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    • 1. 发明授权
    • System and method for representing and manipulating three-dimensional
objects on massively parallel architectures
    • 用于在大规模并行架构上表示和操纵三维对象的系统和方法
    • US5488692A
    • 1996-01-30
    • US289181
    • 1994-08-11
    • Michael S. KarasickDavid R. Strip
    • Michael S. KarasickDavid R. Strip
    • G09G5/36G06T1/20G06T15/00G06T19/20G06F3/14
    • G06T17/10G06T19/20G06T2210/52G06T2219/2021
    • A parallel computing system is described that comprises a plurality of uniquely labeled, parallel processors, each processor capable of modelling a three-dimensional object that includes a plurality of vertices, faces and edges. The system comprises a front-end processor for issuing a modelling command to the parallel processors, relating to a three-dimensional object. Each parallel processor, in response to the command and through the use of its own unique label, creates a directed-edge (d-edge) data structure that uniquely relates an edge of the three-dimensional object to one face of the object. Each d-edge data structure at least includes vertex descriptions of the edge and a description of the one face. As a result, each processor, in response to the modelling command, operates upon a small component of the model and generates results, in parallel with all other processors, without the need for processor-to-processor intercommunication.
    • 描述了包括多个唯一标记的并行处理器的并行计算系统,每个处理器能够对包括多个顶点,面和边的三维对象进行建模。 该系统包括前端处理器,用于向与三维物体相关的并行处理器发出建模命令。 每个并行处理器响应于该命令并通过使用其自己的唯一标签,创建将三维对象的边缘与对象的一个​​面唯一相关联的有向边(d边)数据结构。 每个d边缘数据结构至少包括边缘的顶点描述和一个面的描述。 结果,响应于建模命令,每个处理器对模型的小部件进行操作,并且与所有其他处理器并行地生成结果,而不需要处理器到处理器的相互通信。
    • 3. 发明授权
    • Method for machine tool and profilometer coordinate registration
    • 机床和轮廓仪坐标注册方法
    • US06970766B2
    • 2005-11-29
    • US10830649
    • 2004-04-23
    • Randolph C. BrostDavid R. StripRandall H. Wilson
    • Randolph C. BrostDavid R. StripRandall H. Wilson
    • G05B19/401G06F19/00
    • G05B19/401G05B2219/37069G05B2219/50074
    • A method for registering machine tool and profilometer coordinates, wherein the machine tool defines a C-axis having a zero position, C=0, comprises loading a sacrificial workpiece into the machine tool; cutting several first features in a surface of the sacrificial workpiece and producing a linear machine tool motion across the workpiece; determining the centroid of each first cut feature; fitting a line to the centroids of the first cut features; and measuring angle θ0 of the line relative to the C-axis zero position. The angle θ0 is the departure in profilometer coordinates from the C=0 line. The method includes moving the machine tool to a fixed radius; cutting several second features in a surface of the sacrificial workpiece and producing a circular machine tool motion across the workpiece; determining the centroid of each second cut feature; fitting a circle to the centroids of the second cut features; and determining a center of the circle. The center of the circle is the machine tool center in profilometer coordinates.
    • 一种用于记录机床和轮廓仪坐标的方法,其中机床定义具有零位置C = 0的C轴,包括将牺牲工件装载到机床中; 切割牺牲工件的表面中的几个第一特征并且在工件上产生线性机床运动; 确定每个第一切割特征的质心; 将线条拟合到第一切割特征的质心上; 并且测量该线相对于C轴零位置的角度θ0 是轮廓仪坐标从C = 0线的偏离。 该方法包括将机床移动到固定半径; 切割牺牲工件的表面中的几个第二特征并且产生横跨工件的圆形机床运动; 确定每个第二剪切特征的质心; 为第二切割特征的质心拟合一个圆; 并确定圆的中心。 圆的中心是轮廓仪坐标中的机床中心。
    • 4. 发明授权
    • Light emitting devices with patterned angular color dependency
    • 具有图案角度颜色依赖性的发光器件
    • US07208863B2
    • 2007-04-24
    • US10888171
    • 2004-07-09
    • David R. Strip
    • David R. Strip
    • H05B33/12
    • H01L51/5265H01L27/3239H01L51/0059H01L51/0081H01L51/5036H01L51/5268H01L51/5275
    • A light emitting OLED apparatus including a microcavity OLED device having a broad-band light emitting organic EL element and configured to have angular-dependent narrow-band light emission, and a patterned light-integrating element provided over a portion of a light emitting region of the microcavity device, wherein the light-integrating element integrates the angular-dependent narrow-band emission from different angles from the microcavity OLED device to form an integrated light emission with decreased angular dependence in accordance with the pattern of the light-integrating element, and the apparatus maintains relatively angular-dependent emission in light emitting regions of the microcavity device not provided with the light-integrating element.
    • 一种发光OLED装置,包括具有宽带发光有机EL元件并被配置为具有角度依赖的窄带发光的微腔OLED器件,以及图案化的光集成元件,其设置在发光区域的一部分上 所述微腔装置,其中所述光积分元件将来自所述微腔OLED器件的不同角度的与角度相关的窄带发射集成,以根据所述光积分元件的图案形成具有减小的角度依赖性的集成光发射,以及 该装置在未设置有光积分元件的微腔装置的发光区域中保持相对角度依赖的发射。
    • 5. 发明授权
    • Producing repetitive coatings on a flexible substrate
    • 在柔性基材上生产重复涂层
    • US07169232B2
    • 2007-01-30
    • US10858424
    • 2004-06-01
    • David R. StripYuan-Sheng TyanRonald S. Cok
    • David R. StripYuan-Sheng TyanRonald S. Cok
    • C23C14/12
    • C23C14/562C23C14/042C23C14/12H01L51/56
    • Apparatus for use in making a device by forming repetitive sequences of coatings on a flexible substrate including defining a path for the flexible substrate; the flexible substrate being disposed about at least a portion of the path; a first deposition source for depositing material located around the path periphery and in cooperative relationship with the surface of the disposed flexible substrate; an actuable structure effective when actuated for moving the flexible substrate around at least more than one revolution around the path; and actuating the actuable structure and the first deposition source so that at least two separate material coatings are provided on the substrate by the deposition source.
    • 用于通过在柔性基板上形成重复的涂层序列来制造装置的装置,包括限定柔性基板的路径; 柔性基底围绕路径的至少一部分设置; 第一沉积源,用于沉积围绕所述路径周边并与所述设置的柔性基板的表面协调关系的材料; 致动结构在致动时有效地使柔性基板围绕路径至少旋转一圈以上; 以及致动所述致动结构和所述第一沉积源,使得通过所述沉积源在所述衬底上提供至少两个分开的材料涂层。