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    • 1. 发明申请
    • INPUT-OUTPUT APPARATUS AND INPUT-OUTPUT METHOD
    • 输入输出装置和输入输出方法
    • US20110169858A1
    • 2011-07-14
    • US12985656
    • 2011-01-06
    • Masahiro Sakaguchi
    • Masahiro Sakaguchi
    • G06F3/041G09G5/02
    • G06F3/04883
    • Upon reception of a trace inputted by handwriting, it is determined whether or not an input start position of the trace coincides with part of a trace indicated by trace information stored in a trace table or saved trace indicated by trace information stored in a saved trace table. When the input start position coincides with neither of them, sequentially received trace information is accumulated in the trace table. When the input start position coincides with either of them, a corresponding menu image is displayed, and it is determined whether, any one of processes is selected from the menu image. Then, the process selected from the menu image is executed.
    • 在接收到通过手写输入的轨迹时,确定轨迹的输入开始位置是否与存储在轨迹表中的跟踪信息所指示的轨迹的一部分相符合,或者存储在保存的轨迹表中的跟踪信息所指示的保存曲线 。 当输入开始位置与它们都不一致时,顺序接收的跟踪信息被累积在跟踪表中。 当输入开始位置与其中任何一个一致时,显示相应的菜单图像,并且确定是否从菜单图像中选择任何一个处理。 然后,执行从菜单图像中选择的处理。
    • 9. 发明授权
    • Radar system and direction detecting method
    • 雷达系统和方向检测方法
    • US08390509B2
    • 2013-03-05
    • US13574449
    • 2011-01-26
    • Hisateru AsanumaMasahiro SakaguchiTomoya KawasakiMotomi Iyoda
    • Hisateru AsanumaMasahiro SakaguchiTomoya KawasakiMotomi Iyoda
    • G01S13/00
    • G01S13/931G01S7/354G01S13/345G01S2013/9375
    • A reflected wave that a transmitted wave is reflected by targets including a stationary target and a moving target is received as receiving signals of at least two reception antennas. A phase difference between beat signals at respective peak frequencies, generated from a transmitting signal and the receiving signals, is calculated. Directions of the targets are calculated in such a manner that the calculated phase difference of the targets is stored in a storage area in advance, it is predicted whether peak frequencies of the plurality of targets overlap each other, a predicted phase difference of the stationary target at the time when the peak frequencies overlap each other is calculated on the basis of the stored phase difference, and a predicted phase difference of the moving target is calculated on the basis of the calculated phase difference and the predicted phase difference of the stationary target.
    • 作为至少两个接收天线的接收信号,接收发射波被包括固定目标和移动目标的目标反射的反射波。 计算从发送信号和接收信号产生的各个峰值频率的差拍信号之间的相位差。 以目标计算的相位差预先存储在存储区域中的方式计算目标的方向,预测多个目标的峰值频率是否彼此重叠,预测的静止目标的相位差 基于存储的相位差来计算峰值频率彼此重叠的时间,并且基于计算出的相位差和静止目标的预测相位差来计算移动目标的预测相位差。
    • 10. 发明授权
    • Nickel crucible for melting analytical sample, method of preparing analytical sample and method of analysis
    • 用于熔化分析样品的镍坩埚,制备分析样品的方法和分析方法
    • US07892843B2
    • 2011-02-22
    • US12278889
    • 2007-02-15
    • Masahiro SakaguchiMitsuru YamaguchiTomio TakahashiKouichi Takemoto
    • Masahiro SakaguchiMitsuru YamaguchiTomio TakahashiKouichi Takemoto
    • G01N33/20B01N3/00G01N1/22
    • G01N1/44B01L3/04B01L2300/12Y10T436/25875
    • A nickel crucible used for melting an analytical sample in the pretreatment of the analytical sample, characterized in that the purity of the nickel crucible is 99.9999 wt % or higher. Also provided is a method of analysis, comprising melting a sample by the use of the nickel crucible for melting having a purity of 99.9999 wt % or higher, and analyzing the melt to thereby obtain an analytical result in which the respective lower limits of determination of Mn, Al, Si, Mg, Pb, Fe, Co, Ti, Cu, Cr, Zr, Mo, and W are Mn: 5 wtppm, Al: 10 wtppm, Si: 10 wtppm, Mg: 5 wtppm, Pb: 5 wtppm, Fe: 5 wtppm, Co: 5 wtppm, Ti: 20 wtppm, Cu: 20 wtppm, Cr: 10 wtppm, Zr: 5 wtppm, Mo: 2 wtppm, and W: 10 wtppm. In light of the recent analytical technology demanded of fast and accurate measurement of high purity materials, high purity analysis is attained through inhibition of mixing of impurities from the crucible.
    • 用于在分析样品的预处理中熔化分析样品的镍坩埚,其特征在于,所述镍坩埚的纯度为99.9999重量%以上。 还提供了一种分析方法,包括通过使用纯度为99.9999重量%以上的熔融用镍坩埚来熔解样品,分析熔融物,得到分析结果,其中, Mn,Al,Si,Mg,Pb,Fe,Co,Ti,Cu,Cr,Zr,Mo和W分别为Mn:5重量ppm,Al:10重量ppm,Si:10重量ppm,Mg:5重量ppm,Pb:5 重量ppm,Fe:5重量ppm,Co:5重量ppm,Ti:20重量ppm,Cu:20重量ppm,Cr:10重量ppm,Zr:5重量ppm,Mo:2重量ppm,W:10重量ppm。 鉴于最近需要快速准确地测量高纯度材料的分析技术,通过抑制来自坩埚的杂质的混合来获得高纯度分析。