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    • 1. 发明授权
    • Display, touch panel and electronic device
    • 显示屏,触摸屏和电子设备
    • US08860687B2
    • 2014-10-14
    • US12988586
    • 2010-02-08
    • Hiroshi MizuhashiYasuo Takahashi
    • Hiroshi MizuhashiYasuo Takahashi
    • G06F3/045G06F3/042G06F1/32G06F3/044
    • G06F3/044G02F2001/13456G06F1/3203G06F1/3262G06F3/042G06F2203/04101
    • A display with a touch panel allowed to achieve high response performance while reducing power consumption is obtained. The display includes a plurality of display elements performing display based on picture signals supplied to a plurality of picture signal lines, respectively, a plurality of sensor elements outputting touch signals indicating detection of an external proximity object to a plurality of sensor signal lines (SGL), respectively, a detection section (a comparator 331) detecting each of the touch signals, a transfer output section (a D-type flip-flop 332 and an output buffer circuit 36) transferring and outputting a detection result of the detection section to outside, and a control section (a transistor switch SCW, a transfer clock control circuit 37 and a timing generator 35) controlling operations of the detection section and the transfer output section, allowing the transfer output section to operate in a case where the touch signal is detected in the detection section, and suspending an operation of the transfer output section in a case where the touch signal is not detected.
    • 获得具有允许在降低功耗的同时实现高响应性能的触摸面板的显示器。 显示器包括:多个显示元件,分别基于提供给多个图像信号线的图像信号执行显示;多个传感器元件,输出表示对多个传感器信号线(SGL)的外部接近对象的检测的触摸信号; 分别检测每个触摸信号的检测部分(比较器331),传送输出部分(D型触发器332和输出缓冲器电路36),将检测部分的检测结果传送并输出到外部 ,以及控制检测部分和传送输出部分的操作的控制部分(晶体管开关SCW,传送时钟控制电路37和定时发生器35),允许传送输出部分在触摸信号为 在检测部分中检测到,并且在没有检测到触摸信号的情况下暂停传送输出部分的操作。
    • 2. 发明申请
    • DISPLAY, TOUCH PANEL AND ELECTRONIC DEVICE
    • 显示器,触控面板和电子设备
    • US20110043483A1
    • 2011-02-24
    • US12988586
    • 2010-02-08
    • Hiroshi MizuhashiYasuo Takahashi
    • Hiroshi MizuhashiYasuo Takahashi
    • G06F3/045G09G3/36G09G3/30
    • G06F3/044G02F2001/13456G06F1/3203G06F1/3262G06F3/042G06F2203/04101
    • A display with a touch panel allowed to achieve high response performance while reducing power consumption is obtained. The display includes a plurality of display elements performing display based on picture signals supplied to a plurality of picture signal lines, respectively, a plurality of sensor elements outputting touch signals indicating detection of an external proximity object to a plurality of sensor signal lines (SGL), respectively, a detection section (a comparator 331) detecting each of the touch signals, a transfer output section (a D-type flip-flop 332 and an output buffer circuit 36) transferring and outputting a detection result of the detection section to outside, and a control section (a transistor switch SCW, a transfer clock control circuit 37 and a timing generator 35) controlling operations of the detection section and the transfer output section, allowing the transfer output section to operate in a case where the touch signal is detected in the detection section, and suspending an operation of the transfer output section in a case where the touch signal is not detected.
    • 获得具有允许在降低功耗的同时实现高响应性能的触摸面板的显示器。 显示器包括:多个显示元件,分别基于提供给多个图像信号线的图像信号执行显示;多个传感器元件,输出表示对多个传感器信号线(SGL)的外部接近对象的检测的触摸信号; 分别检测每个触摸信号的检测部分(比较器331),传送输出部分(D型触发器332和输出缓冲器电路36),将检测部分的检测结果传送并输出到外部 ,以及控制检测部分和传送输出部分的操作的控制部分(晶体管开关SCW,传送时钟控制电路37和定时发生器35),允许传送输出部分在触摸信号为 在检测部分中检测到,并且在没有检测到触摸信号的情况下暂停传送输出部分的操作。
    • 3. 发明授权
    • Information processing method and information processing device
    • 信息处理方法和信息处理装置
    • US09253478B2
    • 2016-02-02
    • US13544016
    • 2012-07-09
    • Akiyoshi MoritaYasuo TakahashiHideyuki AgataAkitoshi YamaguchiTakeshi Makishima
    • Akiyoshi MoritaYasuo TakahashiHideyuki AgataAkitoshi YamaguchiTakeshi Makishima
    • H04N13/04
    • H04N13/341H04N13/349H04N13/398H04N2013/40
    • A video-image selection unit cyclically acquires at least two types of video images. A replacing mask determination unit selects, for each acquired video image, a mask pattern for masking a video image acquired by the video-image selection unit by replacing some pixels composing the video image with pixels of a single color such that said some pixels are spatially removed. Based on the mask pattern, the video-image replacing unit replaces said some pixels composing the video image with the pixels of a single color. A video-image output unit outputs the video image for which the replacement was performed. When selecting a mask pattern, the replacing mask determination unit selects a mask pattern that is different from a mask pattern used for the last video image, the mask pattern being different in the position of pixels not to be replaced with pixels of a single color.
    • 视频图像选择单元循环获取至少两种类型的视频图像。 替换掩模确定单元为每个获取的视频图像选择用于屏蔽由视频图像选择单元获取的视频图像的掩模图案,通过用构成该视频图像的像素替换构成视频图像的像素,使得所述一些像素在空间上 删除。 基于掩模图案,视频图像替换单元将构成视频图像的所述一些像素替换为单一颜色的像素。 视频图像输出单元输出执行了替换的视频图像。 当选择掩模图案时,替换掩模确定单元选择与用于最后一个视频图像的掩模图案不同的掩模图案,掩模图案在不被单一颜色的像素替换的像素的位置上不同。
    • 7. 发明授权
    • Rare earth oxide superconductor and process for producing the same
    • 稀土氧化物超导体及其制造方法
    • US07985712B2
    • 2011-07-26
    • US10591449
    • 2004-03-12
    • Yuji AokiYasuo TakahashiTakayo Hasegawa
    • Yuji AokiYasuo TakahashiTakayo Hasegawa
    • H01L39/24H01L39/02
    • H01L39/2461
    • RE superconductive layer excelling in Jc and Tc is formed on an interlayer capable of preventing cracking and diffusion of substrate-constituting Ni element into YBCO layer and excelling in crystallinity and surface smoothness. The interlayer is formed by coating a surface of metal substrate with a mixed solution composed of an organometallic acid salt of cerium, an organometallic acid salt of a solid solution formation element capable of forming a solid solution with cerium and an organometallic acid salt of a charge compensation element capable of compensating for a charge mismatch attributed to a difference between the electron valences of respective ions of cerium and the solid solution formation element and subsequently carrying out heat treatment in a reducing atmosphere of 900 to 1200° C. whose pressure ranges from 0.1 Pa to below atmospheric pressure. Thereafter, a rare earth oxide superconductive layer is formed on the interlayer.
    • 在能够防止底物构成的Ni元素向YBCO层的裂化扩散的层间隔上形成有Jc,Tc优异的RE超导层,结晶性和表面平滑性优异。 中间层通过用由铈的有机金属酸盐盐,能够与铈形成固溶体的固溶体的有机金属酸盐和电荷的有机金属酸盐组成的混合溶液涂覆金属基材的表面而形成 补偿元件能够补偿归因于铈离子和固溶体形成元件的电子值之间的差异的电荷失配,随后在900〜1200℃的还原气氛中进行热处理,压力范围为0.1 Pa低于大气压。 此后,在中间层上形成稀土氧化物超导层。