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    • 2. 发明授权
    • Photoelectron spectroscopy apparatus
    • 光电子能谱仪
    • US06326617B1
    • 2001-12-04
    • US09145064
    • 1998-09-01
    • Toshihisa TomieHideaki ShimizuHiroyuki KondoNoriaki Kandaka
    • Toshihisa TomieHideaki ShimizuHiroyuki KondoNoriaki Kandaka
    • C01N2300
    • G01N23/04
    • Photoelectron spectroscopy apparatus are disclosed that comprise a photoelectron detector and that exhibit improved performance of the photoelectron detector and thus more reliable and accurate analysis of photoelectron energy. In performing energy analysis of photoelectrons, the photoelectron detector measures the time distribution at which photoelectrons emitted from a specimen surface traverse a flight tube when the specimen is irradiated with X-rays from a pulse X-ray source. A magnetic field generator is situated near the specimen to collect and collimate photoelectrons emitted from the specimen surface and form a photoelectron flux inside a flight tube. Any one of a deflection electrode, electrostatic lens, magnetic field lens, or electromagnetic lens, or a combination thereof, is placed at the distal end of the flight tube in front of the photoelectron detector to disperse the photoelectron flux and increase the surface area in which the photoelectron flux is incident to the photoelectron-detection surface.
    • 公开了包含光电子检测器并且显示出光电子检测器的改进性能并且因此更可靠和准确地分析光电子能量的光电子能谱仪。 在对光电子进行能量分析时,光电检测器测定从X射线源向X射线照射样本时,从试样表面射出的光电子横穿飞行管的时间分布。 磁场发生器位于样品附近,以收集和准直从样品表面发射的光电子,并在飞行管内形成光电子通量。 偏转电极,静电透镜,磁场透镜或电磁透镜中的任何一个或其组合放置在光电子检测器前面的飞行管的远端,以分散光电子通量并增加其中的表面积 光电子通量入射到光电子检测表面。
    • 5. 发明授权
    • Wireless relay amplification apparatus
    • 无线中继放大装置
    • US07957693B2
    • 2011-06-07
    • US12212267
    • 2008-09-17
    • Hideaki ShimizuMasahiro MatsudaHideo ImaiMasaki Suto
    • Hideaki ShimizuMasahiro MatsudaHideo ImaiMasaki Suto
    • H04Q7/20
    • H04B7/15585
    • A wireless relay amplification apparatus includes an interference canceller which generates cancellation waves to cancel interference waves from a mobile station antenna, which are included in downlink signals received by the base station antenna, a downlink amplifier which amplifies downlink signals from which the interference waves have been canceled by the interference canceller, an uplink amplifier which amplifies uplink signals received by the mobile station antenna, a receiver which detects a level of received signals based on the downlink signals from which the cancellation waves have been canceled by the interference canceller, and outputs a propagation loss calculated based on a difference between the detected reception level and a transmission level of the base station included in notification information in the downlink signals, and a controller which controls gain of at least one of the downlink amplifier and the uplink amplifier based on the propagation loss output by the receiver.
    • 无线中继放大装置包括干扰消除器,其产生消除波,以消除由基站天线接收的下行链路信号中包含的来自移动台天线的干扰波;下行放大器,放大干扰波的下行链路信号 由干扰消除器消除的上行放大器,放大由移动台天线接收的上行链路信号的接收机,基于由干扰消除器消除了消除波的下行链路信号来检测接收信号的电平的接收机,并输出 基于检测到的接收电平与包含在下行链路信号中的通知信息中的基站的发送电平之间的差计算出的传播损耗,以及基于下行链路信号的控制器,控制下行链路放大器和上行链路放大器中的至少一个的增益 传播损耗输出 接收器。
    • 6. 发明申请
    • NOVEL GAMMA-SECRETASE INHIBITOR
    • 新型GAMMA-SECRETASE抑制剂
    • US20110071224A1
    • 2011-03-24
    • US12672326
    • 2008-07-01
    • Atsuhiro AbeHideaki ShimizuSeigo SawadaHiroshi Kodaira
    • Atsuhiro AbeHideaki ShimizuSeigo SawadaHiroshi Kodaira
    • A61K31/198C07C229/28A61P25/28
    • C07K5/0207A61K38/00
    • It is intended to provide a novel compound that has an excellent γ-secretase inhibitory effect and specifically inhibits Aβ production.The present invention provides a compound of the following formula (1) or a pharmaceutically acceptable salt thereof: wherein R1 represents a linear or branched alkyl group having 1 to 4 carbon atoms or a phenyl group; R2 represents a linear or branched alkyl group having 1 to 4 carbon atoms which may be substituted by one or more phenyl or halogenophenyl groups; R3 represents a linear or branched alkyl group having 1 to 4 carbon atoms which may be substituted by one or more hydroxyl groups; R4 represents a linear or branched alkyl group having 1 to 4 carbon atoms; and the symbol “*” represents a chiral center.
    • 本发明提供具有优异的γ-分泌酶抑制效果并特异性抑制A&bgr的新型化合物。 生产。 本发明提供下式(1)的化合物或其药学上可接受的盐:其中R1表示具有1-4个碳原子的直链或支链烷基或苯基; R2表示可被一个或多个苯基或卤代苯基取代的具有1至4个碳原子的直链或支链烷基; R3表示可以被一个或多个羟基取代的具有1至4个碳原子的直链或支链烷基; R4代表具有1-4个碳原子的直链或支链烷基; 符号“*”表示手性中心。
    • 7. 发明申请
    • Printing Device
    • 打印设备
    • US20070280718A1
    • 2007-12-06
    • US11422449
    • 2006-06-06
    • Hideaki Shimizu
    • Hideaki Shimizu
    • G03G15/00
    • G03G15/6508G03G15/5087G03G15/553G03G2215/00126
    • A printing device which receives and prints job-data which includes: a printing unit which prints the job-data; a memory which stores the job-data; a first cassette which feeds paper to the printing unit; a second cassette which feeds paper of different size from paper fed by the first cassette to the printing unit; a first tray in which printed paper is stacked; a second tray which is provided separately from the first tray and printed paper is stacked therein; and a first controller which makes the printing device store one of the job-data in the memory, the one of the job-data being one which is not printed due to paper exhaustion of one of the first cassette and the second cassette, print other job-data which is to be printed using the other cassette, and stack printed paper in the second tray.
    • 一种接收和打印作业数据的打印装置,包括:打印单元,打印作业数据; 存储作业数据的存储器; 将纸送到打印单元的第一盒; 第二盒,其将不同尺寸的纸从第一盒送进的纸送入打印单元; 堆叠打印纸的第一个托盘; 与第一托盘和打印纸分开设置的第二托盘堆叠在其中; 以及第一控制器,其使得所述打印装置将所述作业数据中的一个存储在所述存储器中,所述作业数据中的所述作业数据是由于第一盒和第二盒中的一个的纸张耗尽而未打印的作业数据,打印其他 使用另一个盒子打印的作业数据,并将打印纸堆叠在第二个纸盘中。