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    • 111. 发明申请
    • Operation switch wiring mechanism
    • 操作开关接线机构
    • US20060089726A1
    • 2006-04-27
    • US11246142
    • 2005-10-11
    • Takeshi HatemataTakashi Yoshida
    • Takeshi HatemataTakashi Yoshida
    • G05B11/01
    • H05K5/0017H01H13/70H01H2219/01H01H2219/014H01H2223/058H01H2300/03H01H2300/04Y02B90/224Y04S20/14
    • A small-sized operation switch wiring mechanism which can easily set an address without using an address setting device. The operation switch wiring mechanism includes a device body formed at three-module size. Disposed on the front surface of the device body are operation buttons which cover operators of eight operation switches individually assigned with addresses corresponding to the addresses of relays, and an operator of a rotary switch which alternatively selects a combination of the addresses of the operation switches among a plurality of combinations. In the device body, a signal processor transmits a transmission signal including operation information due to the manipulation of the operation switch, and the address of the manipulated operation switch to a signal line is received. A face cover that covers the entire front surface is detachably attached to the front surface of the device surface.
    • 一种小型操作开关布线机构,其可以容易地设置地址而不使用地址设置装置。 操作开关布线机构包括以三个模块尺寸形成的装置主体。 设置在装置主体的前表面上的操作按钮包括操作者,操作者分别分配有与继电器的地址对应的地址的八个操作开关,以及旋转开关的操作者,可选地选择操作开关的地址的组合 多个组合。 在设备主体中,信号处理器由于操作开关的操作而发送包括操作信息的传输信号,并且接收到操作操作切换到信号线的地址。 覆盖整个前表面的面罩可拆卸地附接到装置表面的前表面。
    • 113. 发明申请
    • Viscous damper
    • 粘性阻尼器
    • US20050235943A1
    • 2005-10-27
    • US10514551
    • 2003-05-30
    • Hideaki WatanabeKazumi OhkiTakashi YoshidaMasakazu Isono
    • Hideaki WatanabeKazumi OhkiTakashi YoshidaMasakazu Isono
    • F02B77/00F16F15/173F02B75/06
    • F16F15/173Y10T74/2121Y10T74/2122Y10T74/2183Y10T74/2184
    • A viscous damper having improved versatility, easy to produce, capable of reducing production cost The viscous damper comprises an annular inertial mass body (14) received in a case (10) together with a damping liquid, and a hub (11) for fixing the case on the rotary shaft of an internal combustion engine. The case comprises a case main body (12) of substantially U-shaped cross section, and a cover (7) for liquid-tightly closing an opening (12d) directed to one axial side of the main body, and defining a sealed chamber (13) in the inside. The inertial mass body is made by superposing and joining a plurality of annular plates (14a). By thrust bearings (5) attached in holes (8) in the annular plate on both axial sides of the inertial mass body and by a journal bearing (6) attached in a recessed groove (9) in the inner periphery of the inertial mass body, the inertial mass body is supported on both axial sides and radially and disposed for peripheral rotation in the sealed chamber (13).
    • 一种具有改进的通用性,易于制造,能够降低生产成本的粘性阻尼器。粘性阻尼器包括与阻尼液一起容纳在壳体(10)中的环形惯性质量体(14)和用于固定 在内燃机的旋转轴上的情况。 壳体包括大致U形横截面的壳体主体(12)和用于液体密封指向主体的一个轴向侧面的开口(12d)的盖子(7),并且限定密封室 (13)在里面。 惯性质量体通过叠加并连接多个环形板(14a)而制成。 通过安装在惯性质量体的两个轴向侧的环形板上的孔(8)中的推力轴承(5)和安装在惯性体的内周的凹槽(9)中的轴颈轴承(6) 惯性质量体在轴向两侧被径向支撑并设置在密封室13内的周向旋转。
    • 114. 发明申请
    • Obstacle detection device
    • 障碍物检测装置
    • US20050225439A1
    • 2005-10-13
    • US10524208
    • 2004-03-09
    • Yutaka WatanabeTakashi YoshidaAkira Ishida
    • Yutaka WatanabeTakashi YoshidaAkira Ishida
    • B62D15/02G01S13/93G05D1/02B60Q1/00
    • G06K9/00812B60T2201/10B62D15/027G01S13/931G01S2013/9314G01S2013/9375G01S2013/9378G01S2013/9385G05D1/0238G05D2201/0213
    • An obstacle detection device includes: an obstacle detection section (11) for emitting beams having a predetermined divergence angle consecutively in a plurality of different directions, receiving a reflected wave from an obstacle for each direction, and detecting the obstacle existing within an emission angle range of the beam for the direction; a distance calculation section (12) for calculating a distance representative of an interspace between the obstacle and the vehicle for each direction based on a received signal of the reflected wave for the direction outputted from the obstacle detection section; an obstacle image creation section (14) for creating, as an obstacle image, a figure two-dimensionally developed in the emission angle range of the beam emitted in each direction while treating, as a basis for image creation, the distance calculated by the distance calculation section for the direction, and for creating and outputting image data for displaying the obstacle image; and a display section (15) for receiving the image data created by the obstacle image creation section and displaying an image showing a positional relationship between the obstacle and the vehicle.
    • 障碍物检测装置包括:障碍物检测部(11),用于在多个不同的方向上连续地发射具有预定发散角的光束,从每个方向接收来自障碍物的反射波,并且检测存在于发射角范围内的障碍物 的梁的方向; 距离计算部分,用于根据从障碍物检测部分输出的方向的反射波的接收信号,计算表示每个方向上的障碍物与车辆之间的空间的距离; 用于在处理作为图像创建的基础的距离计算出的距离的同时,在以每个方向发射的光束的发射角范围内形成二维显影的图像作为障碍物图像的障碍物图像创建部分(14) 计算部分,用于创建和输出用于显示障碍物图像的图像数据; 以及显示部(15),用于接收由障碍物图像创建部创建的图像数据,并且显示示出障碍物和车辆之间的位置关系的图像。
    • 117. 发明授权
    • Conveyor device
    • 输送装置
    • US06669012B1
    • 2003-12-30
    • US09869013
    • 2001-06-22
    • Takashi YoshidaYuichi Komazawa
    • Takashi YoshidaYuichi Komazawa
    • B65G4710
    • B65G17/345B65G2201/02B65G2207/18
    • A conveyor device capable of moving a package also in a main direction orthogonal to a direction of conveyance, and thereby making it possible to change and maintain a package in any posture. The conveyor device 30 of the present invention is formed by coupling a plurality of conveyor sub-units 1 in an endless manner while each sub-unit 1 by itself has a function as a belt conveyor and the drive direction of the belt of the conveyor sub-unit 1 is in a direction orthogonal to the main direction of conveyance of the conveyor device 30. Some or all of the conveyor sub-units 1 constituting the conveyor device 30 can be made to operate in cooperation with each other by combining the conveyor device 30 with a control instruction device. The conveyor sub-unit 1 comprises a belt, a drive, means for the belt, a communication means for communicating with a control instruction device and other conveyor sub-units, a detecting means for detecting the position of a package on the belt, and control means for driving the belt forward or in reverse by using information from each of said means.
    • 一种输送装置,其能够在与输送方向正交的主方向上移动包装,从而能够以任何姿势改变和维持包装。本发明的输送装置30通过将多个 输送机子单元1以每个子单元1本身具有带式输送机的功能,并且输送机单元1的带的驱动方向在与主输送方向正交的方向上 输送装置30.构成输送装置30的一部分或全部输送机子单元1可以通过将输送装置30与控制指令装置组合而相互配合地进行操作。输送机子单元1包括: 皮带,驱动装置,皮带装置,用于与控制指令装置和其它输送机子单元通信的通信装置,检测装置在皮带上的位置的检测装置,以及控制装置 ns用于通过使用来自每个所述装置的信息来向前或向后驱动皮带。
    • 118. 发明授权
    • Printing apparatus and method of controlling power supply thereof
    • 控制电源供给的印刷装置及方法
    • US06663209B2
    • 2003-12-16
    • US09781393
    • 2001-02-13
    • Takashi Yoshida
    • Takashi Yoshida
    • B41J2938
    • B41J2/04568B41J2/0458
    • Disclosed is a printing apparatus that is capable of stable printing even when the number of printing elements driven simultaneously varies. The printing apparatus includes an input data processor for expanding compressed print data, which has been transmitted from a host device, and outputting a print code sequence; a heat-data generator for generating and outputting heat data, which corresponds to each heater, every heat cycle based upon the print code sequence, and simultaneously counting the number of dots of ink discharged at the same time and outputting a power supply selection signal; a multiple power supply circuit for outputting three different voltages; and a power supply selector which, in accordance with the selection signal [SL (1:0)], selects heater driving power from among the three different voltages and outputs the selected power to a printhead.
    • 公开了即使当同时驱动的打印元件的数量变化时也能够稳定地印刷的打印装置。 打印装置包括用于扩展已经从主机设备发送的压缩打印数据并输出打印代码序列的输入数据处理器; 一个热量数据发生器,用于根据打印代码序列产生和输出与每个加热器对应的热量数据,同时对同时排出的墨点数进行计数并输出一个电源选择信号; 用于输出三个不同电压的多电源电路; 以及电源选择器,其根据选择信号[SL(1:0)]从三个不同电压中选择加热器驱动功率,并将所选择的功率输出到打印头。
    • 120. 发明授权
    • Ink jet printing apparatus, image reading apparatus, ink jet printing method and image reading method
    • 喷墨打印装置,图像读取装置,喷墨打印方法和图像读取方法
    • US06561606B1
    • 2003-05-13
    • US09675139
    • 2000-09-29
    • Takashi Yoshida
    • Takashi Yoshida
    • B41J25308
    • B41J25/3086B41J25/308
    • There are provided an ink jet printing apparatus, an image reading apparatus, an ink jet printing method and an image reading method capable of saving electric power, reducing noise and improving the reliability by specifying a timing of the adjustment of a paper gap. To achieve the object, in a printing mode for printing an image on a print medium, a function for adjusting a gap between a print head and a print medium is limited during the non-printing motion in which no ink is ejected from the print head. Also, in a reading mode for reading an image printed on a print medium, a function for adjusting a gap between a scanner and a print medium is limited during the non-reading motion in which the scanner does not read the image.
    • 提供了通过指定纸间隙调整的定时,能够节省电力,降低噪音和提高可靠性的喷墨打印装置,图像读取装置,喷墨打印方法和图像读取方法。 为了实现该目的,在用于在打印介质上打印图像的打印模式中,用于调整打印头和打印介质之间的间隙的功能在非打印动作期间受到限制,在该非打印动作中,没有墨水从打印头 。 此外,在用于读取打印在打印介质上的图像的读取模式中,在扫描仪不读取图像的非读取运动期间限制用于调整扫描仪和打印介质之间的间隙的功能。