D15/02F16D3/26F16D3/42F16D7/06G01D5/347
    • B62D6/10B62D15/0215F16D3/26F16D3/42G01D5/34738
    • A coupling includes a first coupling member, a second coupling member, and a third coupling member being located in between the first coupling member and the second coupling member. The third coupling member has formed thereon a first pair of connecting elements diametrically opposed to one another and defining a first axis, and further has formed thereon a second pair of connecting elements diametrically opposed to one another and defining a second axis that is substantially perpendicular to the first axis. The first coupling member has formed thereon a third pair of connecting elements configured to conform to the first pair of connecting elements of the third coupling member. Formed on the second coupling member is a fourth pair of connecting elements configured to conform to the second pair of connecting elements of the third coupling member.
    • 联接器包括第一联接构件,第二联接构件和位于第一联接构件和第二联接构件之间的第三联接构件。 第三联接构件在其上形成有彼此径向相对并限定第一轴线的第一对连接元件,并且还在其上形成有彼此径向相对并且限定基本上垂直于第二轴线的第二轴线的第二对连接元件 第一轴。 第一联接构件在其上形成有构造成符合第三联接构件的第一对连接元件的第三对连接元件。 形成在第二联接构件上的是第四对连接构件,其构造成与第三联接构件的第二对连接构件相一致。
    • 6. 发明授权
    • Cutting apparatus for ceramic green bodies
    • 陶瓷绿体切割装置
    • US06742424B2
    • 2004-06-01
    • US10330130
    • 2002-12-30
    • Ken FukutaYuji UedaSatoshi Sugiyama
    • Ken FukutaYuji UedaSatoshi Sugiyama
    • B26D146
    • B26D1/547B23D57/0007B23D57/0053B28B11/163Y10S83/954Y10T83/04Y10T83/4722Y10T83/7055Y10T83/707Y10T83/7101Y10T83/9292Y10T83/937
    • An apparatus for cutting green ceramic bodies, includes a traveling path for green ceramic bodies, beds for supporting green ceramic bodies at constant intervals in series along the traveling path, an arm on each side of the traveling path, two drive portions for moving respective arms perpendicularly relative to the traveling path, a drive portion for moving both arms in the same direction as the traveling path, a wire for cutting green ceramic bodies, extending between the arms, and wire supporting portions, on respective arms. Each wire supporting portion includes a servo motor with an axis of rotation, a magnet member around the axis of rotation, a bobbin having a conical surface around which wire is wound, and magnetically coupled to the axis of rotation by the magnet member, and a traversing mechanism for varying the position where the wire is wound around the length of the conical surface.
    • 一种用于切割绿色陶瓷体的装置,包括用于生坯陶瓷体的行进路径,沿着行进路径以恒定间隔支撑生坯陶瓷体的床,行进路径两侧的臂,用于移动各个臂的两个驱动部 垂直于行进路径的驱动部分,用于沿与行进路径相同的方向移动两个臂的驱动部分,用于在相应的臂上在臂和线支撑部分之间切割生坯陶瓷体的线。 每个线支撑部分包括具有旋转轴线的伺服电机,围绕旋转轴线的磁体构件,具有绕其缠绕线圈的锥形表面的线轴,并且通过磁体构件磁耦合到旋转轴线, 横向机构用于改变线绕着锥形表面的长度缠绕线的位置。
    • 10. 发明授权
    • Specimen optical information recognizing device and its recognizing method
    • 标本光信息识别装置及其识别方法
    • US07999929B2
    • 2011-08-16
    • US11659132
    • 2005-08-01
    • Ken TsukiiJie XuKenichi KimuraSatoshi Sugiyama
    • Ken TsukiiJie XuKenichi KimuraSatoshi Sugiyama
    • G01N21/00
    • G01N21/6452G01N21/253G01N2201/08
    • A specimen optical information recognizing device includes a specimen containing section containing a specimen to be measured, a specimen measuring section having a light source for outputting light for observing the specimen, a photodetecting section for collecting optical information from the specimen, and an optical waveguide for propagating light between the specimen containing and the specimen measuring sections. The optical information on the specimen may be recognized by measuring values under at least two measurement conditions. The specimen optical information recognizing device includes a measurement auxiliary liquid interposed between the end of the optical waveguide and the specimen. A longitudinal cross section of the specimen containing section may be of a recessed shape, and the aperture depth of the recessed portion may be greater than the aperture diameter. A through hole may be provided at least in a part near the bottom of the specimen containing section.
    • 样本光学信息识别装置包括:包含待测试样本的检体容纳部,具有用于输出用于观察样本的光的光源的检体测定部;检体的光信息的光检测部;光检测部 在载体和样品测量部分之间传播光。 可以通过在至少两个测量条件下测量值来识别样品上的光学信息。 样本光学信息识别装置包括介于光波导的端部和样本之间的测量辅助液体。 试样容纳部的纵截面可以是凹形,凹部的开口深度可以大于孔直径。 至少在样本容纳部的底部附近的部分设置通孔。