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    • 4. 发明授权
    • Magnetic position sensor
    • 磁性位置传感器
    • US5177631A
    • 1993-01-05
    • US728910
    • 1991-06-28
    • David M. OrlickiBruce E. KoppeJohn M. Kresock
    • David M. OrlickiBruce E. KoppeJohn M. Kresock
    • B41J2/44G01R5/16G02B26/10
    • G01R5/16G02B26/10
    • A beam scanning galvanometer is disclosed which oscillates a mirror in a non-resonant mode. The moving parts of the galvanometer are made with as small a moment of inertia as possible because the mirror is oscillated in a non-resonant mode. The galvanometer uses two sets of crossed leaf-springs to support the mirror instead of bearings which are usually used in non-resonant galvanometers. Each of the sets of leaf-springs is formed of a single strip of cold rolled stainless steel. The springs are embedded in uniquely shaped cavities in a permanent magnet that supports the mirror at a distance very close to an axis of rotation of the mirror. The mirror is specially shaped with beveled edges so that its moment of inertia is low and so that it can oscillate in very close proximity to a driving current coil which surrounds the mirror supporting magnet. A magnetic position sensor is used to detect as angular position of the mirror during operation of the galvanometer. A compensating system eliminates distorting magnetic field effects from a magnetic driving system from adversely influencing the magnetic position sensor. Signals from the magnetic position sensor are usable to provide accurate feedback information to a galvanometer driving system.
    • 5. 发明申请
    • FLUID-EJECTING DEVICE WITH SIMPLIFIED CONNECTIVITY
    • 具有简化连接性的流体喷射装置
    • US20080001999A1
    • 2008-01-03
    • US11427374
    • 2006-06-29
    • Mario J. CiminelliDavid M. OrlickiChristopher R. Morton
    • Mario J. CiminelliDavid M. OrlickiChristopher R. Morton
    • B41J2/14B41J2/05B41J2/16
    • B41J2/14072B41J2/1753
    • A fluid-ejecting device with simplified connectivity is disclosed herein. According to an embodiment of the present invention, a common lead is provided such that a plurality of electrical contacts on a fluid-ejecting chip are connected to the common lead, which is located on a single-layer-flex circuit. Because a common lead is provided at an edge of the single-layer-flex circuit adjacent the fluid-ejecting chip, fewer signals need to be routed through the single-layer-flex circuit to such edge, thereby reducing the complexity of such circuit. Further, bond sites at the edge of the single-layer-flex circuit adjacent the fluid-ejecting device are arranged in a manner that minimizes the required length of wire bonds for connecting such contacts to the contacts on the fluid-ejecting chip.
    • 本文公开了具有简化的连接性的流体喷射装置。 根据本发明的一个实施例,提供了公共引线,使得流体喷射芯片上的多个电触点连接到位于单层柔性电路上的公共引线。 由于在与液体喷射芯片相邻的单层柔性电路的边缘处提供共同的引线,所以需要将较少的信号通过单层柔性电路布线到这种边缘,从而降低这种电路的复杂性。 此外,与流体喷射装置相邻的单层 - 柔性电路的边缘处的接合位置被布置成使得将这种触点连接到流体喷射芯片上的触点的引线接合所需的长度最小化。
    • 6. 发明授权
    • Data transmission for a sparse array printhead
    • 稀疏阵列打印头的数据传输
    • US5923825A
    • 1999-07-13
    • US759198
    • 1996-12-04
    • David M. OrlickiKaren L. Herczeg
    • David M. OrlickiKaren L. Herczeg
    • G06K15/12H04N1/50G06F15/00H04N1/21
    • H04N1/502G06K15/1238
    • A data transmission system and method is provided for furnishing data to respective drivers for a multicolor sparse array non-impact recording head that includes plural sets of recording elements for sequentially exposing a single pixel area on a recording medium. In one recording mode each recording element of a set of recording elements for recording one color is provided with the same color component exposure data to sequentially control enablement of the plural recording elements at the pixel area. In a second mode at least one of the recording elements of the set is disabled from recording at the pixel area whereas at least one other recording element of the set is enabled to record with a color component exposure at the pixel area.
    • 提供了一种数据传输系统和方法,用于向多色稀疏阵列非冲击记录头的相应驱动器提供数据,该多色稀疏阵列非冲击记录头包括用于顺序曝光记录介质上的单个像素区域的多组记录元件。 在一个记录模式中,用于记录一种颜色的一组记录元件的每个记录元件被提供有相同的颜色分量曝光数据,以顺序控制在像素区域处的多个记录元件的使能。 在第二模式中,该组的至少一个记录元件被禁止在像素区域记录,而该组的至少一个其它记录元件能够在像素区域处以彩色分量曝光进行记录。
    • 10. 发明授权
    • Beam scanning galvanometer with spring supported mirror
    • 光束扫描振镜,带弹簧支撑镜
    • US5280377A
    • 1994-01-18
    • US723290
    • 1991-06-28
    • Jasper S. ChandlerDavid M. OrlickiJohn M. Kresock
    • Jasper S. ChandlerDavid M. OrlickiJohn M. Kresock
    • B41J2/44B41J2/32B41J29/42G01R5/00G01R5/16G02B26/10G02B26/08
    • G01R5/16
    • A beam scanning galvanometer is disclosed which oscillates a mirror in a non-resonant mode. The moving parts of the galvanometer are made with as small a moment of inertia as possible because the mirror is oscillated in a non-resonant mode. The galvanometer uses two sets of crossed leaf-springs to support the mirror instead of bearings which are usually used in non-resonant galvanometers. Each of the sets of leaf-springs is formed of a single strip of cold rolled stainless steel. The springs are embedded in uniquely shaped cavities in a permanent magnet that supports the mirror at a distance very close to an axis of rotation of the mirror. The mirror is specially shaped with beveled edges so that its moment of inertia is low and so that it can oscillate in very close proximity to a driving current coil which surrounds the mirror supporting magnet. A magnetic position sensor is used to detect an angular position of the mirror during operation of the galvanometer. A compensating system eliminates distorting magnetic field effects from a magnetic driving system from adversely influencing the magnetic position sensor. Signals from the magnetic position sensor are usable to provide accurate feedback information to a galvanometer driving system.
    • 公开了一种以非谐振模式振荡反射镜的光束扫描振镜。 电流计的运动部分由尽可能小的惯性矩制成,因为反射镜以非谐振模式振荡。 电流计使用两套交叉的薄板弹簧来支撑镜子,而不是通常用于非共振电流计的轴承。 每组板簧由单条冷轧不锈钢板形成。 弹簧被嵌入永久磁铁中的独特形状的空腔中,该永磁体支撑反射镜的距离非常接近反射镜的旋转轴线。 镜子是特殊形状的,具有倾斜的边缘,使得其惯性矩较低,使得其可以非常接近围绕反射镜支撑磁体的驱动电流线圈振荡。 磁性位置传感器用于在电流计操作期间检测反射镜的角度位置。 补偿系统消除了磁驱动系统的磁场效应对磁性位置传感器的不利影响。 来自磁位置传感器的信号可用于向检流计驱动系统提供准确的反馈信息。