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    • 34. 发明申请
    • LIQUID EJECTION WITH ON-CHIP DEFLECTION AND COLLECTION
    • 液滴喷射与片上偏移和收集
    • US20130286109A1
    • 2013-10-31
    • US13456537
    • 2012-04-26
    • Yonglin XieQing Yang
    • Yonglin XieQing Yang
    • B41J2/09
    • B41J2/09B41J2/185
    • A printhead includes a substrate, catcher, and monolithic liquid jetting structure including a nozzle and deflection mechanism. A liquid jet is ejected through the nozzle in a direction substantially parallel to a first surface of the substrate. The nozzle includes material layers formed on the first surface of the substrate. At least one of the material layers of the nozzle includes a drop forming mechanism actuated to form liquid drops from the liquid jet. The deflection mechanism is associated with the liquid jet and deflects portions of the liquid jet between first and second paths. The liquid drops formed from portions of the liquid jet following the first path and second path continue to follow the first path and second path, respectively. The catcher includes a liquid drop contact surface including a portion of the first surface of the substrate and collects liquid drops following the second path.
    • 打印头包括基板,捕集器和包括喷嘴和偏转机构的单片液体喷射结构。 液体射流沿基本上平行于基底的第一表面的方向通过喷嘴喷射。 喷嘴包括形成在基板的第一表面上的材料层。 喷嘴的至少一个材料层包括被致动以从液体射流形成液滴的液滴形成机构。 偏转机构与液体射流相关联并且使第一和第二路径之间的液体射流的部分偏转。 从第一路径和第二路径之后的液体喷射部分形成的液滴分别继续沿着第一路径和第二路径。 捕集器包括液滴接触表面,其包括基板的第一表面的一部分并且在第二路径之后收集液滴。
    • 35. 发明申请
    • LIQUID EJECTION WITH ON-CHIP DEFLECTION AND COLLECTION
    • 液滴喷射与片上偏移和收集
    • US20130286108A1
    • 2013-10-31
    • US13456520
    • 2012-04-26
    • Yonglin XieQing Yang
    • Yonglin XieQing Yang
    • B41J2/09
    • B41J2/09B41J2/185
    • A printhead includes a substrate and monolithic liquid jetting structure including a nozzle, deflection mechanism, and catcher. The nozzle, through which a liquid jet is ejected in a direction substantially parallel to a first surface of the substrate, includes material layers formed on the first surface of the substrate. At least one of the material layers of the nozzle includes a drop forming mechanism actuated to form liquid drops from the liquid jet. The deflection mechanism is associated with the liquid jet and deflects portions of the liquid jet between first and second paths. Liquid drops formed from portions of the liquid jet following the first path and the second path continue to follow the first path and the second path, respectively. The catcher, including a material layer formed on the first surface of the substrate, collects liquid drops following one of the paths.
    • 打印头包括基板和包括喷嘴,偏转机构和捕集器的单片液体喷射结构。 在基本上平行于基板的第一表面的方向上喷射液体喷嘴的喷嘴包括在基板的第一表面上形成的材料层。 喷嘴的至少一个材料层包括被致动以从液体射流形成液滴的液滴形成机构。 偏转机构与液体射流相关联并且使第一和第二路径之间的液体射流的部分偏转。 在第一路径和第二路径之后的液体喷射部分形成的液滴分别继续沿着第一路径和第二路径。 捕获器,包括形成在基板的第一表面上的材料层,按照其中一条路径收集液滴。
    • 36. 发明授权
    • Dispensing liquid using vertical outlet opening wall
    • 使用垂直出口开口壁分配液体
    • US08567933B2
    • 2013-10-29
    • US12911783
    • 2010-10-26
    • Yonglin XieQing Yang
    • Yonglin XieQing Yang
    • B41J2/18B41J2/05B41J2/175
    • B41J2/1404B41J2/1433B41J2202/12
    • A liquid dispenser is provided that includes a liquid supply channel, a liquid dispensing channel, and a liquid return channel. The liquid dispensing channel includes a wall. The wall includes a surface. A portion of the wall defines an outlet opening that includes a downstream edge relative to a direction of liquid flow through the liquid dispensing channel. The downstream edge is perpendicular to the surface of the wall of the liquid dispensing channel. A liquid is provided that flows from the liquid supply channel through the liquid dispensing channel to the liquid return channel. A liquid drop is caused to be ejected from the outlet opening of the liquid dispensing channel by selectively actuating a diverter member to divert a portion of the flowing liquid through the outlet opening of the liquid dispensing channel.
    • 提供了一种液体分配器,其包括液体供应通道,液体分配通道和液体返回通道。 液体分配通道包括壁。 墙壁包括一个表面。 壁的一部分限定出口开口,其包括相对于流过液体分配通道的液体流动方向的下游边缘。 下游边缘垂直于液体分配通道的壁的表面。 提供从液体供应通道通过液体分配通道流到液体返回通道的液体。 通过选择性地致动分流器构件以使流动的液体的一部分通过液体分配通道的出口开口而使液滴从液体分配通道的出口开口排出。
    • 37. 发明申请
    • OPTIMIZING SIGNATURE COMPUTATION AND SAMPLING FOR FAST ADAPTIVE SIMILARITY DETECTION BASED ON ALGORITHM-SPECIFIC PERFORMANCE
    • 基于算法特性的快速自适应相似检测的优化签名计算和采样
    • US20130243190A1
    • 2013-09-19
    • US13615422
    • 2012-09-13
    • Qing YangPulkit Misra
    • Qing YangPulkit Misra
    • H04L9/08
    • G06F12/0866G06F3/0611G06F3/0613G06F3/0616G06F3/0659G06F3/0679G06F3/068G06F2212/214G06F2212/401H04L9/0816
    • A set of similarity detection algorithms and techniques for determining which signature calculation, sampling, and generation algorithms may be most beneficially applied to application related data are described herein. These algorithms work well with SSD caching software to product high speed, high accuracy, and low false-positive detections. Because the different algorithms may show different performance depending on data sets and different applications, to achieve optimal performance, a calibration process may be applied to each application and associated data set to select the best combination of signature computation and sampling technique. The new algorithms are also very fast with execution times an order of magnitude smaller than existing techniques. While some of the algorithms are presented using examples for the purpose of easy readability, these algorithms are very general and can be easily applied to broad range of cases.
    • 这里描述了一组用于确定哪个签名计算,采样和生成算法最有利地应用于应用相关数据的相似性检测算法和技术。 这些算法可以很好地与SSD缓存软件一起工作,以产生高速,高精度和低假阳性检测。 由于不同的算法可能会根据数据集和不同的应用程序显示不同的性能,为了实现最佳性能,可以将校准过程应用于每个应用程序和相关数据集,以选择签名计算和采样技术的最佳组合。 新算法也非常快,执行时间比现有技术小一个数量级。 虽然为了易于阅读而使用示例来呈现一些算法,但是这些算法是非常通用的,并且可以容易地应用于广泛的情况。