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    • 91. 发明申请
    • Outboard motor identification number setting device and system
    • 舷外马达识别号设定装置及系统
    • US20050118896A1
    • 2005-06-02
    • US10999039
    • 2004-11-29
    • Takashi OkuyamaMasaru Kawanishi
    • Takashi OkuyamaMasaru Kawanishi
    • B63H20/00B60L1/14B63H21/22H04L29/08H04L29/12
    • H04L29/12254B63H21/22B63H2020/003H04L61/2038H04L67/12
    • A vehicle can have plural propulsion devices, at least two of which include number setting sections and number transmitting/receiving sections for transmitting their identification number and receiving identification numbers of the other propulsion devices over a network. When the number transmitting/receiving sections do not receive an identification number of another propulsion device from the network for a predetermined period of time, an initial value preset in the number setting sections is set as the identification number of the propulsion device in the number setting sections. When the number transmitting/receiving sections receive an identification number of another propulsion device from the network, an identification number different from the identification number of the other propulsion device is set in the number setting sections.
    • 车辆可以具有多个推进装置,其中至少两个包括数字设定部分和数量发送/接收部分,用于通过网络发送其标识号和接收其他推进装置的识别号码。 当数量发送/接收部分在预定时间段内没有从网络接收另一个推进装置的识别号码时,在号码设置中将预设在号码设定部分中的初始值设置为推进装置的识别号码 部分。 当数量发送/接收部分从网络接收到另一个推进装置的识别号码时,在号码设置部分中设置与其他推进装置的识别号码不同的识别号码。
    • 92. 发明授权
    • Speed control system and method for watercraft
    • 船舶调速系统及方法
    • US06884128B2
    • 2005-04-26
    • US10691754
    • 2003-10-23
    • Takashi OkuyamaTakashi SugimotoMakoto Itoi
    • Takashi OkuyamaTakashi SugimotoMakoto Itoi
    • B63H21/21B63H21/22F02D9/02F02D11/10F02D29/02F02D31/00F02D41/14
    • B63H21/21B63H21/22F02D11/105F02D29/02F02D31/006
    • A watercraft has an engine and a remote controller. The engine has a throttle valve unit. The remote controller provides a command signal indicative of a position of the throttle valve unit. A watercraft velocity sensor senses an actual speed of the watercraft to provide an actual speed signal. A control data input device selectively provides a control device with a manual mode signal and a constant speed mode signal. The constant speed mode signal is accompanied by a target speed signal. The control device controls the throttle valve unit based upon the command signal in the manual mode. The control device controls the throttle valve unit in the constant speed mode such that an actual speed of the watercraft coincides with the target speed of the watercraft once a state of equilibrium is reached. The control device starts the manual mode in place of the constant speed mode without the manual mode signal if the command signal changes while the control device controls the throttle valve unit in the constant speed mode.
    • 船舶具有发动机和遥控器。 发动机具有节流阀单元。 遥控器提供指示节气门单元的位置的指令信号。 船舶速度传感器检测船舶的实际速度以提供实际的速度信号。 控制数据输入装置选择性地向控制装置提供手动模式信号和恒速模式信号。 恒速模式信号伴随着目标速度信号。 控制装置根据手动模式下的指令信号来控制节气门单元。 控制装置以恒速模式控制节气门单元,使得一旦达到平衡状态,船舶的实际速度与船只的目标速度一致。 控制装置在恒速模式下控制装置控制节气门装置时命令信号发生变化,而不用手动模式信号来启动手动模式。
    • 93. 发明授权
    • Imaging apparatus utilizing laser beams
    • 使用激光束的成像设备
    • US06760054B1
    • 2004-07-06
    • US09708557
    • 2000-11-09
    • Takashi Okuyama
    • Takashi Okuyama
    • B41J2435
    • H05K3/0008H05K1/0269H05K2201/09918H05K2203/107
    • A laser imaging apparatus includes a scanning unit that emits at least one scanning laser beam, which scans on a surface to be scanned in a main scanning direction to form a scanning section. A plurality of position marks formed on the surface are detected to determine the distortion of the surface to be scanned. A calculating system is provided to calculate an inclination of each scanning section with respect the main scanning direction, and a scaling factor of each scanning section with respect to a predetermined length in the main scanning direction based on the shape of the surface to be scanned. Then, when image is formed, the rotational position of the surface to be scanned is changed in accordance with the inclination, and a start position of each scanning section on the surface to be scanned is changed in accordance with the scaling factor.
    • 激光成像装置包括扫描单元,其发射至少一个扫描激光束,扫描激光束在主扫描方向上扫描的表面上扫描以形成扫描部分。 检测形成在表面上的多个位置标记,以确定待扫描表面的变形。 提供一种计算系统,用于基于待扫描表面的形状来计算每个扫描部分相对于主扫描方向的倾斜度和每个扫描部分相对于主扫描方向上的预定长度的缩放因子。 然后,当形成图像时,根据倾斜度改变要扫描的表面的旋转位置,并且根据缩放因子改变要扫描的表面上的每个扫描部分的开始位置。
    • 96. 发明授权
    • Heat treatment method using a zoned tunnel furnace
    • 使用分区隧道炉的热处理方法
    • US4966547A
    • 1990-10-30
    • US330899
    • 1989-03-31
    • Takashi OkuyamaYutaka Yamauchi
    • Takashi OkuyamaYutaka Yamauchi
    • F27B9/02F27B9/40F27D19/00
    • F27B9/40F27B9/028F27D2019/0018F27D2019/0062F27M2001/07F27M2001/1504
    • The invention relates to the control of a tunnel furnace partitioned into a plurality of zones for heat treatment of, e.g., ceramic or glass workpieces. As usual the temperatures of the respective zones are controllable individually. Furthermore, in each of selected zones the temperature of that zone is varied from a first level to a second level during the stay of each workpiece in that zone and returned to the first level in a predetermined time after letting the workpiece out of that zone, and the length of stay of each workpiece in that zone is controlled such that another workpiece can be introduced into that zone while the preceding workpiece stays in the next zone and such that a number of workpieces can be heat treated in succession under the same time-temperature conditions.
    • 本发明涉及分割成多个用于例如陶瓷或玻璃工件的热处理的区域的隧道炉的控制。 通常,各个区域的温度可以单独控制。 此外,在每个选定的区域中,该区域的温度在该区域中的每个工件的停留期间从第一水平变化到第二水平,并且在使工件离开该区域之后的预定时间内返回到第一水平, 并且控制该区域中每个工件的停留长度,使得另一个工件可以被引入到该区域中,同时先前的工件停留在下一个区域中,并且使得多个工件可以在同一时间相继被热处理, 温度条件。
    • 97. 发明授权
    • Photolithography system
    • 光刻系统
    • US08599357B2
    • 2013-12-03
    • US12185202
    • 2008-08-04
    • Takashi OkuyamaYoshinori Kobayashi
    • Takashi OkuyamaYoshinori Kobayashi
    • G03B27/42G03B27/32G03F7/20
    • G03F7/70508G03F7/70275G03F7/70291G03F7/704
    • A photolithography system has at least one spatial light modulator, a scanning mechanism configured to move an exposure area relative to a target object in a scanning direction, a plurality of memories (1st to Nth memories), a data processor, and exposure controller. The exposure area is defined as a projection area of the spatial light modulator. The plurality of memories corresponds to a plurality of partial exposure areas that is defined by dividing the exposure area. The data processor successively writes exposure data into each memory in accordance with the timing of an exposure, and the exposure controller controls the plurality of light modulating elements on the basis of the relative position of the exposure area. The data processor writes newly generated exposure data into the first memory, and shifts exposure data stored in the 1st to (N−1)st memories to the 2nd to Nth memories, respectively.
    • 光刻系统具有至少一个空间光调制器,被配置为沿扫描方向相对于目标物体移动曝光区域的扫描机构,多个存储器(第1至第N存储器),数据处理器和曝光控制器。 曝光区域被定义为空间光调制器的投影区域。 多个存储器对应于通过划分曝光区域限定的多个部分曝光区域。 数据处理器根据曝光的定时将曝光数据连续地写入每个存储器,并且曝光控制器基于曝光区域的相对位置控制多个光调制元件。 数据处理器将新产生的曝光数据写入第一存储器,并将存储在第1至第(N-1)个存储器中的曝光数据分别移位到第2至第N存储器。
    • 98. 发明授权
    • Connection device and program
    • 连接设备和程序
    • US08510456B2
    • 2013-08-13
    • US12177975
    • 2008-07-23
    • Takashi Okuyama
    • Takashi Okuyama
    • G06F15/173
    • H04L67/12B63H2021/216H04L69/18H04L69/24
    • In a connection device connected to a network mounted in a boat, a protocol of a connection device connected to a network mounted in a boat is identified based on a communication ID in a certain message transmitted through the network. A device protocol is determined in accordance with the protocol of the network. Data communication in the network is performed in conformity with the device protocol. Accordingly, when the connection device is connected to the network, the connection device automatically identifies a protocol of the network and operates appropriately. Therefore, upward compatibility is maintained and usability is improved.
    • 在连接到安装在船上的网络的连接装置中,基于通过网络发送的特定消息中的通信ID来识别连接到安装在船上的网络的连接装置的协议。 根据网络的协议来确定设备协议。 根据设备协议执行网络中的数据通信。 因此,当连接装置连接到网络时,连接装置自动识别网络的协议并适当地操作。 因此,保持向上兼容性并提高可用性。
    • 99. 发明授权
    • Exposure data generating apparatus
    • 曝光数据生成装置
    • US07979153B2
    • 2011-07-12
    • US11944762
    • 2007-11-26
    • Takashi Okuyama
    • Takashi Okuyama
    • G06F19/00
    • G03F7/70291G03F7/70508
    • An exposure-data generating apparatus comprises a first memory, a second memory, and an exposure data memory. The first memory stores drawing data in bitmap format as first data that is used for an exposure. The second memory stores second data whose data unit in a column direction is converted to a resolution unit of information of each cell based on the first data. The exposure data memory stores exposure data that is raster data obtained by a burst transfer of third data at every column unit. The second data is rearranged and converted to the third data, where an arrangement of data of each cell of the second data in the column direction is changed to a row direction. The cell constitutes a display element of a Digital Micro-mirror Device that performs the exposure based on said exposure data.
    • 曝光数据生成装置包括第一存储器,第二存储器和曝光数据存储器。 第一存储器以位图格式存储图形数据作为用于曝光的第一数据。 第二存储器存储其列方向上的数据单元基于第一数据被转换为每个单元的信息的分辨率单位的第二数据。 曝光数据存储器存储作为在每列单位通过第三数据的突发传送获得的光栅数据的曝光数据。 将第二数据重新排列并转换为第三数据,其中列方向上的第二数据的每个单元的数据排列被改变为行方向。 该单元构成基于所述曝光数据进行曝光的数字微镜装置的显示元件。
    • 100. 发明授权
    • Remote control system for a watercraft
    • 船舶遥控系统
    • US07860616B2
    • 2010-12-28
    • US12370522
    • 2009-02-12
    • Makoto ItoTakashi Okuyama
    • Makoto ItoTakashi Okuyama
    • B63H21/21B60W10/04G06F19/00
    • B63H21/213
    • A remote control system for controlling a propulsion unit of a watercraft includes a plurality of remote controller side ECUs, all of which have the same construction in one embodiment. Each remote controller side ECU includes ECU discriminating terminal sections and an ECU determining section for determining a role of each remote controller side ECU based upon signals provided by the ECU discriminating terminal sections. The ECU determining section determines a role of the particular remote controller side ECU based upon the signals provided by the ECU discriminating terminal sections when the remote controller side ECU starts operating. The ECU determining section also reads out the most proper one of first through sixth exclusive use sections, which define the function of the ECU's role. A determination result is stored in first, second and third EPROMs so as to be used to determine the role.
    • 用于控制船舶的推进单元的遥控系统包括多个遥控器侧ECU,在一个实施例中,它们都具有相同的结构。 每个遥控器侧ECU包括ECU识别终端部分和ECU确定部分,用于基于由ECU识别终端部分提供的信号来确定每个遥控器侧ECU的作用。 ECU确定部根据遥控器侧ECU开始动作时由ECU识别终端部提供的信号,决定特定的遥控器侧ECU的作用。 ECU确定部分还读出定义ECU的作用的功能的第一至第六专用部分中最合适的部分。 确定结果存储在第一,第二和第三EPROM中,以便用于确定作用。