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    • 71. 发明申请
    • Lathe, and Machining System Equipped with the Lathe
    • 车床和车床加工系统
    • US20060207396A1
    • 2006-09-21
    • US11306215
    • 2005-12-20
    • Kazuyuki HiramotoToshio Ueda
    • Kazuyuki HiramotoToshio Ueda
    • B23B3/00
    • B23B3/36B23B3/167Y10T82/25
    • A lathe includes a bed, a main spindle that holds one end side of a workpiece, a headstock that supports the main spindle such that its axis is horizontal and it can rotate about its axis, and that is disposed on the bed such that it can move in the main spindle axial direction, a rotational drive mechanism for rotating the main spindle about its axis, a tailstock fixedly disposed on the bed in opposition to the headstock, a tailstock spindle that is supported by the tailstock such that it is coaxial with the main spindle, and that supports the other end side of the workpiece, tool posts that hold tools and that are disposed on the bed such that they can move in the main spindle axial direction, and a feed mechanism for moving the headstock and the tool posts in the various directions.
    • 车床包括一个床,一个保持工件的一端侧的主轴,支撑主轴的主轴,使得其轴线是水平的并且它可以围绕其轴线旋转,并且被设置在床上,使得它可以 沿主轴轴向移动,用于使主轴绕其轴线旋转的旋转驱动机构,与主轴架相对固定地设置在床上的尾座;由尾架支撑的尾座主轴,使其与 主轴,并且支撑工件的另一端侧,固定工具并且设置在床上的工具柱,使得它们能够在主轴轴向方向上移动;以及进给机构,用于使头架和工具柱移动 在各个方向。
    • 72. 发明申请
    • Machine tool and boring bar magazine
    • 机床和镗杆杂志
    • US20050137069A1
    • 2005-06-23
    • US11006716
    • 2004-12-08
    • Toshio Ueda
    • Toshio Ueda
    • B23B29/32B23Q3/155B23Q3/157
    • B23Q3/15526Y10T29/5114Y10T483/1726
    • A machine tool is provided with a base, a tool rest and a boring bar magazine. The tool rest is mounted on the base and retains a boring bar. The tool rest is moved in a first direction in parallel with an axis of the main spindle and in a second direction perpendicular to the first direction. The magazine is located opposite to a headstock and stocks the boring bars and swivels and indexes the boring bar. The tool rest is moved whereby the boring bars are changed by other ones between the tool rest and the magazine. Thus, the tool rest is moved in at least two directions so that the boring bars are changed between the tool rest and the magazine.
    • 机床设有基座,工具架和镗杆仓。 刀架安装在底座上,并保留着一个镗杆。 刀架在与主轴的轴线平行的第一方向上并且在垂直于第一方向的第二方向上移动。 该杂志位于一个头架的对面,并存放镗杆和旋转件并对镗杆进行索引。 刀架被移动,钻杆由工具架和刀库之间的其它杆改变。 因此,刀架在至少两个方向上移动,使得钻杆在刀架和刀库之间改变。
    • 73. 发明授权
    • Plasma display apparatus
    • 等离子显示装置
    • US06686698B2
    • 2004-02-03
    • US10291495
    • 2002-11-12
    • Masanori TakeuchiToshio UedaShigeharu Asao
    • Masanori TakeuchiToshio UedaShigeharu Asao
    • G09G310
    • G09G3/2022G09G3/2946G09G2310/065G09G2360/16
    • A PDP apparatus in which degradation in image quality such as display missing points does not occur, even if the peak luminance is increased, has been disclosed. In the PDP apparatus, the display load ratio of each subfield is detected and a sustain pulse cycle is changed according to the display load ratio of each subfield. Moreover, an adaptive sustain pulse number change means is provided, which calculates the total amount of variations in time by summing the variations in time in a display field caused by the changes in the sustain pulse cycles and increases/decreases the number of sustain pulses of each subfield according to the total amount of variations in time.
    • 已经公开了即使峰值亮度增加也不会发生诸如显示缺失点的图像质量劣化的PDP设备。 在PDP装置中,检测每个子场的显示负载比,并根据每个子场的显示负载比改变维持脉冲周期。 此外,提供了一种自适应维持脉冲数改变装置,其通过对由维持脉冲周期的变化引起的显示区域中的时间变化进行求和来计算时间变化的总量,并且增加/减少维持脉冲数量的维持脉冲数 每个子场根据时间的变化总量。
    • 74. 发明授权
    • Method of driving display panel and panel display apparatus
    • 驱动显示面板和面板显示装置的方法
    • US06650307B1
    • 2003-11-18
    • US09697717
    • 2000-10-27
    • Kosaku TodaToshio UedaTakayuki Ooe
    • Kosaku TodaToshio UedaTakayuki Ooe
    • G09G328
    • G09G3/2944G09G2320/0271G09G2330/021G09G2360/16
    • A method of driving a display panel, and a panel display apparatus, in which displays do not lack realism even when power control is performed, have been disclosed. In the display panel driving method, the display frame for a screen is comprised of plural subframes, each being assigned a number of times discharge for light emission is performed according to the specified luminance relation, the representation with gray scale is performed by combining the subframes that display according to the intensity of the input image signal for each cell, and the power consumption is controlled by both the control of the total number of times discharge for light emission is performed of the display frame and the control of the gain of the input image signal.
    • 已经公开了即使在执行功率控制时也不缺乏现实性的显示面板和面板显示装置的驱动方法。 在显示面板驱动方法中,画面显示框由多个子帧构成,分别按照规定的亮度关系进行发光放电次数的多个子帧,通过将子帧 根据每个单元的输入图像信号的强度来显示,并且通过对显示帧执行发光放电的总次数的控制和输入的增益的控制两者来控制功耗 图像信号。
    • 76. 发明授权
    • Stage apparatus
    • 舞台装置
    • US6166812A
    • 2000-12-26
    • US385965
    • 1999-08-30
    • Toshio Ueda
    • Toshio Ueda
    • G03F7/20G01B11/00G01B11/26G03F9/00H01L21/027
    • G01B11/002G01B11/26G03F7/70691
    • A stage apparatus of the present invention includes a plurality of interferometers 14H, 14J, 14R for measuring the displacements of a fine adjustment stage 11 at respective measuring sites, a plurality of actuators 29h, 29j, 29r for independently moving the stage 11, and a mathematical operational conversion unit 43. Deviations .DELTA.H, .DELTA.J and .DELTA.R are derived by a subtracting displacements H, J, R of the stage 11 actually measured by the interferometers from the target displacements HT, JT, RT of the stage 11, and supplied to the mathematical operational conversion unit 43, where the target driven increments .DELTA.h, .DELTA.j, .DELTA.r are derived by a calculation using a predetermined mathematical model (this model is an inverse matrix T.sup.-1, which is the inverse of the matrix T describing the operation for deriving the displacements measured by the interferometers from the displacement produced by the actuators). The rotational speed controllers 39A, 39B, 39C of the actuators are driven by the amounts h, j, r that correspond to the target driven increments .DELTA.h, .DELTA.j, .DELTA.r. This results in a reduced effect of any mechanical interference, so that the positioning of the fine adjustment stage 11 can be quickly achieved with high accuracy.
    • 本发明的舞台装置包括用于测量各个测量位置处的微调台11的位移的多个干涉仪14H,14J,14R,用于独立地移动舞台11的多个致动器29h,29j,29r和 数学运算转换单元43.偏差DELTA H,DELTA J和DELTA R由实际由干涉仪测量的级11的减法位移H,J,R从级11的目标位移HT,JT,RT导出,以及 提供给数学运算转换单元43,其中通过使用预定数学模型的计算导出目标驱动增量DELTA h,DELTA j,DELTA r(该模型是逆矩阵T-1,其是矩阵的倒数 描述了由致动器产生的位移导出由干涉仪测量的位移的操作。 致动器的转速控制器39A,39B,39C由对应于目标驱动增量DELTA j,DELTA j,DELTA r的量h,j,r驱动。 这导致任何机械干扰的影响减小,使得可以高精度地快速地实现微调台11的定位。
    • 80. 发明授权
    • Stage-drive controlling device, projection exposure apparatus including
the same, and method of controlling the driving of a stage
    • 舞台驱动控制装置,包括其的投影曝光装置以及控制舞台驱动的方法
    • US5663783A
    • 1997-09-02
    • US620531
    • 1996-03-25
    • Toshio Ueda
    • Toshio Ueda
    • G03F7/23G03B27/42G03F7/20H01L21/027H01L21/30
    • G03F7/70358G03B27/42G03F7/70725
    • In a stage-drive controlling device used in a scanning projection exposure apparatus, a targeted speed Iwy is imparted to a speed control system for controlling the speed of a substrate stage, and a targeted speed Irc is concurrently imparted to a speed control system for controlling the speed of a mask stage such that the two stages assume a predetermined positional relationship. A deviation Xrc in the speed of the Speed control system is multiplied by 1/4 (multiplied by the magnification of projection) by a deviation feedback system, and the multiplied value is fed back as a targeted input to the speed control system. For this reason, the following formula holds: Ywy={Kwy/(s+Kwy)}.times.(Yrc/4). If the response of the speed control system side (substrate stage side) is good, even if the speed response of the speed control system side (mask stage side) is poor, the speed ratio between the two stages is kept at 4:1.
    • 在扫描投影曝光装置中使用的级驱动控制装置中,将目标速度Iwy赋予用于控制基板台的速度的速度控制系统,并且将目标速度Irc同时赋予用于控制的速度控制系统 掩模阶段的速度使得两个阶段呈现预定的位置关系。 速度控制系统的速度的偏差Xrc乘以偏差反馈系统的+ E,fra 1/4 + EE(乘以投影的放大倍数),乘法值作为目标输入反馈到 速度控制系统 因此,以下公式成立:Ywy = {Kwy /(s + Kwy)} x(Yrc / 4)。 如果速度控制系统侧(基板台侧)的响应良好,即使速度控制系统侧(掩模台侧)的速度响应差,两级之间的速比保持在4:1。