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    • 6. 发明申请
    • THERMOSTAT DIAGNOSTIC APPARATUS
    • 温度诊断仪
    • WO2011039591A1
    • 2011-04-07
    • PCT/IB2010/002364
    • 2010-09-21
    • NISSAN MOTOR CO., LTD.SUZUKI, Hideyuki
    • SUZUKI, Hideyuki
    • F01P11/16F01P7/16
    • F01P11/16F01P2025/66F01P2060/08
    • A thermostat diagnostic apparatus is provided with a cooling medium temperature sensor (12), an engine operating condition sensor (15) and a malfunction diagnosing device (11). The malfunction diagnosing device (11) is configured to diagnose a stuck- open malfunction of a thermostat (7) provided in a coolant flow passage (5) of an engine (E) installed in a mobile body (V) based on a comparison of a real cooling medium temperature detected by the cooling medium temperature sensor (12) and an estimated cooling medium temperature estimated based on an engine operating condition of the engine detected by the engine operating condition sensor (15). The malfunction diagnosing device (11) determines that the thermostat (7) is stuck in an open state upon determining that either the estimated cooling medium temperature or the real cooling medium temperature exceeds a prescribed reference value during a period in which an increased heat exchange rate condition of a radiator is satisfied continuously.
    • 恒温器诊断装置设置有冷却介质温度传感器(12),发动机工况条件传感器(15)和故障诊断装置(11)。 故障诊断装置(11)被配置为基于将移动体(V)中安装的发动机(E)的冷却剂流路(5)中设置的恒温器(7)的卡住故障进行诊断, 由冷却介质温度传感器(12)检测到的真实的冷却介质温度,以及基于由发动机运转状况传感器(15)检测出的发动机的发动机运转状况而推定的推定冷却介质温度。 在故障诊断装置(11)确定在确定在估计的冷却介质温度或实际冷却介质温度超过规定的参考值时,恒温器(7)处于打开状态,在此期间,增加的热交换率 连续满足散热器的状态。
    • 7. 发明申请
    • IMAGING DEVICE, METHOD FOR FABRICATING IMAGING DEVICE, AND IMAGING APPARATUS
    • 成像装置,用于制作成像装置的方法和成像装置
    • WO2011105625A1
    • 2011-09-01
    • PCT/JP2011/054839
    • 2011-02-24
    • FUJIFILM CorporationSUZUKI, HideyukiTSUTSUMI, Kiyohiko
    • SUZUKI, HideyukiTSUTSUMI, Kiyohiko
    • H01L27/146
    • H01L27/14645H01L27/1461H01L27/1464
    • According to an aspect of the invention, an imaging device includes a plurality of photoelectric conversion elements and a read-out portion. The photoelectric conversion elements are arranged above a substrate. The read-out portion reads out signal corresponding to charges which are generated from each of the photoelectric conversion elements. Each of the photoelectric conversion elements includes a first electrode that collects the charge, a second electrode that is disposed opposite to the first electrode, a photoelectric conversion layer that generates the charges and disposed between the first electrode and the second electrode, and an electron blocking layer that is disposed between the first electrode and the photoelectric conversion layer. Distance between the first electrodes of adjacent photoelectric conversion elements is 250 nm or smaller. Each of the electron blocking layers has a change in surface potential of -1 to 3 eV from a first face to a second face.
    • 根据本发明的一个方面,一种成像装置包括多个光电转换元件和一个读出部分。 光电转换元件设置在基板的上方。 读出部分读出与每个光电转换元件产生的电荷对应的信号。 每个光电转换元件包括收集电荷的第一电极,与第一电极相对设置的第二电极,产生电荷且设置在第一电极和第二电极之间的光电转换层,以及电子阻挡 层,其设置在第一电极和光电转换层之间。 相邻光电转换元件的第一电极之间的距离为250nm以下。 每个电子阻挡层的表面电位从第一面到第二面具有-1至3eV的变化。