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    • 36. 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。
    • 40. 发明申请
    • HEATING ELEMENT INCORPORATING AN ARRAY OF TRANSISTOR MICRO-HEATERS FOR DIGITAL IMAGE MARKING
    • 加热元件用于数字图像标记的晶体管微加热器阵列
    • US20100302337A1
    • 2010-12-02
    • US12474717
    • 2009-05-29
    • Jing ZhouKock-Yee Law
    • Jing ZhouKock-Yee Law
    • B41J2/335
    • G03G15/2014B41M7/009
    • The exemplary embodiments disclosed herein incorporate transistor heating technology to create micro-heater arrays as the digital heating element for various marking applications. The transistor heaters are typically fabricated either on a thin flexible substrate or on an amorphous silicon drum and embedded below the working surface. Matrix drive methods may be used to address each individual micro-heater and deliver heat to selected surface areas. Depending on different marking applications, the digital heating element may be used to selectively tune the wettability of thermo-sensitive coating, selectively change ink rheology, selectively remove liquid from the surface, selectively fuse/fix toner/ink on the paper.
    • 本文公开的示例性实施例包括晶体管加热技术以创建微加热器阵列作为用于各种标记应用的数字加热元件。 晶体管加热器通常制造在薄柔性基板上或非晶硅鼓上,并嵌入在工作表面下方。 矩阵驱动方法可用于解决每个单独的微加热器并将热量传递到选定的表面区域。 根据不同的标记应用,数字加热元件可用于选择性地调节热敏涂层的润湿性,选择性地改变油墨流变性,从表面选择性地去除液体,选择性地将调色剂/墨水熔合/固定在纸上。