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    • 3. 发明授权
    • Apparatus for achieving high quality aqueous ink-jet printing on plain paper at high print speeds
    • 用于以高打印速度在普通纸上实现高质量水性喷墨打印的装置
    • US06428159B1
    • 2002-08-06
    • US09357015
    • 1999-07-19
    • Joy RoyBabur HadimiogluRichard N. EllsonRobert SpragueJames B. KrugerJohn Lennon
    • Joy RoyBabur HadimiogluRichard N. EllsonRobert SpragueJames B. KrugerJohn Lennon
    • B41J201
    • B41J11/002
    • An apparatus for ink-jet printing on a recording medium is provided which includes the steps of jetting aqueous ink drops on paper in the form of an image. The aqueous ink used is a slow-drying (high-surface tension) ink which does not penetrate the paper/paper fibers for a relatively long time. Prior to penetration of the paper/paper fibers, the water in the droplet is quickly evaporated from the ink while still resident on the paper surface. The evaporation process is substantially completed prior to an additional liquid ink being jetted onto the same or adjoining location of the recording medium. The evaporation is rapid enough to prevent the resident ink from substantially migrating/wicking to any adjacent location or into the recording medium. Further the drying energy is transferred to the resident ink spots from the same direction as the printheads ensuring less energy requirement.
    • 提供了一种用于在记录介质上进行喷墨打印的设备,其包括以图像形式将水性墨滴喷射在纸上的步骤。 使用的水性油墨是一种慢干(高表面张力)油墨,其不会在相对长的时间内渗透纸/纸纤维。 在纸/纸纤维渗透之前,液滴中的水从墨水中迅速蒸发,同时仍然驻留在纸张表面上。 在附加的液体墨水喷射到记录介质的相同或相邻位置之前,蒸发过程基本上完成。 蒸发速度足够快以防止驻留的墨水基本上迁移/吸附到任何相邻位置或记录介质中。 此外,干燥能量从与打印头相同的方向转移到驻留的墨点,确保较少的能量需求。
    • 6. 发明授权
    • Frequency correction for drop size control
    • 液滴尺寸控制的频率校正
    • US06893115B2
    • 2005-05-17
    • US10251916
    • 2002-09-20
    • Babur HadimiogluRichard N. Ellson
    • Babur HadimiogluRichard N. Ellson
    • B41J2/05B41J2/135
    • B41J2/04573B41J2/04575B41J2/04591
    • The present invention provides a method and device for the acoustic ejection of fluid droplets having a constant drop size from fluid-containing reservoirs having varying fluid heights contained therein without the need for repositioning the acoustic ejector in the z direction by adjusting the RF frequency and amplitude. In one embodiment, the device is comprised of: a plurality of reservoirs each adapted to contain a fluid; an ejector comprising a means for generating acoustic radiation, means for controlling the RF frequency and amplitude used to generate the acoustic radiation, means for focusing the acoustic radiation at a focal point near the fluid surface in each of the reservoirs; and a means for positioning the ejector in acoustically coupled relationship to each of the reservoirs. The invention is useful in a number of contexts, particularly in the preparation of biomolecular arrays.
    • 本发明提供一种方法和装置,用于从包含其中具有不同流体高度的流体容纳储存器中具有恒定液滴尺寸的流体液滴的声弹出来,而不需要通过调节RF频率和振幅来重新定位声射弹在z方向上 。 在一个实施例中,该装置包括:多个储存器,每个储存器适于容纳流体; 包括用于产生声辐射的装置的喷射器,用于控制用于产生声辐射的RF频率和幅度的装置,用于将声辐射聚焦在每个储存器中的流体表面附近的焦点处的装置; 以及用于将喷射器定位成与每个储存器的声耦合关系的装置。 本发明在许多上下文中是有用的,特别是在生物分子阵列的制备中。
    • 7. 发明授权
    • Method for achieving high quality aqueous ink-jet printing on plain paper at high print speeds
    • 用于以高打印速度在普通纸上实现高质量水性喷墨打印的方法
    • US06428160B2
    • 2002-08-06
    • US09726100
    • 2000-11-29
    • Joy RoyBabur HadimiogluRichard N. EllsonRobert SpragueJames B. KrugerJohn Lennon
    • Joy RoyBabur HadimiogluRichard N. EllsonRobert SpragueJames B. KrugerJohn Lennon
    • B41J201
    • B41J11/002
    • An apparatus and method for ink-jet printing on a recording medium is provided which includes the steps of jetting aqueous ink drops on paper in the form of an image. The aqueous ink used is a slow-drying (high-surface tension) ink which does not penetrate the paper/paper fibers for a relatively long time. Prior to penetration of the paper/paper fibers, the water in the droplet is quickly evaporated from the ink while still resident on the paper surface. The evaporation process is substantially completed prior to an additional liquid ink being jetted onto the same or adjoining location of the recording medium. The evaporation is rapid enough to prevent the resident ink from substantially migrating/wicking to any adjacent location or into the recording medium. Further the drying energy is transferred to the resident ink spots from the same direction as the printheads ensuring less energy requirement.
    • 提供了一种用于在记录介质上进行喷墨印刷的设备和方法,其包括以图像形式将水性墨滴喷射在纸上的步骤。 使用的水性油墨是一种慢干(高表面张力)油墨,其不会在相对长的时间内渗透纸/纸纤维。 在纸/纸纤维渗透之前,液滴中的水从墨水中迅速蒸发,同时仍然驻留在纸张表面上。 在附加的液体墨水喷射到记录介质的相同或相邻位置之前,蒸发过程基本上完成。 蒸发速度足够快以防止驻留的墨水基本上迁移/吸附到任何相邻位置或记录介质中。 此外,干燥能量从与打印头相同的方向转移到驻留的墨点,确保较少的能量需求。
    • 8. 发明授权
    • Thin film varactors
    • 薄膜变容二极管
    • US5038184A
    • 1991-08-06
    • US443993
    • 1989-11-30
    • Anne ChiangScott A. ElrodBabur HadimiogluTiao-Yuan HuangTakamasa J. OkiI-Wei Wu
    • Anne ChiangScott A. ElrodBabur HadimiogluTiao-Yuan HuangTakamasa J. OkiI-Wei Wu
    • H01L21/822H01L27/04H01L29/93H01L29/94
    • H01L29/94
    • This disclosure relates to semiconductor varactors, such as thin film poly-Si varactors, which have larger effective gate areas in accumulation than in depletion, together with capacitive switching ratios which are essentially determined by the ratio of their effective gate area in accumulation to their effective gate area in depletion. To that end, such a varactor has a fully depletable active semiconductor layer, such as a thin poly-Si film, and is constructed so that at least a part of its active layer is sandwiched between a relatively thin dielectric layer and a relatively thick dielectric layer. The thin dielectric layer, in turn, is sandwiched between the active semiconductor layer and a gate electrode. Furthermore, one or more ground electrodes are electrically coupled to laterally offset portions of the active semiconductor layer in partial overlapping alignment with the gate electrode. In keeping with this invention, the capacitance per unit surface area of the thin dielectric layer is so much greater than the capacitance per unit surface area of the thick dielectric layer that the series capacitance of the depleted active semiconductor layer and the thick dielectric layer negligibly contribute to the capacitance of the varactor when it is operating in its depletion mode. Top-gate and bottom-gate embodiments having ground electrodes which are coplanar with the active semiconductor layer, ground electrodes which are in a plane adjacent to the active semiconductor layer, segmented gate electrodes and segmented ground electrodes, and continuous gate electrodes and segmented ground electrodes are disclosed.