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    • 2. 发明授权
    • Apparatus and method for measuring drop volume
    • 用于测量液滴体积的装置和方法
    • US09096056B2
    • 2015-08-04
    • US13111193
    • 2011-05-19
    • Jing ZhouFusheng XuJames Beachner
    • Jing ZhouFusheng XuJames Beachner
    • G01C15/00B41J2/045
    • B41J2/0458B41J2/0456B41J2/04576
    • A computer-based apparatus, including: a memory element storing computer readable instructions; a processor; and a source element to expel a first plurality of drops of a substance with a known density through a medium, and under a set of conditions. The processor executes the computer readable instructions to calculate uncalibrated volumes for the first plurality of drops using respective images of drops in the first plurality of drops. The source element expels a second plurality of drops of the first substance through the medium, and under the first conditions. The processor executes the computer readable instructions to: calculate, using a weight for the second plurality of drops and the known density, actual volumes for the second plurality of drops; and generate, using uncalibrated volumes and the actual volumes, an equation to modify the uncalibrated volumes to match the actual volumes.
    • 一种基于计算机的装置,包括:存储计算机可读指令的存储元件; 处理器 以及源元件,以通过介质和一组条件排出具有已知密度的第一多个液滴的物质。 所述处理器执行所述计算机可读指令,以使用所述第一多个滴中的液滴的各自的图像来计算所述第一多个液滴的未校准体积。 源元件通过介质排出第二多个第一物质的液滴,并在第一条件下排出。 所述处理器执行所述计算机可读指令,以便:使用所述第二多个液滴的重量和所述已知浓度来计算所述第二多个液滴的实际体积; 并使用未校准的卷和实际卷生成等式来修改未校准的卷以匹配实际卷。
    • 4. 发明申请
    • APPARATUS AND METHOD FOR MEASURING DROP VOLUME
    • 用于测量下垂体积的装置和方法
    • US20120296581A1
    • 2012-11-22
    • US13111193
    • 2011-05-19
    • Jing ZhouFusheng XuJames Beachner
    • Jing ZhouFusheng XuJames Beachner
    • G06F19/00
    • B41J2/0458B41J2/0456B41J2/04576
    • A computer-based apparatus, including: a memory element storing computer readable instructions; a processor; and a source element to expel a first plurality of drops of a substance with a known density through a medium, and under a set of conditions. The processor executes the computer readable instructions to calculate uncalibrated volumes for the first plurality of drops using respective images of drops in the first plurality of drops. The source element expels a second plurality of drops of the first substance through the medium, and under the first conditions. The processor executes the computer readable instructions to: calculate, using a weight for the second plurality of drops and the known density, actual volumes for the second plurality of drops; and generate, using uncalibrated volumes and the actual volumes, an equation to modify the uncalibrated volumes to match the actual volumes.
    • 一种基于计算机的装置,包括:存储计算机可读指令的存储元件; 处理器 以及源元件,以通过介质和一组条件排出具有已知密度的第一多个液滴的物质。 所述处理器执行所述计算机可读指令,以使用所述第一多个滴中的液滴的各自的图像来计算所述第一多个液滴的未校准体积。 源元件通过介质排出第二多个第一物质的液滴,并在第一条件下排出。 所述处理器执行所述计算机可读指令,以便:使用所述第二多个液滴的重量和所述已知浓度来计算所述第二多个液滴的实际体积; 并使用未校准的卷和实际卷生成等式来修改未校准的卷以匹配实际卷。
    • 5. 发明授权
    • Indirect media flatness measurement
    • 间接介质平整度测量
    • US08708450B2
    • 2014-04-29
    • US13554701
    • 2012-07-20
    • Faming LiJing ZhouFusheng XuJack Gaynor Elliot
    • Faming LiJing ZhouFusheng XuJack Gaynor Elliot
    • B41J29/393B41J25/308B41J11/00
    • B41J29/393B41J2/04556B41J11/0035B41J11/0095
    • An indirect media flatness measurement system, and method, by which the appropriate level of hold-down force may be determined with some degree of quantitative accuracy. In an ink jet printer that is operative to subject a substrate media to a hold down force during printing, the method including printing a predetermined test image having a predetermined pattern on a substrate media using an ink jet print apparatus to produce a test print. Optionally, pattern may be an array of test symbols. The test symbol may include a line printed on the substrate media in a direction perpendicular to a process direction of the printer. The test print is compared with the predetermined test image, including measuring drop placement errors of test symbols. The height of the substrate media at the location of each test symbol is calculated based upon the drop placement error.
    • 间接介质平整度测量系统和方法,可以通过某种程度的定量精度确定适当的压力水平。 在喷墨打印机中,其可操作以在印刷期间使基板介质承受压紧力,所述方法包括使用喷墨印刷设备在基板介质上印刷具有预定图案的预定测试图像以产生测试印刷品。 可选地,模式可以是测试符号的数组。 测试符号可以包括在垂直于打印机的处理方向的方向上印刷在基底介质上的线。 将测试打印与预定的测试图像进​​行比较,包括测量测试符号的滴定放置误差。 基于滴定放置误差计算每个测试符号位置处的基底介质的高度。
    • 6. 发明申请
    • INDIRECT MEDIA FLATNESS MEASUREMENT
    • 间接介质平均测量
    • US20140022298A1
    • 2014-01-23
    • US13554701
    • 2012-07-20
    • Faming LiJing ZhouFusheng XuJack Gaynor Elliot
    • Faming LiJing ZhouFusheng XuJack Gaynor Elliot
    • B41J29/393
    • B41J29/393B41J2/04556B41J11/0035B41J11/0095
    • An indirect media flatness measurement system, and method, by which the appropriate level of hold-down force may be determined with some degree of quantitative accuracy. In an ink jet printer that is operative to subject a substrate media to a hold down force during printing, the method including printing a predetermined test image having a predetermined pattern on a substrate media using an ink jet print apparatus to produce a test print. Optionally, pattern may be an array of test symbols. The test symbol may comprise a line printed on the substrate media in a direction perpendicular to a process direction of the printer. The test print is compared with the predetermined test image, including measuring drop placement errors of test symbols. The height of the substrate media at the location of each test symbol is calculated based upon the drop placement error.
    • 间接介质平整度测量系统和方法,可以通过某种程度的定量精度确定适当的压力水平。 在喷墨打印机中,其可操作以在印刷期间使基板介质承受压紧力,所述方法包括使用喷墨印刷设备在基板介质上印刷具有预定图案的预定测试图像以产生测试印刷品。 可选地,模式可以是测试符号的数组。 测试符号可以包括在垂直于打印机的处理方向的方向上印刷在基底介质上的线。 将测试打印与预定测试图像进​​行比较,包括测量测试符号的滴定放置误差。 基于滴定放置误差计算每个测试符号位置处的基底介质的高度。
    • 7. 发明授权
    • Pre-treatment methods, apparatus, and systems for contact leveling radiation curable gel inks
    • 预处理方法,设备和系统,用于接触平整辐射固化凝胶油墨
    • US08646877B2
    • 2014-02-11
    • US13249169
    • 2011-09-29
    • Michael D. ThompsonFusheng XuAnthony S. Condello
    • Michael D. ThompsonFusheng XuAnthony S. Condello
    • B41J2/14B41J2/16
    • B41M5/0011B41J11/002B41M7/0081
    • A radiation curable gel ink printing system is provided that includes a radiation source configured to emit UV light having short wavelength components. The disclosed systems and methods transport a substrate having radiation curable gel ink deposited thereon to the radiation source to expose the ink to the radiation source. The exposure at the radiation source may be continuous or pulsed. The radiation source may be configured a distance away from the radiation curable gel ink deposited on the substrate. The radiation source pre-treats the radiation curable gel ink before spreading the radiation curable gel ink at a contact-leveling nip at which a contact member applies pressure to the partially cured radiation curable gel ink against the substrate. The radiation curable gel ink is preferentially cured to allow spreading of the radiation curable ink by the contact member while limiting offset of the ink onto the contact member.
    • 提供了一种可辐射固化凝胶油墨印刷系统,其包括被配置为发射具有短波长分量的UV光的辐射源。 所公开的系统和方法将具有沉积在其上的可辐射固化凝胶油墨的基板输送到辐射源,以将油墨暴露于辐射源。 在辐射源处的曝光可以是连续的或脉冲的。 辐射源可以配置为远离沉积在基底上的可辐射固化凝胶油墨的距离。 辐射源预先处理可辐射固化的凝胶油墨,然后将辐射可固化凝胶油料铺展在接触平整的辊隙处,在接触辊隙处接触构件将压力施加到基底上的部分固化的可辐射固化的凝胶油墨。 可辐射固化的凝胶油墨优先固化以允许通过接触构件扩散可辐射固化油墨,同时限制油墨到接触构件上的偏移。