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    • 3. 发明授权
    • Radio transmission apparatus and method, radio reception apparatus and method, transmitting and receiving method, and recording medium
    • 无线发送装置和方法,无线电接收装置和方法,发送和接收方法以及记录介质
    • US07936740B2
    • 2011-05-03
    • US11356149
    • 2006-02-17
    • Masaaki Fujii
    • Masaaki Fujii
    • H04B7/00H04B7/208H04B7/216H04B1/60H04B17/02
    • H04L1/0631H04B7/0678H04L1/0625H04L5/026
    • Provided are a radio transmission apparatus and method, a radio receiving apparatus and method, a transmitting and receiving method, and a recording medium for use in a mobile communication system according to an Orthogonal Frequency Division Multiplexing-Code Division Multiplexing (OFDM-CDM)-based transmission diversity method. The radio transmitter codes transmission data into a plurality of time-space codes, generates spread signals by respectively mapping a plurality of spread codes and the time-space codes, and transmits the spread signals via a plurality of transmission antennae, each of the spread codes containing a combination of codes whose signs are alternately equal and opposite in units of specific spreading lengths. Accordingly, it is possible to transmit data without a feedback of control information from a radio receiver.
    • 提供了根据正交频分复用码分多址(OFDM-CDM)的移动通信系统中使用的无线发送装置和方法,无线接收装置和方法,发送和接收方法以及记录介质, 基于传输的分集方法。 无线电发射机将传输数据编码成多个时空码,通过分别映射多个扩展码和时间空间码产生扩展信号,并经由多个发射天线发射扩展信号,每个扩展码 包含符号交替相等并且以特定扩展长度为单位的代码的组合。 因此,可以从无线电接收机发送没有控制信息的反馈的数据。
    • 4. 发明申请
    • Charge control device and battery pack employing it
    • 充电控制装置和使用它的电池组
    • US20050218865A1
    • 2005-10-06
    • US11092977
    • 2005-03-30
    • Masaaki Fujii
    • Masaaki Fujii
    • H02J7/00
    • H02J7/0031H02J2007/0037
    • A battery pack employing a charge control device of the present invention includes a charge detection circuit for checking whether a secondary cell is in a charged state or not based on at least a charge voltage or a charge current of the secondary cell, a control circuit for controlling feeding of electric power to the secondary cell according to an output of the charge detection circuit, and a setting circuit for setting a level of the charge voltage or the charge current at which the charge detection circuit recognizes the charged state according to control information fed in directly from outside.
    • 采用本发明的充电控制装置的电池组包括至少基于二次电池的充电电压或充电电流来检查二次电池是否处于充电状态的充电检测电路,用于 根据所述充电检测电路的输出,控制向所述二次电池的电力供给;以及设定电路,其根据所馈送的控制信息,设定所述充电电压或所述充电电流的电平 直接从外面来。
    • 5. 发明授权
    • Radioactive concentration measuring apparatus
    • 放射性浓度测定仪
    • US4591716A
    • 1986-05-27
    • US629044
    • 1984-07-09
    • Hiroshi KitaguchiMasaaki Fujii
    • Hiroshi KitaguchiMasaaki Fujii
    • G01T1/167G01T7/02G21F9/00G01J1/00
    • G21F9/00G01T7/02
    • This invention relates to an apparatus for measuring the radioactive concentration of a radioactive material-containing liquid. In order to improve the measuring sensitivity of and miniaturize the apparatus, it includes a vertically-disposed outer cylinder, an inner cylinder disposed in and concentrically with the outer cylinder, a radiation detector disposed in the inner cylinder, a radioactive liquid feed means for supplying a radioactive material-containing liquid in the form of an annular current into an annular space between the inner and outer cylinders, a first cleaning water feed means for supplying a cleaning liquid along the inner surface of the outer cylinder, and a second cleaning water feed means for supplying a cleaning liquid along the outer surface of the inner cylinder. The cleaning water prevents the radioactive material from being deposited on the inner surface of the outer cylinder and the outer surface of the inner cylinder, and the measuring sensitivity of the apparatus from decreasing.
    • 本发明涉及一种用于测量含放射性物质的液体的放射性浓度的装置。 为了提高装置的测量灵敏度和小型化,其包括垂直设置的外筒,设置在外筒中并与外筒同心的内筒,设置在内筒中的放射线检测器,用于供应的放射性液体供给装置 形成环形电流形式的含放射性物质的液体进入内筒和外筒之间的环形空间;第一清洗水供给装置,用于沿着外筒的内表面供应清洗液;第二清洗水进料 用于沿着内筒的外表面供应清洗液的装置。 清洁水防止放射性物质沉积在外筒的内表面和内筒的外表面上,并且装置的测量灵敏度降低。
    • 7. 发明申请
    • TEMPERATURE PROTECTION CIRCUIT, POWER SUPPLY, AND ELECTRONIC DEVICE
    • 温度保护电路,电源和电子设备
    • US20090262468A1
    • 2009-10-22
    • US12066855
    • 2006-09-15
    • Yuzo IdeYuichi AokiMasaaki FujiiHirokazu Oki
    • Yuzo IdeYuichi AokiMasaaki FujiiHirokazu Oki
    • H02H5/04H02H7/00
    • H01L23/34H01L2924/0002H02M1/32H01L2924/00
    • A temperature protection circuit comprises means adapted to compare the temperature being monitored with each of threshold temperatures and judging that the temperature being monitored reaches a threshold temperature when the temperature being monitored is maintained at the threshold temperature or more for a predetermined confirmation period, means adapted to set a longer confirmation period as the threshold temperature compared with the temperature being monitored is lower, means adapted to generate one of corresponding temperature protection signals (Sarm, Slmt, Stsd1, Stsd2) according to the judgment of which threshold temperature the temperature being monitored reaches. With this constitution, temperature protection operation can be preformed with high accuracy and high safety without unnecessarily narrowing the range of the operating temperature of an IC to be protected.
    • 温度保护电路包括适于将待监测的温度与每个阈值温度进行比较的装置,并且当所监视的温度在预定的确认期限内保持在阈值温度或更高时,判断被监视的温度达到阈值温度, 为了设定与所监视的温度相比的阈值温度较低的较长的确认期间,根据阈值温度被监视的温度的判断,适于产生相应的温度保护信号(Sarm,Slmt,Stsd1,Stsd2)中的一个的装置 到达 利用这种结构,可以以高精度和高安全性实现温度保护操作,而不会使要保护的IC的工作温度的范围变得不必要。
    • 8. 发明授权
    • Charge control device and battery pack employing it
    • 充电控制装置和使用它的电池组
    • US07372234B2
    • 2008-05-13
    • US11092977
    • 2005-03-30
    • Masaaki Fujii
    • Masaaki Fujii
    • H02J7/00
    • H02J7/0031H02J2007/0037
    • A battery pack employing a charge control device of the present invention includes a charge detection circuit for checking whether a secondary cell is in a charged state or not based on at least a charge voltage or a charge current of the secondary cell, a control circuit for controlling feeding of electric power to the secondary cell according to an output of the charge detection circuit, and a setting circuit for setting a level of the charge voltage or the charge current at which the charge detection circuit recognizes the charged state according to control information fed in directly from outside.
    • 采用本发明的充电控制装置的电池组包括至少基于二次电池的充电电压或充电电流来检查二次电池是否处于充电状态的充电检测电路,用于 根据所述充电检测电路的输出,控制向所述二次电池的电力供给;以及设定电路,其根据所馈送的控制信息,设定所述充电电压或所述充电电流的电平 直接从外面来。
    • 9. 发明授权
    • Microscope with wavelength compensation
    • 具有波长补偿的显微镜
    • US07095556B2
    • 2006-08-22
    • US10771729
    • 2004-02-04
    • Yoshinori IketakiTakeshi WatanabeMasaaki FujiiYasunori IgasakiToshio Suzuki
    • Yoshinori IketakiTakeshi WatanabeMasaaki FujiiYasunori IgasakiToshio Suzuki
    • G02B21/06G01J3/30
    • G02B26/08
    • A microscope capable of being shaped into a beam with complete hollow shape by removing the disorder of the wavefront to the erase light, particularly, and capable of improving the spatial resolution by inducing a super-resolution near the limit, is provided. In the microscope, wherein a first light to excite a molecule from a ground-state to first electron excited state or a second light to excite the molecule from the first electron excited state to the second electron excited state with higher energy level, for a sample 56 including the molecule with three electronic states including at least a ground-state, are spatial phase-modulated into the prescribed beam shape, and parts of these first light and the second light are overlapped and focused to detect luminescence from the sample 56, a wavefront compensation means 61 is provided in the optical path of the first light and/or in the optical path of the second light, and the wavefront aberration caused in the first light and/or in the second light, is removed by the wavefront compensation means 61.
    • 提供了能够通过将擦除光的波阵面除去特别是并且能够通过在接近极限附近引起超分辨率来改善空间分辨率而将具有完全中空形状的光束成形为显微镜的显微镜。 在显微镜中,其中将分子从基态激发到第一电子激发态的第一光或第二光以将分子从第一电子激发态激发至具有较高能级的第二电子激发态,对于样品 包括具有至少包括基态的三种电子状态的分子被空间相位调制成规定的波束形状,并且这些第一光和第二光的一部分被重叠和聚焦以检测来自样品56的发光, 波前补偿装置61设置在第一光的光路和/或第二光的光路中,并且在第一光和/或第二光中引起的波前像差被波前补偿装置除去 61。