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    • 72. 发明授权
    • Remelting of printed hot melt ink images
    • 重印印刷热熔墨水图像
    • US4971408A
    • 1990-11-20
    • US272005
    • 1988-11-15
    • Paul A. HoisingtonLawrence R. YoungRobert R. Schaffer
    • Paul A. HoisingtonLawrence R. YoungRobert R. Schaffer
    • B41J2/01B41J2/325G01D15/16
    • G01D15/16
    • In the particular embodiment of the invention described in the specification, a hot melt ink print is prepared by applying the ink to a porous substrate, permitting it to solidify, and reheating the substrate and the ink to a temperature 5.degree. C. to 30.degree. C. above the melting point of the ink for 0.5 to 10 seconds. In one embodiment, the porous substrate is supported on a platen which is maintained at least 30.degree. C. below the melting point of the ink to prevent drying of the substrate and to inhibit spreading of the ink into the substrate. The subsequent reheating of the ink in a controlled manner causes the ink to penetrate to a desired extent into the substrate while preventing shrinkage or cockling of the substrate.
    • 在本说明书中描述的本发明的特定实施例中,通过将油墨施加到多孔基材上,使其固化并将基材和油墨再加热至5℃至30℃的温度来制备热熔油墨印刷品 C.高于油墨熔点0.5〜10秒。 在一个实施方案中,多孔基材被支撑在压板上,该压板在油墨的熔点以下至少保持30℃,以防止基材干燥并阻止油墨扩散到基材中。 以受控方式随后的油墨再加热会导致油墨在所需的程度上渗透到基材中,同时防止基材的收缩或起皱。
    • 73. 发明授权
    • Ink jet array
    • 喷墨阵列
    • US4835554A
    • 1989-05-30
    • US94665
    • 1987-09-09
    • Paul A. HoisingtonRobert R. SchafferKenneth H. Fischbeck
    • Paul A. HoisingtonRobert R. SchafferKenneth H. Fischbeck
    • B41J2/015B41J2/045B41J2/055B41J2/155B41J2/175B41J2/515
    • B41J2/175B41J2/155B41J2/515B41J2202/12
    • In the representative embodiments of an ink jet array described in the specification, a linear array of ink jet orifices is supplied with ink from pressure chambers alternately disposed on opposite sides of the array to permit close spacing of the ink jet orifices. At the end opposite from the ink jet orifice, each pressure chamber communicates with a low acoustic impedance chamber to reflect negative pressure pulses from the pressure chamber back through the chamber as positive pulses and to prevent pressure pulses from being transmitted to the ink supply. In addition, a high-impedance passage between the low acoustic impedance chamber associated with one pressure chamber and the pressure chamber for the adjacent ink jet provides a continuous flowthrough passage from the ink supply port for one ink jet to the ink supply port for an adjacent ink jet. This permits continuous circulation by thermal convection of the ink when the ink jets are not in use to prevent settling of pigment in a pigmented ink and to transport ink containing dissolved air from the region of the ink jet orifice to a deaeration passage.
    • 在说明书中描述的喷墨阵列的代表性实施例中,喷墨孔的线性阵列由交替设置在阵列的相对侧上的压力室供应墨,以允许喷墨孔的间隔很近。 在与喷墨孔相对的端部处,每个压力室与低声阻抗室连通,以将来自压力室的负压脉冲反射回通过室作为正脉冲,并且防止压力脉冲传输到墨水供应。 另外,与一个压力室相关联的低声阻抗室与用于相邻喷墨的压力室之间的高阻抗通道提供从用于一个喷墨的供墨口到供墨口的连续的通过通道,用于相邻的 喷墨。 当墨水喷射不用于防止着色油墨中的颜料沉降并且将含有溶解空气的油墨从喷墨孔的区域输送到脱气通道时,可以通过油墨的热对流来连续循环。
    • 74. 发明授权
    • Individual jet voltage trimming circuitry
    • 单独的喷射电压调整电路
    • US08251471B2
    • 2012-08-28
    • US10642951
    • 2003-08-18
    • Richard E. FontaineScott LegerDaniel CotePaul A. HoisingtonMelvin L. BiggsTodd W. Boucher
    • Richard E. FontaineScott LegerDaniel CotePaul A. HoisingtonMelvin L. BiggsTodd W. Boucher
    • B41J29/38
    • B41J2/0452B41J2/04541B41J2/04573B41J2/04581B41J2/04588B41J2/0459B41J2/04591B41J2/04593B41J2/04596
    • Apparatus including a plurality of droplet ejection devices, an electric source and a controller. Each droplet ejection device includes a fluid chamber having an ejection nozzle, an electrically actuated displacement device associated with the chamber, and a switch having an input connected to the electric source, an output connected to the electrically actuated displacement device, and a control signal input that is controlled by the controller to control whether the input (and thus the electric source) is connected to the output (and thus the electrically actuated device). The electrically actuated displacement device moves between a displaced position and an undisplaced position to change the volume of the chamber as a capacitance associated with the electrically actuated displacement device changes in charge between an actuated condition and an unactuated condition. The controller provides respective charge control signals to respective control signal inputs to control the extent of change in charge on respective capacitances by the time that the respective switch connects the electrical signal to the respective electrically actuated displacement device.
    • 装置包括多个液滴喷射装置,电源和控制器。 每个液滴喷射装置包括具有喷射喷嘴,与腔室相关联的电致动位移装置的流体室和具有连接到电源的输入的开关,连接到电动位移装置的输出端和控制信号输入端 其由控制器控制以控制输入(以及因此的电源)是否连接到输出端(以及电驱动装置)。 电驱动的位移装置在位移位置和未置换位置之间移动以改变腔室的体积,因为与致动位移装置相关联的电容在致动状态和未致动状态之间变化。 控制器向相应的控制信号输入端提供相应的充电控制信号,以控制相应开关将电信号连接到相应的电驱动位移装置的时间上的相应电容上的电荷变化程度。
    • 75. 发明授权
    • Mitigation of fluid leaks
    • 缓解流体泄漏
    • US08061810B2
    • 2011-11-22
    • US12394896
    • 2009-02-27
    • Paul A. HoisingtonSteven H. Barss
    • Paul A. HoisingtonSteven H. Barss
    • B41J2/14
    • B41J2/1606B41J2/14233B41J2/161B41J2/164
    • A fluid ejector head includes a die with a plurality of fluid ejector units, each fluid ejector unit comprising a pumping actuator having a drive electrode, and a manifold that contacts the first side of the die to define a module volume in fluidic communication with a drainage volume. The module volume is defined in part between the manifold and at least a portion of plurality of fluid ejector units, and the drainage volume is located apart from the fluid ejector units. The module volume, in comparison to the drainage volume, has a greater ratio of interior surface area to volume or has a greater percentage of interior surface area covered by a non-wetting coating.
    • 流体喷射头包括具有多个流体喷射器单元的模具,每个流体喷射器单元包括具有驱动电极的泵送致动器和与模具的第一侧接触的歧管,以限定与排水流体连通的模块体积 卷。 模块体积部分地限定在歧管和多个流体喷射器单元的至少一部分之间,并且排出体积与流体喷射器单元分开。 与排水体积相比,模块体积具有更大的内表面积与体积的比例,或者具有由非润湿涂层覆盖的较大比例的内表面积。
    • 77. 发明申请
    • High Speed High Resolution Fluid Ejection
    • 高速高分辨率液体喷射
    • US20110007107A1
    • 2011-01-13
    • US12500560
    • 2009-07-09
    • Paul A. HoisingtonSteven H. Barss
    • Paul A. HoisingtonSteven H. Barss
    • B41J29/38B41J2/145
    • B41J2/14233B41J2/175B41J2/17509B41J2202/12
    • The first plurality of nozzles and the second plurality of nozzles in a fluid ejection system are arranged in a plurality of nozzle pairs, each nozzle pair of the plurality of nozzle pairs including a first nozzle from the first plurality of nozzles and an associated second nozzle from the second plurality of nozzles, the first nozzle and associated second nozzle of each nozzle pair spaced apart in a second direction perpendicular to a first direction, the first direction being the direction of movement of a print media, by greater than zero and less than the pixel pitch p and spaced apart in the first direction. A controller is configured to cause the first nozzle and the second nozzle of each nozzle pair to deposit droplets at the same pixel in a line of pixels.
    • 流体喷射系统中的第一多个喷嘴和第二多个喷嘴被布置成多个喷嘴对,多个喷嘴对中的每个喷嘴对包括来自第一多个喷嘴的第一喷嘴和相关联的第二喷嘴 所述第二多个喷嘴,所述第一喷嘴和每个喷嘴对的相关联的第二喷嘴在垂直于第一方向的第二方向间隔开,所述第一方向是打印介质的移动方向大于零且小于 像素间距p并且在第一方向上间隔开。 控制器被配置为使得每个喷嘴对的第一喷嘴和第二喷嘴在像素行中的相同像素处沉积液滴。
    • 78. 发明申请
    • Mitigation of Fluid Leaks
    • 减少流体泄漏
    • US20100220143A1
    • 2010-09-02
    • US12394896
    • 2009-02-27
    • Paul A. HoisingtonSteven H. Barss
    • Paul A. HoisingtonSteven H. Barss
    • B41J2/165
    • B41J2/1606B41J2/14233B41J2/161B41J2/164
    • A fluid ejector head includes a die with a plurality of fluid ejector units, each fluid ejector unit comprising a pumping actuator having a drive electrode, and a manifold that contacts the first side of the die to define a module volume in fluidic communication with a drainage volume. The module volume is defined in part between the manifold and at least a portion of plurality of fluid ejector units, and the drainage volume is located apart from the fluid ejector units. The module volume, in comparison to the drainage volume, has a greater ratio of interior surface area to volume or has a greater percentage of interior surface area covered by a non-wetting coating.
    • 流体喷射头包括具有多个流体喷射器单元的模具,每个流体喷射器单元包括具有驱动电极的泵送致动器和与模具的第一侧接触的歧管,以限定与排水流体连通的模块体积 卷。 模块体积部分地限定在歧管和多个流体喷射器单元的至少一部分之间,并且排出体积与流体喷射器单元分开。 与排水体积相比,模块体积具有更大的内表面积与体积的比例,或者具有由非润湿涂层覆盖的较大比例的内表面积。
    • 79. 发明授权
    • High resolution multicolor ink jet printer
    • 高分辨率多色喷墨打印机
    • US07690779B2
    • 2010-04-06
    • US11765890
    • 2007-06-20
    • Charles W. Spehrley, Jr.Paul A. Hoisington
    • Charles W. Spehrley, Jr.Paul A. Hoisington
    • G01D11/00
    • B41J2/2056B41J2/01B41J2/17593B41J2/195B41J2/2107B41J11/002B41J13/223B41J19/16
    • A high-resolution ink jet printer includes a drum supported for rotation about an axis, substrate positioning means for positioning a substrate sheet on the surface of the drum to receive a printed image, carriage means movable parallel to the drum axis, printhead means supported on the carriage means and having at least one array of orifices disposed in spaced relation to the surface of the drum for projecting ink drops onto a substrate sheet carried by the drum, drive means for driving the carriage parallel to the axis of the drum, encoder means providing a train of signals at a rate dependent upon the rate of rotation of the drum, and control means for controlling the projection of the ink drops from the printhead means at a rate that depends on the rate of signals received by the control means.
    • 一种高分辨率喷墨打印机,包括一个可绕轴旋转的滚筒,用于将一个基片定位在滚筒表面上以接收一印刷图像的基板定位装置,一个平行于滚筒轴线移动的托架装置, 托架装置并且具有至少一个与滚筒表面隔开设置的孔口阵列,用于将墨滴投影到由滚筒承载的基片上;驱动装置,用于平行于滚筒的轴线驱动支架;编码器装置 以取决于滚筒的旋转速率的速率提供一串信号;以及控制装置,用于以取决于由控制装置接收的信号的速率的速度控制来自打印头装置的墨滴的投影。