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    • 61. 发明授权
    • Display device and drive method thereof
    • 显示装置及其驱动方法
    • US07304630B2
    • 2007-12-04
    • US10565251
    • 2004-07-14
    • Hiroshi KobayashiTamaki Harano
    • Hiroshi KobayashiTamaki Harano
    • G09G3/36
    • G09G3/3688G09G2310/0297G09G2320/0209
    • A display apparatus and a method for driving the display apparatus that are capable of suppressing image quality degradation resulting from delay in sampling pulses or from waveform rounding thereof and image quality degradation caused by coupling between the signal line and the common line and that between the signal line and the scan line even when the simultaneous sampling number is increased. The start pulse HST has a pulse width that includes a plurality of pulse widths of the clock pulses HCK and HCKX, for example, two pulse widths. The clock pulses DCK have four phases. Large margins α1 and α2 in the phase relationship between each of the clock pulses DCK1 to DCK4 and each of transfer pulses used for extracting the clock pulses DCK1 to DCK4 are assured. As a result, even if delay or waveform rounding occurs in the clock pulses DCK1 to DCK4, sampling pulses SP1 to SP6 with a constant pulse width equal to that of each of the clock pulses DCK1 to DCK4 can be generated without being affected by the delay or waveform rounding.
    • 一种用于驱动显示装置的显示装置和方法,其能够抑制由采样脉冲的延迟或其波形舍入引起的图像质量劣化和由信号线和公共线之间的耦合引起的图像质量劣化以及信号 线和扫描线,即使同时采样数量增加。 起始脉冲HST具有包括时钟脉冲HCK和HCKX的多个脉冲宽度的脉冲宽度,例如两个脉冲宽度。 时钟脉冲DCK有四个相位。 确保每个时钟脉冲DCK 1至DCK 4之间的相位关系中的大边距α1和α2以及用于提取时钟脉冲DCK 1至DCK 4的每个传送脉冲。 结果,即使在时钟脉冲DCK 1〜DCK 4中发生延迟或波形舍入,也可以产生与时钟脉冲DCK 1〜DCK 4的脉冲宽度相同的脉冲宽度的采样脉冲SP 1〜SP 6 而不受延迟或波形舍入的影响。
    • 70. 发明申请
    • Treating solution supply nozzle, a substrate treating apparatus having this nozzle, and a method of manufacturing a treating solution supply nozzle
    • 处理溶液供给喷嘴,具有该喷嘴的基板处理装置以及处理液供给喷嘴的制造方法
    • US20060236928A1
    • 2006-10-26
    • US11472612
    • 2006-06-22
    • Shigehiro GotoHiroshi Kobayashi
    • Shigehiro GotoHiroshi Kobayashi
    • B05B7/16
    • H01L21/6715B05C11/08B05C11/1042
    • A resin block has a treating solution channel extending between and opening at front and back surfaces thereof. Heat conductive members are face-bonded to the front and back surfaces of the resin block, respectively, for closing the channel. Consequently, no air is present between the resin block and heat conduction members, thereby improving the efficiency of heat exchange. A nozzle of simple construction is realized only by face-bonding the two heat conductive members to the open front and rear surfaces of the resin block. Temperature control plates hold the heat conductive m embers along with the resin block to effect a temperature control, whereby the temperature of a treating solution in the treating solution channel is controlled effectively through the heat conductive members. The treating solution adjusted to a desired temperature is delivered from a discharge opening to a substrate for performing substrate treatment with high accuracy.
    • 树脂块具有在其前表面和后表面之间延伸并在其前后开口的处理溶液通道。 导热构件分别面对粘合到树脂块的前表面和后表面,用于封闭通道。 因此,树脂块和导热构件之间不存在空气,从而提高热交换的效率。 仅通过将两个导热构件面对粘合到树脂块的敞开的前表面和后表面上来实现简单结构的喷嘴。 温度控制板与树脂块一起保持导热填料以进行温度控制,由此通过导热构件有效地控制处理溶液通道中的处理溶液的温度。 调节到期望温度的处理溶液从排出口输送到基板,以高精度进行基板处理。