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    • 83. 发明申请
    • Method for Refining Natural Oil
    • 炼油天然油的方法
    • US20110097473A1
    • 2011-04-28
    • US12982471
    • 2010-12-30
    • Katsuro NakamuraKazuhiro Suzuki
    • Katsuro NakamuraKazuhiro Suzuki
    • A23D9/007A23D9/04
    • C11B3/02
    • Provided is a method for purifying natural oil comprising: supplying a to-be-treated raw natural oil into a reaction tank which is provided with a layer of a particulate photocatalyst, and which is configured to allow the to-be-treated raw natural oil and oxygen and/or hydrogen to pass through the particulate photocatalyst in the layer; and then, while introducing oxygen and/or hydrogen to the inside of the layer of the particulate photocatalyst, causing the raw natural oil to circulate and to come into contact with the particulate photocatalyst, with a temperature inside the reaction tank kept at 40 to 110° C., to thereby purifying the raw natural oil.
    • 本发明提供一种净化天然油的方法,其特征在于,将经处理的原料天然油供给到设置有粒状光催化剂层的反应槽内,将其进行处理后的原料天然油 和氧气和/或氢气通过该层中的颗粒状光催化剂; 然后在将颗粒状光催化剂层的内部引入氧气和/或氢气的同时,使原料天然油循环并与粒状光催化剂接触,反应槽内的温度保持在40〜110℃ ℃,从而净化天然原料。
    • 84. 发明授权
    • Noise eliminator
    • 消声器
    • US07924329B2
    • 2011-04-12
    • US11577787
    • 2005-10-18
    • Kazuhiro SuzukiKeishi Kato
    • Kazuhiro SuzukiKeishi Kato
    • H04N5/217
    • H04N5/361
    • A noise eliminator is provided which can highly compress and store dark current noise components while maintaining characteristics, including many high frequency components. A noise distribution analysis section 10 determines the magnitude distribution of dark current noise components of at least some pixels, and then computes the threshold and typical values for quantization based on this distribution. A quantization section 12 quantizes the dark current noise components based on the computed threshold value, and a memory 14 stores the quantized dark current noise components. An inverse quantization section 16 inversely quantizes the quantized dark current noise components stored in the memory 14 with reference to the typical value computed by the noise distribution analysis section 10. The inversely quantized dark current noise components are supplied to a subtraction section 18, and the subtraction section 18 subtracts the inversely quantized dark current noise components from an image signal.
    • 提供了一种噪声消除器,可以高度压缩和存储暗电流噪声分量,同时保持特性,包括许多高频分量。 噪声分布分析部分10确定至少一些像素的暗电流噪声分量的幅度分布,然后基于该分布来计算阈值和用于量化的典型值。 量化部分12基于计算的阈值量化暗电流噪声分量,并且存储器14存储量化的暗电流噪声分量。 逆量化部分16参考由噪声分布分析部分10计算的典型值对存储在存储器14中的量化暗电流噪声分量进行逆量化。逆量化的暗电流噪声分量被提供给减法部分18,并且 减法部分18从图像信号中减去逆量化的暗电流噪声分量。
    • 87. 发明授权
    • Sensor device, and portable communication terminal and electronic device using the sensor device
    • 传感器装置,以及使用传感器装置的便携式通信终端和电子装置
    • US07705611B2
    • 2010-04-27
    • US11858822
    • 2007-09-20
    • Masako OgataKazuhiro SuzukiHideyuki FunakiKazuhiko Itaya
    • Masako OgataKazuhiro SuzukiHideyuki FunakiKazuhiko Itaya
    • G01R27/26
    • H03K17/955G01D5/2417H03K2217/960755
    • A sensor device for detecting a positional relationship between a first member and a second member, includes a first charge-holding electrode provided on a surface of the first member and holding a charge, a second charge-holding electrode provided on the surface of the first member and holding a charge differing from the charge held by the first charge-holding electrode, a first charge-induced electrode provided on a surface of the second member, the first charge-induced electrode having a charge induced therein in accordance with the charge held by the first charge-holding electrode, when the first charge-holding electrode approaches the first charge-induced electrode, a second charge-induced electrode provided on the surface of the second member, the second charge-induced electrode having a charge induced therein in accordance with the charge held by the second charge-holding electrode, when the second charge-holding electrode approaches the second charge-induced electrode.
    • 一种用于检测第一构件和第二构件之间的位置关系的传感器装置,包括设置在第一构件的表面上并保持电荷的第一电荷保持电极,设置在第一构件和第二构件的表面上的第二电荷保持电极 并且保持与第一电荷保持电极所保持的电荷不同的电荷,设置在第二部件的表面上的第一电荷感应电极,第一电荷感应电极根据电荷保持在其中诱导电荷 通过第一电荷保持电极,当第一电荷保持电极接近第一电荷感应电极时,设置在第二元件的表面上的第二电荷感应电极,其中在其中引入电荷的第二电荷感应电极 根据第二电荷保持电极保持的电荷,当第二电荷保持电极接近第二电荷感应电极时。