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    • 5. 发明授权
    • Application of speed effects to a video presentation
    • 速度效果应用于视频演示
    • US08209612B2
    • 2012-06-26
    • US12762747
    • 2010-04-19
    • Gary Johnson
    • Gary Johnson
    • G06F3/00G06F3/048
    • G11B27/34G11B27/005G11B27/034G11B27/036
    • Some embodiments provide a method of specifying speed effects for playing a video clip. The method defines a set of speed effects for the video clip. It then displays in real-time a presentation of the video clip that accounts for the set of speed effects defined for the video clip. In some embodiments, this method represents the playback speed of a video clip in terms of a graph that is part of a graphical user interface (“GUI”). This graph is defined along two axes, with one axis representing the playback time, and the other axis representing the content-time (i.e., the time within the video clip). In these embodiments, a user can change the playback speed of the video clip by using a set of GUI operations to select and modify the graph. For instance, a user can select and adjust the graph at different instances in time in order to change the playback speed of the video clip at these instances. Different embodiments use different types of graphs to represent playback speed. For instance, some embodiments use a deformable line bar that is superimposed on a rectangle that represents the video clip.
    • 一些实施例提供了一种指定用于播放视频剪辑的速度效果的方法。 该方法定义了视频剪辑的一组速度效果。 然后,它实时显示视频剪辑的呈现,该视频剪辑占用为视频剪辑定义的速度效果集。 在一些实施例中,该方法表示作为图形用户界面(“GUI”)的一部分的图形的视频剪辑的回放速度。 该图形沿两个轴定义,一个轴表示播放时间,另一个轴表示内容时间(即,视频剪辑内的时间)。 在这些实施例中,用户可以通过使用一组GUI操作来改变视频剪辑的播放速度来选择和修改图形。 例如,用户可以在不同的时间点选择和调整图形,以便在这些情况下改变视频剪辑的播放速度。 不同的实施例使用不同类型的图表来表示播放速度。 例如,一些实施例使用叠加在表示视频剪辑的矩形上的可变形线条。
    • 7. 发明授权
    • Graduated delay line for increased clock skew correction circuit operating range
    • 渐变延迟线用于增加时钟偏差校正电路的工作范围
    • US07471130B2
    • 2008-12-30
    • US11132502
    • 2005-05-19
    • Tyler GommGary Johnson
    • Tyler GommGary Johnson
    • H03L7/06
    • H03L7/08G11C7/222H03L7/0812
    • Clock synchronization and skew adjustment circuits are described that utilize varying unit delay elements in their delay lines in either a graduated or a stepped unit time delay arrangement, allowing a reduced circuit implementation and improved lock characteristics. These graduated or a stepped unit time delays allow reduction in the number of the fine unit delay elements of the delay lines by placing a fine delay element granularity at the most critical timings to sense and adjust for the portion of the clock signal time period that are high speed or critical. This allows clock synchronization and skew adjustment circuits to be implemented in an optimized manner that exhibits a reduced overall circuit size and power consumption, while having improved lock characteristics over a wide range of frequencies.
    • 描述了时钟同步和偏斜调整电路,其利用延迟线中的变化的单位延迟元件以分级或阶梯式单位时间延迟布置,允许减小电路实现和改进的锁定特性。 这些渐变或阶梯式单位时间延迟允许通过在最关键的定时处放置精细的延迟元件粒度来减小延迟线的精细单元延迟元件的数量,以便感测和调整时钟信号时间段的部分 高速还是关键 这允许以优化的方式实现时钟同步和偏移调整电路,其具有减小的总电路尺寸和功耗,同时在宽范围的频率上具有改进的锁定特性。
    • 9. 发明申请
    • System And Method Of Assembly Of CPVC Fire Sprinkler System Employing Mechanical Couplings And Supports
    • 使用机械联轴器和支撑的CPVC消防喷淋系统的组装系统和方法
    • US20070205004A1
    • 2007-09-06
    • US11464919
    • 2006-08-16
    • Michael PerkovichAndrew OlahGary JohnsonStanley Nerderman
    • Michael PerkovichAndrew OlahGary JohnsonStanley Nerderman
    • A62C35/00
    • F16L47/30A62C35/68B26D3/169F16L3/1016F16L17/04F16L41/12
    • Fire sprinkler system comprising a network of CPVC pipe lengths in which at least some of the pipe lengths are interconnected with mechanical devices having resilient sealing members that are chemically compatible with the CPVC composition. Repairs and system modifications can be made without the use of solvent cement. In-line joints are formed with a coupling device including a pair of arcuate coupling segments having a first end, a second end, and an interior concave surface extending between the first end and the second end. A longitudinal channel extends along the concave surface. At least one mechanical fastener is operative to detachably connect the pair of coupling segments. A resilient annular seal is located within the longitudinal channel of each segment. A branching device connects a branch pipe to a main pipe through an orifice in the main pipe utilizing a saddle-like sealing member. The pipe assemblies are able to pass UL testing protocols for wet fire sprinkler systems.
    • 消防喷淋系统,包括CPVC管道网络,其中至少一些管道长度与具有与CPVC组合物化学相容的弹性密封构件的机械装置互连。 维修和系统修改可以在不使用溶剂水泥的情况下进行。 在线接头形成有联接装置,该联接装置包括一对弓形联接段,其具有在第一端和第二端之间延伸的第一端,第二端和内部凹面。 纵向通道沿凹面延伸。 至少一个机械紧固件可操作以可拆卸地连接该对联接段。 弹性环形密封件位于每个段的纵向通道内。 分支装置利用鞍形密封构件将分支管通过主管中的孔连接到主管。 管道组件能够通过UL防火喷淋系统的UL测试协议。
    • 10. 发明申请
    • Trocars with advanced fixation
    • Trocars与先进的固定
    • US20070106319A1
    • 2007-05-10
    • US11270181
    • 2005-11-09
    • Gigi AuJeremy AlbrechtCharles HartGary JohnsonJohn Brustad
    • Gigi AuJeremy AlbrechtCharles HartGary JohnsonJohn Brustad
    • A61M29/00A61M5/178
    • A61B17/34A61B17/3421A61B2017/3484A61B2017/349
    • A trocar fixation device includes a cannula and an elongate tube mounted onto and coupled to the exterior surface of the cannula with the distal end of the cannula extending distally beyond the distal end of the elongate tube. The elongate tube includes a plurality of slits cut at an angle to a longitudinal axis of the elongate tube. The trocar fixation device is activated by rotating the proximal-end region of the elongate tube in a first direction and is deactivated by rotating the proximal-end region of the elongate tube in a second direction, opposite to the first direction. Activation of the trocar fixation device compresses the material positioned between adjacent slits and forces the material radially outwardly, away from the exterior surface of the cannula, thereby forming ridges. Deactivation of the trocar fixation device returns the exterior surface of the elongate tube to a substantially smooth condition.
    • 套管针固定装置包括插管和安装到套管的外表面上并连接到套管的外表面的细长管,套管的远端向远侧延伸超过细长管的远端。 细长管包括与细长管的纵向轴线成一定角度切割的多个切口。 套管针固定装置通过沿着第一方向旋转细长管的近端区域而被激活,并且通过沿与第一方向相反的第二方向旋转细长管的近端区域来停用。 套针针固定装置的激活压缩位于相邻狭缝之间的材料,并迫使材料径向向外,远离插管的外表面,从而形成脊。 套针针固定装置的停用将细长管的外表面返回到基本平滑的状态。