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    • 1. 发明申请
    • INKJET PRINTHEAD AND METHOD EMPLOYING CENTRAL INK FEED CHANNEL
    • INKJET PRINTHEAD和使用中央墨水进料通道的方法
    • US20120120157A1
    • 2012-05-17
    • US13260075
    • 2009-07-31
    • Alfred I-Tsung PanErik Torniainen
    • Alfred I-Tsung PanErik Torniainen
    • B41J2/05
    • B41J2/1404B41J2/14145B41J2002/14467
    • An inkjet printhead (100) and a method (200) of supplying viscous ink employ a central ink feed channel (130). The inkjet printhead (100) includes a bridge beam (110) that supports an ejector element (106), a pair of lateral ink feed channels (120) adjacent to the bridge beam (110), and a central ink feed channel (130) through the ejector element (106) and bridge beam (110). The pair of lateral ink feed channels (120) and the central ink feed channel (130) connect between an ink reservoir (140) below the bridge beam (110) and the bubble expansion chamber (104). The method (200) includes providing (210) a central ink feed channel in a bridge beam of a printhead and flowing (220) viscous ink from an ink reservoir through a combination of the provided central ink feed channel and a pair of lateral ink feed channels.
    • 喷墨打印头(100)和供应粘性油墨的方法(200)采用中央供墨通道(130)。 喷墨打印头(100)包括支撑喷射器元件(106)的桥梁(110),邻近桥梁梁(110)的一对横向供墨通道(120)和中央供墨通道(130) 通过喷射器元件(106)和桥梁梁(110)。 一对横向供墨通道(120)和中央供墨通道(130)连接在桥梁梁(110)下面的墨水储存器(140)和气泡膨胀室(104)之间。 方法(200)包括在打印头的桥梁梁中提供(210)中心供墨通道,并通过所提供的中央供墨通道和一对横向供墨通道的组合从油墨储存器流出(220)粘性油墨 频道
    • 2. 发明授权
    • Inkjet printhead and method employing central ink feed channel
    • 喷墨打印头和采用中央供墨通道的方法
    • US08419169B2
    • 2013-04-16
    • US13260075
    • 2009-07-31
    • Alfred I-Tsung PanErik Torniainen
    • Alfred I-Tsung PanErik Torniainen
    • B41J2/05
    • B41J2/1404B41J2/14145B41J2002/14467
    • An inkjet printhead (100) and a method (200) of supplying viscous ink employ a central ink feed channel (130). The inkjet printhead (100) includes a bridge beam (110) that supports an ejector element (106), a pair of lateral ink feed channels (120) adjacent to the bridge beam (110), and a central ink feed channel (130) through the ejector element (106) and bridge beam (110). The pair of lateral ink feed channels (120) and the central ink feed channel (130) connect between an ink reservoir (140) below the bridge beam (110) and the bubble expansion chamber (104). The method (200) includes providing (210) a central ink feed channel in a bridge beam of a printhead and flowing (220) viscous ink from an ink reservoir through a combination of the provided central ink feed channel and a pair of lateral ink feed channels.
    • 喷墨打印头(100)和供应粘性油墨的方法(200)采用中央供墨通道(130)。 喷墨打印头(100)包括支撑喷射器元件(106)的桥梁(110),邻近桥梁梁(110)的一对横向供墨通道(120)和中央供墨通道(130) 通过喷射器元件(106)和桥梁梁(110)。 一对横向供墨通道(120)和中央供墨通道(130)连接在桥梁梁(110)下面的墨水储存器(140)和气泡膨胀室(104)之间。 方法(200)包括在打印头的桥梁梁中提供(210)中心供墨通道,并通过所提供的中央供墨通道和一对横向供墨通道的组合从油墨储存器流出(220)粘性油墨 频道
    • 5. 发明申请
    • Image development methods, hard imaging devices, and image members
    • 图像开发方法,硬件成像设备和图像成员
    • US20080007609A1
    • 2008-01-10
    • US11483022
    • 2006-07-07
    • Omer GilaAlfred I-Tsung PanMichael H. Lee
    • Omer GilaAlfred I-Tsung PanMichael H. Lee
    • G03G13/04B41J2/385
    • G03G5/028G03G15/10G03G15/6591G03G15/75G03G2215/00523G03G2215/00957
    • Image development methods, hard imaging devices, and image members are described. According to one embodiment, an image development method includes providing an image member comprising a surface having different portions of different electrical conductivities, wherein one of the portions defines an imaging pattern of an image, providing a development agent comprising a plurality of electrically charged image particles and a plurality of electrically charged charge directors over the image member, providing an electrical field proximate the image member having the development agent over the image member, and using the electrically charged charge directors and the electric field, directing the electrically charged image particles to the one of the portions of the surface of the image member to develop the image.
    • 描述了图像显影方法,硬像成像装置和图像构件。 根据一个实施例,图像显影方法包括提供包括具有不同电导率不同部分的表面的图像构件,其中所述部分中的一个限定图像的成像图案,提供显影剂,其包括多个带电荷的图像粒子 以及多个带电荷的电荷导向器,在所述图像构件上方提供邻近所述图像构件的电场,所述图像构件具有所述图像构件上的所述显影剂,并且使用所述带电荷的电荷导向器和所述电场,将带电荷的图像粒子引导到 图像构件的表面的一部分之一用于显影图像。
    • 8. 发明授权
    • Thin film microheaters for assembly of inkjet printhead assemblies
    • 用于组装喷墨打印头组件的薄膜显微加热器
    • US06460966B1
    • 2002-10-08
    • US09938710
    • 2001-08-23
    • Ronald A. HelleksonAlfred I-Tsung PanMarshall Field
    • Ronald A. HelleksonAlfred I-Tsung PanMarshall Field
    • B41J2175
    • B41J2/17553B41J2/1603B41J2/1623B41J2/1753
    • A method and apparatus for assembling an inkjet printhead is disclosed. The apparatus comprises one or more microheater resistors and a material, which can be reflowed by use of the heat generated by the microheater, disposed proximate to the heater resistor. The microheater resistor comprises a heater resistor with an input port and an output port. A first electrical conductor, coupled to the input port of the heater resistor, receives a first voltage and a second electrical conductor, coupled to the output port of the heater resistor, receives a second voltage. A curing effect in the adhesive is produced by heat generated in the heater resistor when electrical current flows through the resistor in response to an application of a first voltage to the first electrical conductor and a second voltage to the second electrical conductor.
    • 公开了一种用于组装喷墨打印头的方法和装置。 该装置包括一个或多个微加热器电阻器和材料,其可以通过使用靠近加热电阻器的微加热器产生的热量回流。 微加热器电阻器包括具有输入端口和输出端口的加热电阻器。 耦合到加热电阻器的输入端口的第一电导体接收耦合到加热电阻器的输出端口的第一电压和第二电导体,接收第二电压。 当电流响应于向第一电导体施加第一电压并且向第二电导体施加第二电压时,当电流流过电阻器时,在加热电阻器中产生的热量产生粘合剂中的固化效果。
    • 9. 发明授权
    • Self-aligned common carrier
    • 自对准公共载体
    • US06366468B1
    • 2002-04-02
    • US09560943
    • 2000-04-28
    • Alfred I-Tsung Pan
    • Alfred I-Tsung Pan
    • H05K118
    • H01L23/5389B41J2/14024B41J2/1408B41J2/14201B41J2202/20H01L24/24H01L24/82H01L25/0655H01L25/50H01L29/0657H01L2224/24227H01L2224/76155H01L2224/82102H01L2224/83136H01L2224/95085H01L2924/01019H01L2924/01033H01L2924/01039H01L2924/10158H01L2924/10329H01L2924/14H01L2924/1433H01L2924/15153H01L2924/15155H01L2924/15165H01L2924/15787H01L2924/351H01L2924/00
    • Precision alignment of one or more parts on a common carrier is described. A self-aligned common carrier includes a carrier substrate having one or more pockets formed in the substrate. Each pocket includes a side profile formed in the pocket. A chip having an identical side profile that complements the side profile in the pocket is mounted to the carrier substrate by inserting the chip into the pocket. The complementary side profiles result in near perfect self-alignment between the chip and at least two orthogonal planes of the carrier substrate. The chip and the carrier substrate can be made from a single crystal semiconductor material and the side profiles can be formed by anisotropic etch process that selectively etches the chip and the substrate along a predetermined crystalline plane. The chip and the carrier substrate can be single crystal silicon having a (100) crystalline orientation and the side profiles can be formed by selectively etching the silicon along a (111) crystalline plane. The matching coefficients of thermal expansion between the chip and the carrier substrate substantially reduces thermal stress related interconnect failures and misalignment between the chip and the carrier substrate. The carrier substrate and the chip can be anodically bonded to each other by oxidizing either one of the carrier substrate and the chip and etching the side profiles so that they are atomically flat.
    • 描述一个或多个部件在公共载体上的精确对准。 自对准公共载体包括具有在基板中形成的一个或多个凹穴的载体基板。 每个口袋包括形成在口袋中的侧面轮廓。 通过将芯片插入到口袋中,将具有与口袋中的侧面轮廓互补的侧面轮廓的芯片安装到载体基板。 互补侧分布导致芯片与载体衬底的至少两个正交平面之间的近似完美的自对准。 芯片和载体衬底可以由单晶半导体材料制成,并且可以通过各向异性蚀刻工艺形成侧面轮廓,该工艺可以沿着预定的晶面选择性地蚀刻芯片和衬底。 芯片和载体衬底可以是具有(100)晶体取向的单晶硅,并且可以通过沿着(111)晶面选择性蚀刻硅来形成侧面轮廓。 芯片和载体衬底之间的热膨胀匹配系数基本上降低了与热应力相关的互连故障和芯片与载体衬底之间的未对准。 载体衬底和芯片可以通过氧化载体衬底和芯片中的任何一个并蚀刻侧面轮廓使得它们原子平坦地彼此阳极结合。