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    • 51. 发明授权
    • Hyperacuity sensing
    • 超敏感
    • US5541652A
    • 1996-07-30
    • US426439
    • 1995-04-21
    • Warren B. JacksonDavid K. Biegelsen
    • Warren B. JacksonDavid K. Biegelsen
    • G01B11/00H04N1/028H04N5/335H04N3/12H04N3/14
    • H04N3/1512H04N3/155H04N5/335
    • Methods and devices for implementing hyperacuity sensing are provided. The imaging device comprises a sensor array including sensor elements, each of which provides intracellular spatial intensity distribution information necessary to render images with subpixel accuracy. The method includes the step of hyperacuity sensing implemented using sensors that output signals that are dependent upon the internal intensity distribution of impinging light. The output signals are processed to determine the internal intensity distribution, which can then be used to produce a hyperacuity image. Such a hyperacuity image has enhanced definition of edges, and reduced artifacts such as jaggies and moire effects.
    • 提供了实现超敏感检测的方法和设备。 成像装置包括传感器阵列,其包括传感器元件,每个传感器阵列提供用于以亚像素精度渲染图像所需的细胞内空间强度分布信息。 该方法包括使用输出取决于入射光的内部强度分布的信号的传感器实现的超敏感度检测步骤。 处理输出信号以确定内部强度分布,然后可以使用它们来产生超吸引力图像。 这样的超视觉图像具有增强的边缘定义,并且减少伪像,例如锯齿状和莫尔效应。
    • 52. 发明申请
    • Imaging System for Patterning of an Image Definition Material by Electro-Wetting and Methods Therefor
    • 用于通过电润湿对图像定义材料进行图案化的成像系统及其方法
    • US20140013980A1
    • 2014-01-16
    • US13548155
    • 2012-07-12
    • Janos VeresDavid K. Biegelsen
    • Janos VeresDavid K. Biegelsen
    • B41N3/00
    • G03G15/10G03G13/28G03G15/226
    • A system comprises an electro-wetting subsystem, a transfer subsystem, an imaging member, and an inking subsystem. The electro-wetting subsystem comprises a photo-responsive photoreceptor, a charging mechanism, an image definition material reservoir, a charge erase mechanism, and an exposure subsystem, such as a light source and rotating polygon forming a raster output scanner (ROS) disposed for exposure of the photoreceptor through the image definition material reservoir. The imaging member comprises a reimageable surface having certain properties, such as having a low surface energy to promote ink release onto a substrate. In operation, the photoreceptor is charged areawise. An exposure pattern is formed by the exposure subsystem on the surface of the charged photoreceptor, which is developed with image definition material. The image definition material pattern is transferred to the reimageable surface. The pattern is developed with ink. The inked image may be transferred to a substrate.
    • 系统包括电润湿子系统,传输子系统,成像构件和着墨子系统。 电润湿子系统包括光响应感光体,充电机构,图像定义材料储存器,电荷擦除机构和曝光子系统,例如形成光栅输出扫描器(ROS)的光源和旋转多边形,其设置用于 通过图像定义材料储存器曝光感光体。 成像构件包括具有某些特性的可再成像表面,例如具有低表面能以促进油墨释放到基底上。 在操作中,感光体面积充电。 通过曝光子系统在带图像定义材料显影的带电感光体的表面上形成曝光图案。 图像定义材料图案被转移到可再成像的表面。 该图案是用墨水开发的。 着墨的图像可以被转印到基底上。
    • 53. 发明申请
    • Electrophotographic Patterning of an Image Definition Material
    • 图像定义材料的电子照相图案
    • US20140013979A1
    • 2014-01-16
    • US13548151
    • 2012-07-12
    • Janos VeresDavid K. BiegelsenChu-Heng Liu
    • Janos VeresDavid K. BiegelsenChu-Heng Liu
    • B41N3/00
    • G03G17/02B41C1/1008B41M1/06
    • A method is disclosed in the context of a system comprises an electrophotographic subsystem, a transfer subsystem, an imaging member, and an inking subsystem. The electrophotographic subsystem comprises a photoreceptor, a charging subsystem, an exposure subsystem, and a development subsystem. In operation, the photoreceptor is charged areawise. An exposure pattern is formed by the exposure subsystem on the surface of the charged photoreceptor to thereby write a latent charge image onto the photoreceptor surface. The image is developed with an image definition material, such as a dampening fluid. The image definition material forms a positive pattern of the image to be printed. The image pattern is then transferred to the reimageable surface. The transferred pattern is then developed by selectively applying an ink over regions of image definition material. The inked image may be transferred to a substrate.
    • 在包括电子照相子系统,传输子系统,成像构件和着墨子系统的系统的上下文中公开了一种方法。 电子照相子系统包括感光体,充电子系统,曝光子系统和开发子系统。 在操作中,感光体面积充电。 通过曝光子系统在带电感光体的表面上形成曝光图案,从而将潜像写入感光体表面。 图像用诸如润版液的图像定义材料显影。 图像定义材料形成要打印的图像的正图案。 然后将图像图案转移到可再成像的表面。 然后通过在图像定义材料的区域上选择性地施加墨水来显影转印图案。 着墨的图像可以被转印到基底上。
    • 56. 发明申请
    • Preheating of Marking Material-Substrate Interface for Printing and the Like
    • 标记材料的预热 - 印刷等基板接口
    • US20120045258A1
    • 2012-02-23
    • US12861750
    • 2010-08-23
    • David K. BiegelsenAshish Pattekar
    • David K. BiegelsenAshish Pattekar
    • G03G15/16
    • G03G15/1695G03G2215/168G03G2215/1685G03G2215/1695
    • Substrate (or marking material) pre-heating is employed to facilitate fusing of the marking material with the substrate and with adjacent marking material. By heating primarily the material which becomes the interface between substrate and marking material, and by minimizing the distance between the point of heat application to the substrate (or marking material) and the marking nip in a print system, the amount of time for heat energy to dissipate prior to the application of the marking material to the substrate surface is minimized, meaning that the total amount of energy required to drive the heat source can be reduced. Addressable heating may be employed to further reduce energy consumption. Furthermore, optical heating may be used to provide rapid, on-demand heating, thereby reducing warm-up time as well as reducing unutilized heat energy.
    • 采用衬底(或标记材料)预热来促进标记材料与衬底和相邻标记材料的融合。 通过主要加热成为基材和标记材料之间的界面的材料,并且通过最小化在印刷系统中施加到基材(或标记材料)和标记辊隙的热点之间的距离,热能的时间量 在将标记材料施加到基板表面之前消散,这意味着可以减少驱动热源所需的总能量。 可以采用可寻址加热来进一步降低能量消耗。 此外,可以使用光学加热来提供快速的按需加热,从而减少预热时间以及减少未使用的热能。
    • 59. 发明授权
    • Hypersonic transducer
    • 超音速传感器
    • US07313242B2
    • 2007-12-25
    • US10800869
    • 2004-03-16
    • David K. Biegelsen
    • David K. Biegelsen
    • H04B3/00
    • H04B11/00G01S15/325G01S15/66G10K15/02H04R2217/03
    • This invention provides methods and apparatus for focusing a hypersonic beam to control both a direction and depth of audible formation delivery. Signals that are delivered to each of a plurality of hypersonic transducer elements are adjusted in phase so that transmitted hypersonic signals are focused at a focal point anywhere in space. The focal point of a focused hypersonic beam may be used to scan a space of interest when used in a receive mode in a pinging process. When objects are detected, a focused hypersonic beam may be used to deliver audible information substantially only to a neighborhood of the detected object.
    • 本发明提供了用于聚焦超声波束以控制可听见地层输送的方向和深度的方法和装置。 输送到多个超音速换能器元件中的每一个的信号被相位地调节,使得所发射的超音速信号被聚焦在空间任何地方的焦点处。 聚焦超音速波束的焦点可以用于在ping过程中以接收模式使用时扫描感兴趣的空间。 当检测到物体时,可以使用聚焦的超音速波束来基本上仅向被检测物体的邻域提供可听见的信息。