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    • 64. 发明授权
    • Image projection device
    • US11513637B2
    • 2022-11-29
    • US16072436
    • 2016-11-01
    • Hiroyuki Ikeda
    • Hiroyuki Ikeda
    • G06F3/042G06T7/73G06T7/90G06T7/50G06F3/0354H04N9/31G03B21/62G06F3/041H04N5/232
    • An image projection device which can correctly discern content of touch operation when a user performs various kinds of touch operation on an image projected on a projection screen is provided. An imaging unit is adjusted to come into focus on the projection screen. An image data extracting unit extracts image data in which a finger or the like exists and in which the finger or the like is brought into focus in image data obtained by the imaging unit. An operation determining unit determines content of operation performed with the finger or the like, on the basis of the image data extracted by the image data extracting unit. An input control unit recognizes content of an input instruction corresponding to the operation performed with the finger or the like, on the basis of data relating to the content of the operation performed with the finger or the like, position data of the finger or the like, and reference data for specifying a position and a size of the image projected on the projection screen, and controls a projection unit in accordance with the recognized content of the input instruction.
    • 67. 发明申请
    • EXHAUST GAS ANALYZING SYSTEM AND EXHAUST GAS ANALYZING METHOD
    • 排气分析系统和排气分析方法
    • US20120160009A1
    • 2012-06-28
    • US13336094
    • 2011-12-23
    • Tetsuji AsamiHiroyuki IkedaMineyuki Komada
    • Tetsuji AsamiHiroyuki IkedaMineyuki Komada
    • G01M15/10
    • F01N11/00F01N13/009F01N2240/36G01N1/2252Y02T10/47
    • An exhaust gas analyzing system includes, on an upstream side of an analytical instrument, an exhaust gas introduction pipe of which one end is opened to an exhaust gas flow path through which exhaust gas from an engine flows and the other end is connected to the analytical instrument. A switching mechanism selectively switches between a sampling path that samples the exhaust gas from the exhaust gas introduction pipe to introduce the sampled exhaust gas into the analytical instrument and an air introduction path that introduces air into the analytical instrument. When the engine is operated, a path to the analytical instrument is switched to the sampling path by the switching mechanism. When the engine is stopped, the path is switched to the air introduction path by the switching mechanism.
    • 排气分析系统在分析仪器的上游侧具有排气导入管,该排气导入管的一端与排气流路相通,通过该排气流路使来自发动机的废气流过,另一端与分析用 仪器。 切换机构选择性地切换对来自排气导入管的废气进行采样以将采样废气引入分析仪器的采样路径和将空气引入分析仪器的空气导入路径。 当发动机运行时,通过切换机构将分析仪器的路径切换到采样路径。 当发动机停止时,通过切换机构将路径切换到空气导入路径。
    • 69. 发明申请
    • PATTERN CHARACTERISTIC-DETECTION APPARATUS FOR PHOTOMASK AND PATTERN CHARACTERISTIC-DETECTION METHOD FOR PHOTOMASK
    • 用于光电子的图案特征检测装置和图案特征检测方法
    • US20110058729A1
    • 2011-03-10
    • US12857906
    • 2010-08-17
    • Hiromu InoueHiroyuki IkedaEiji Sawa
    • Hiromu InoueHiroyuki IkedaEiji Sawa
    • G06K9/00
    • G01N21/956G03F1/84G03F7/70525G03F7/70625G03F7/7065
    • According to one embodiment, a pattern characteristic detection apparatus for a photomask includes a detection-data creating portion, a reference-data creating portion, an extracting portion, a first area-setting portion, a detecting portion and an collecting portion. The detection-data creating portion is configured to create detection data on the basis of an optical image of a pattern formed on a photomask. The reference-data creating portion is configured to create reference data of the pattern. The extracting portion is configured to extract a pattern for pattern characteristic detection and positional information of the extracted pattern. The first area-setting portion is configured to set an area where pattern characteristics are to be detected, and configured to extract a target pattern. The detecting portion is configured to detect pattern characteristics of the target pattern within the area. In addition, the collecting portion is configured to collect the detected pattern characteristics.
    • 根据一个实施例,用于光掩模的图案特性检测装置包括检测数据创建部分,参考数据创建部分,提取部分,第一区域设置部分,检测部分和收集部分。 检测数据创建部分被配置为基于形成在光掩模上的图案的光学图像来创建检测数据。 参考数据创建部分被配置为创建该图案的参考数据。 提取部分被提取用于图案特征检测的图案和提取的图案的位置信息。 第一区域设定部被配置为设定要检测图案特性的区域,并且被配置为提取目标图案。 检测部被配置为检测该区域内的目标图案的图案特性。 此外,收集部分被配置为收集检测到的图案特征。
    • 70. 发明授权
    • Method for driving a flat-type display device
    • 驱动平板式显示装置的方法
    • US07750872B2
    • 2010-07-06
    • US11654507
    • 2007-01-18
    • Yukinobu IguchiHiroyuki IkedaYasuhito HatanoKunihiko Nagamine
    • Yukinobu IguchiHiroyuki IkedaYasuhito HatanoKunihiko Nagamine
    • G09G3/22
    • G09G3/22G09G2300/0426G09G2300/0443G09G2300/0452G09G2320/0209G09G2320/0233G09G2320/0285G09G2330/021G09G2360/02
    • A method for driving a flat-type display device which includes a cathode panel having first electrodes and second electrodes and an anode panel, the cathode panel and the anode panel having spacers is provided. The method includes the steps of: in the non-display operation period of the flat-type display device, determining a normalized first current from a first current by non-display-driving the electron emitter areas near the spacers, and determining a normalized second current from a second current by non-display-driving the electron emitter areas which are not near the spacers; and in the actual display operation period of the flat-type display device, setting the driving conditions for the electron emitter areas on the basis of the normalized first current and normalized second current so that the electron emission conditions in the electron emitter areas near the spacers and not near the spacers are substantially the same.
    • 一种用于驱动平板显示装置的方法,其包括具有第一电极和第二电极的阴极面板和阳极面板,阴极面板和具有间隔物的阳极面板。 该方法包括以下步骤:在平板型显示装置的非显示操作期间,通过不显示驱动间隔物附近的电子发射极区域,从第一电流确定归一化的第一电流,并且确定标准化的第二电流 通过不显示驱动不在间隔物附近的电子发射体区域的第二电流的电流; 并且在平板显示装置的实际显示操作期间,根据归一化的第一电流和归一化的第二电流来设定电子发射区的驱动条件,使得靠近隔板的电子发射区中的电子发射条件 并且不靠近间隔件基本相同。