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    • 22. 发明授权
    • Electrostatically addressable microvalves
    • 静电寻址微型阀
    • US08561963B2
    • 2013-10-22
    • US11959778
    • 2007-12-19
    • Ashish PattekarEugene M ChowEric Peeters
    • Ashish PattekarEugene M ChowEric Peeters
    • F16K31/128
    • F16K99/0001B01L3/502738B01L2200/12B01L2300/0819B01L2300/0887B01L2400/0655F16K99/0026Y10T137/0318Y10T137/0391Y10T137/87249
    • An improved microvalve is described. The microvalve includes a corresponding actuation aperture in an actuation aperture layer. A control fluid flows through the actuation aperture. The flow of the control fluid is controlled by an electric field typically applied via a charge distribution near an actuation aperture layer. In one embodiment, the electric field may adjust the opening and closing of the actuation aperture thereby controlling the flow of the control fluid. In a second embodiment, the control fluid is an electrorheological fluid where the electric field controls the viscosity of the ER fluid thereby controlling fluid flow through the actuation aperture. In both embodiments the flow of the control fluid controls stretching of a flexible membrane formed along the wall of a conduit through which a fluid to be controlled flows. The stretching of the flexible membrane controlling the flow of the main fluid to be controlled.
    • 描述了改进的微型阀。 微型阀包括致动孔层中相应的致动孔。 控制流体流过致动孔。 控制流体的流动由通常通过致动孔层附近的电荷分布施加的电场来控制。 在一个实施例中,电场可以调节致动孔的打开和关闭,从而控制控制流体的流动。 在第二实施例中,控制流体是电流变流体,其中电场控制ER流体的粘度,从而控制通过致动孔的流体流动。 在两个实施例中,控制流体的流动控制沿导管的壁形成的柔性膜的拉伸,待控制的流体通过该壁流动。 柔性膜的拉伸控制要控制的主流体的流动。
    • 24. 发明授权
    • Delivery devices and methods with collimated gas stream and particle source
    • 具有准直气流和颗粒源的输送装置和方法
    • US08388569B2
    • 2013-03-05
    • US13089769
    • 2011-04-19
    • Scott UhlandEric Peeters
    • Scott UhlandEric Peeters
    • A61M37/00
    • A61M37/00A61D7/00A61M5/2046A61M5/2053A61M5/3007A61M5/3015
    • Delivery devices, methods and systems are provided for the delivery of particles into a biological tissue. The device includes a gas source comprising a gas or capable of selectively producing a gas; a first particle source comprising a first plurality of particles; a first collimator fluidly connected with the gas source and adapted to form a collimated stream of the first plurality of particles entrained in the gas. The device also includes a tissue-interfacing surface adapted to interface with a surface of the tissue and orient the first collimator with the tissue such that the collimated stream of the first plurality of particles will penetrate the tissue in a direction substantially perpendicular to the surface of the tissue.
    • 提供递送装置,方法和系统用于将颗粒递送到生物组织中。 该装置包括气体源,其包括气体或能选择性地产生气体; 包括第一多个颗粒的第一颗粒源; 第一准直器,其与气体源流体连接并且适于形成夹带在气体中的第一多个颗粒的准直流。 该装置还包括适于与组织的表面相接合并且使第一准直器与组织对准的组织接合表面,使得第一多个颗粒的准直流将沿基本上垂直于组织的表面的方向穿透组织 组织。
    • 26. 发明申请
    • Variable Data Lithography System for Applying Multi-Component Images and Systems Therefor
    • 用于应用多分量图像的可变数据光刻系统及其系统
    • US20120274914A1
    • 2012-11-01
    • US13204567
    • 2011-08-05
    • Timothy StoweEric Peeters
    • Timothy StoweEric Peeters
    • G03B27/42
    • B41F7/24B41F7/00B41F7/025B41F7/26B41F31/302B41F35/02B41M1/06B41P2227/70
    • A reimageable layer of an imaging member is provided with a dampening fluid layer. The reimageable layer has specific properties such as composition, surface profile, and so on so as to be well suited for receipt and carrying the dampening fluid layer. An optical patterning subsystem such as a scanned modulated laser patterns the dampening fluid layer. Ink having a first set of properties such as color, composition, etc., is applied at an inking subsystem such that it selectively resides in voids formed by the patterning subsystem in the dampening fluid layer to thereby form an inked latent image. The inked latent image is then transferred to a substrate, and the reimageable surface cleaned. The process is repeated for a second ink having properties different than the first. Each ink image may successively be applied to the substrate, or a composite image may be formed then applied to the substrate.
    • 成像构件的可再成像层设置有阻尼流体层。 可再成像层具有特定的性质,例如组成,表面轮廓等,以便很好地适合接收和承载润版液层。 诸如扫描调制激光器的光学图案化子系统对阻尼流体层进行图案化。 具有第一组性质如颜色,组成等的油墨被施加在着墨子系统上,使得其选择性地驻留在阻尼流体层中由图案化子系统形成的空隙中,从而形成着墨潜影。 然后将着墨的潜像转印到基底上,并清洁可再成像的表面。 对于具有不同于第一墨水的性质的第二墨水重复该过程。 每个油墨图像可以连续地施加到基板上,或者可以形成合成图像然后施加到基板。
    • 28. 发明申请
    • THERMAL INK TRANSFER USING ENDLESS BELT
    • 使用无铅皮带进行热转印
    • US20120236098A1
    • 2012-09-20
    • US13481645
    • 2012-05-25
    • Ashish PattekarEric Peeters
    • Ashish PattekarEric Peeters
    • B41J2/01
    • B41J2/0057
    • An embodiment is a method and apparatus for thermal ink transfer. An endless belt having a thin thickness transfers ink from an ink donor roll to an image substrate based on a pattern on the belt. A heating unit heats the belt locally as needed in vicinity of contact between the belt and the ink donor roll.One disclosed feature of the embodiments is a method to transfer ink. An endless belt is driven to transfer ink from an ink donor roll to an image substrate based on a pattern of a fountain solution formed on the belt. The belt is heated locally as needed in vicinity of contact between the belt and the ink donor roll.
    • 实施例是用于热墨转移的方法和装置。 具有薄的厚度的环形带基于带上的图案将油墨从供墨辊转印到图像基板。 加热单元根据需要在带和供墨辊之间的接触附近局部加热带。 实施例的一个公开的特征是转印墨水的方法。 基于形成在带上的润版液的图案,驱动环形带将油墨从供墨辊转印到图像基板。 带必须在带和供墨辊之间的接触附近被局部加热。