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    • 3. 发明授权
    • Inkjet printing apparatus
    • 喷墨打印设备
    • US08740352B2
    • 2014-06-03
    • US13096134
    • 2011-04-28
    • Masahiro KobayashiYaado SakataRyoichi KatanoHiroyuki Maeda
    • Masahiro KobayashiYaado SakataRyoichi KatanoHiroyuki Maeda
    • B41J2/14
    • B41J2/1753B41J2/14B41J2/1433B41J2202/11
    • An inkjet printing apparatus suppresses air currents heading toward print head faces, and reduces the adherence of ink mist onto the print heads. The apparatus includes a carriage upon which is mounted one or more print heads with ink ejection ports formed thereon, a printing unit that prints an image onto a printing medium by causing ink droplets to be ejected toward the printing medium from the ink ejection ports while also causing the carriage to move with respect to the printing medium, and an airflow control mechanism formed on the surface of the one or more print heads or the carriage that faces the printing medium, the airflow control mechanism controlling air currents flowing into a lateral region extending along the carriage moving direction on either side of the region where the ink ejection ports are formed, and causing the air pressure to rise in the lateral region.
    • 喷墨打印设备抑制朝向打印头表面的气流,并且减少墨雾粘附到打印头上。 该装置包括一个滑架,一个或多个打印头上安装有喷墨口,打印头上形成有喷墨口;打印单元,其通过使墨滴从喷墨口朝向打印介质喷射而将图像打印到打印介质上,同时 导致滑架相对于打印介质移动;以及气流控制机构,形成在一个或多个打印头或滑架的面向打印介质的表面上,气流控制机构控制流入横向延伸的横向区域的气流 沿着滑架移动方向,在形成喷墨口的区域的任一侧上,并且使空气压力在侧面区域上升。
    • 6. 发明授权
    • Servo motor control system
    • 伺服电机控制系统
    • US07603188B2
    • 2009-10-13
    • US11280935
    • 2005-11-15
    • Hiroyuki Maeda
    • Hiroyuki Maeda
    • G05B19/18G05B13/00
    • G05B7/02G05B19/19G05B2219/34341G05B2219/50231G05B2219/50233Y10T74/2101
    • An electronic cam using a servo motor is controlled such that its motion including its acceleration will be connected between synchronized and non-synchronized control sections. A controlled object is moved at a fixed speed during the synchronized control section. A fifth-order function for position control of the electronic cam, a fourth-order function for speed control of the electronic cam and a third-order function for acceleration control of the electronic cam are used in the non-synchronized control section such that operation of the electronic cam at transition points between the synchronized control section and the non-synchronized control section is smoothly controlled.
    • 使用伺服电动机的电子凸轮被控制,使得其包括其加速度的运动将连接在同步和非同步控制部分之间。 受控对象在同步控制部分期间以固定速度移动。 在非同步控制部中使用电子凸轮的位置控制的五阶功能,电子凸轮的速度控制的四阶功能和电子凸轮的加速控制的三阶功能,使得操作 在同步控制部和非同步控制部之间的转移点处的电子凸轮被平滑地控制。
    • 9. 发明申请
    • Extracorporeal blood circulating apparatus, closed-type venous reservoir and extracorporeal blood circulating method
    • 体外血液循环仪器,闭式静脉血液储存器和体外循环血液循环方法
    • US20070100273A1
    • 2007-05-03
    • US10581732
    • 2004-12-08
    • Shigeki KawarabataHiroyuki MaedaYutaka Nakahara
    • Shigeki KawarabataHiroyuki MaedaYutaka Nakahara
    • A61M37/00
    • A61M1/3627
    • The extracorporeal blood circulating apparatus of the present invention includes: a closed-type venous reservoir having a blood storage chamber and a volume adjusting chamber that are disposed adjacently by partitioning a closed space formed by a housing; an adjusting liquid tank for storing an adjusting liquid that is connected to the volume adjusting chamber; and a blood pump that is connected to the blood storage chamber. In the housing, an inflow port for allowing blood to inflow and an outflow port for allowing blood to outflow are provided so as to communicate with the blood storage chamber, and an adjusting port for injecting and ejecting the adjusting liquid is provided so as to communicate with the volume adjusting chamber. The blood pump is connected via the outflow port, and the adjusting liquid tank is connected via the adjusting port. The closed space is partitioned by a flexible septum member so as to form the blood storage chamber and the volume adjusting chamber, and the adjusting liquid tank and the adjusting port are connected by a conduit member having a configuration that can adjust a flowing amount. Control of a blood storage amount to be most appropriate and easy adjustment are possible throughout all steps from before starting an extracorporeal blood circulation to terminating it.
    • 本发明的体外血液循环装置包括:具有通过分隔由壳体形成的封闭空间相邻设置的血液储存室和容积调节室的封闭式静脉储存器; 用于存储连接到容积调节室的调节液体的调节液罐; 以及与血液存储室连接的血液泵。 在壳体中设置有允许血液流入的流入口和允许血液流出的流出口,与血液储存室连通,并且设置用于喷射和喷射调节液的调节口,以便连通 与音量调节室。 血泵通过流出口连接,调节液罐通过调节口连接。 封闭空间由柔性隔膜构件分隔开,形成血液储存室和容积调节室,并且调节液罐和调节口通过具有可调整流动量的构造的导管构件连接。 在开始体外血液循环之前的所有步骤中,可以控制血液存储量是最合适和容易的调节,以终止它。
    • 10. 发明申请
    • Image forming apparatus
    • 图像形成装置
    • US20070025764A1
    • 2007-02-01
    • US11494409
    • 2006-07-27
    • Hiroyuki Maeda
    • Hiroyuki Maeda
    • G03G15/20
    • G03G15/2035
    • An image forming apparatus includes: a main body; a unit withdrawably mounted in the main body; an exterior cover attached on a front face of the unit; a rail carrying the unit, the rail being withdrawable outwardly from the main body; a rail guide member for supporting the rail slidably; a locking mechanism for restricting movement of the unit and the rail; and a releasing mechanism for releasing the restriction of the locking mechanism. In the image forming apparatus, the exterior cover is operable to actuate the releasing mechanism and serve as a handle for the unit.
    • 一种图像形成装置,包括:主体; 一个抽出式安装在主体上的单元; 附接在所述单元的前表面上的外盖; 承载该单元的轨道,该轨道可从该主体向外抽出; 轨道引导构件,用于可滑动地支撑轨道; 用于限制单元和轨道的运动的锁定机构; 以及用于释放锁定机构的限制的释放机构。 在图像形成装置中,外盖可操作以致动释放机构并用作该单元的手柄。