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    • 52. 发明授权
    • Macrodetector based image conversion system
    • 基于宏检测器的图像转换系统
    • US5790699A
    • 1998-08-04
    • US549379
    • 1995-10-27
    • Warren B. JacksonDavid A. JaredSumit BasuDavid K. Biegelsen
    • Warren B. JacksonDavid A. JaredSumit BasuDavid K. Biegelsen
    • H04N1/40G06T7/60H04N1/409G06K9/48G06K9/32G06K9/36
    • H04N1/4092
    • An image detection and pixel processing system includes a plurality of detector elements for receiving an image. The detector elements are subdivided into a plurality of macrodetectors, with each macrodetector constituting four or more detector elements, and with each macrodetector providing information for determining both a total light intensity value within the macrodetector and a centroid of light intensity indicative of light intensity position within the macrodetector. An image processing assembly receives information from the plurality of macrodetectors, with the image processing assembly relating a pixel and its encompassed subpixel area to each corresponding macrodetector, and further determining the total light intensity within the pixel and the centroid of light intensity within the subpixel. The image processing assembly is capable of rendering each subpixel area as an edge when magnitude of the centroid of light intensity is greater than a predetermined threshold.
    • 图像检测和像素处理系统包括用于接收图像的多个检测器元件。 检测器元件被细分为多个宏检测器,每个宏检测器构成四个或更多个检测器元件,并且每个宏检测器提供用于确定宏检测器内的总光强度值的信息,以及指示宏观检测器内的光强度位置的光强度的质心 宏检测器 图像处理组件从多个宏检测器接收信息,图像处理组件将像素及其包含的子像素区域相关联到每个对应的宏检测器,并进一步确定像素内的总光强度和子像素内的光强度的质心。 当光强度的大小大于预定阈值时,图像处理组件能够将每个子像素区域呈现为边缘。
    • 55. 发明授权
    • Pixel elements having resistive divider elements
    • 具有电阻分压元件的像素元件
    • US5572344A
    • 1996-11-05
    • US368131
    • 1995-01-03
    • Warren B. JacksonDavid K. BiegelsenDavid A. JaredRichard L. Weisfield
    • Warren B. JacksonDavid K. BiegelsenDavid A. JaredRichard L. Weisfield
    • G02F1/133G02F1/1343G09F9/30G02F1/1393
    • G02F1/134309
    • Pixel elements capable of imaging spatial intensity variations within themselves, and displays comprised of such elements, are described. The pixel elements include a resistance layer disposed between at least one set of electrodes. Over that resistance layer is a liquid crystal material. Over that liquid crystal material is a field electrode. In operation a voltage, whose components are referenced to the field electrode, is applied across the resistance layer. The resulting current flow induces a spatially varying electric field between the field electrode and the resistance layer. That spatially varying electric field results in a corresponding response by the liquid crystal layer which results in a spatially varying light transmission through the liquid crystal material. By varying the voltage across the resistance layer and/or the voltage applied to the field electrode varying amounts of light transmission can be achieved.
    • 描述了能够对其内的空间强度变化进行成像的像素元件以及由这些元件组成的显示器。 像素元件包括设置在至少一组电极之间的电阻层。 在该电阻层之上是液晶材料。 在该液晶材料上是场电极。 在操作中,其分量参考场电极的电压跨越电阻层施加。 所得到的电流在场电极和电阻层之间引起空间变化的电场。 该空间变化的电场导致液晶层的相应响应,这导致通过液晶材料的空间变化的光透射。 通过改变跨越电阻层的电压和/或施加到场电极的电压可以实现不同的光透射量。
    • 57. 发明授权
    • Integrating hyperacuity sensors and arrays thereof
    • 整合超声传感器及其阵列
    • US5578837A
    • 1996-11-26
    • US368114
    • 1995-01-03
    • Warren B. JacksonDavid K. BiegelsenRichard L. Weisfield
    • Warren B. JacksonDavid K. BiegelsenRichard L. Weisfield
    • H01L27/146H01L31/02H01L31/10H01L29/04H01L31/036H01L31/0376H01L31/20
    • H01L27/14665H01L31/02024
    • Sensor elements which are capable of sensing illumination edges with subpixel accuracy are described. The sensor elements include a plurality of conductive storage nodes and a plurality of collection electrodes which are in a low resistance, touching relationship with a first semiconductive material layer. A second semiconductive material layer is placed over the first such that the first and second semiconductive material layers and the storage nodes form light sensors. Near the first semiconductive layer is a gate electrode. When a first voltage is applied to the gate electrode the resistance of the first semiconductive material layer between the storage nodes and the conductive collection electrodes is high. Illumination which strikes the sensor element creates electron hole pairs which induce charges on the storage nodes. When a second voltage is applied to the gate electrode the resistance of the first semiconductive material layer between the storage nodes and the conductive collection electrodes becomes low. Charges which have accumulated onto the storage nodes can then easily flow to the conductive collection electrodes.
    • 描述了能够感测亚像素精度的照明边缘的传感器元件。 传感器元件包括多个导电存储节点和与第一半导体材料层处于低电阻,触摸关系的多个收集电极。 第二半导体材料层放置在第一半导体材料层上,使得第一和第二半导体材料层和存储节点形成光传感器。 靠近第一半导体层是栅电极。 当向栅电极施加第一电压时,存储节点与导电收集电极之间的第一半导体材料层的电阻高。 撞击传感器元件的照明产生在存储节点上引起电荷的电子空穴对。 当向栅电极施加第二电压时,存储节点和导电收集电极之间的第一半导体材料层的电阻变低。 积聚在存储节点上的电荷然后可以容易地流到导电收集电极。
    • 60. 发明授权
    • Imaging system for patterning of an image definition material by electro-wetting and methods therefor
    • 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
    • US09529307B2
    • 2016-12-27
    • US13548155
    • 2012-07-12
    • Janos VeresDavid K. Biegelsen
    • Janos VeresDavid K. Biegelsen
    • G03G15/10G03G15/22G03G13/28
    • 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。