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    • 3. 发明申请
    • MAXIMIZING SPEED TOLERANCE DURING DUAL ENGINE SYNCHRONIZATION
    • 在双引擎同步期间最大化速度公差
    • US20100296128A1
    • 2010-11-25
    • US12470511
    • 2009-05-22
    • Timothy J. YoungDavid J. FuestRonald W. StephensDonald J. Lewandoski
    • Timothy J. YoungDavid J. FuestRonald W. StephensDonald J. Lewandoski
    • H04N1/36
    • G03G15/238G03G15/5008G03G2215/00021
    • A method of improving the synchronization of the timing of a plurality of physically coupled print engines by detecting and eliminating misleading indications of a non-synchronized print engine that are essentially minimal variations caused by disturbances to the printer such as torque disturbances, power line voltage or frequency variations, etc. using a chosen number of consecutive changes in the time delay to result in the time delay of the receiver being handed off from one engine or module to a sequential engine or module before a machine error is declared. This method notes that a speed variation is sufficiently large or if a signal is reported that a module, operating within its speed specifications but near the end the limit of that specification, had been subjected to a small incremental change in module speed resulting in that module operating outside its specifications and takes corrective actions or not depending on the magnitude and or source of the variation.
    • 一种通过检测和消除非同步打印引擎的误导性指示来改善多个物理耦合的打印引擎的定时同步的方法,其基本上由打印机的干扰引起的基本上最小的变化,例如扭矩扰动,电力线电压或 频率变化等,使用时间延迟中所选数量的连续变化,导致在宣告机器错误之前接收机从一个发动机或模块切换到顺序发动机或模块的时间延迟。 该方法指出,速度变化足够大,或者如果报告信号,在其速度规格内操作但接近该规格限制的模块已经经受了模块速度的小的增量变化,导致该模块 在其规格之外运行,并根据变化的幅度和来源采取纠正措施。
    • 4. 发明授权
    • Maximizing speed tolerance during dual engine synchronization
    • 在双引擎同步期间最大化速度公差
    • US08427705B2
    • 2013-04-23
    • US12470511
    • 2009-05-22
    • Timothy J. YoungDavid J. FuestRonald W. StephensDonald J. Lewandoski
    • Timothy J. YoungDavid J. FuestRonald W. StephensDonald J. Lewandoski
    • H04N1/40
    • G03G15/238G03G15/5008G03G2215/00021
    • A method of improving the synchronization of the timing of a plurality of physically coupled print engines by detecting and eliminating misleading indications of a non-synchronized print engine that are essentially minimal variations caused by disturbances to the printer such as torque disturbances, power line voltage or frequency variations, etc. using a chosen number of consecutive changes in the time delay to result in the time delay of the receiver being handed off from one engine or module to a sequential engine or module before a machine error is declared. This method notes that a speed variation is sufficiently large or if a signal is reported that a module, operating within its speed specifications but near the end the limit of that specification, had been subjected to a small incremental change in module speed resulting in that module operating outside its specifications and takes corrective actions or not depending on the magnitude and or source of the variation.
    • 一种通过检测和消除非同步打印引擎的误导性指示来改善多个物理耦合的打印引擎的定时同步的方法,其基本上由打印机的干扰引起的基本上最小的变化,例如扭矩扰动,电力线电压或 频率变化等,使用时间延迟中所选数量的连续变化,导致在宣告机器错误之前接收机从一个发动机或模块切换到顺序发动机或模块的时间延迟。 该方法指出,速度变化足够大,或者如果报告信号,在其速度规格内操作但接近该规格限制的模块已经经受了模块速度的小的增量变化,导致该模块 在其规格之外运行,并根据变化的幅度和来源采取纠正措施。
    • 5. 发明授权
    • Method for print engine synchronization
    • 打印引擎同步方法
    • US08099009B2
    • 2012-01-17
    • US12126192
    • 2008-05-23
    • Timothy J. YoungDavid J. FuestMichael T. DobbertinChristopher B. Liston
    • Timothy J. YoungDavid J. FuestMichael T. DobbertinChristopher B. Liston
    • G03G15/00G03G15/22G03G21/00
    • G03G15/238G03G15/5008G03G2215/00021
    • A print engine synchronization method enables the movement of a first print engine dielectric support member (DSM) having one or more image frames as well as the movement of a second print engine DSM having one or more image frames by monitoring a first frame signal from the moving first print engine DSM and a second frame signal from the moving second print engine DSM. An offset is determined for each of corresponding pairs of frames from the one or more image frames of the first and second print engine DSM and the determined offset for each corresponding pair of frames is compared to a target offset to maintain synchronization between the first and second print engines on a frame by frame basis by adjusting a second print engine DSM velocity based on the comparison of the determined offset and the target offset.
    • 打印引擎同步方法通过监视具有一个或多个图像帧的第一帧信号以及具有一个或多个图像帧的第二打印引擎DSM的移动来实现具有一个或多个图像帧的第一打印引擎电介质支撑构件(DSM)的移动, 移动第一打印引擎DSM和来自移动的第二打印引擎DSM的第二帧信号。 对于来自第一和第二打印引擎DSM的一个或多个图像帧的每个相应的帧对确定偏移,并且将每个对应的帧对的所确定的偏移量与目标偏移进行比较,以保持第一和第二打印引擎 通过基于所确定的偏移和目标偏移的比较来调整第二打印引擎DSM速度,逐帧地打印引擎。
    • 6. 发明授权
    • Print engine synchronization system and apparatus
    • 打印引擎同步系统和设备
    • US08180242B2
    • 2012-05-15
    • US12126267
    • 2008-05-23
    • Timothy J. YoungDavid J. FuestMichael T. DobbertinChristopher B. Liston
    • Timothy J. YoungDavid J. FuestMichael T. DobbertinChristopher B. Liston
    • G03G15/00G03G15/22G03G21/00
    • G03G15/238G03G15/5008G03G2215/00021
    • A print engine synchronization system apparatus enables the movement of a first print engine dielectric support member (DSM) having one or more image frames as well as the movement of a second print engine DSM having one or more image frames by monitoring a first frame signal from the moving first print engine DSM and a second frame signal from the moving second print engine DSM. An offset is determined for each of corresponding pairs of frames from the one or more image frames of the first and second print engine DSM and the determined offset for each corresponding pair of frames is compared to a target offset to maintain synchronization between the first and second print engines on a frame by frame basis by adjusting a second print engine DSM velocity based on the comparison of the determined offset and the target offset.
    • 打印引擎同步系统装置能够通过监视具有一个或多个图像帧的第一打印引擎DSM的第一帧信号来移动具有一个或多个图像帧的第一打印引擎电介质支撑构件(DSM)以及具有一个或多个图像帧的第二打印引擎DSM的移动, 移动的第一打印引擎DSM和来自移动的第二打印引擎DSM的第二帧信号。 对于来自第一和第二打印引擎DSM的一个或多个图像帧的每个相应的帧对确定偏移,并且将每个对应的帧对的所确定的偏移量与目标偏移进行比较,以保持第一和第二打印引擎 通过基于所确定的偏移和目标偏移的比较来调整第二打印引擎DSM速度,逐帧地打印引擎。
    • 7. 发明申请
    • PRINT ENGINE SYNCHRONIZATION SYSTEM AND APPARATUS
    • 打印发动机同步系统和装置
    • US20090290896A1
    • 2009-11-26
    • US12126267
    • 2008-05-23
    • Timothy J. YoungDavid J. FuestMichael T. DobbertinChristopher B. Liston
    • Timothy J. YoungDavid J. FuestMichael T. DobbertinChristopher B. Liston
    • G03G15/00
    • G03G15/238G03G15/5008G03G2215/00021
    • A print engine synchronization system apparatus enables the movement of a first print engine dielectric support member (DSM) having one or more image frames as well as the movement of a second print engine DSM having one or more image frames by monitoring a first frame signal from the moving first print engine DSM and a second frame signal from the moving second print engine DSM. An offset is determined for each of corresponding pairs of frames from the one or more image frames of the first and second print engine DSM and the determined offset for each corresponding pair of frames is compared to a target offset to maintain synchronization between the first and second print engines on a frame by frame basis by adjusting a second print engine DSM velocity based on the comparison of the determined offset and the target offset.
    • 打印引擎同步系统装置能够通过监视具有一个或多个图像帧的第一打印引擎DSM的第一帧信号来移动具有一个或多个图像帧的第一打印引擎电介质支撑构件(DSM)以及具有一个或多个图像帧的第二打印引擎DSM的移动, 移动的第一打印引擎DSM和来自移动的第二打印引擎DSM的第二帧信号。 对于来自第一和第二打印引擎DSM的一个或多个图像帧的每个相应的帧对确定偏移,并且将每个对应的帧对的所确定的偏移量与目标偏移进行比较,以保持第一和第二打印引擎 通过基于所确定的偏移和目标偏移的比较来调整第二打印引擎DSM速度,逐帧地打印引擎。
    • 8. 发明申请
    • METHOD FOR PRINT ENGINE SYNCHRONIZATION
    • 打印引擎同步的方法
    • US20090290895A1
    • 2009-11-26
    • US12126192
    • 2008-05-23
    • Timothy J. YoungDavid J. FuestMichael T. DobbertinChristopher B. Liston
    • Timothy J. YoungDavid J. FuestMichael T. DobbertinChristopher B. Liston
    • G03G15/00
    • G03G15/238G03G15/5008G03G2215/00021
    • A print engine synchronization method enables the movement of a first print engine dielectric support member (DSM) having one or more image frames as well as the movement of a second print engine DSM having one or more image frames by monitoring a first frame signal from the moving first print engine DSM and a second frame signal from the moving second print engine DSM. An offset is determined for each of corresponding pairs of frames from the one or more image frames of the first and second print engine DSM and the determined offset for each corresponding pair of frames is compared to a target offset to maintain synchronization between the first and second print engines on a frame by frame basis by adjusting a second print engine DSM velocity based on the comparison of the determined offset and the target offset.
    • 打印引擎同步方法通过监视具有一个或多个图像帧的第一帧信号以及具有一个或多个图像帧的第二打印引擎DSM的移动来实现具有一个或多个图像帧的第一打印引擎电介质支撑构件(DSM)的移动, 移动第一打印引擎DSM和来自移动的第二打印引擎DSM的第二帧信号。 对于来自第一和第二打印引擎DSM的一个或多个图像帧的每个相应的帧对确定偏移,并且将每个对应的帧对的所确定的偏移量与目标偏移进行比较,以保持第一和第二打印引擎 通过基于所确定的偏移和目标偏移的比较来调整第二打印引擎DSM速度,逐帧地打印引擎。
    • 9. 发明申请
    • COATING COMPOSITION, AND A PROCESS FOR PRODUCING THE SAME
    • 涂料组合物及其制造方法
    • US20140024742A1
    • 2014-01-23
    • US14009634
    • 2011-04-08
    • Charles S. KanRebecca S. OrtizJohn A. Roper, IIIJane Elizabeth WeierTimothy J. YoungGary E. SpilmanRay E. Drumright
    • Charles S. KanRebecca S. OrtizJohn A. Roper, IIIJane Elizabeth WeierTimothy J. YoungGary E. SpilmanRay E. Drumright
    • C09D167/00C09D163/00
    • C09D167/00C09D123/00C09D163/00C09D167/08C08L23/00C08L75/04C08L67/00C08L63/00
    • The present invention provides a coating composition, a process for producing the same, one or more coating layers derived therefrom, and articles comprising one or more such coating layers. The coating composition according to the present invention comprises: (a) from 10 to 90 percent by weight of an aqueous, high-solid, solvent-free alkyd dispersion comprising: (i) from 40 to 70 percent by weight of one or more alkyds based on the total weight of the dispersion, wherein each said one or more alkyds has an acid value of less than 20 and a molecular weight (Mn) in the range of greater than 1000 Dalton; (ii) from less than 10 percent by weight of one or more surfactants, based on the total weight of the dispersion; and (iii) from 30 to 55 percent by weight of water, based on the total weight of the dispersion; wherein said aqueous, high-solid, solvent-free alkyd dispersion has an average particle size diameter in the range of from 0.05 to 5 μm; (b) from 10 to 90 one or more second dispersions, one or more second emulsions, or combinations thereof; wherein said coating composition has a solid content of in the range of from 25 to 65 percent by weight of solid content, based on the total weight of the coating composition, and the coating composition has a pH in the range of from 7 to 11, and wherein the coating composition has a volume average particle size in the range of from 0.03 to 5 μm, and wherein the coating composition has a viscosity in the range of from 100 to 10,000 cP.
    • 本发明提供一种涂料组合物,其制备方法,由其衍生的一种或多种涂层,以及包含一种或多种这样的涂层的制品。 根据本发明的涂料组合物包含:(a)10至90重量%的水性,高固体,无溶剂的醇酸树脂分散体,其包含:(i)40至70重量%的一种或多种醇酸树脂 基于分散体的总重量,其中每个所述一种或多种醇酸树脂的酸值小于20,分子量(Mn)在大于1000道尔顿范围内; (ii)基于分散体的总重量,少于10重量%的一种或多种表面活性剂; 和(iii)基于分散体的总重量的30至55重量%的水; 其中所述水性,高固体,无溶剂的醇酸树脂分散体的平均粒度直径为0.05-5μm; (b)10至90个一种或多种第二分散体,一种或多种第二乳液或其组合; 其中所述涂料组合物的固体含量为固体含量的25至65重量%,基于涂料组合物的总重量,并且涂料组合物的pH为7至11, 并且其中所述涂料组合物的体积平均粒度在0.03至5μm的范围内,并且其中所述涂料组合物具有在100至10,000cP范围内的粘度。