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    • 1. 发明申请
    • Method of Manufacturing SOI Substrate
    • 制造SOI衬底的方法
    • US20090203187A1
    • 2009-08-13
    • US12423585
    • 2009-04-14
    • Tetsuya NAKAIBong-Gyun KOTakeshi HAMAMOTOTakashi YAMADA
    • Tetsuya NAKAIBong-Gyun KOTakeshi HAMAMOTOTakashi YAMADA
    • H01L21/762
    • H01L21/76243
    • To easily and accurately flush a substrate surface serving an SOI area with a substrate surface serving as a bulk area, make a buried oxide film, and prevent an oxide film from being exposed on substrate surface.After partially forming a mask oxide film 23 on the surface of a substrate 12 constituted of single crystal silicon, oxygen ions 16 are implanted into the surface of the substrate through the mask oxide film, and the substrate is annealed to form an buried oxide film 13 inside the substrate. Further included is a step of forming a predetermined-depth concave portion 12c deeper than substrate surface 12b serving as a bulk area on which the mask oxide film is formed on the substrate surface 12a serving as an SOI area by forming a thermally grown oxide film 21 on the substrate surface 12a serving as an SOI area on which the mask oxide film is not formed between the step of forming the mask oxide film and the step of implanting oxygen ions.
    • 为了容易且准确地将用作SOI区域的基板表面与用作主体区域的基板表面冲洗,形成掩埋氧化膜,并且防止氧化膜暴露在基板表面上。 在由单晶硅构成的基板12的表面上部分地形成掩模氧化膜23之后,通过掩模氧化膜将氧离子16注入基板的表面,并将基板退火以形成掩埋氧化膜13 在基板内。 进一步包括通过形成热生长氧化物膜21,形成比作为其上形成有掩模氧化膜的体积面的衬底表面12b更深的预定深度凹部12c的步骤,该衬底表面12b形成在用作SOI区域的衬底表面12a上 在形成掩模氧化膜的步骤和注入氧离子的步骤之间作为其上未形成掩模氧化物膜的SOI区域的衬底表面12a上。
    • 2. 发明申请
    • BOAT CONTROL SYSTEM AND BOAT
    • 船控系统和船
    • US20080269970A1
    • 2008-10-30
    • US12109369
    • 2008-04-25
    • Takashi YAMADA
    • Takashi YAMADA
    • B63H21/21
    • 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。
    • 4. 发明申请
    • ENGINE ROTATION CONTROL DEVICE AND BOAT
    • 发动机转向控制装置和船
    • US20080215230A1
    • 2008-09-04
    • US12026645
    • 2008-02-06
    • Takashi YAMADAMasaru KAWANISHI
    • Takashi YAMADAMasaru KAWANISHI
    • F02D35/00B63H21/21
    • B63H20/00F02D11/105F02D31/001F02D41/266
    • In an engine rotation control device, a remote control operation device is provided with a remote control side ECU and an engine side ECU so that an outboard motor can be remotely controlled. The remote control side ECU and the engine side ECU periodically communicate a control signal. A gauge includes a slow-speed operation section that changes the engine rotational speed during slow-speed cruising. The slow-speed operation section outputs a change command signal to change the engine rotational speed, and a rotational speed change signal generated by a signal output section based on the change command signal is transmitted to the engine side ECU as a periodic control signal. A reset section of the remote control side ECU resets the rotational speed change signal to an initial state in response to a request from a reset request section.
    • 在发动机旋转控制装置中,远程控制操作装置设置有遥控侧ECU和发动机侧ECU,从而可以远程控制舷外马达。 遥控器侧ECU和发动机侧ECU周期性地传送控制信号。 测速仪包括在慢速巡航期间改变发动机转速的慢速操作部分。 慢速运转部输出变更指令信号来变更发动机的转速,由信号输出部根据变更指令信号生成的转速变化信号作为周期性的控制信号发送到发动机侧ECU。 响应于来自复位请求部分的请求,遥控器侧ECU的复位部分将转速改变信号复位到初始状态。
    • 5. 发明申请
    • IMAGE FORMING APPARATUS AND CONTROL METHOD THEREOF
    • 图像形成装置及其控制方法
    • US20130272736A1
    • 2013-10-17
    • US13845991
    • 2013-03-18
    • Tsutomu SAKAMAKITakashi YAMADA
    • Tsutomu SAKAMAKITakashi YAMADA
    • G03G15/20
    • G03G15/205G03G15/2032G03G15/2064
    • An image forming apparatus is provided that includes: a heating member that heats a recording sheet; a pressure member that presses the recording sheet between the heating member and the pressure member; an adjustment mechanism that causes the heating member and the pressure member to contact or to separate; and a control section that, at a time of a warm-up operation or an idling operation, based on a predetermined condition, controls the adjustment mechanism so as to cause the heating member and the pressure member to contact at a contact pressure that is lower than a contact pressure between the heating member and the pressure member at a time of image formation or is approximately identical to the contact pressure at a time of image formation.
    • 提供一种图像形成装置,其包括:加热记录纸张的加热构件; 压力构件,其在所述加热构件和所述压力构件之间按压所述记录片材; 使加热构件和压力构件接触或分离的调节机构; 以及控制部,其在预热操作或空转操作时基于预定条件,控制所述调节机构,以使所述加热部件和所述加压部件以较低的接触压力接触 比图像形成时加热构件和压力构件之间的接触压力大致相同于图像形成时的接触压力。
    • 9. 发明申请
    • BOAT
    • US20080268727A1
    • 2008-10-30
    • US12108530
    • 2008-04-24
    • Takashi YAMADAMasaru KAWANISHI
    • Takashi YAMADAMasaru KAWANISHI
    • B63B49/00B63H21/22
    • B63H20/00B63H21/22
    • An engine ECU provided in a boat propulsion system is connected to a remote control ECU provided in a remote control device, the remote control ECU is connected to a gauge ECU provided in an information display device, and control is performed so as to start communication between the remote control ECU and the gauge ECU after a power supply is turned on and after authentication of the engine ECU and the remote control ECU is completed. Accurate information on the boat propulsion system can be transmitted in response to a request from the information display device at a time of initialization at a system start.
    • 设置在船舶推进系统中的发动机ECU连接到设置在遥控装置中的遥控ECU,遥控ECU连接到设置在信息显示装置中的量规ECU,并且执行控制以开始 电源接通后的遥控ECU和量规ECU以及发动机ECU和遥控ECU的认证完成后。 可以在系统启动时的初始化时响应来自信息显示装置的请求来发送关于船推进系统的准确信息。
    • 10. 发明申请
    • VOLUME CONTROL SYSTEM, CONTROLLER, AND AMPLIFYING APPARATUS
    • 音量控制系统,控制器和放大器
    • US20110211712A1
    • 2011-09-01
    • US12861956
    • 2010-08-24
    • Takashi YAMADAKazushige OTSU
    • Takashi YAMADAKazushige OTSU
    • H03G3/00
    • H03G3/04G06F3/165H03G3/002
    • A volume control system comprises: an amplifying apparatus; and a controller connectable to the amplifying apparatus. The amplifying apparatus includes; a first receiving section for receiving a volume value from the controller, a first input section into which an instruction for changing the volume value is input by a user's operation, a first transmitting section for transmitting the volume value input into the first input section to the controller, and a volume control section for, when the first receiving section receives the volume value or the changed volume value is input into the first input section, controlling a volume value of the amplifying apparatus based on the volume value. The controller includes; a display section for displaying the volume value on a display device, a second receiving section for receiving the volume value from the amplifying apparatus, a changing section for changing the volume value to be displayed on the display device by the display section into the volume value received by the second receiving section; a second input section into which an instruction for changing the volume value to be displayed on the display device by the display section is input by a user's operation; and a second transmitting section for, when the instruction for changing the volume value to be displayed on the display device by the display section is input by the user's operation, transmitting the changed volume value to the amplifying apparatus.
    • 音量控制系统包括:放大装置; 以及可连接到放大装置的控制器。 放大装置包括: 用于从控制器接收音量值的第一接收部分,用户操作输入用于改变音量值的指令的第一输入部分,用于将输入到第一输入部分的音量值传送到第一输入部分的第一发送部分, 控制器和音量控制部分,用于当第一接收部分接收到音量值或改变的音量值被输入到第一输入部分时,基于音量值控制放大装置的音量值。 控制器包括 用于在显示装置上显示音量值的显示部分,用于从放大装置接收音量值的第二接收部分,用于将由显示部分显示在显示装置上的音量值改变为音量值的改变部分 由第二接收部分收到; 第二输入部,通过用户的操作输入用于改变由显示部显示在显示装置上的音量值的指令; 以及第二发送部,用于当通过用户的操作输入用于改变由显示部显示在显示装置上的音量值的指令时,将改变的音量值发送到放大装置。