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    • 22. 发明授权
    • Apparatus for playing a board game
    • 用于玩棋盘游戏的装置
    • US5351965A
    • 1994-10-04
    • US119040
    • 1993-09-10
    • Stephen J. TelferMichael J. Zuraw
    • Stephen J. TelferMichael J. Zuraw
    • A63F3/02A63F3/00
    • A63F3/02
    • Apparatus for playing a game comprises a board bearing a two-dimensional grid of fixed playing areas, there being equal number of fixed playing areas of first and second colors; two equal sets of movable playing areas differing in color but having an equal number of movable playing areas therein, each of these movable playing areas being capable of resting upon one of the fixed playing areas; and two equal sets of playing pieces with at least three different types of playing pieces in each set, each playing piece having a first characteristic identifying the set to which it belongs, and a second characteristic identifying the type of playing piece within that set, each playing piece being capable of resting upon one of the fixed playing areas, or upon one of the movable playing areas which is itself resting in a fixed position upon one of the fixed playing areas.
    • 用于玩游戏的装置包括具有固定游戏区域的二维网格的板,存在相同数量的第一和第二颜色的固定播放区域; 两个相等的可移动游戏区域的颜色不同但在其中具有相等数量的可移动游戏区域,这些可移动游戏区域中的每一个都能够靠在其中一个固定播放区域上; 以及两组相同的播放片,每组中至少有三种不同类型的播放片,每个播放片具有标识其所属集合的第一特征,以及标识该集合内的播放片类型的第二特征, 可以在其中一个固定的游戏区域上或在其中一个固定游戏区域上的固定位置上的一个可移动的游戏区域上休息。
    • 23. 发明授权
    • Registration method
    • 注册方式
    • US5681676A
    • 1997-10-28
    • US121045
    • 1993-10-20
    • Stephen J. TelferMichael J. Zuraw
    • Stephen J. TelferMichael J. Zuraw
    • G03B35/00B41M5/30G02B27/22G03B35/24G03C7/46G03C9/00G03C9/08G03F7/20G03F9/00
    • B41M5/30B41M5/305G02B27/2214G03B35/24G03C7/46G03C9/00G03F7/2022Y10S430/146Y10S430/147Y10S430/165
    • A three-dimensional image is produced using an imaging medium having a lenticular screen, the lenticles of the screen dividing the opposed surface of the imaging medium into a plurality of elongate image areas, the imaging medium having on the opposed side thereof a radiation-sensitive layer, the radiation-sensitive layer comprising a color-forming composition adapted to undergo a change of color upon increase in the temperature of the radiation-sensitive layer above a color-forming temperature for a color-forming time. The radiation-sensitive layer is imagewise exposed to actinic radiation which does not pass through the lenticular screen, thereby causing the color-forming composition to undergo its change in color in exposed areas and to form in the radiation-sensitive layer a composite image, the composite image comprising, in each of the image areas, a plurality of image strips extending lengthwise along the image area, each of the image strips containing information from a view of the object, each of the plurality of image strips in one image area containing information from a different view of the object thereby forming a copy of the composite image in the radiation-sensitive layer, so that a three-dimensional orthoscopic image of the object will appear to an observer seeing the composite image in the radiation-sensitive layer through the lenticular screen.
    • 使用具有双凸透镜屏的成像介质产生三维图像,所述屏幕的透镜将所述成像介质的相对表面分成多个细长图像区域,所述成像介质在其相对侧上具有辐射敏感性 层,该辐射敏感层包括适于在成色时间的成色温度以上的辐射敏感层的温度增加时经历颜色变化的成色组合物。 辐射敏感层被成像地暴露于不通过透镜屏幕的光化辐射,从而使成色组合物在曝光区域中经历其颜色变化,并在辐射敏感层中形成复合图像, 合成图像在每个图像区域中包括沿着图像区域纵向延伸的多个图像条,每个图像条带包含来自对象视图的信息,一个图像区域中的多个图像条带中的每一个包含信息 从对象的不同视图,从而在辐射敏感层中形成复合图像的副本,使得对象的三维无畸变图像将出现在观察者通过辐射敏感层的辐射敏感层中的合成图像 透镜屏。
    • 25. 发明授权
    • Multi-color electrophoretic displays
    • 多色电泳显示
    • US08797634B2
    • 2014-08-05
    • US13300040
    • 2011-11-18
    • Richard J. Paolini, Jr.George G. HarrisStephen J. Telfer
    • Richard J. Paolini, Jr.George G. HarrisStephen J. Telfer
    • G02B26/00G09G3/34
    • G02F1/167G02F1/1347G02F2203/34
    • An electrophoretic display (100) has stacked first (104) and second (120) electrophoretic layers, each comprising charged particles (W, C, Y, M) in a fluid (106, 122). The first layer contains particles of white (W) and first color (M) particles and has three optical states (a) white particles adjacent a viewing surface; (b) first color particles lie adjacent the viewing surface; and (c) both types of particles shuttered to allow light to pass through the first layer. The second layer contains particles having second (C) and third (Y) colors and has three optical states (d) second particles (C) adjacent the first layer; (e) third particles (Y) adjacent the first layer; and (f) second (C) and third (Y) particles intermixed within the fluid.
    • 电泳显示器(100)具有堆叠在第一(104)和第二(120)电泳层中,每个电泳层包含流体(106,122)中的带电粒子(W,C,Y,M)。 第一层包含白色(W)和第一颜色(M)颗粒的颗粒,并具有三个光学状态(a)与观察表面相邻的白色颗粒; (b)第一颜色颗粒位于观察表面附近; 和(c)两种类型的颗粒被切断以允许光通过第一层。 第二层含有具有第二(C)和第三(Y)颜色的颗粒,并且具有三个光学状态(d)与第一层相邻的第二颗粒(C); (e)与第一层相邻的第三颗粒(Y); 和(f)混合在流体内的第二(C)和第三(Y)颗粒。
    • 27. 发明申请
    • PRINT HEAD PULSING TECHNIQUES FOR MULTICOLOR PRINTERS
    • 打印头打印头打印技术
    • US20110050829A1
    • 2011-03-03
    • US12873796
    • 2010-09-01
    • Brian BuschChien LiuStephen J. TelferWilliam T. VetterlingPeter Zelten
    • Brian BuschChien LiuStephen J. TelferWilliam T. VetterlingPeter Zelten
    • B41J2/35
    • B41J2/35B41J2/355B41J2/5056H04N1/3876
    • In one aspect of the invention there is disclosed a multicolor thermal imaging system wherein different heating elements on a thermal print head can print on different color-forming layers of a multicolor thermal imaging member in a single pass. The line-printing time is divided into segments, each of which is divided into a plurality of subintervals. All of the pulses within the segments have the same energy. In one embodiment, every pulse has the same amplitude and duration. Different colors are selected for printing during the different segments by varying the fraction of subintervals that contain pulses. This technique allows multiple colors to be printed using a thermal print head with a single strobe signal line. Pulsing patterns may be chosen to reduce the coincidence of pulses provided to multiple print head elements, thereby reducing the peak power requirements of the print head.
    • 在本发明的一个方面,公开了一种多色热成像系统,其中热打印头上的不同加热元件可以在单次通过中在多色热成像构件的不同成色层上印刷。 行打印时间被划分成段,每个段被分成多个子区间。 段内的所有脉冲具有相同的能量。 在一个实施例中,每个脉冲具有相同的幅度和持续时间。 通过改变包含脉冲的子区间的分数来选择不同的颜色来在不同的段中进行打印。 该技术允许使用具有单个选通信号线的热打印头来打印多种颜色。 可以选择脉冲图案以减少提供给多个打印头元件的脉冲的一致性,从而降低打印头的峰值功率要求。