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    • 4. 发明申请
    • IDENTIFICATION OF A FIRST AND SECOND ADJUSTMENT VALUE BASED ON A FIRST AND SECOND ELECTRICAL DISCHARGE EVENT
    • 基于第一次和第二次电力排放事件识别第一次和第二次调整值
    • US20130343771A1
    • 2013-12-26
    • US13530340
    • 2012-06-22
    • Assaf PinesGadi OronAmir Ofir
    • Assaf PinesGadi OronAmir Ofir
    • G03G15/02
    • G03G15/0266G03G2215/0174
    • A method includes moving a first end portion of a charging member with respect to a photoconductive member to obtain a first electrical discharge event corresponding to conduction of an electrical current from the charging member to the photoconductive member. The method also includes identifying a first adjustment value corresponding to a distance in which the first end portion moved toward the photoconductive member to obtain the first electrical discharge event. The method also includes moving a second end portion of the charging member with respect to the photoconductive member to obtain a second electrical discharge event corresponding to conduction of an electrical current from the charging member to the photoconductive member. The method also includes identifying a second adjustment value corresponding to a distance in which the second end portion moved toward the photoconductive member to obtain the second electrical discharge event.
    • 一种方法包括相对于感光体移动充电构件的第一端部分,以获得与从充电构件到感光体的电流传导相对应的第一放电事件。 该方法还包括识别对应于第一端部朝向感光体移动以获得第一放电事件的距离的第一调整值。 该方法还包括相对于感光体移动充电构件的第二端部,以获得对应于从充电构件到感光体的电流传导的第二放电事件。 该方法还包括识别对应于第二端部朝向感光体移动以获得第二放电事件的距离的第二调整值。
    • 6. 发明授权
    • Identification of a first and second adjustment value based on a first and second electrical discharge event
    • 基于第一和第二放电事件识别第一和第二调整值
    • US08705990B2
    • 2014-04-22
    • US13530340
    • 2012-06-22
    • Assaf PinesGadi OronAmir Ofir
    • Assaf PinesGadi OronAmir Ofir
    • G03G15/02
    • G03G15/0266G03G2215/0174
    • A method includes moving a first end portion of a charging member with respect to a photoconductive member to obtain a first electrical discharge event corresponding to conduction of an electrical current from the charging member to the photoconductive member. The method also includes identifying a first adjustment value corresponding to a distance in which the first end portion moved toward the photoconductive member to obtain the first electrical discharge event. The method also includes moving a second end portion of the charging member with respect to the photoconductive member to obtain a second electrical discharge event corresponding to conduction of an electrical current from the charging member to the photoconductive member. The method also includes identifying a second adjustment value corresponding to a distance in which the second end portion moved toward the photoconductive member to obtain the second electrical discharge event.
    • 一种方法包括相对于感光体移动充电构件的第一端部分,以获得与从充电构件到感光体的电流传导相对应的第一放电事件。 该方法还包括识别对应于第一端部朝向感光体移动以获得第一放电事件的距离的第一调整值。 该方法还包括相对于感光体移动充电构件的第二端部,以获得对应于从充电构件到感光体的电流传导的第二放电事件。 该方法还包括识别对应于第二端部朝向感光体移动以获得第二放电事件的距离的第二调整值。