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    • 91. 发明授权
    • Radiation detection apparatus and radiation imaging system
    • 辐射检测仪和放射成像系统
    • US08653465B2
    • 2014-02-18
    • US13091521
    • 2011-04-21
    • Kazumi NaganoSatoshi OkadaKeiichi NomuraYohei IshidaYoshito Sasaki
    • Kazumi NaganoSatoshi OkadaKeiichi NomuraYohei IshidaYoshito Sasaki
    • G01T1/20
    • G01T1/2018
    • A radiation detection apparatus including: a sensor panel having a first face on which a pixel region is formed and a second face that is opposite the first face and including a connecting portion at one or more sides; a scintillator layer formed over the pixel region; and a protective film covering the scintillator layer and a portion of the sensor panel is provided. The protective film has a hot-pressed part. At the side of the sensor panel where the connecting portion is formed, the hot-pressed part is formed in a portion of the protective film covering the first face. At other sides of the sensor panel, the hot-pressed part is formed in at least one of a portion of the protective film covering a lateral face of the sensor panel and the second face.
    • 一种放射线检测装置,包括:传感器面板,其具有形成有像素区域的第一面和与所述第一面相对的第二面,并且在一侧或多侧具有连接部; 形成在像素区域上的闪烁体层; 并且设置覆盖闪烁体层和传感器面板的一部分的保护膜。 保护膜具有热压部分。 在形成有连接部的传感器面板的一侧,形成有覆盖第一面的保护膜的一部分的热压部。 在传感器面板的另一侧,热压部分形成在保护膜的覆盖传感器面板的侧面和第二面的部分中的至少一个中。
    • 93. 发明授权
    • Radio wave receiving apparatus
    • 无线电波接收装置
    • US08358985B2
    • 2013-01-22
    • US12652850
    • 2010-01-06
    • Keiichi NomuraKaoru Someya
    • Keiichi NomuraKaoru Someya
    • H04B1/18H04B1/26H04B1/06H04B7/00
    • H03J1/0008H03J2200/10
    • A radio wave receiving apparatus is provided with a tuning circuit for bringing a receiving frequency of an antenna tuned in to a frequency of a desired wave, a frequency converting circuit for mixing a local oscillation signal with the signal received through the antenna, thereby converting the received signal into an intermediate frequency signal, a feed back loop including at least a portion of the tuning circuit for feeding back the received signal, a controller for detecting a level of the intermediate frequency signal to change a frequency characteristic of the tuning circuit, thereby obtaining a tuning point corresponding to the desired wave, wherein, the controller brings the feed back loop in operation, thereby changing the frequency characteristic of the tuning circuit, and when two peaks of a level of the received signal are detected while the frequency characteristic of the tuning circuit is changed, the controller selects as a tuning point corresponding to the desired wave a tuning point at which one of the two peaks of the level of the received signal corresponding to a high-low relationship between the predetermined frequency of the local oscillation signal and the frequency of the desired wave is detected.
    • 无线电波接收装置具有调谐电路,用于将天线的接收频率调谐到期望波的频率,频率转换电路,用于将本地振荡信号与通过天线接收的信号混频,从而将 将接收到的信号转换为中频信号,包括用于反馈接收信号的调谐电路的至少一部分的反馈回路,用于检测中频信号电平以改变调谐电路的频率特性的控制器,从而 获得对应于期望波的调谐点,其中,控制器使反馈回路工作,从而改变调谐电路的频率特性,并且当检测到接收信号的电平的两个峰值,同时检测接收信号的频率特性时 调谐电路改变后,控制器选择对应于所需波的调谐点 检测对应于本地振荡信号的预定频率和期望波频率之间的高低关系的接收信号电平的两个峰值之一的调谐点。
    • 95. 发明授权
    • Time information receiver, radio wave timepiece and storage medium having program stored therein
    • 时间信息接收机,无线电波表和存储有程序的存储介质
    • US08218691B2
    • 2012-07-10
    • US12651524
    • 2010-01-04
    • Keiichi NomuraHideo Abe
    • Keiichi NomuraHideo Abe
    • H04L27/06
    • G04R20/10
    • A time information receiver including a reception unit for receiving and demodulating a standard radio wave containing a time code in which data pulses are arranged at a predetermined period; a determining section for determining rising and falling points of a demodulated signal; a first calculator for calculating first differences between respective time intervals of any pair of the rising points and a time period concerned with the predetermined period, and calculating a rising dispersion amount; a second calculator for calculating second differences between respective time intervals of any pair of the falling points and a time period concerned with the predetermined period, and calculating a falling dispersion amount; a comparison section for comparing the rising dispersion amount and the falling dispersion amount; and a judger for judging a code type of the received time code on the basis of a comparison result of the comparison section.
    • 一种时间信息接收机,包括:接收单元,用于接收和解调包含数据脉冲以预定周期排列的时间码的标准无线电波; 确定部分,用于确定解调信号的上升和下降点; 第一计算器,用于计算任何一对上升点的各个时间间隔与所述预定周期相关的时间段之间的第一差异,并计算上升色散量; 第二计算器,用于计算任何一对下降点的各个时间间隔与所述预定周期相关的时间段之间的第二差异,并计算下降色散量; 用于比较上升色散量和下降色散量的比较部分; 以及判断器,用于基于比较部分的比较结果来判断所接收的时间码的代码类型。
    • 96. 发明申请
    • TIME-INFORMATION OBTAINING APPARATUS AND RADIO-CONTROLLED TIMEPIECE
    • 时间信息获取设备和无线电控制定时器
    • US20120134241A1
    • 2012-05-31
    • US13297405
    • 2011-11-16
    • Keiichi NomuraHideo Abe
    • Keiichi NomuraHideo Abe
    • G04C11/02
    • G04R20/12G04R20/10
    • A time-information obtaining apparatus is provided with an input waveform data pattern generating unit for sampling a received standard-time radio wave signal to generate an input waveform data pattern, an internal time counting unit for generate a base time, a calculation-waveform data pattern generating unit for generating plural calculation-waveform data patterns based on the base time, an invalid-bit detecting unit for detecting in the plural calculation-waveform data patterns, invalid bits not to be compared with the input waveform data pattern, an error counting unit for comparing the sample values of valid bits of the plural calculation-waveform data patterns with the invalid bits removed and the corresponding sample values of the input waveform data pattern to detect discrepancies between them, and a present-time correcting unit for correcting the base time based on the calculation-waveform data pattern having the smallest number of errors.
    • 时间信息获取装置具有输入波形数据模式产生单元,用于对接收的标准时间无线电波信号进行采样以产生输入波形数据模式,产生基准时间的内部时间计数单元,计算波形数据 模式产生单元,用于基于基准时间产生多个计算波形数据模式;无效比特检测单元,用于在多个计算波形数据模式中检测不与输入波形数据模式比较的无效比特,错误计数 单元,用于将多个计算波形数据模式中的有效位的采样值与去除的无效位相对应,以及相应的输入波形数据模式的采样值以检测它们之间的差异,以及校正基极的当前时间校正单元 基于具有最小错误数的计算波形数据模式的时间。
    • 98. 发明申请
    • TIME INFORMATION-ACQUIRING APPARATUS AND RADIO WAVE TIMEPIECE
    • 时间信息 - 获取设备和无线电波时序
    • US20110075522A1
    • 2011-03-31
    • US12888678
    • 2010-09-23
    • Hideo AbeKeiichi Nomura
    • Hideo AbeKeiichi Nomura
    • G04C11/02
    • G04R20/10
    • A time information-acquiring apparatus comprises an input waveform generator which generates an input waveform, a predicted waveform generator which generates plural phase-shifted predicted waveforms, a correlation calculator which calculates a positive correlation based on a first value of the input waveform and a first value of the predicted waveform or a second value of the input waveform and a second value of the predicted waveform, and calculates a negative correlation based on the first value of the input waveform and the second value of the predicted waveform or the second value of the input waveform and the first value of the predicted waveform, a comparator which compares the correlation values to detect an optimal value, and a controller which detects a head position of a second based on a predicted waveform related to the optimal value.
    • 时间信息获取装置包括产生输入波形的输入波形发生器,产生多个相移预测波形的预测波形发生器,基于输入波形的第一值计算正相关的相关计算器和第一 预测波形的值或输入波形的第二值和预测波形的第二值,并且基于输入波形的第一值和预测波形的第二值或者预测波形的第二值来计算负相关 输入波形和预测波形的第一值,将相关值进行比较以检测最佳值的比较器,以及基于与最优值相关的预测波形来检测第二个头部位置的控制器。
    • 100. 发明授权
    • Radiation detecting apparatus and radiographing system
    • 辐射检测装置和放射照相系统
    • US07714294B2
    • 2010-05-11
    • US12132782
    • 2008-06-04
    • Satoru SawadaSatoshi OkadaMasato InoueKazumi NaganoShinichi TakedaKeiichi NomuraYoshihiro Ogawa
    • Satoru SawadaSatoshi OkadaMasato InoueKazumi NaganoShinichi TakedaKeiichi NomuraYoshihiro Ogawa
    • G01T1/20
    • G01T1/20G01T7/005
    • A radiation detecting apparatus includes: a sensor panel having a substrate and a photoelectric conversion element array arranged on the substrate; a scintillator layer arranged on one surface side of the sensor panel; and a light generator arranged on the sensor panel at the other side in opposition to the one side on which the scintillator layer is arranged, in corresponding to an area in which the photoelectric conversion element array is arranged. The light generator includes a light transmitting electrode layer, a rear electrode layer and a light emitting layer arranged between the light transmitting electrode layer and the rear electrode. The light emitting layer according to a first aspect is formed from light emitting substance, a binder and a black pigment. The light emitting layer according to a second aspect contains a first pigment or dye absorbing a light of the same wavelength of a maximum light emission from the scintillator layer, and a second pigment or dye different from the first pigment or dye.
    • 一种放射线检测装置,包括:传感器面板,具有基板和布置在基板上的光电转换元件阵列; 布置在传感器面板的一个表面侧的闪烁体层; 以及光发生器,其对应于设置有光电转换元件阵列的区域,布置在与设置有闪烁体层的一侧相对的另一侧的传感器面板上。 光发生器包括透光电极层,后电极层和布置在透光电极层和后电极之间的发光层。 根据第一方面的发光层由发光物质,粘合剂和黑色颜料形成。 根据第二方面的发光层包含吸收来自闪烁体层的最大发光波长相同的光的第一颜料或染料,以及与第一颜料或染料不同的第二颜料或染料。