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    • 51. 发明申请
    • VALVE TIMING CONTROL DEVICE FOR INTERNAL COMBUSTION ENGINE
    • 用于内燃机的阀定时控制装置
    • US20140290606A1
    • 2014-10-02
    • US14241978
    • 2011-12-01
    • Hiroshi Kanai
    • Hiroshi Kanai
    • F02D13/02
    • F02D13/02F01L1/3442F01L2001/34423F01L2001/34453F01L2001/34473F01L2250/02F01L2800/01F02D13/0219
    • A valve timing control device includes: a vane rotor having a plurality of vanes; a housing having the vane rotor inside so that an advance chamber is formed on one side of each vane and a retard chamber is formed on the other side; a lock pin inserted in a cylinder provided in the vane and moves to a lock position and to an unlock position; and a feeding passage for feeding oil into the cylinder from the retard chamber adjacent to the vane provided with the cylinder to make the lock pin move to the unlock position, and controls an oil supplying unit to supply oil to each retard chamber, wherein a flow passage cross sectional area of the branch passage connected with the retard chamber linking with the cylinder is larger than a flow passage cross sectional area of the branch passage connected with the other retard chamber.
    • 一种气门正时控制装置,包括:具有多个叶片的叶片转子; 壳体,其内部具有叶片转子,使得在每个叶片的一侧上形成有前进室,另一侧形成有延迟室; 插入到设置在所述叶片中的气缸中的锁定销移动到锁定位置和解锁位置; 以及供给通道,用于从与设置有气缸的叶片相邻的延迟室将油输入到气缸中,以使锁定销移动到解锁位置,并且控制供油单元向每个延迟室供应油,其中流动 与与气缸连接的延迟室连接的分支通道的通道横截面面积大于与另一个延迟室连接的分支通道的流路横截面积。
    • 52. 发明授权
    • Ultrasonograph that measures tissue displacements based on a reference point
    • 基于参考点测量组织位移的超声波检查仪
    • US08512248B2
    • 2013-08-20
    • US12442445
    • 2007-09-25
    • Hiroshi KanaiHideyuki HasegawaTakao Suzuki
    • Hiroshi KanaiHideyuki HasegawaTakao Suzuki
    • A61B8/00
    • A61B8/08A61B5/02007A61B8/0858A61B8/485A61B8/543G01S7/52042G01S7/52087G01S15/8909
    • An ultrasonic diagnostic apparatus includes: a transmitting section for driving an ultrasonic probe that sends out an ultrasonic transmitted wave toward a vital tissue; a receiving section for amplifying an ultrasonic reflected wave, produced by getting the ultrasonic transmitted wave reflected by the vital tissue and then received at the ultrasonic probe, to generate a received signal; a reference point shift measuring section for measuring the magnitude of shift of a reference point that has been set on the received signal; a received signal adjusting section for adjusting the position of the received signal in a distance direction according to the magnitude of shift of the reference point; and a shape variation calculating section for determining the magnitudes of positional displacements at multiple measuring points that have been set in the vital tissue by the received signal adjusted.
    • 超声波诊断装置包括:发送部,用于驱动向生物体组织发送超声波发送波的超声波探头; 用于放大超声波反射波的接收部分,通过使由生物体组织反射然后在超声波探头上接收到的超声波发射波产生,以产生接收信号; 参考点移动测量部分,用于测量已经设置在接收信号上的参考点的移位幅度; 接收信号调整部分,用于根据参考点的移位量调整接收信号在距离方向上的位置; 以及形状变化计算部,用于根据被调整的接收信号来确定在生物组织中设定的多个测量点的位置位移的大小。
    • 58. 发明申请
    • Method for manufacturing magnetic recording medium
    • 磁记录介质的制造方法
    • US20090123660A1
    • 2009-05-14
    • US12288538
    • 2008-10-20
    • Hiroshi InabaHiroshi KanaiNobuto YasuiToshinori Ono
    • Hiroshi InabaHiroshi KanaiNobuto YasuiToshinori Ono
    • B05D3/06B05D3/04
    • G11B5/855C23C14/042C23C14/048C23C14/0605C23C14/16C23C14/46
    • Embodiments of the present invention provide a manufacturing method that can form a track guide separation area of a magnetic disk substrate constituting a patterned medium represented by a discrete track medium or bit patterned medium suitable for high recording density, uniformly on the whole surface of the magnetic disk substrate, and accurately according to the mask. According to one embodiment, a soft magnetic film, an under coating film, and a magnetic film are formed on a substrate. A mask having an arbitrary pattern shape provided for forming the track guide separation area in the magnetic film is formed on the magnetic film, and the track guide separation area is formed by irradiating ions and electrons onto the surface of the magnetic film and applying an intermittent voltage to the substrate, thereby non-magnetizing the area irradiated.
    • 本发明的实施例提供一种制造方法,其可以形成构成由适于高记录密度的离散轨道介质或位图案化介质表示的图案化介质的磁盘基板的导轨分离区域,均匀地在磁性的整个表面上 盘基片,并根据掩模准确。 根据一个实施例,在基板上形成软磁性膜,底涂层膜和磁性膜。 在磁性膜上形成设置用于形成磁性膜中的导轨分隔区域的具有任意图案形状的掩模,并且通过将离子和电子照射在磁性膜的表面上并施加间歇的方式形成轨道引导件分离区域 电压到基板,从而不使被照射的区域磁化。