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    • 1. 发明授权
    • Stroke determination unit and method of measuring stroke in a multi-cylinder four-cycle engine
    • 一个多缸四冲程发动机的行程确定单元和测量方法
    • US07194898B2
    • 2007-03-27
    • US11389324
    • 2006-03-24
    • Kenichi MachidaMasashi Saito
    • Kenichi MachidaMasashi Saito
    • G01M15/00
    • F02D41/009F02D2200/0406
    • A stroke determination unit for a 4-cycle engine uses intake pressure as a parameter to provide accurate stroke determination. A combined pressure combines the detected pressures of intake ports of the first to third cylinders, and stroke determination is carried out by recognizing, within a combined pressure waveform based on a detection value for the combined pressure, shapes of the combined pressure waveform for a specified phase period of a crankshaft. The pressure pattern recognition is carried out by storing variation patterns of pressure values measured within the specified crankshaft phase period, and collating patterns with a data map stored within an ECU. Alternatively, the pattern recognition is carried out by collating with condition equations representing “rising” or “upward peak”. With the latter, pressure variation due to contamination such as electrical noise to the pressure sensor is made negligible, and noise suppression of the stroke determination unit is improved.
    • 用于4冲程发动机的冲程确定单元使用进气压力作为参数来提供精确的冲程确定。 组合压力将检测到的第一至第三气缸的进气口的压力相结合,并且通过基于组合压力的检测值在组合压力波形内识别针对特定的压力波形的组合压力波形的形状来进行行程确定 曲轴的相位周期。 压力模式识别通过存储在规定的曲轴相位周期内测量的压力值的变化模式,以及将存储在ECU内的数据图形对照图案进行。 或者,通过与表示“上升”或“上升”的条件方程对照来进行模式识别。 后者由于诸如电压噪声对压力传感器的污染引起的压力变化可以忽略不计,并且提高了行程确定单元的噪声抑制。
    • 2. 发明申请
    • Stroke determination unit and method of measuring stroke in a multi-cylinder four-cycle engine
    • 一个多缸四冲程发动机的行程确定单元和测量方法
    • US20060218998A1
    • 2006-10-05
    • US11389324
    • 2006-03-24
    • Kenichi MachidaMasashi Saito
    • Kenichi MachidaMasashi Saito
    • G01L3/26
    • F02D41/009F02D2200/0406
    • A stroke determination unit for a 4-cycle engine uses intake pressure as a parameter to provide accurate stroke determination. A combined pressure combines the detected pressures of intake ports of the first to third cylinders, and stroke determination is carried out by recognizing, within a combined pressure waveform based on a detection value for the combined pressure, shapes of the combined pressure waveform for a specified phase period of a crankshaft. The pressure pattern recognition is carried out by storing variation patterns of pressure values measured within the specified crankshaft phase period, and collating patterns with a data map stored within an ECU. Alternatively, the pattern recognition is carried out by collating with condition equations representing “rising” or “upward peak”. With the latter, pressure variation due to contamination such as electrical noise to the pressure sensor is made negligible, and noise suppression of the stroke determination unit is improved.
    • 用于四轮发动机的冲程确定单元使用进气压力作为参数来提供精确的冲程确定。 组合压力将检测到的第一至第三气缸的进气口的压力相结合,并且通过基于组合压力的检测值在组合压力波形内识别针对特定的压力波形的组合压力波形的形状来进行行程确定 曲轴的相位周期。 压力模式识别通过存储在规定的曲轴相位周期内测量的压力值的变化模式,以及将存储在ECU内的数据图形对照图案进行。 或者,通过与表示“上升”或“上升”的条件方程对照来进行模式识别。 后者由于诸如电压噪声对压力传感器的污染引起的压力变化可以忽略不计,并且提高了行程确定单元的噪声抑制。
    • 3. 发明授权
    • Plasma processing apparatus and processing gas supply structure thereof
    • 等离子体处理装置及其处理气体供应结构
    • US09082592B2
    • 2015-07-14
    • US13159585
    • 2011-06-14
    • Masashi Saito
    • Masashi Saito
    • C23F1/08C23C16/455H01J37/32H01L21/67
    • H01J37/3244C23C16/45563H01J37/321H01J37/32449H01L21/67069
    • There is provided a plasma processing apparatus for performing a plasma process on a substrate mounted on a mounting table in a processing chamber by generating inductively coupled plasma within the processing chamber by applying a high frequency power to a high frequency antenna. The apparatus includes a multiple number of gas nozzles protruding from a sidewall of the processing chamber toward a center of the processing chamber in a space above the mounting table, and each gas nozzle has a gas discharge hole at a leading end of the gas nozzle in a protruding direction and a gas discharge hole at a sidewall of the gas nozzle. Further, the apparatus includes a rotation device configured to rotate each of the gas nozzles on each central axis of the gas nozzles and each central axis is extended in the protruding direction of each of the gas nozzles.
    • 提供了一种等离子体处理装置,用于通过对高频天线施加高频功率,通过在处理室内产生感应耦合等离子体,在安装在处理室中的安装台上的基板上进行等离子体处理。 该装置包括多个气体喷嘴,其从处理室的侧壁向安装台上方的空间朝向处理室的中心突出,并且每个气体喷嘴在气体喷嘴的前端具有排气孔 突出方向和在气体喷嘴的侧壁处的气体排出孔。 此外,该装置包括旋转装置,其构造成使气体喷嘴的每个中心轴线上的每个气体喷嘴旋转,并且每个中心轴线在每个气体喷嘴的突出方向上延伸。
    • 5. 发明授权
    • Solid-state imaging device, method of driving solid-state imaging device, and image processing device
    • 固态成像装置,固态成像装置的驱动方法和图像处理装置
    • US08743248B2
    • 2014-06-03
    • US13019560
    • 2011-02-02
    • Masashi Saito
    • Masashi Saito
    • H04N5/335
    • H04N5/335H03M1/1038H03M1/123H03M1/14H03M1/502H03M1/60H04N5/378
    • An image processing device comprising: first A/D converters that receive output signals of respective columns of a plurality of pixels arranged in a matrix form, convert the output signals into first digital signals, and output the first digital signals; a second A/D converter that receives a correction signal, converts the correction signal into a second digital signal, and outputs the second digital signal; a first correction calculation unit that produces a first correction formula; a second correction calculation unit that produces a second correction formula based on the second digital signal; a determination unit that compares a coefficient of the second correction formula and a coefficient of a second correction formula produced before the second correction formula, and determines whether or not to produce the first correction formula based on the comparison result; and a signal output unit that outputs an update signal when it is determined to produce the first correction formula.
    • 一种图像处理装置,包括:第一A / D转换器,其接收以矩阵形式布置的多个像素的各列的输出信号,将输出信号转换为第一数字信号,并输出第一数字信号; 接收校正信号的第二A / D转换器,将校正信号转换为第二数字信号,并输出第二数字信号; 产生第一校正公式的第一校正计算单元; 第二校正计算单元,其基于所述第二数字信号产生第二校正公式; 确定单元,其比较第二校正公式的系数和在第二校正公式之前产生的第二校正公式的系数,并且基于比较结果来确定是否产生第一校正公式; 以及当确定产生第一校正公式时,输出更新信号的信号输出单元。
    • 10. 发明授权
    • Imaging device, portable terminal using the same, and image device producing method
    • 成像装置,使用其的便携式终端和图像装置的制造方法
    • US07656452B2
    • 2010-02-02
    • US10562530
    • 2004-07-05
    • Masashi SaitoMutsumi Sugiura
    • Masashi SaitoMutsumi Sugiura
    • H04N5/225
    • G02B27/0006H04N5/2253H04N5/2254H04N5/2257
    • This invention relates to dust-proof, moisture-proof structures of the image pickup devices mounted in small-size thin types of electronic apparatus. More specifically, an image pickup device of this invention includes an image pickup element, a mounting base having a formed leg section which abuts on the image pickup element, an image pickup optical system that guides photographic object light to the imaging region of the image pickup element, and an outer frame member that contains the image pickup element, the mounting base, and the image pickup optical system. The space formed at the photoelectric conversion plane side of the image pickup element is sealed by using the mounting base or by using the mounting base and a part of the outer frame member.
    • 本发明涉及安装在小型薄型电子设备中的摄像装置的防尘,防湿结构。 更具体地说,本发明的图像拾取装置包括一个图像拾取元件,一个安装基座,其具有形成的支脚部分,该支撑部分邻接图像拾取元件;摄像光学系统,其将摄影对象光引导到图像拾取器的成像区域 元件,以及包含图像拾取元件,安装基座和图像拾取光学系统的外框构件。 通过使用安装基座或使用安装基座和外框架部件的一部分来密封在摄像元件的光电转换面侧形成的空间。