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    • 12. 发明授权
    • Reconfiguration controlling apparatus for optically reconfigurable gate array and method thereof
    • 用于光可重构门阵列的重配置控制装置及其方法
    • US08054670B2
    • 2011-11-08
    • US12310487
    • 2007-08-01
    • Minoru WatanabeFuminori Kobayashi
    • Minoru WatanabeFuminori Kobayashi
    • G11C13/04
    • H03K19/173
    • [PROBLEMS] To provide a reconfiguration controller of an optically reconfigurable gate array for correctly and reliably writing various types of logical operation circuits of an optically reconfigurable gate array and performing high-speed logical operation by quickly starting up the circuits. [MEANS FOR SOLVING PROBLEMS] A reconfiguration controller comprises a laser array (1) for producing a laser beam (1a) to serve as a reproducing beam and applying the laser beam (1a), a hologram memory (2) for outputting an optical pattern (2a) when receiving the laser beam (1a) according to pre-stored recording information and outputting a control signal light (2b) relating to optical reconfiguration by the optical pattern (2a), an optically reconfigurable gate array (3) for reconfiguring arrayed logical operation cells into various logical operation circuits according to the outputted optical pattern (2a), and outputting an optical control signal (S3) from the control signal light (2b), and a reproduction light application control means (4) for controlling the application of the laser beam (1a) emitted from the laser array (1) according to the optical control signal. Therefore, optical pattern application can be performed according to the optical control signal at a reconfiguration time adapted to any of various logical operation circuits sequentially reconfigured by the optically reconfigurable gate array. Consequently, correct and reliable write of any one of various types of logical operation circuits can be performed without any write error, and such various types of logical operation circuits can perform logical operation sequentially at high speed.
    • 提供一种光学可重构门阵列的重新配置控制器,用于正确且可靠地写入光学可重构门阵列的各种类型的逻辑运算电路,并通过快速启动电路来执行高速逻辑运算。 解决问题的手段重新配置控制器包括用于产生激光束(1a)以用作再现光束并施加激光束(1a)的激光阵列(1),用于输出光学图案的全息存储器(2) (2a),当根据预先存储的记录信息接收激光束(1a)并且输出与所述光学图案(2a)相关的光学重新配置的控制信号光(2b)时,用于重配置的光学可重构门阵列(3) 根据输出的光学图案(2a)将逻辑运算单元转换成各种逻辑运算电路,并从控制信号光(2b)输出光控制信号(S3);以及再现光应用控制单元(4),用于控制应用 根据光学控制信号从激光阵列(1)发射的激光束(1a)。 因此,可以根据光控制信号,在适于由光学可重构门阵列顺序重新配置的各种逻辑运算电路中的任何一个的重新配置时间执行光学图案应用。 因此,可以执行各种类型的逻辑运算电路中的任一种的正确可靠的写入而没有任何写入错误,并且这种各种类型的逻辑运算电路可以高速顺序地执行逻辑运算。
    • 20. 发明申请
    • IMAGING APPARATUS AND RADIATION IMAGING SYSTEM
    • 成像装置和放射成像系统
    • US20090302229A1
    • 2009-12-10
    • US12543542
    • 2009-08-19
    • Minoru WatanabeChiori MochizukiTakamasa Ishii
    • Minoru WatanabeChiori MochizukiTakamasa Ishii
    • G01T1/24H01L31/0376
    • G01T1/2928H01L27/14658H01L27/14692
    • An imaging apparatus includes a plurality of pixels disposed on an insulation substrate. Each of the pixels includes a plurality of thin-film transistors, a conversion element disposed above the TFTs, and a plurality of insulating layers disposed between the conversion element and the plurality of TFTs. The plurality of TFTs includes a reading TFT having a gate electrode electrically connected to the conversion element and a first selecting TFT electrically connected to a source electrode or a drain electrode of the reading TFT. At least one of a signal wiring, to which a signal corresponding to an electric charge obtained by conversion of incident light or radiation performed by the conversion element is transferred, and a gate wiring that supplies a driving signal to a gate electrode of the first selecting thin-film transistor, is disposed between the plurality of insulating layers.
    • 成像装置包括设置在绝缘基板上的多个像素。 每个像素包括多个薄膜晶体管,设置在TFT上方的转换元件以及设置在转换元件和多个TFT之间的多个绝缘层。 多个TFT包括具有与转换元件电连接的栅电极的读取TFT和与读取TFT的源电极或漏电极电连接的第一选择TFT。 信号布线中的至少一个传输与通过转换元件进行的入射光或辐射的转换获得的电荷相对应的信号的信号线以及向第一选择的栅电极提供驱动信号的栅极布线 薄膜晶体管,设置在多个绝缘层之间。