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    • 21. 发明申请
    • 作业设置的“证明打印”
    • US20090021757A1
    • 2009-01-22
    • US11879391
    • 2007-07-16
    • Yue LiuKurt Knodt
    • Yue LiuKurt Knodt
    • G06F3/12
    • G06F3/1259G06F3/1207G06F3/121G06F3/1244G06F3/1255G06F3/1285
    • According to techniques described herein, print job attributes are checked to identify potential conflicts and potential invalid settings. According to one embodiment of the invention, a job setting manager process executing on a printing device is configured to examine and store print job attributes as detected by print interpreter modules. According to an embodiment of the invention, the job setting manager maintains a data structure comprising print job attributes, their values, and other information. As each interpreter module detects a job setting in the print data, the job setting manager receives this setting and its value and checks the data structure to identify conflicts between previously-set job attributes and whether the requested job attribute is supported by the destination printing device. According to an embodiment of the invention, if a conflict is identified, a notification is produced.
    • 根据本文描述的技术,检查打印作业属性以识别潜在的冲突和潜在的无效设置。 根据本发明的一个实施例,在打印设备上执行的作业设置管理器处理被配置为检查和存储由打印解释器模块检测到的打印作业属性。 根据本发明的实施例,作业设置管理器维护包括打印作业属性,其值和其他信息的数据结构。 当每个解释器模块检测到打印数据中的作业设置时,作业设置管理器接收该设置及其值并检查数据结构以识别先前设置的作业属性之间的冲突以及所请求的作业属性是否被目的地打印设备支持 。 根据本发明的实施例,如果识别出冲突,则产生通知。
    • 24. 发明申请
    • Non-postscript printer description file generating tool
    • 非postscript打印机描述文件生成工具
    • US20070195352A1
    • 2007-08-23
    • US11361138
    • 2006-02-23
    • Yue Liu
    • Yue Liu
    • G06F3/12
    • G06F3/1288G06F3/1206G06F3/1248G06F3/1286
    • A method for automatically generating a custom printer description file is disclosed. The custom printer description file enables a computer's printing system to insert, into a print data stream, commands (e.g., PCL, PJL, JCL, JDF, or PJTF commands) that cause a non-Postscript-enabled printing device (e.g., a non-Postscript printer) to perform operations in accordance with a user's specified desires. The custom printer description file is automatically generated based on an existing PPD file, which already indicates the features that the user's printing device supports. According to one aspect, an automated tool reads both an existing PPD file and translation data. Using the translation data, the automated tool generates a custom printer description file that contains appropriate non-Postscript commands for each feature/option combination that the printing device supports.
    • 公开了一种自动生成定制打印机描述文件的方法。 自定义打印机描述文件使得计算机的打印系统能够将打印数据流插入到不启用Postscript的打印设备(例如,非打印机)中的命令(例如,PCL,PJL,JCL,JDF或PJTF命令) -Postscript打印机)按照用户指定的要求执行操作。 基于现有的PPD文件自动生成自定义打印机描述文件,PPD文件已经指示用户的打印设备支持的功能。 根据一个方面,自动工具读取现有的PPD文件和翻译数据。 使用翻译数据,自动化工具会为打印设备支持的每个功能/选项组合生成一个自定义打印机描述文件,其中包含适当的非Postscript命令。
    • 28. 发明申请
    • CPP GMR and magnetostriction improvement by laminating Co90Fe10 free layer with thin Fe50Co50 layers
    • 通过层压具有薄Fe50Co50层的Co90Fe10自由层的CPP GMR和磁致伸缩改进
    • US20050186452A1
    • 2005-08-25
    • US10786806
    • 2004-02-25
    • Kunliang ZhangMin LiRachid SbiaaSimon LiaoYue Liu
    • Kunliang ZhangMin LiRachid SbiaaSimon LiaoYue Liu
    • G11B5/39G11B5/127H01F10/16H01F10/32H01L43/08
    • G11B5/3903Y10T428/1121Y10T428/1143Y10T428/115
    • A current-perpendicular-to-plane (CPP) giant magnetoresistive (GMR) sensor of the synthetic spin valve type and its method of formation are disclosed, the sensor including a novel laminated free layer having ultra-thin (less than 3 angstroms thickness) laminas of Fe50 Co50 (or any iron rich alloy of the form CoxFe1-x with x between 0.25 and 0.75) interspersed with thicker layers of Co90Fe10 and Cu spacer layers to produce a free layer with good coercivity, a coefficient of magnetostriction that can be varied between positive and negative values and a high GMR ratio, due to enhancement of the bulk scattering coefficient by the laminas. The configuration of the lamina and layers in periodic groupings allow the coefficient of magnetostriction to be finely adjusted and the coercivity and GMR ratio to be optimized. The sensor performance can be further improved by including layers of Cu and Fe50Co50 in the synthetic antiferromagnetic pinned layer.
    • 公开了合成自旋阀型的电流垂直平面(CPP)巨磁阻(GMR)传感器及其形成方法,该传感器包括具有超薄(小于3埃厚度)的新型层叠自由层, Fe O 50 Co 50(或任何形式为Fe x Fe 1-x x的任何富含铁的合金)的薄片与 x在0.25和0.75之间)散布有较厚层的Co 90 N 10 N 10和Cu间隔层,以产生具有良好矫顽力的自由层,可以变化的磁致伸缩系数 在正值和负值之间,高GMR比,由于片层散体系的增强。 周期性分组中的薄层和层的配置允许精细调节磁致伸缩系数,并优化矫顽力和GMR比。 通过在合成的反铁磁性钉扎层中包含Cu和Fe 50 Co 50层,可以进一步提高传感器性能。