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    • 32. 发明申请
    • Flexible Electrophoretic-Type Display
    • 柔性电泳型显示器
    • US20090051646A1
    • 2009-02-26
    • US12264164
    • 2008-11-03
    • Jurgen DanielBrent S. Krusor
    • Jurgen DanielBrent S. Krusor
    • G09G3/34
    • G02F1/167
    • An electrophoretic-type display device including an array of microcells, where each microcell is formed by a microwell containing a quantity of ink and a polymer-based membrane connected to upper edges of the microwell. The membrane is formed by curing an aqueous or hydroalcoholic sealing solution that is overcoated on the ink-filled microwells. The ink includes an isoparaffinic-based or oil-based suspension fluid, and the peripheral side walls of the microwell have a surface energy in the range of 20 to 30 mN/m. The microwell material serves two purposes: to prevent displacement (floating) of the relatively light ink solution above the relatively heavy sealing solution, and to facilitate reliable attachment between the polymer membrane and microwell walls during subsequent curing.
    • 一种包括微电池阵列的电泳型显示装置,其中每个微细胞由含有一定量的墨水的微孔和连接到微孔的上边缘的基于聚合物的膜形成。 通过固化在填充墨水的微孔上涂覆的水或水醇密封溶液来形成膜。 油墨包括异链烷烃基或油基悬浮液,微孔的周边侧壁的表面能为20〜30mN / m。 微孔材料用于两个目的:防止相对较轻的油墨溶液位于相对较重的密封溶液之上的位移(浮动),并且在随后的固化过程中促进聚合物膜和微孔壁之间的可靠附着。
    • 33. 发明授权
    • Flexible electrophoretic-type display
    • 柔性电泳型显示
    • US07463409B2
    • 2008-12-09
    • US11018185
    • 2004-12-20
    • Jurgen DanielBrent S. Krusor
    • Jurgen DanielBrent S. Krusor
    • G02B26/00G09G3/34G02F1/133
    • G02F1/167
    • An electrophoretic-type display device including an array of microcells, where each microcell is formed by a microwell containing a quantity of ink and a polymer-based membrane connected to upper edges of the microwell. The membrane is formed by curing an aqueous or hydroalcoholic sealing solution that is overcoated on the ink-filled microwells. The ink includes an isoparaffinic-based or oil-based suspension fluid, and the peripheral side walls of the microwell have a surface energy in the range of 20 to 30 mN/m. The microwell material serves two purposes: to prevent displacement (floating) of the relatively light ink solution above the relatively heavy sealing solution, and to facilitate reliable attachment between the polymer membrane and microwell walls during subsequent curing.
    • 一种包括微电池阵列的电泳型显示装置,其中每个微细胞由含有一定量的墨水的微孔和连接到微孔的上边缘的基于聚合物的膜形成。 通过固化在填充墨水的微孔上涂覆的水或水醇密封溶液来形成膜。 油墨包括异链烷烃基或油基悬浮液,微孔的周边侧壁的表面能为20〜30mN / m。 微孔材料用于两个目的:防止相对较轻的油墨溶液位于相对较重的密封溶液之上的位移(浮动),并且在随后的固化过程中促进聚合物膜和微孔壁之间的可靠附着。
    • 35. 发明申请
    • Continuous flow particle concentrator
    • 连续流粒子集中器
    • US20050247564A1
    • 2005-11-10
    • US10838570
    • 2004-05-04
    • Armin VolkelMeng LeanH. HsiehJurgen Daniel
    • Armin VolkelMeng LeanH. HsiehJurgen Daniel
    • B03C5/02G01N27/27G01N27/453G01N30/00G01N33/487
    • B03C5/028G01N2030/0035
    • An apparatus for extracting and concentrating bioagents within a continuously flowing fluid medium includes a flow channel fluid inlet, in which bioagents are concentrated from three dimensions to a two-dimensional transport layer in a preconcentration area. Traveling wave grids cause the preconcentrated bioagents to migrate to one side of the flow channel and then to an extraction port. Each of the traveling wave grids includes a substrate, a collection of closely spaced and parallel electrically conductive electrodes extending across said substrate, and a collection of buses providing electrical communication with the collection of conductive electrodes. A voltage controller provides a multiphase electrical signal to the collection of buses and electrodes of the traveling wave grids. Fluid exits through an outlet port.
    • 用于在连续流动的流体介质中提取和浓缩生物体的装置包括流动通道流体入口,其中生物体从三维集中到预浓缩区域中的二维输送层。 旅行波谷使预浓缩的生物标签迁移到流动通道的一侧,然后迁移到提取口。 每个行波波谷包括基板,跨越所述基板的紧密间隔且平行的导电电极的集合,以及提供与导电电极集合电连通的总线的集合。 电压控制器提供多相电信号,用于收集行波网格的总线和电极。 流体通过出口排出。
    • 38. 发明申请
    • Method for Direct Application of Dampening Fluid for a Variable Data Lithographic Apparatus
    • 用于可变数据平版印刷设备的缓冲液的直接应用方法
    • US20130033687A1
    • 2013-02-07
    • US13204526
    • 2011-08-05
    • Timothy StoweAshish PattekarEric PeetersDavid BiegelsenLars-Erik SwartzJurgen Daniel
    • Timothy StoweAshish PattekarEric PeetersDavid BiegelsenLars-Erik SwartzJurgen Daniel
    • G03B27/52
    • B41F7/24B41F7/30B41F7/32B41F7/34B41N3/08B41P2227/70
    • A system and corresponding methods are disclosed for applying a dampening fluid to a reimageable surface of an imaging member in a variable data lithography system, without a form roller. In one embodiment, the system includes subsystems for converting a dampening fluid from a liquid phase to a dispersed fluid phase, and for directing flow of a dispersed fluid comprising the dampening fluid in dispersed fluid phase to the reimageable surface. The dampening fluid reverts to the liquid phase directly on the reimageable surface. In another embodiment a continuous ribbon of dampening fluid may be applied directly to the reimageable surface. This embodiment includes a body structure having a port for delivering dampening fluid in a continuous fluid ribbon directly to the reimageable surface, and a mechanism, associated with the body structure, for stripping an entrained air layer over the reimageable surface when the reimageable surface is in motion.
    • 公开了一种用于将润版流体施加到可变数据光刻系统中的成像构件的可再成像表面的系统和相应方法,而没有成形辊。 在一个实施例中,该系统包括用于将润湿流体从液相转化为分散流体相的子系统,并且用于将包含分散流体相的润版液的分散流体的流动引导到可再成像的表面。 阻尼流体直接在可再成像的表面上回流到液相。 在另一个实施例中,连续的润版液体带可以直接施加到可再成像的表面。 该实施例包括具有端口的主体结构,该端口用于将连续流体带中的阻尼流体直接传送到可再成像的表面,以及与主体结构相关联的机构,用于当可再成像的表面处于可再成像的表面时,将夹带的空气层剥离在可再成像的表面上 运动。