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    • 1. 发明申请
    • Vibration isolator
    • 隔振器
    • US20050269754A1
    • 2005-12-08
    • US10958281
    • 2004-10-06
    • Toru FujiiKazuo MiyakeNobuyuki Sasada
    • Toru FujiiKazuo MiyakeNobuyuki Sasada
    • F16F15/08F16F1/371F16F1/38F16F15/04F16F9/04
    • F16F1/371
    • A vibration isolator mount includes an inner cylinder body, an outer cylinder body arranged around the inner cylinder body, a flange portion provided at a front end portion of the outer cylinder body in the axial direction so as to extend radially outward, a rubber elastic body interposed between the cylinder bodies to connect therebetween, and a stopper rubber elastic body provided at a face of the flange portion facing outward with respect to the cylinder axial direction. Holes open at a stopper face and extending inward along the cylinder axial direction are formed in the stopper rubber elastic body. A rigid body is provided at a part inside than the holes in the stopper rubber elastic body with respect to the cylinder axial direction.
    • 隔振器安装件包括内筒体,围绕内筒体设置的外筒体,沿轴向方向设置在外筒体的前端部以沿径向向外延伸的凸缘部,橡胶弹性体 夹在所述缸体之间以连接在其间的止动橡胶弹性体,所述止动橡胶弹性体设置在所述凸缘部相对于所述气缸轴向方向的外侧的表面。 在止动橡胶弹性体中形成有在止动面上沿着圆筒轴向向内延伸的孔。 在止动橡胶弹性体中相对于气缸轴向的孔内部设置刚性体。
    • 6. 发明授权
    • Operating condition monitoring apparatus, method for monitoring operating condition and program
    • 运行条件监控装置,运行状态监控方法
    • US07698011B2
    • 2010-04-13
    • US11923173
    • 2007-10-24
    • Manabu TsudaToru Fujii
    • Manabu TsudaToru Fujii
    • G06F19/00
    • G07C3/00G07C3/02Y02P90/86
    • An operating condition monitoring apparatus includes a load-time information acquisition unit 203 obtaining load-time information, of one or more production apparatuses 11, concerning load time allocated to production within a predetermined period, an operating-time information acquisition unit 204 obtaining operating-time information, of one or more production apparatuses 11, concerning operating time that is operable time for the production apparatuses within the predetermined period, an individual operating-rate calculation unit 205 calculating an individual operating rate of one or more production apparatuses 11 by dividing the operating time indicated in the operating-time information by the load time indicated in the load-time information, and an output unit 213 outputting the individual operating rate, in order to identify the production apparatus causing the stoppage of a production line.
    • 操作状态监视装置包括负载时间信息获取单元203,获取关于在预定时间段内分配给生产的加载时间的一个或多个生产装置11的加载时间信息;操作时信息获取单元, 一个或多个生产设备11的时间信息,涉及在预定时间内对于生产设备的可操作时间的操作时间,个体操作率计算单元205通过将一个或多个生产设备11的单独操作速率除以 在运行时间信息中指示的加载时间信息中指示的加载时间的运行时间以及输出单独运行速率的输出单元213,以识别导致生产线停止的生产设备。
    • 9. 发明授权
    • Optical information medium and recording method therefor
    • 光信息媒体及其记录方法
    • US06728198B2
    • 2004-04-27
    • US10162300
    • 2002-06-04
    • Toru FujiiToshiaki TajimaYuji TomizawaRyou NegishiEmiko Hamada
    • Toru FujiiToshiaki TajimaYuji TomizawaRyou NegishiEmiko Hamada
    • G11B724
    • G11B7/24079G11B7/24076
    • An optical information medium made up of a transparent substrate capable of allowing a recording laser beam to penetrate therethrough; a recording layer formed on the transparent substrate; and a reflective layer formed on the recording layer and reflecting a reproducing laser beam thereupon. A numerical aperture of an objective lens of an optical pickup for irradiating the recording laser beam on the recording layer is approximately 0.65, and the numerical aperture of an objective lens of the optical pickup for irradiating the recording laser beam on the reflection layer is approximately 0.60. An inclination angle &thgr; at both edges of the groove for tracking, being formed spirally on the surface of the transparent substrate on which the recording layer is formed, with respect to the main surface of the transparent substrate, is selected to be from 55° to 75°. An index ∝, expressed by 1−Dr/Ds when assuming that the depth of the groove on the transparent substrate is Ds and the depth of the recording layer at the position of said groove is Dr, is selected to be from 0.2 to 0.4. Further, the full width at half maximum of the groove on the transparent substrate is selected to be from one-third (⅓) to a half (½) of the pitch p of the groove. With this optical information medium, it is possible to record high density signals as signals that are readable optically, as well as to record them with stability.
    • 由能够使记录激光束透过的透明基板构成的光信息介质; 形成在所述透明基板上的记录层; 以及形成在记录层上并在其上反射再现激光束的反射层。 用于将记录激光束照射在记录层上的用于照射记录激光束的光学拾取器的物镜的数值孔径大约为0.65,用于将记录激光束照射在反射层上的光学拾取器的物镜的数值孔径大约为0.60 。 在形成有记录层的透明基板的表面上相对于透明基板的主表面螺旋地形成用于跟踪的凹槽的两个边缘处的倾斜角度θ选择为55°至 75°。 当假设透明基板上的凹槽的深度为Ds并且记录层在所述凹槽的位置的深度为Dr时,由1-Dr / Ds表示的折射率α被选择为0.2至0.4。 此外,透明基板上的凹槽的最大半宽选择为凹槽的间距p的三分之一(1/3)至半(1/2)。 利用该光学信息介质,可以将高密度信号记录为可光学读取的信号,并且可以稳定地记录它们。