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    • 3. 发明申请
    • INKJET PRINTING APPARATUS AND METHOD THEREOF
    • 喷墨打印设备及其方法
    • US20120013672A1
    • 2012-01-19
    • US13259561
    • 2009-05-29
    • Bill HollandNapolean LeoniOmer GilaEric G. Hanson
    • Bill HollandNapolean LeoniOmer GilaEric G. Hanson
    • B41J2/06
    • B41J11/0015
    • An inkjet printing apparatus includes a media transport unit to transport a print media along a print media transport path, at least one printhead assembly including an inkjet printhead having a plurality of nozzles to print on a select portion of the print media, the inkjet printhead forming a print region adjacent to the nozzles in an area between the printhead assembly and a print portion of the print media transport path, and at least one of an electrostatic discharge unit to neutralize a resulting electrical charge on at least the select portion of the print media before the at least select portion of the print media enters the print region and a neutralization unit to neutralize an electric field in the print region.
    • 一种喷墨打印设备包括:一个介质传送单元,用于沿打印介质输送路径输送打印介质;至少一个打印头组件,其包括具有多个喷嘴的喷墨打印头,以在打印介质的选择部分上打印;喷墨打印头形成 在所述打印头组件和所述打印介质传送路径的打印部分之间的区域中与所述喷嘴相邻的打印区域,以及静电放电单元中的至少一个,用于在至少所述打印介质的所述选择部分上中和所产生的电荷 在打印介质的至少选择部分进入打印区域之前,以及中和单元以中和打印区域中的电场。
    • 7. 发明授权
    • Inkjet printing apparatus and method thereof
    • 喷墨打印设备及其方法
    • US08425011B2
    • 2013-04-23
    • US13259561
    • 2009-05-29
    • Bill HollandNapolean LeoniOmer GilaEric G. Hanson
    • Bill HollandNapolean LeoniOmer GilaEric G. Hanson
    • B41J2/06B41J29/38
    • B41J11/0015
    • An inkjet printing apparatus includes a media transport unit to transport a print media along a print media transport path, at least one printhead assembly including an inkjet printhead having a plurality of nozzles to print on a select portion of the print media, the inkjet printhead forming a print region adjacent to the nozzles in an area between the printhead assembly and a print portion of the print media transport path, and at least one of an electrostatic discharge unit to neutralize a resulting electrical charge on at least the select portion of the print media before the at least select portion of the print media enters the print region and a neutralization unit to neutralize an electric field in the print region.
    • 一种喷墨打印设备包括:一个介质传送单元,用于沿打印介质输送路径输送打印介质;至少一个打印头组件,其包括具有多个喷嘴的喷墨打印头,以在打印介质的选择部分上打印;喷墨打印头形成 在所述打印头组件和所述打印介质传送路径的打印部分之间的区域中与所述喷嘴相邻的打印区域,以及静电放电单元中的至少一个,用于在至少所述打印介质的所述选择部分上中和所产生的电荷 在打印介质的至少选择部分进入打印区域之前,以及中和单元以中和打印区域中的电场。
    • 8. 发明授权
    • Solder jet printhead
    • 焊接喷头打印头
    • US5779971A
    • 1998-07-14
    • US660649
    • 1996-06-07
    • Alfred I. Tsung PanRoss R. AllenEric G. Hanson
    • Alfred I. Tsung PanRoss R. AllenEric G. Hanson
    • B23K3/06B41J2/01B05D1/02
    • B23K3/0607B41J2/01
    • A solder drop ejector is disclosed where a current through liquid solder in a channel flows in a direction opposite to the direction of current through a fixed conductor insulated from the channel. The magnetic fields generated repulse the solder toward an orifice to eject a droplet of solder. The dielectric layer separating the fixed conductor and the solder is formed of a film. The film may be made extremely thin, such as 0.1 microns, so that the necessary repulsion force generated by the oppositely flowing currents may be achieved with relatively low driving currents of 10-200 amperes. The thin dielectric film is not molded and is not required to provide mechanical support to a channel wall. Hence, the manufacturing of the resulting solder jet printhead is simplified and its reliability is improved.
    • 公开了一种焊滴喷射器,其中通道中的电流通过液体焊料沿与电流绝缘的固定导体的电流方向相反的方向流动。 所产生的磁场使焊料朝向孔喷射,以喷射焊料液滴。 分离固定导体和焊料的电介质层由薄膜形成。 该膜可以制成非常薄,例如0.1微米,使得由相对流动的电流产生的必要的排斥力可以用相对低的10-200安培的驱动电流来实现。 薄的电介质膜不被模制,并且不需要为通道壁提供机械支撑。 因此,所得到的喷墨打印头的制造被简化并且其可靠性得到改善。
    • 9. 发明授权
    • Total internal reflection optical switches employing thermal activation
    • 全内反射光开关采用热激活
    • US5699462A
    • 1997-12-16
    • US663503
    • 1996-06-14
    • Julie E. FouquetPhillip W. BarthKok-Wai ChangLeslie A. FieldEric G. HansonLong YangDavid K. Donald
    • Julie E. FouquetPhillip W. BarthKok-Wai ChangLeslie A. FieldEric G. HansonLong YangDavid K. Donald
    • G02B26/08G02B6/35G02B26/02G02F1/19G02F1/313G02F1/00
    • G02B26/004G02B6/3538G02B6/3546G02B6/3576G02B6/3584G02B6/3596
    • A switching element defines a transmitting state and a reflecting state for a pair of intersecting waveguides that have a gap at their intersection. In the preferred embodiment, the switching element exhibits total internal reflection at the gap sidewall from one waveguide to the other when not in the transmitting state. In the transmitting state, index-matching liquid fills the gap, enabling light to continue in the original waveguide direction. The switching element may use ink jet techniques or bubble techniques to displace index-matching liquid. The index-matching fluid may be projected from a gap between the waveguides by a jet mechanism, or a vapor or dissolved gas bubble may be formed to fill the gap between the waveguides to provide the reflecting state for the switching element. Using either of the techniques, heaters are employed to initiate the switching operation. In some embodiments, more than one heater is utilized. In the preferred embodiment, waveguides are formed on one substrate and heaters are formed on another. Then the substrates are aligned and bonded together to position the heaters in very close proximity to the intersection between the waveguides. Preferably, the switching element is one element in a matrix of such elements for routing signals between arrays of input and output waveguides.
    • 开关元件限定了在其交叉点处具有间隙的一对相交波导的发射状态和反射状态。 在优选实施例中,当不处于发送状态时,开关元件在从一个波导到另一个波导的间隙侧壁处呈现全内反射。 在透射状态下,折射率匹配液体填充间隙,使光能够沿原始波导方向继续。 开关元件可以使用喷墨技术或气泡技术来移位折射率匹配液体。 折射率匹配流体可以通过喷射机构从波导之间的间隙突出,或者可以形成蒸气或溶解的气泡以填充波导之间的间隙,以提供开关元件的反射状态。 使用这些技术之一,采用加热器来启动切换操作。 在一些实施例中,使用多于一个的加热器。 在优选实施例中,在一个基板上形成波导,另一个形成加热器。 然后将基板对准并结合在一起,以将加热器定位在非常接近波导之间的交叉点处。 优选地,开关元件是用于在输入和输出波导阵列之间路由信号的这种元件的矩阵中的一个元件。