会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 51. 发明申请
    • Reprinting
    • 转载
    • US20070268502A1
    • 2007-11-22
    • US11488355
    • 2006-07-18
    • Ann L. McCarthyEdul N. DalalWencheng WuDale R. MashtareRaja Bala
    • Ann L. McCarthyEdul N. DalalWencheng WuDale R. MashtareRaja Bala
    • G06F3/12
    • H04N1/6055G06F3/1204G06F3/1208G06F3/1234G06F3/1273H04N1/40006H04N1/6011
    • Consistency of document reprints is improved by recording characteristics of a reference printing system used to produce a reference printing of a document, determining related characteristics of a reprint printing system, retrieving the recorded characteristics and compensating for differences between the reference system and the reprint system in the reprint system prior to using the reprint system to produce reprints of the document. Analytical test prints (TPs) are produced with the respective printing systems in close temporal association to the production of the respective reference prints and reprints. TPs can be customized according to aspects of the document. TP customization allows the compensation to address aspects of the printing systems that have a bearing on perceived consistency in the reprints. TPs can be customized with regard to colors in test patches or both the colors and locations of test patches on a page. Compensation is based on measurements of the TPs.
    • 通过记录用于生成文档的参考打印的参考打印系统的特性来改进文档重印的一致性,确定重印打印系统的相关特征,检索记录的特性并补偿参考系和重印系统之间的差异 在重印系统使用转印系统之前,重印系统可以重印本文档。 分析测试印刷品(TP)与相应的印刷系统一起生产,与相应的参考印刷品的印刷和重印相关。 TP可以根据文档的方面进行定制。 TP定制允许补偿来处理与重印中感知到的一致性有关的打印系统的方面。 TP可以针对测试补丁中的颜色或页面上测试补丁的颜色和位置进行定制。 补偿是基于TP的测量。
    • 54. 发明授权
    • Apparatus and method for non-interactive magnetic brush development
    • 非交互磁刷发展的装置和方法
    • US06580891B1
    • 2003-06-17
    • US09995654
    • 2001-11-29
    • Robert J. MeyerDale R. MashtareJohn F. Knapp
    • Robert J. MeyerDale R. MashtareJohn F. Knapp
    • G03G1509
    • G03G15/09G03G2215/0651
    • In a development system including a developer transport adapted for depositing developer material on an imaging surface having an electrostatic latent image thereon, including: a housing defining a chamber storing a supply of developer material comprising soft magnetic toner; a donor member, mounted partially in the chamber and spaced from the imaging surface, for transporting developer on an outer surface thereof to a region opposed from the imaging surface, the donor member having a magnetic assembly having a plurality of poles, a sleeve, enclosing the magnetic assembly, rotating about said magnetic assembly; and a vibrating member positioned in between the magnetic assembly and the sleeve at a predefined position around the donor roll, the vibrating member fluidizing the developer material on the donor member to prevent developer bed freezing, to prevent long-range carrier bead chain formation, and to smooth developer bed height-banding on the donor member before a development zone.
    • 在包括适于在其上具有静电潜像的成像表面上沉积显影剂材料的显影剂传输的显影剂传输系统中,包括:壳体,其限定容纳包含软磁性调色剂的显影剂材料供应的室; 施主构件,其部分地安装在所述腔室中并与所述成像表面间隔开,用于将其外表面上的显影剂输送到与所述成像表面相对的区域,所述施主构件具有具有多个极的磁组件,套筒, 所述磁性组件绕所述磁性组件旋转; 以及振动构件,其位于围绕供体辊的预定位置处的磁性组件和套筒之间,振动构件将供体构件上的显影剂材料流化以防止显影剂床冻结,以防止长距离载体珠子链形成,以及 在开发区之前使供体成员上的显影剂床高度平滑。
    • 56. 发明授权
    • Apparatus and method for non-interactive magnetic brush development
    • 非交互磁刷发展的装置和方法
    • US5933683A
    • 1999-08-03
    • US4465
    • 1998-01-08
    • Christopher SnellingDale R. Mashtare
    • Christopher SnellingDale R. Mashtare
    • G03G15/09G03L15/09
    • G03G15/09
    • A development system including a developer transport adapted for depositing developer material on an imaging surface having an electrostatic latent image thereon, including a housing defining a chamber storing a supply of developer material including toner. A donor member is mounted partially in said chamber and spaced from the imaging surface, for transporting developer on an outer surface thereof to a region opposed from the imaging surface. The donor member has a magnetic assembly, which includes a plurality of poles, and a sleeve, enclosing said magnetic assembly and rotating about said magnetic assembly. A sensor measures a magnetic field of said donor roll at a predefined position on said donor roll. A magnetic system generates a magnetic field to reduce developer bed height of said developer material on said donor member in a development zone.
    • 一种显影系统,包括适于在其上具有静电潜像的成像表面上沉积显影剂材料的显影剂传输器,包括限定容纳包含调色剂的显影剂材料供应的室的壳体。 供体构件部分地安装在所述室中并与成像表面间隔开,用于将其外表面上的显影剂输送到与成像表面相对的区域。 供体构件具有包括多个极的磁性组件和包围所述磁性组件并围绕所述磁性组件旋转的套筒。 传感器在所述供体辊上的预定位置处测量所述供体辊的磁场。 磁性系统产生磁场以减少显影区中所述供体构件上的显影剂材料的显影剂床高度。
    • 57. 发明授权
    • Contact charging system for uniformly charging a charge retentive surface
    • 接触充电系统,均匀充电电荷保持表面
    • US5689776A
    • 1997-11-18
    • US538927
    • 1995-10-04
    • Andrew B. RadcliffeDale R. Mashtare
    • Andrew B. RadcliffeDale R. Mashtare
    • G03G15/02
    • G03G15/0216
    • A contact charging system uniformly charges a photoconductive surface by the use of a resistive belt surrounding and moved by two rollers and in contact with the photoconductive surface. The roller at the pre-nip area is grounded while that at the post-nip area is kept at a desired high potential. Alternatively, a pair of shoes are used for contact charging a photoconductive surface with one of the shoes being grounded and the other being biased to a desired DC potential by a biasing source. A resistive film is in contact with the pair of shoes with both the film and shoes being in contact with the photoconductive surface. Also, a blade is used to uniformly charge a photoconductive surface with one portion of the blade being grounded and another portion being biased to a desired DC potential. The blade is in direct contact with the photoconductive surface. This charging system tailors the electric field so that air breakdown only occurs at the post-nip area.
    • 接触充电系统通过使用围绕并由两个辊移动并与光电导表面接触的电阻带来均匀地对光电导表面进行充电。 在预压区域处的辊接地,而在压区后保持期望的高电位。 或者,一对鞋子用于接触充电感光表面,其中一个鞋子接地,另一个由偏压源偏置到期望的直流电位。 电阻膜与一对鞋子接触,膜和鞋都与光电导表面接触。 此外,刀片用于对光电导表面进行均匀充电,其中一部分刀片接地,另一部分被偏置到期望的DC电位。 刀片与光电导表面直接接触。 这种充电系统可以调整电场,使空气击穿仅发生在压区后。