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    • 1. 发明授权
    • Fluidic structures
    • 流体结构
    • US07517043B2
    • 2009-04-14
    • US11014356
    • 2004-12-16
    • John S. FitchScott ElrodJurgen DanielJames W. StasiakSteven A. BuhlerBabur B. HadimiogluJoy RoyMichael C. WeisbergJames C. Zesch
    • John S. FitchScott ElrodJurgen DanielJames W. StasiakSteven A. BuhlerBabur B. HadimiogluJoy RoyMichael C. WeisbergJames C. Zesch
    • B41J2/015
    • B01L3/0268B01L2200/12B01L2300/0819B01L2400/0433B01L2400/0605B01L2400/084
    • Various fluidic techniques can employ ducting structures, such as microstructures, that extend between other components, such as plate-like structures. A ducting structure can, for example, include an inlet opening toward or near one plate-like structure, an outlet opening toward or near another plate-like structure, and a duct in which fluid flows after being received through the inlet opening and before being provided through the outlet opening. In some implementations, a ducting structure is photo-defined, such as by exposing a photoimageable structure and then removing either exposed or unexposed regions. In some implementations, a ducting structure is a freestanding polymer microstructure. In some implementations, ducting structures are microstructures that extend approximately the same length between first and second plate-like structures, and have a ratio of length to maximum cavity diameter of approximately two or more. A printhead implementation includes an array of such microstructures supported between drive side and drop side assemblies.
    • 各种流体技术可以采用在诸如板状结构的其他部件之间延伸的管道结构,例如微结构。 管道结构可以例如包括朝向或靠近一个板状结构的入口开口,朝向或接近另一个板状结构的出口,以及在通过入口开口之后流体流动的管道 通过出口开口提供。 在一些实施方案中,管道结构是光限定的,例如通过曝光可光成像的结构,然后去除暴露或未曝光的区域。 在一些实施方案中,管道结构是独立的聚合物微结构。 在一些实施方案中,管道结构是在第一和第二板状结构之间延伸大致相同长度的微结构,并且具有大约两个或更多个长度与最大腔直径的比率。 打印头实现包括支撑在驱动侧和液滴侧组件之间的这种微结构的阵列。
    • 2. 发明授权
    • Fabrication process for acoustic lens array for use in ink printing
    • 用于油墨印刷的声透镜阵列的制造工艺
    • US06200491B1
    • 2001-03-13
    • US09274846
    • 1999-03-23
    • James C. ZeschCalvin F. Quate
    • James C. ZeschCalvin F. Quate
    • G01D1516
    • B41J2/14008
    • An acoustic lens array fabrication process includes the formation of a microlens array mold stamper through the melting of a photoresist resin deposited on formed pedestals of a substrate. Heating of the resin causes formation of semi-spherical photoresist mounds. A further processing step, such as reactive ion etching, is used to transfer the geometry of the photoresist mounds to the substrate material, thereby forming a microlens mold stamper with convex mounds. The microlens mold stamper is then pressed into an upper surface of a acoustic ink print head substrate heated to a predetermined temperature, allowing the convex mounds to form concave impressions in the acoustic ink print head substrate, thereby forming the microlens array.
    • 声透镜阵列制造工艺包括通过熔化沉积在基底的形成的基座上的光致抗蚀剂树脂来形成微透镜阵列模具压模。 树脂的加热导致半球形光致抗蚀剂沉积物的形成。 使用诸如反应离子蚀刻的另外的处理步骤将光致抗蚀剂沉积物的几何形状转移到基底材料,从而形成具有凸丘的微透镜模具模具。 然后将微透镜模具压入加热到预定温度的声学墨水打印头基板的上表面,允许凸起的凹凸在声学墨水打印头基底中形成凹形的印模,从而形成微透镜阵列。