会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 3. 发明授权
    • Electronic apparatus
    • 电子仪器
    • US08904233B2
    • 2014-12-02
    • US13522551
    • 2011-02-09
    • Hidefumi IbeTadanobu TobaKenichi ShimboHitoshi Taniguchi
    • Hidefumi IbeTadanobu TobaKenichi ShimboHitoshi Taniguchi
    • G06F11/00G06F11/14G01R31/00
    • G06F11/1405G01R31/00
    • A failure caused by a soft-error including MNU, of an electronic apparatus is prevented, while suppressing increase of a mounting area, power consumption, and processing time. The electronic apparatus stores data indicating the state of a flip-flop included in a sequential logic circuit within an arithmetic unit, each time when execution is performed on a check point provided for every predetermined number of instructions. When a symptom of a soft-error is detected, the apparatus sets the state of the flip-flop included in the sequential logic circuit within the arithmetic unit, based on the data stored after execution of the instruction at the immediately preceding check point, and restarts execution from the next instruction, being subsequent to the instruction associated with the immediately preceding check point.
    • 在抑制安装面积的增加,功耗和处理时间的同时,防止由电子装置的包含MNU的软错误引起的故障。 每当在针对每个预定数量的指令提供的检查点上执行执行时,电子装置存储指示包括在运算单元内的顺序逻辑电路中的触发器的状态的数据。 当检测到软错误的症状时,该装置基于在执行紧接在前一个检查点的指令之后存储的数据来设置运算单元内的顺序逻辑电路中包括的触发器的状态,以及 从下一条指令重新开始执行,该命令在与紧接在前的检查点相关联的指令之后。
    • 4. 发明申请
    • ELECTRONIC APPARATUS
    • 电子设备
    • US20120304005A1
    • 2012-11-29
    • US13522551
    • 2011-02-09
    • Hidefumi IbeTadanobu TobaKenichi ShimboHitoshi Taniguchi
    • Hidefumi IbeTadanobu TobaKenichi ShimboHitoshi Taniguchi
    • G06F11/14
    • G06F11/1405G01R31/00
    • A failure caused by a soft-error including MNU, of an electronic apparatus is prevented, while suppressing increase of a mounting area, power consumption, and processing time. The electronic apparatus stores data indicating the state of a flip-flop included in a sequential logic circuit within an arithmetic unit, each time when execution is performed on a check point provided for every predetermined number of instructions. When a symptom of a soft-error is detected, the apparatus sets the state of the flip-flop included in the sequential logic circuit within the arithmetic unit, based on the data stored after execution of the instruction at the immediately preceding check point, and restarts execution from the next instruction, being subsequent to the instruction associated with the immediately preceding check point.
    • 在抑制安装面积的增加,功耗和处理时间的同时,防止由电子装置的包含MNU的软错误引起的故障。 每当在针对每个预定数量的指令提供的检查点上执行执行时,电子装置存储指示包括在运算单元内的顺序逻辑电路中的触发器的状态的数据。 当检测到软错误的症状时,该装置基于在执行紧接在前一个检查点的指令之后存储的数据来设置运算单元内的顺序逻辑电路中包括的触发器的状态,以及 从下一条指令重新开始执行,该命令在与紧接在前的检查点相关联的指令之后。
    • 6. 发明授权
    • Analyzer/observer
    • 分析仪/观察者
    • US06762422B2
    • 2004-07-13
    • US10148513
    • 2002-09-24
    • Hironaru YamaguchiHidefumi IbeNaoki Yamagami
    • Hironaru YamaguchiHidefumi IbeNaoki Yamagami
    • H01J3726
    • H01J37/20H01J2237/20292
    • On a sample base 1 disposed within a vacuum container is provided a scale S(1). . . S(N), where in an actual distance of the sample base is monitored by observing the scale trough an optical system for exclusive use thereof, which can catch it within a field of view. With this, it is possible to position a foreign body, as a target of analysis, which is analyzed or observed by a first analysis/observation device, so that it necessarily falls within a field of view of a second analysis/observation device, thereby realizing quick and automatic delivery of the samples when observing the foreign body on the sample by plural numbers of the devices.
    • 在设置在真空容器内的样品台1上设置刻度S(1)。 。 。 S(N),其中通过观察通过其专用的光学系统的尺度监视样本基座的实际距离,其可以在视场内捕获它。因此,可以定位异物 作为分析对象,由第一分析/观察装置进行分析或观察,使其必然落在第二分析/观察装置的视野内,从而在观察样品时快速自动地传送样品 异物在样品上由多个设备。
    • 8. 发明授权
    • Method for evaluating semiconductor device error and system for supporting the same
    • 评估半导体器件误差的方法及其支持系统
    • US07395168B2
    • 2008-07-01
    • US11037105
    • 2005-01-19
    • Hidefumi IbeYasuo YahagiHideaki Kameyama
    • Hidefumi IbeYasuo YahagiHideaki Kameyama
    • G01V5/10
    • G01R31/31816G01R31/002G01R31/2849G01R31/2881G01R31/30
    • Spectrum data of white neutrons having different spectrum shapes, and SEE counts obtained by a white neutron method using this multiple spectrum data, are stored. A computing section reads out the spectrum data, divides the data into energy groups, and calculates and stores a total flux of each energy group. Furthermore, the computing section reads out the SEE counts with respect to each of the spectrum data and the total flux of each energy group, substitutes the SEE counts and the total flux into a simultaneous equation, and calculates the SEE cross section for each of the energy groups. Subsequently, the computing section calculates parameters which determine a formula of the approximate function of the SEE cross section as a function of energy, so that computed values of error counts obtained by integration of multiple spectra and the approximate function sufficiently match the actual measured values thereof.
    • 存储具有不同光谱形状的白色中子的光谱数据,以及使用该多光谱数据通过白中子法获得的SEE计数。 计算部分读取频谱数据,将数据分成能量组,并计算并存储每个能量组的总通量。 此外,计算部分读出关于每个能量组的每个频谱数据和总通量的SEE计数,将SEE计数和总通量替换为联立方程,并且计算每个能量组的SEE横截面 能源团体 随后,计算部分计算确定作为能量的函数的SEE截面的近似函数的公式的参数,使得通过积分多个光谱获得的误差计数值与近似函数充分匹配其实际测量值 。
    • 9. 发明授权
    • Method and apparatus for measuring dissolved gas concentrations
    • 测量溶解气体浓度的方法和装置
    • US4578154A
    • 1986-03-25
    • US746010
    • 1985-06-19
    • Masao KitamuraNorio NakayamaRyoei KatsuraHidefumi IbeShunsuke Uchida
    • Masao KitamuraNorio NakayamaRyoei KatsuraHidefumi IbeShunsuke Uchida
    • G01N27/404G01N27/416G01N27/49G01N27/54
    • G01N27/404G01N27/4045G01N27/49
    • Two dissolved gas components in sample water, for example, oxygen and hydrogen in core water, are readily quantitatively determined in one and same membrane-type oxygen meter by using a membrane producing an overlapped potential region where a potential region for an oxidation limiting current plateau is overlapped with that for a reduction limiting current plateau between two dissolved gas components, and applying to between a pair of an electrode and a counter-electrode a more positive potential than the equilibrium potential for oxidation-reduction reaction of one of the two dissolved gas components principally, thereby measuring a current generated between the electrodes, and a more negative potential than the equilibrium potential for oxidation-reduction reaction of the other dissolved gas component, when desired, thereby measuring a current generated between the electrodes, and quantitatively determining a concentration of the first dissolved gas component from the latter current quantity and quantitatively determining a concentration of the other dissolved gas component from a difference between the said two current quantities.
    • 样品水中的两种溶解气体组分,例如核心水中的氧气和氢气,可以通过使用产生重叠电位区域的膜在一个相同的膜式氧气计中进行定量测定,其中氧化极限电流平台的电位区域 与用于两个溶解气体组分之间的还原极限电流平台的那些重叠,并且在一对电极和对电极之间施加比两个溶解气体之一的氧化还原反应的平衡电位更正的电位 从而测量电极之间产生的电流,从而测量电极之间产生的电流,并且在需要时测量另外的溶解气体成分的氧化 - 还原反应的平衡电位的负电势,从而测量电极之间产生的电流,并定量测定浓度 的第一溶解气体组分 量并且根据所述两个电流量之间的差定量地确定其它溶解气体组分的浓度。
    • 10. 发明授权
    • Sodium leakage detection system and method of controlling the same
    • 钠泄漏检测系统及其控制方法
    • US4380168A
    • 1983-04-19
    • US167029
    • 1980-07-09
    • Hidefumi Ibe
    • Hidefumi Ibe
    • G21C17/02F17D5/04G01M3/04G01M3/18
    • F17D5/04
    • A plurality of sampling tubes are connected with a selector valve and the selector valve selects one of the sampling tubes so that the sample gas is lead through the selected sampling tube and a pipe way downstream of the selector valve to a leakage detection system. The pipe way is provided with a gas flushing section for flushing with high pressure gas and the gas flushing operation is performed before each change-over of the selector valve. The flow of sucked gas is kept constant by providing a gas flow control device downstream of the leakage detection section. A pressure sensor is provided for the pipe way leading to the detection section, to detect the gas pressure in the pipe way and the output of the pressure sensor is used to detect an abnormality occurring in the detection section inclusive of the pipe way thereto and also to correct the output of the pressure detector in the detection section.
    • 多个采样管与选择阀连接,选择阀选择一个采样管,使得样品气体通过选定的采样管和选择阀下游的管道引导到泄漏检测系统。 管路设置有用于用高压气体冲洗的气体冲洗部分,并且在每次切换选择阀之前执行气体冲洗操作。 通过在泄漏检测部分的下游设置气体流量控制装置,吸入气体的流量保持恒定。 为通过检测部的管道设置压力传感器,检测管道内的气体压力,并且使用压力传感器的输出来检测包括管道在内的检测部分发生的异常,并且还 以校正检测部中的压力检测器的输出。