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    • 2. 发明申请
    • FLUID COUPLER AND A DEVICE ARRANGED WITH THE SAME
    • 流体连接器和与其同样的装置
    • US20080113156A1
    • 2008-05-15
    • US12015676
    • 2008-01-17
    • Peter NystromJohn Andrews
    • Peter NystromJohn Andrews
    • B32B3/10
    • B41J2/1433B41J2/162B41J2/1623B41J2/1632B41J2/1634Y10T428/24322
    • Plural film layers are disposed on a substrate. Each film layer has regions devoid of film material, thus forming film layer cavity openings. Each film layer has its cavities arranged to provide fluid coupling with its adjacent film layer or layers. The film layer cavities form a traverse channel coupling the top and bottom film layers and also one or more lateral channels coupling cavity openings in the top film layer. The film layer traverse channel couples with a substrate channel that extends from the substrate top surface to one or more of its other surfaces. A device such as a fluid dispenser, fluid ejector, sensor or bioprocessing device is disposed on the top film layer and fluidly coupled to the plural film layers traverse and lateral channels. The traverse channel and the one or more lateral channels are arranged to transport or flow one or more fluids.
    • 多个膜层设置在基板上。 每个膜层具有没有膜材料的区域,从而形成膜层空腔开口。 每个膜层具有其空腔,其设置成与其相邻的膜层或多个层提供流体耦合。 膜层空腔形成连接顶部和底部膜层的横向通道以及耦合顶部膜层中的空腔开口的一个或多个侧向通道。 薄膜层与从衬底顶表面延伸到其另一表面的一个或多个的衬底通道横穿通道耦合。 诸如流体分配器,流体喷射器,传感器或生物处理装置的装置设置在顶部薄膜层上并且流体耦合到多个薄膜层横穿和横向通道。 横向通道和一个或多个横向通道被布置成输送或流动一种或多种流体。
    • 9. 发明申请
    • Integrated printhead with polymer structures
    • 集成打印头与聚合物结构
    • US20070076055A1
    • 2007-04-05
    • US11239389
    • 2005-09-30
    • Peter NystromPeter Gulvin
    • Peter NystromPeter Gulvin
    • B41J2/04
    • B41J2/14B41J2/16B41J2/1623B41J2/1628B41J2/1643B41J2002/14491B41J2202/18Y10T29/49401
    • A printhead manufacturing method includes providing a first wafer, forming a polymer layer over the first wafer, the polymer layer including at least one via, providing a metal layer over the at least one via, providing a solderable or plateable interface layer over the metal layer and the polymer layer, forming a fluid chamber in the polymer layer, providing a fluid nozzle in the first wafer, providing a second wafer, and joining the second wafer to the first layer to form the printhead. A printhead that includes a first wafer, a polymer layer over the first wafer, the polymer layer including at least one via, a metal layer over the at least one via, an interface layer over the metal layer and the polymer layer, a fluid chamber formed in the polymer layer, and a fluid chamber formed in the first wafer.
    • 打印头制造方法包括提供第一晶片,在第一晶片上形成聚合物层,所述聚合物层包括至少一个通孔,在所述至少一个通孔上提供金属层,在所述金属层上提供可焊接或可平板化的界面层 聚合物层,在聚合物层中形成流体室,在第一晶片中提供流体喷嘴,提供第二晶片,并将第二晶片连接到第一层以形成打印头。 一种打印头,包括第一晶片,在第一晶片上的聚合物层,聚合物层包括至少一个通孔,在至少一个通孔上的金属层,金属层上的界面层和聚合物层,流体室 形成在聚合物层中,以及形成在第一晶片中的流体室。
    • 10. 发明授权
    • Systems and methods for stitching overlapping swaths
    • 缝合重叠条纹的系统和方法
    • US06540315B1
    • 2003-04-01
    • US10046195
    • 2002-01-16
    • Peter NystromMark CelluraJohn Walsh
    • Peter NystromMark CelluraJohn Walsh
    • B41J2938
    • G06K15/105B41J11/42G06K2215/111
    • System and methods for using a fluid ejection system to distribute fluid drop density of a region between at least two overlapping swaths having pixels on a receiving medium. Using the method, overlapping swaths are stitched together by distributing a fluid ejection pattern between the overlapping swaths within the overlapped region. Because small drops of fluid can be distributed within a single region, the fluid ejection pattern can be controlled and intermediate density regions can be created by distributing the fluid of drops within a region between two fluid ejector heads or between two swaths of the same fluid ejector head. The distribution can be linear or non-linear. Furthermore, overlapping swaths are stitched together by randomly varying a stitch location within the overlapped region. In this case, a stitch location is randomly varied in the slow scan direction.
    • 用于使用流体喷射系统在至少两个在接收介质上具有像素的重叠条带之间分配区域的液滴密度的系统和方法。 使用该方法,通过在重叠区域内的重叠条之间分布流体喷射图案将重叠的条缝合在一起。 由于小滴流体可以分布在单个区域内,所以可以控制流体喷射模式,并且可以通过将液体的流体分布在两个流体喷射头之间的区域内或在相同的流体喷射器的两个条之间分配来产生中间密度区域 头。 分布可以是线性或非线性的。 此外,通过随机改变重叠区域内的缝合位置将重叠的条缝合在一起。 在这种情况下,针迹位置在慢扫描方向上随机变化。