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    • 1. 发明申请
    • Mobile information input/output apparatus and versatile braille output apparatus
    • 移动信息输入/输出设备和通用盲文输出设备
    • US20070254268A1
    • 2007-11-01
    • US11790684
    • 2007-04-26
    • Kazufumi AdachiMasaaki NakaiTomo NakanoHiroshi KatayoseTakashi Yamada
    • Kazufumi AdachiMasaaki NakaiTomo NakanoHiroshi KatayoseTakashi Yamada
    • G09B21/00
    • G09B21/003
    • A basic control process is performed on a mobile phone. From the basic control process, various processes are branched and performed, such as a normal standby process, unread mail reading standby process, and Braille pattern data generation process. In each of the processes, each of the Braille pins of a Braille display device provided for the mobile phone is raised, as occasion demands, by drive-control performed by a Braille driving device, and for example, the content of an unread mail, the content of a creating email, and a phone number in a phone call or the like on the mobile phone are displayed as a Braille pattern. The raising direction of the Braille pins is set on the rear surface different from the operation surface of the mobile phone. Thus, while holding the mobile phone in one hand, a user can perform the operation related to the phone call or email and can quickly and accurately perceive or sense various text information displayed in Braille.
    • 在手机上进行基本的控制处理。 从基本控制过程,分支和执行各种处理,例如正常待机进程,未读邮件阅读待机进程和盲文图案数据生成处理。 在每个处理中,根据需要,通过盲文驱动装置执行的驱动控制,例如未读邮件的内容,提高为移动电话设置的盲文显示装置的盲文引脚中的每一个, 创建电子邮件的内容和移动电话上的电话等中的电话号码被显示为盲文图案。 盲文引脚的上升方向设定在与移动电话的操作面不同的背面上。 因此,一方面握持移动电话时,用户可以执行与电话呼叫或电子邮件相关的操作,并且可以快速且准确地感知或感测盲文中显示的各种文本信息。
    • 7. 发明申请
    • FLUID MIXER AND APPARATUS USING FLUID MIXER
    • 流体混合器和使用流体混合器的装置
    • US20120307589A1
    • 2012-12-06
    • US13577381
    • 2010-12-21
    • Toshihiro HanadaTakashi Yamada
    • Toshihiro HanadaTakashi Yamada
    • B01F5/06
    • B01F5/0646B01F3/0861B01F5/0647B01F5/0656B01F5/0657B01F2003/0896
    • A fluid mixer includes a main flow path comprised of a first flow path and a second flow path, spiral flow paths formed around the second flow path in shapes substantially concentric with the second flow path and offset in position from each other in a circumferential direction, the spiral flow paths having first ends communicated with the first flow path, branch flow paths branched from a plurality of locations of the second flow path in a flow direction, the branch flow paths being communicated with the spiral flow paths at a plurality of locations of the spiral flow paths in the flow direction, a fluid inlet at an open end of either of the first flow path and the second flow path, and a fluid outlet at an open end of the other of the first flow path and the second flow path.
    • 流体混合器包括由第一流动路径和第二流动路径构成的主流路,围绕第二流动路径形成的大致与第二流动路径同心的形状和在圆周方向上彼此偏移的形状的螺旋流动路径, 所述螺旋流路具有与所述第一流路连通的第一端,在流动方向上从所述第二流路的多个位置分支的分支流路,所述分支流路与所述螺旋流路连通,所述多个位置 在流动方向上的螺旋流动路径,在第一流动路径和第二流动路径中的任一个的开口端处的流体入口以及在第一流动路径和第二流动路径中的另一个的开口端处的流体出口 。
    • 10. 发明授权
    • Boat control system and boat
    • 船控系统和船
    • US08112190B2
    • 2012-02-07
    • US12109369
    • 2008-04-25
    • Takashi Yamada
    • Takashi Yamada
    • B60L3/00
    • B63H21/213B63H20/00B63H21/22
    • A boat control system detects a wire break status in a duplicated communication system. A hull of a boat is provided with a main remote control side ECU and a subremote control side ECU, and the subremote control side ECU communicates with an engine side ECU via the main remote control side ECU. Both of the remote control side ECUs are provided with storage buffers in which communication status confirmation data transmitted between nodes is stored. A broken wire detection section of the engine side ECU starts a determination when a system is started, and broken wire detection sections of both of the remote control side ECUs start a determination when communication status confirmation data is received from another node. Data indicating that communication is in an abnormal status is stored as an initial value in a main remote control data storage buffer.
    • 船控系统检测重复通信系统中的断线状态。 船体具有主遥控侧ECU和副遥控侧ECU,副翼控制侧ECU经由主遥控侧ECU与发动机侧ECU通信。 两个遥控侧ECU都设置有存储缓冲器,其中存储有节点之间传输的通信状态确认数据。 发动机侧ECU的断线检测部在系统起动时开始判定,并且当从另一节点接收到通信状态确认数据时,两个遥控侧ECU的断线检测部开始判定。 指示通信处于异常状态的数据作为初始值存储在主遥控数据存储缓冲器中。