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    • 2. 发明授权
    • Charger with a probe and controller
    • 带探头和控制器的充电器
    • US07715743B2
    • 2010-05-11
    • US11707369
    • 2007-02-16
    • Joseph A. SwiftTyco SkinnerMichael F. ZonaR. Enrique Viturro
    • Joseph A. SwiftTyco SkinnerMichael F. ZonaR. Enrique Viturro
    • G03G15/02G03G15/00G01R29/12G01R27/26
    • G03G15/0258G03G2215/028
    • This is a charging assembly that is useful in marking processes with an electrostatically charged surface. The assembly includes, besides the charger, a controller and an electric field probe. Charge and current flows can be detected by the probe and corrected immediately after detection of flaws by the probe and conveyed to the controller. If flaws in the charger are determined by the probe, corrections are made to the output by a controller; this is done before a final copy or print is made. The term flaws as used means any non-uniform appearing region in the printed image or any otherwise unacceptable defect. The probe is enabled to detect and indicate flaws and the controller which is in communication with the probe takes corrective action on the flaws. The probe used is a novel probe having two sensing elements surrounded by one or more reference electrodes.
    • 这是一种充电组件,可用于带静电充电表面的标记工艺。 除了充电器之外,组件还包括控制器和电场探头。 可以通过探头检测充电和电流,并在通过探头检测到缺陷后立即进行校正,并将其传送到控制器。 如果充电器中的缺陷由探头确定,则由控制器进行校正; 这是在完成最终复印或打印之前完成的。 所使用的术语缺陷是指印刷图像中的任何不均匀的出现区域或任何其他不可接受的缺陷。 探头能够检测并指示缺陷,与探头通信的控制器对缺陷进行纠正。 使用的探针是具有由一个或多个参考电极包围的两个感测元件的新型探针。
    • 3. 发明申请
    • Charger with a probe and controller
    • 带探头和控制器的充电器
    • US20080199195A1
    • 2008-08-21
    • US11707369
    • 2007-02-16
    • Joseph A. SwiftTyco SkinnerMichael F. ZonaR. Enrique Viturro
    • Joseph A. SwiftTyco SkinnerMichael F. ZonaR. Enrique Viturro
    • G03G15/02
    • G03G15/0258G03G2215/028
    • This is a charging assembly that is useful in marking processes with an electrostatically charged surface. The assembly includes, besides the charger, a controller and an electric field probe. Charge and current flows can be detected by the probe and corrected immediately after detection of flaws by the probe and conveyed to the controller. If flaws in the charger are determined by the probe, corrections are made to the output by a controller; this is done before a final copy or print is made. The term flaws as used means any non-uniform appearing region in the printed image or any void region within the printed image including any otherwise unacceptable defect such as a jagged line that is visible to an end user. The probe is enabled to detect and indicate flaws and the controller which is in communication with the probe takes corrective action on the flaws. The probe used is a novel probe having two sensing elements surrounded by one or more reference electrodes.
    • 这是一种充电组件,可用于带静电充电表面的标记工艺。 除了充电器之外,组件还包括控制器和电场探头。 可以通过探头检测充电和电流,并在通过探头检测到缺陷后立即进行校正,并将其传送到控制器。 如果充电器中的缺陷由探头确定,则由控制器进行校正; 这是在完成最终复印或打印之前完成的。 所使用的术语缺陷是指印刷图像中的任何不均匀的出现区域或印刷图像内的任何空隙区域,包括任何其他不可接受的缺陷,例如最终用户可见的锯齿状线。 探头能够检测并指示缺陷,与探头通信的控制器对缺陷进行纠正。 使用的探针是具有由一个或多个参考电极包围的两个感测元件的新型探针。
    • 7. 发明申请
    • Charging device and an image forming device including the same
    • 充电装置和包括该充电装置的图像形成装置
    • US20100119261A1
    • 2010-05-13
    • US11363004
    • 2006-02-27
    • Michael F. ZonaJoseph A. SwiftDan A. HaysFa-Gung Fan
    • Michael F. ZonaJoseph A. SwiftDan A. HaysFa-Gung Fan
    • G03G15/02
    • G03G15/0266
    • A charging device comprises first and second electrodes forming a charging zone. A plurality of nanostructures adhere to at least one of the first and second electrodes. A charging voltage supply couples to the electrodes to support the formation of gaseous ions in the charging zone. An aperture electrode or grid proximate to the first and second electrodes is coupled to a grid control voltage supply which grid control voltage supply, in turn, controls a flow of gaseous ions from the charging zone to thereby charge a proximately-located receptor. In one embodiment, the charging voltage supply is arranged to provide a pulsed-voltage waveform. In one variation of this embodiment, the pulsed-voltage waveform comprises a pulsed-DC waveform. In another embodiment, the charging voltage supply is arranged to provide an alternating-current waveform. In one embodiment, the charging device itself is comprised in an image forming device.
    • 一种充电装置包括形成充电区的第一和第二电极。 多个纳米结构粘附到第一和第二电极中的至少一个。 充电电压电源耦合到电极以支持在充电区域中形成气态离子。 靠近第一和第二电极的孔径电极或栅格耦合到栅格控制电压源,栅格控制电压源进而控制来自充电区的气态离子流,从而对靠近位置的受体进行充电。 在一个实施例中,充电电压源设置成提供脉冲电压波形。 在该实施例的一个变型中,脉冲电压波形包括脉冲DC波形。 在另一个实施例中,充电电压源被设置成提供交流波形。 在一个实施例中,充电装置本身包括在图像形成装置中。
    • 10. 发明授权
    • Nanostructure-based solid state charging device
    • 基于纳米结构的固态充电装置
    • US07398035B2
    • 2008-07-08
    • US11398705
    • 2006-04-06
    • Michael F. ZonaJoseph A. SwiftDan A. HaysJohn S. Facci
    • Michael F. ZonaJoseph A. SwiftDan A. HaysJohn S. Facci
    • G03G15/02
    • G03G15/1635G03G15/02G03G2215/026G03G2215/1609
    • Electrophotographic charging devices and methods for charging a receptor with a solid state charging device are disclosed. In an exemplary embodiment, the solid state charging device can include a dielectric layer, a first electrode disposed adjacent to a first surface of the dielectric layer, and a second electrode having a first surface disposed adjacent to a second surface of the dielectric layer. The solid state charging device can further include a plurality of nanostructures each having an end in electrical contact with a second surface of the second electrode. The exemplary solid state charging devices including the nanostructures can use less voltage than conventional charging devices, produce a reduced amount of oxidizing agents, such as, ozone and NOx, and/or operate at a lower temperature.
    • 公开了用固态充电装置对受体充电的电子照相充电装置和方法。 在示例性实施例中,固态充电装置可以包括电介质层,邻近电介质层的第一表面设置的第一电极和具有邻近电介质层的第二表面设置的第一表面的第二电极。 固态充电装置还可以包括多个纳米结构,每个纳米结构具有与第二电极的第二表面电接触的端部。 包括纳米结构的示例性固态充电装置可以使用比常规充电装置更少的电压,产生减少量的氧化剂,例如臭氧和NO x,和/或在较低温度下操作。