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    • 61. 发明授权
    • Liquid alkali metal with dispersed nanoparticles and method of manufacturing the same
    • 具有分散纳米颗粒的液态碱金属及其制造方法
    • US08246853B2
    • 2012-08-21
    • US13019447
    • 2011-02-02
    • Kuniaki AraJunichi SaitoHiroyuki SatoNobuki OkaMasahiko NagaiKoichi Fukunaga
    • Kuniaki AraJunichi SaitoHiroyuki SatoNobuki OkaMasahiko NagaiKoichi Fukunaga
    • C09K5/00
    • G21C15/28B22F1/0022B82Y30/00Y02E30/40
    • The present invention relates to maintaining the fundamental physical properties of a liquid alkali metal with dispersed nanoparticles which is such that nanoparticles are uniformly dispersed and mixed in a liquid alkali metal used in heat exchange, cooling and other applications, and suppressing the reaction of the liquid alkali metal with dispersed nanoparticles. Provided is a method of manufacturing a liquid alkali metal with dispersed nanoparticles by dispersing nanoparticles in a liquid alkali metal. In this method, the nanoparticles are made of a metal having a large atomic bonding due to a combination with the liquid alkali metal compared to the atomic bonding of atoms of the liquid alkali metal and a metal having a large amount of charge transfer is used in the nanoparticles. The liquid alkali metal is selected from sodium, lithium and sodium-potassium alloys, and the nanoparticles to be dispersed are made of transition metals, such as titanium, vanadium, chromium, iron, cobalt, nickel and copper.
    • 本发明涉及保持具有分散的纳米颗粒的液态碱金属的基本物理性质,使得纳米颗粒均匀地分散和混合在用于热交换,冷却和其它应用的液态碱金属中,并且抑制液体的反应 碱金属与分散的纳米粒子。 提供了通过将纳米粒子分散在液态碱金属中制造具有分散纳米粒子的液态碱金属的方法。 在该方法中,与液态碱金属的原子的原子键合和具有大量电荷转移的金属相比,纳米粒子由于与液态碱金属的组合而具有大的原子键合的金属制成, 纳米颗粒。 液态碱金属选自钠,锂和钠 - 钾合金,待分散的纳米颗粒由钛,钒,铬,铁,钴,镍和铜等过渡金属制成。
    • 62. 发明申请
    • IMAGE STABILIZATION CONTROL APPARATUS AND IMAGING APPARATUS
    • 图像稳定控制装置和成像装置
    • US20120169891A1
    • 2012-07-05
    • US13419348
    • 2012-03-13
    • Koichi WashisuGoro NotoJunichi Saito
    • Koichi WashisuGoro NotoJunichi Saito
    • H04N5/228
    • G03B5/00
    • An image stabilization control apparatus includes a vibration correction unit configured to correct an image shake occurring due to vibration, a first vibration detection unit configured to detect and output an angular velocity of the vibration, a second vibration detection unit configured to detect and output an acceleration of the vibration, a first extractor configured to extract a signal in a predetermined frequency band based on an output of the first vibration detection unit, a second extractor configured to extract a signal in a predetermined frequency band based on an output of the second vibration detection unit, an output correction unit configured to correct the output of the first vibration detection unit based on the signals extracted by the first and second extractors, and a driving unit configured to drive the vibration correction unit based on the output of the first vibration detection unit as corrected.
    • 一种图像稳定控制装置包括:被配置为校正由于振动而产生的图像抖动的振动校正单元,被配置为检测和输出振动的角速度的第一振动检测单元,被配置为检测并输出加速度的第二振动检测单元 的第一提取器,被配置为基于第一振动检测单元的输出来提取预定频带中的信号;第二提取器,被配置为基于第二振动检测的输出来提取预定频带中的信号 单元,输出校正单元,被配置为基于由第一和第二提取器提取的信号来校正第一振动检测单元的输出;以及驱动单元,被配置为基于第一振动检测单元的输出来驱动振动校正单元 如修正。
    • 68. 发明申请
    • IMAGE STABILIZATION CONTROL APPARATUS AND IMAGING APPARATUS
    • 图像稳定控制装置和成像装置
    • US20100013937A1
    • 2010-01-21
    • US12502421
    • 2009-07-14
    • Koichi WashisuGoro NotoJunichi Saito
    • Koichi WashisuGoro NotoJunichi Saito
    • H04N5/228
    • G03B5/00
    • An image stabilization control apparatus includes a vibration correction unit configured to correct an image shake occurring due to vibration, a first vibration detection unit configured to detect and output an angular velocity of the vibration, a second vibration detection unit configured to detect and output an acceleration of the vibration, a first extractor configured to extract a signal in a predetermined frequency band based on an output of the first vibration detection unit, a second extractor configured to extract a signal in a predetermined frequency band based on an output of the second vibration detection unit, an output correction unit configured to correct the output of the first vibration detection unit based on the signals extracted by the first and second extractors, and a driving unit configured to drive the vibration correction unit based on the output of the first vibration detection unit as corrected.
    • 一种图像稳定控制装置包括:被配置为校正由于振动而产生的图像抖动的振动校正单元,被配置为检测和输出振动的角速度的第一振动检测单元,被配置为检测并输出加速度的第二振动检测单元 的第一提取器,被配置为基于第一振动检测单元的输出来提取预定频带中的信号;第二提取器,被配置为基于第二振动检测的输出来提取预定频带中的信号 单元,输出校正单元,被配置为基于由第一和第二提取器提取的信号来校正第一振动检测单元的输出;以及驱动单元,被配置为基于第一振动检测单元的输出来驱动振动校正单元 如修正。
    • 69. 发明申请
    • CAPACITANCE DETECTING CIRCUIT AND METHOD, AND FINGERPRINT SENSOR USING THE SAME
    • 电容检测电路和方法,以及使用其的指纹传感器
    • US20060158202A1
    • 2006-07-20
    • US10986499
    • 2004-11-10
    • Yuichi UmedaJunichi Saito
    • Yuichi UmedaJunichi Saito
    • G01R27/26
    • G06K9/0002G06F3/0416G06F3/044
    • In a capacitance detecting circuit, changes in capacitances at intersections between a plurality of column lines and a row line are detected as voltages. The capacitance detecting circuit includes a code generator for generating code having orthogonality in chronological order. A column-line driver drives the plurality of column lines based on the code by dividing the column lines into a first column line group and a second column line group. A capacitance detector, which is connected to the row line, converts the total of currents generated in capacitances at the intersections with the driven column lines into a voltage signal and outputs the converted voltage signal. A decoding computation unit determines the voltages corresponding to the capacitances at the intersections for each of the column line groups by performing product sum computation between the measured voltages and the code. In a period for detecting the capacitances, the column-line driver drives the first column line group and the second column line group by complementary voltages according to the code or information indicating the inversion of the code.
    • 在电容检测电路中,检测多条列线和行线之间的交叉点的电容的变化,作为电压。 电容检测电路包括用于按时间顺序生成具有正交性的代码的代码发生器。 列线驱动器通过将列线划分成第一列线组和第二列线组,基于代码来驱动多条列线。 连接到行线的电容检测器将与驱动列线交叉处的电容中产生的电流的总和转换为电压信号,并输出转换的电压信号。 解码计算单元通过在测量的电压和代码之间进行乘积和计算来确定与每个列线组的交点处的电容相对应的电压。 在检测电容的期间,列线驱动器根据代码或指示代码的反转的信息,通过互补电压来驱动第一列线组和第二列线组。
    • 70. 发明授权
    • Capacitance detecting circuit and method, and fingerprint sensor using the same
    • 电容检测电路及方法,以及采用相同的指纹传感器
    • US07078918B2
    • 2006-07-18
    • US10986505
    • 2004-11-10
    • Yuichi UmedaJunichi Saito
    • Yuichi UmedaJunichi Saito
    • G01R27/26
    • G06K9/0002G06F3/0416G06F3/044
    • In a capacitance detecting circuit, changes in capacitances at intersections between a plurality of row lines and a column line are detected as voltages. The capacitance detecting circuit includes a column-line driver for driving the column line. A code generator generates code having orthogonality in chronological order. A selection synthesizer selects a certain number of row lines from the plurality of row lines by using the code and synthesizes measured voltages at the intersections between the selected row lines and the driven column line so as to output the synthesized measured voltage. A decoding computation unit separates the measured voltages corresponding to the capacitances at the intersections by performing product sum computation between the synthesized measured voltage and the code.
    • 在电容检测电路中,检测多条行线与列线之间的交叉点的电容变化为电压。 电容检测电路包括用于驱动列线的列线驱动器。 代码生成器按时间顺序生成具有正交性的代码。 选择合成器通过使用代码从多条行线中选择一定数量的行线,并且合成所选择的行线和被驱动列线之间的交点处的测量电压,以便输出合成的测量电压。 解码计算单元通过在合成测量电压和代码之间执行乘积和计算来分离对应于交点处的电容的测量电压。