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    • 1. 发明申请
    • Device, method and program for estimating the number of layers of BGA component mounting substrate
    • 用于估计BGA部件安装基板的层数的装置,方法和程序
    • US20060005153A1
    • 2006-01-05
    • US11169584
    • 2005-06-30
    • Yoshiaki MaruyamaTakahiro Yaguchi
    • Yoshiaki MaruyamaTakahiro Yaguchi
    • G06F17/50
    • G06F17/5077
    • To estimate the number of layers required for drawing wirings out of a BGA component at a high speed. A layer number estimation device includes: a bottleneck line detection means, a wiring layer adding means, and a repeating means. The bottleneck line detection means detects a line as a bottleneck line, among a plurality of lines formed by connecting electrodes, where the number of electrodes located nearer the center side than the lines is greater comparing with the number of wirings capable of passing through the lines. The wiring layer adding means disposes electrodes, among the electrodes located nearer the center side than the bottleneck line, which remain after subtracting the number of wirings capable of passing through the bottleneck line, on the next wiring layer with vias. The repeating means causes the bottleneck line detection means and the wiring layer adding means to be executed to the next wiring layer.
    • 估计从BGA组件中高速绘制布线所需的层数。 层数估计装置包括:瓶颈线检测装置,布线层添加装置和重复装置。 瓶颈线检测装置在连接电极形成的多个线之间检测线作为瓶颈线,其中位于比线更靠中心侧的电极数量比能够通过线路的布线数量更大 。 在下一个具有通孔的布线层上,布线层添加装置将电极放置在比瓶颈线更靠近中心侧的电极中,该电极在减去能够穿过瓶颈线的布线数之后保留。 重复装置使得瓶颈线检测装置和布线层添加装置被执行到下一个布线层。
    • 5. 发明授权
    • Method of manufacturing liquid crystal display panels
    • 制造液晶显示面板的方法
    • US07320900B2
    • 2008-01-22
    • US10372609
    • 2003-02-19
    • Yoshinori TanakaYoshiaki Maruyama
    • Yoshinori TanakaYoshiaki Maruyama
    • H01L21/00
    • G02F1/133351G02F1/1393G02F1/141G02F2001/13775
    • Before cutting a gang-printed substrate having a multiplicity of liquid crystal display panel regions provided thereon into individual liquid crystal display panels, a voltage is applied to all of the multiplicity of liquid crystal display panel regions to inspect display defects, polymerize a monomer in the liquid crystal component, and control alignment of the liquid crystal, which allows the time required for a voltage applying step to be reduced and allows a reduction in the manufacturing cost. A dispenser injection process is used to allow a liquid crystal to be injected between mother boards that have not been cut into individual display panels, and a voltage is applied after the pair of glass substrates are combined and before they are cut into individual display panels to perform a test on display defects (dynamic operating test), pretilt control, and an aligning process.
    • 在将具有多个液晶显示面板区域的组合印刷基板切割成单独的液晶显示面板之前,向所有多个液晶显示面板区域施加电压以检查显示缺陷,使单体在 液晶成分和液晶的控制对准,这允许降低电压施加步骤所需的时间并且允许降低制造成本。 分配器注入过程用于允许将液晶注入未切割成单个显示面板的母板之间,并且在将该对玻璃基板组合之后并且在将它们切割成单独的显示面板之前施加电压 对显示缺陷(动态操作测试),预倾角控制和对准过程进行测试。
    • 6. 发明授权
    • Device, method and program for estimating the number of layers BGA component mounting substrate
    • 用于估计BGA组件安装衬底层数的装置,方法和程序
    • US07356790B2
    • 2008-04-08
    • US11169584
    • 2005-06-30
    • Yoshiaki MaruyamaTakahiro Yaguchi
    • Yoshiaki MaruyamaTakahiro Yaguchi
    • G06F17/50
    • G06F17/5077
    • To estimate the number of layers required for drawing wirings out of a BGA component at a high speed. A layer number estimation device includes: a bottleneck line detection means, a wiring layer adding means, and a repeating means. The bottleneck line detection means detects a line as a bottleneck line, among a plurality of lines formed by connecting electrodes, where the number of electrodes located nearer the center side than the lines is greater comparing with the number of wirings capable of passing through the lines. The wiring layer adding means disposes electrodes, among the electrodes located nearer the center side than the bottleneck line, which remain after subtracting the number of wirings capable of passing through the bottleneck line, on the next wiring layer with vias. The repeating means causes the bottleneck line detection means and the wiring layer adding means to be executed to the next wiring layer.
    • 估计从BGA组件中高速绘制布线所需的层数。 层数估计装置包括:瓶颈线检测装置,布线层添加装置和重复装置。 瓶颈线检测装置在连接电极形成的多个线之间检测线作为瓶颈线,其中位于比线更靠中心侧的电极数量比能够通过线路的布线数量更大 。 在下一个具有通孔的布线层上,布线层添加装置将电极放置在比瓶颈线更靠近中心侧的电极中,该电极在减去能够穿过瓶颈线的布线数之后保留。 重复装置使得瓶颈线检测装置和布线层添加装置被执行到下一个布线层。
    • 10. 发明授权
    • Belt adjusting device and single facer
    • 皮带调整装置和单面
    • US5518457A
    • 1996-05-21
    • US308579
    • 1994-09-19
    • Yukuharu SekiMakoto AndoKohshi TanimotoKazukiyo KohnoYoshiaki Maruyama
    • Yukuharu SekiMakoto AndoKohshi TanimotoKazukiyo KohnoYoshiaki Maruyama
    • B31F1/28B32B37/10B32B38/18F16H7/02F16H7/18F16H7/08
    • B31F1/2877B31F1/2831B32B37/1027B32B37/1036B32B38/1841F16H7/02F16H7/18B32B2309/06B32B2309/72
    • A single facer which includes a rotating corrugating roll for corrugating a medium; an endless belt for pressing a liner against the medium on the corrugating roll; at least a pair of belt rolls for running the endless belt; and a direction adjusting mechanism for changing the running direction of the endless belt with respect to the rotating shaft of the corrugating roll within the running plane of the endless belt to correct zigzag or sideway motion of the belt occurring while the belt is running; a detector for detecting sideway displacements of the endless belt; a computer for computing a positional correction to be made in the width direction based on a signal from the detector; and a controller for controlling the direction adjusting mechanism based on a value computed by the computer. In addition to the adjustment of the running direction of the endless belt, a tension balance between the opposite edges of the endless belt can be corrected by adjusting the relative angle between the shafts of the belt rolls.
    • 一个单面,其包括用于使介质波纹化的旋转波纹辊; 用于将衬垫压靠在波纹辊上的介质上的环形带; 至少一对用于运行环形带的带辊; 以及方向调节机构,用于在环形带的行进平面内相对于波纹辊的旋转轴改变环形带的行进方向,以纠正在带运行时发生的带的锯齿形或侧向运动; 用于检测环形带的侧向位移的检测器; 计算机,用于基于来自检测器的信号计算在宽度方向上进行的位置校正; 以及控制器,用于基于由计算机计算的值来控制方向调整机构。 除了环形带的行进方向的调整之外,通过调节带辊的轴之间的相对角度可以校正环形带的相对边缘之间的张力平衡。