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    • 54. 发明授权
    • Method and apparatus for treating recording media to enhance print quality in an ink jet printer
    • 用于处理记录介质以提高喷墨打印机中的打印质量的方法和装置
    • US06293668B1
    • 2001-09-25
    • US09069698
    • 1998-04-29
    • Joel A. KubbyLisa A. DeLouiseDavid A. Mantell
    • Joel A. KubbyLisa A. DeLouiseDavid A. Mantell
    • B41J201
    • B41J11/0015
    • Plain paper is processed through a plain paper optimizer system prior to image formation on a recording surface. The optimizer system adds a fixing fluid during application of pressure and, optionally, heat to the paper surface. The surface contacted by the fixing fluid is enhanced, forming images of improved print quality. In one embodiment, plain paper is treated in an optimizer system, which has a heat and fuser assembly with silicone oil as the fixing fluid, and is transported into the print zone of an ink jet printer. Images printed on the treated surface demonstrate improvements in image quality manifested by reduction of both edge raggedness and intercolor bleeding.
    • 在记录表面上形成图像之前,通过普通纸优化器系统处理普通纸。 优化器系统在施加压力和任选地加热到纸张表面时添加固定液体。 增强了由固定液体接触的表面,形成了改进的打印质量的图像。 在一个实施例中,普通纸在优化器系统中进行处理,该优化器系统具有带有硅油作为固定流体的加热和定影组件,并被输送到喷墨打印机的打印区域。 印刷在经处理的表面上的图像表现出通过减少边缘粗糙度和色间渗色而表现出的图像质量的改善。
    • 57. 发明授权
    • Ink status system for a liquid ink printer
    • 液体墨水打印机的墨水状态系统
    • US6007173A
    • 1999-12-28
    • US721515
    • 1996-09-26
    • Lisa A. DeLouiseSophie V. VandebroekJoel A. Kubby
    • Lisa A. DeLouiseSophie V. VandebroekJoel A. Kubby
    • B41J2/175B41J2/195
    • B41J2/17513B41J2/17566B41J2/195
    • An ink status system for determining the status of a consumable supply of ink contained in an ink container. The ink status system includes a first conductor, disposed on a first wall of the ink container, being aligned with the first wall such that the consumable supply of ink contacts a decreasing portion of the first conductor during consumption thereof and an ink sensing circuit, coupled to the first conductor, generating a continuously variable ink level signal as a function of the decreasing portion of the first conductor being contacted by the consumable supply of ink during consumption thereof. The ink status system is used in a liquid ink printer to determine the amount of ink remaining in an ink tank or ink cartridge. A liquid ink printhead of the printer includes the necessary circuitry to generate a signal indicating the status of the ink which can include ink levels as well as ink types or colors.
    • 一种用于确定容纳在墨水容器中的可消耗墨水供应状态的墨水状态系统。 墨水状态系统包括设置在墨水容器的第一壁上的第一导体,与第一壁对准,使得可消耗的墨水供应在其消耗期间接触第一导体的减少部分,以及墨水感测电路 到第一导体,产生作为第一导体的减少部分的可连续变化的墨水量信号,在第一导体的消耗期间与可消耗的墨水供应相接触。 油墨状态系统用于液体墨水打印机中以确定墨水盒或墨盒中剩余的墨水量。 打印机的液体墨水打印头包括产生指示墨水状态的信号所必需的电路,该信号可以包括油墨水平以及油墨类型或颜色。
    • 60. 发明授权
    • Systems and methods for thermal isolation of a silicon structure
    • 用于硅结构热隔离的系统和方法
    • US06828171B2
    • 2004-12-07
    • US09683533
    • 2002-01-16
    • Joel A. Kubby
    • Joel A. Kubby
    • H01L2100
    • B81B3/0081B81B2203/0109B81C1/00595G02F1/0147G02F1/025H01L21/764
    • A silicon structure is at least partially thermally isolated from a substrate by a gap formed in an insulation layer disposed between the substrate and a silicon layer in which the silicon structure is formed. In embodiments, the substrate is made of silicon and the silicon layer is made of single crystal silicon. In embodiments, the gap is formed such that a surface of the substrate under the gap is maintained substantially unetched. In other embodiments, the gap is formed without affecting the surface of the substrate underlying the gap. In particular, the gap may be formed by removing a portion of the insulation layer with an etch that does not affect the surface of the substrate underlying the gap. In embodiments the etch is highly selective between the material of the insulation layer and the material of the substrate. The etch selectivity may be about 20:1 or greater.
    • 硅结构至少部分地通过在设置在衬底和形成硅结构的硅层之间的绝缘层中形成的间隙与衬底热隔离。 在实施例中,衬底由硅制成,并且硅层由单晶硅制成。 在实施例中,间隙形成为使得在间隙下方的基底的表面基本上保持不变。 在其它实施例中,形成间隙而不影响间隙下面的衬底的表面。 特别地,间隙可以通过用不影响间隙下面的衬底的表面的蚀刻去除绝缘层的一部分来形成。 在实施例中,蚀刻在绝缘层的材料和衬底的材料之间是高选择性的。 蚀刻选择性可以为约20:1或更大。