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    • 2. 发明申请
    • PROCESS FOR PRODUCING ELECTROPHOTOGRAPHIC PHOTOSENSITIVE MEMBER
    • 生产电子摄影成像的方法
    • US20130316283A1
    • 2013-11-28
    • US13983994
    • 2012-03-01
    • Atsushi FujiiHideaki MatsuokaHaruyuki TsujiNobuhiro NakamuraKazuhisa Shida
    • Atsushi FujiiHideaki MatsuokaHaruyuki TsujiNobuhiro NakamuraKazuhisa Shida
    • G03G7/00
    • G03G7/0053G03G5/0507G03G5/0525G03G5/10G03G5/104G03G5/142G03G5/144
    • To provide a process for producing an electrophotographic photosensitive member that can not easily cause any fog due to an increase in dark attenuation, a conductive layer is formed with use of a coating liquid for conductive layer prepared with use of a solvent, a binder material and metal oxide particles. The metal oxide particles (P) and binder material (B) in the coating liquid for conductive layer are in a mass ratio (P/B) of from 1.5/1.0 to 3.5/1.0. The metal oxide particle is a titanium oxide particle coated with tin oxide doped with phosphorus or tungsten. Where powder resistivity of the metal oxide particle is represented by x (Ω·cm) and powder resistivity of the titanium oxide particle as a core particle constituting the metal oxide particle is represented by y (Ω·cm), the y and the x satisfy the following relations (i) and (ii): 5.0×107≦y≦5.0×109  (i) 1.0×102≦y/x≦1.0×106  (ii).
    • 为了提供一种用于制造由于暗衰减增加而不容易引起灰雾的电子照相感光构件的制造方法,使用通过使用溶剂,粘合剂材料和粘合剂材料制备的导电层用涂布液形成导电层, 金属氧化物颗粒。 用于导电层的涂布液中的金属氧化物颗粒(P)和粘合剂材料(B)的质量比(P / B)为1.5 / 1.0至3.5 / 1.0。 金属氧化物颗粒是涂覆有掺杂有磷或钨的氧化锡的氧化钛颗粒。 其中金属氧化物颗粒的粉末电阻率由x(Ω·cm)表示,作为构成金属氧化物颗粒的核心颗粒的氧化钛颗粒的粉末电阻率由y(Ω·cm)表示,y和x满足 以下关系式(i)和(ii):5.0×107 @ y @ 5.0×109(i)1.0×102 @ y / x @ 1.0×106(ii)。
    • 8. 发明申请
    • CONTROL APPARATUS
    • 控制装置
    • US20090103336A1
    • 2009-04-23
    • US12294183
    • 2007-03-27
    • Nobuhiro Nakamura
    • Nobuhiro Nakamura
    • H02H7/125
    • H02M1/32G01R31/028G01R31/42H02H7/122H02H7/16H02H9/001H02M1/36H02M5/458H02P2201/03
    • The present invention provides a control apparatus for detecting an early stage short circuit between the terminals of an electrolytic capacitor, and detecting a short circuit between a load that is connected in parallel to the electrolytic capacitor, the apparatus performing appropriate processing before an adverse effect is inflicted on peripheral equipment. In the control apparatus, microcomputers switch on a second relay; an electrolytic capacitor is gradually charged via a current-limiting resistor; a first voltage detection control for detecting a voltage between terminals of the electrolytic capacitor is performed when a first set time period has elapsed after the second relay has been switched on; and a second voltage detection control for detecting a voltage between the terminals of the electrolytic capacitor is performed when a second set time period, which is longer than the first set time period, has elapsed after the second relay has been switched on.
    • 本发明提供一种用于检测电解电容器的端子之间的早期短路并检测与电解电容器并联连接的负载之间的短路的控制装置,该装置在不利影响之前进行适当的处​​理 对外围设备造成的影响。 在控制装置中,微型计算机接通第二继电器; 电解电容器通过限流电阻逐渐充电; 当在第二继电器接通之后经过第一设定时间时,执行用于检测电解电容器端子之间的电压的第一电压检测控制; 并且当在第二继电器接通之后已经经过比第一设定时间长的第二设定时间段时,执行用于检测电解电容器的端子之间的电压的第二电压检测控制。