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    • 1. 发明授权
    • Method for attaching a fluid container to a fluid ejector in a fluid ejection device
    • 将流体容器附接到流体喷射装置中的流体喷射器的方法
    • US07294223B2
    • 2007-11-13
    • US10766008
    • 2004-01-29
    • Brian S. HiltonEric A. MerzTakatoshi TsuchiyaHiroki Murakami
    • Brian S. HiltonEric A. MerzTakatoshi TsuchiyaHiroki Murakami
    • B29C65/00
    • B41J2/17513B41J2/17509Y10T156/1043
    • A method for joining fluid containers and fluid ejectors in a fluid ejecting device are provided. The fluid container includes one or more heat stakes and a substrate includes one or more apertures for receiving the heat stakes and one or more three-dimensional features in the vicinity of the one or more apertures. The fluid ejector and optionally an elastic member are interposed between the fluid container and the substrate. Thermal energy is applied to the one or more heat stakes so that the one or more heat stakes soften to occupy the apertures and three-dimensional features of the substrate and pressure is applied to maintain contact between the fluid container, elastic member, fluid ejector and substrate. The present invention is also directed to substrate including one or more apertures for receiving heat stakes and one or more three-dimensional features in the vicinity of the one or more apertures.
    • 提供了一种在流体喷射装置中连接流体容器和流体喷射器的方法。 流体容器包括一个或多个热桩,并且衬底包括用于接收热桩的一个或多个孔和一个或多个孔附近的一个或多个三维特征。 流体喷射器和可选地弹性构件插入在流体容器和基底之间。 将热能施加到一个或多个热桩上,使得一个或多个热桩软化以占据孔,并且施加衬底的三维特征并施加压力以保持流体容器,弹性构件,流体喷射器和 基质。 本发明还涉及包括用于接收热桩的一个或多个孔和在一个或多个孔附近的一个或多个三维特征的衬底。
    • 4. 发明授权
    • Systems and methods for vent path leakage prevention
    • 排气通道泄漏防护系统和方法
    • US07172272B2
    • 2007-02-06
    • US10721353
    • 2003-11-26
    • Takatoshi TsuchiyaEric A. MerzKazuyuki OdaBrian S. Hilton
    • Takatoshi TsuchiyaEric A. MerzKazuyuki OdaBrian S. Hilton
    • B41J2/175
    • B41J2/17523B41J2/17513B41J2/17553
    • A fluid ejection container system provides a first container that contains the fluid, the first container being evacuated to negative gauge pressure when being filled with the fluid, a second container having a capillary medium that contains the fluid, a passage between the first and second containers communicating the fluid at a level wherein the passage is wetted with the fluid, a ventilation port to communicate air between an interior region in the fluid ejection system and ambient, at least one spill over region to communicate the fluid with the second container, and a plurality of channels to communicate at least the air between the interior region and the second container; wherein the at least one spill over region has sufficient volume to contain a quantity of the fluid that migrates out of the second container. The fluid ejection container system also provides a lid for sealing the first and second containers from the ambient, wherein the channels are disposed on the lid.
    • 流体喷射容器系统提供容纳流体的第一容器,当填充流体时第一容器被抽空至负表压;具有容纳流体的毛细管介质的第二容器,第一和第二容器之间的通道 在流体与流体接触的水平面上传送流体;通气口,用于在流体喷射系统的内部区域和环境之间连通空气,至少一个溢出区域以使流体与第二容器连通;以及 多个通道以至少使内部区域和第二容器之间的空气连通; 其中所述至少一个溢出区域具有足够的体积以容纳从第二容器迁出的一定量的流体。 流体喷射容器系统还提供用于将第一和第二容器与环境密封的盖,其中通道设置在盖上。
    • 5. 发明授权
    • Printer with printhead fully traveling around drive belt loop
    • 带打印头的打印机完全绕传动带环路传播
    • US07134736B2
    • 2006-11-14
    • US10752721
    • 2004-01-08
    • Eric A. MerzBrian S. Hilton
    • Eric A. MerzBrian S. Hilton
    • B41J29/38
    • B41J19/005
    • A drive assembly for a printer includes an endless loop drive path and guide structure that allows a printhead to operate in either reciprocal or endless loop modes in which the printed traverse both a liner and an arcuate portion of the drive path. This provides a printer architecture in which a printhead may be endlessly driven at a constant speed in one direction to provide multiple print swaths separated spatially. This eliminates the need for deceleration/acceleration changes required in reciprocal printer architectures and is capable of increased throughput by defining arcuate turnaround zones that can be traversed by the printhead faster than the time it takes to slow, stop and reverse a conventional reciprocal printhead assembly. This robust printer architecture also allows flexibility in use of multiple printheads with simultaneous printing, simultaneous both side printing, and duplex capabilities.
    • 用于打印机的驱动组件包括环形环驱动路径和导向结构,其允许打印头以往复或无限循环模式操作,其中打印的横移既是驱动路径的衬套和弓形部分。 这提供了一种打印机结构,其中打印头可以在一个方向上以恒定速度无休止地驱动,以提供在空间上分离的多个打印条带。 这消除了在往复式打印机结构中所需的减速/加速变化的需要,并且通过限定弓形转向区域能够提高吞吐量,该区域可以比通常的往复式打印头组件减慢,停止和反向所需的时间快得多。 这种坚固的打印机架构还允许使用多个打印头同时进行打印,同时进行双面打印和双面打印功能。
    • 8. 发明授权
    • Systems and methods for controllably refilling a fluid quantity sensing fluid ejection head
    • 用于可控地重新填充流体量感测流体喷射头的系统和方法
    • US07029083B2
    • 2006-04-18
    • US10721275
    • 2003-11-26
    • Eric A. MerzBrian S. Hilton
    • Eric A. MerzBrian S. Hilton
    • B41J2/195B41J2/175
    • B41J2/17566B41J2/17509
    • A controller for a fluid ejecting system having a refillable container includes an ejection count initializing circuit, routine or application, a count incrementing circuit, routine or application, at least one fluid level indicator, and a fluid quantity circuit, routine or application for determining an expended quantity of fluid, a fluid reserve capacity circuit, routine or application for determining a fluid reserve capacity in the container, an ejection job determining circuit, routine or application for determining a fluid job requirement, a reserve comparing circuit, routine or application to compare the fluid reserve capacity and the fluid job requirement, and a refill condition determining circuit, routine or application to determine that the container is to be refilled. Counts for a ejection amount and a reserve capacity are incremented in response to a specific amount of fluid being ejected from the container. The expended quantity of fluid is based on the ejection amount count subsequent to the fluid level being indicated. The fluid reserve capacity is based on the reserve capacity count and the expended quantity of fluid. The fluid job requirement is based on the expended quantity of fluid and a job number of ejected amounts of fluid. The container is determined to be refilled upon at least a condition wherein the fluid job requirement exceeds the fluid reserve capacity, and a condition wherein the fluid level is below a refill threshold.
    • 用于具有可再填充容器的流体喷射系统的控制器包括喷射计数初始化电路,程序或应用,计数递增电路,程序或应用,至少一个液位指示器和流体量电路,用于确定 流体储备容量回路,用于确定容器中流体储备容量的程序或应用程序,排出作业确定电路,用于确定流体工作要求的程序或应用程序,备用比较电路,比较例程或应用程序 流体储备容量和流体工作要求,以及重新填充条件确定电路,程序或应用程序以确定容器将被重新填充。 响应于从容器喷出的特定量的流体,喷射量和储备容量的计数增加。 流体的消耗量基于指示流体液面之后的喷射量计数。 流体储备能力基于储量和计量流量。 流体工作要求是基于流体的消耗量和排出量的流体的工作数量。 确定容器至少在其中流体作业要求超过流体储备容量的条件下重新填充,以及其中液面低于再填充阈值的条件。
    • 9. 发明授权
    • Systems and methods for dissipating heat from a fluid ejector carriage
    • 从流体喷射器托架散热的系统和方法
    • US07192116B2
    • 2007-03-20
    • US10721220
    • 2003-11-26
    • Roger G. MarkhamEric A. MerzBrian S. Hilton
    • Roger G. MarkhamEric A. MerzBrian S. Hilton
    • B41J23/00B41J11/22
    • B41J29/377
    • A system, method and structures for dissipating heat away from a thermal fluid ejector modules through a thermally-conductive carriage molded from a polymer to the ambient air surrounding the structure upon which the thermally-conductive fluid ejector carriage translates. The heat is transferred via conduction and convection from the thermally-conductive fluid ejector carriage across a thin volume of air trapped between a thermally-conductive carriage rod guide, enclosed on each end by thermally-conductive carriage rod guide bearings, and the thermal contact of the thermally-conductive carriage rod guide bearings with the surface of at least one thermally-conductive carriage guide rod which the thermally-conductive fluid ejector carriage translates.
    • 一种用于从热流体喷射器模块通过由聚合物模制的导热托架将热量散发到围绕结构的环境空气的导热流体喷射器托架翻转的系统,方法和结构。 热量通过传导和对流从导热流体喷射器托架转移穿过狭窄的空气,该空气被捕获在导热支架杆导向件之间,导热托架杆导向件由每个端部由导热支架导杆轴承封闭,并且热接触 导热支架导杆轴承,其具有导热流体喷射器托架平移的至少一个导热滑架导杆的表面。