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    • 12. 发明申请
    • Skimmer construction
    • 撇渣施工
    • US20050263446A1
    • 2005-12-01
    • US10854816
    • 2004-05-27
    • Edgar BeaulieuDavid Kelly
    • Edgar BeaulieuDavid Kelly
    • A01K63/04E04H4/16
    • A01K63/04
    • A decorative pond which includes a pond area, a water feature for discharging water into the pond and a skimmer construction for receiving pond water, separating debris from the pond water and recirculating filtered water to the water feature. The skimmer construction includes: a housing which defines a fixed pond-water receiving aperture, an internal assembly positioned adjacent the fixed aperture defines a movable pond water receiving aperture that is selectively positionable relative to the fixed aperture. The combination of the fixed and movable apertures define an inlet opening to the skimmer for receipt of pond water in said housing. A debris collection member is positioned rearwardly of the inlet opening to receive incoming pond water from the inlet opening so as to collect debris. A controllably positionable discharge assembly is provided in association with the skimmer construction so as to permit control of water levels in the skimmer.
    • 一个装饰池塘,其中包括一个池塘区域,一个用于将水排入池塘的水特征以及一个用于接收池塘水的撇渣器结构,从池塘水中分离碎屑并将过滤的水再循环到水中。 撇渣器结构包括:限定固定的池塘 - 水接收孔的壳体,邻近固定孔定位的内部组件限定可相对于固定孔选择性定位的活动池水接收孔。 固定孔和可移动孔的组合限定了用于在所述壳体中接收池塘水的撇渣器的入口。 碎片收集构件定位在入口开口的后方,以从入口开口接收进入的池塘水,以便收集碎片。 与撇渣器结构相关联地提供可控定位的排出组件,以便允许控制撇渣器中的水位。
    • 13. 发明申请
    • Oscilloscope having advanced triggering capability
    • 示波器具有先进的触发能力
    • US20050225310A1
    • 2005-10-13
    • US11089883
    • 2005-03-23
    • Patrick SmithQue TranJohn DelacyDaniel KnierimDavid KellyJohn Calvin
    • Patrick SmithQue TranJohn DelacyDaniel KnierimDavid KellyJohn Calvin
    • G01R13/02G01R13/20G01R13/32
    • G01R13/32G01R13/0254
    • An advanced trigger circuit includes first and second trigger decoders, each being capable of triggering on one of respective first and second pluralities of continuous-time trigger events. In one embodiment, a programmable timer begins timing in response to an output signal of the first trigger decoder and generates an end-of-time signal at the expiration of its time period. A reset circuit is responsive to the end-of-time signal of the timer for resetting the first trigger decoder if the second selected continuous-time trigger event failed to occur before the end-of-time signal was generated. In another embodiment, a reset decoder generates a reset signal in response to an occurrence of a selected continuous-time trigger event. The reset circuit is responsive to the reset signal for resetting the first trigger decoder if the second selected continuous-time trigger event failed to occur before the reset signal was generated. In another embodiment of the invention, the advanced trigger circuit is programmed to trigger on a serial lane skew violation. In yet another embodiment of the invention, the advanced trigger circuit is programmed to trigger on a beacon width violation.
    • 高级触发电路包括第一和第二触发解码器,每个触发解码器能够在相应的第一和第二多个连续时间触发事件之一上触发。 在一个实施例中,可编程定时器响应于第一触发解码器的输出信号开始定时,并且在其时间段期满时产生结束时间信号。 如果在产生结束时间信号之前第二选择的连续时间触发事件不能发生,则复位电路响应于定时器的结束时间信号来复位第一触发解码器。 在另一个实施例中,复位解码器响应于所选择的连续时间触发事件的发生而产生复位信号。 如果在产生复位信号之前第二选择的连续时间触发事件不能发生,则复位电路响应于复位信号来复位第一触发解码器。 在本发明的另一个实施例中,高级触发电路被编程为在串行通道偏斜违规时触发。 在本发明的另一个实施例中,高级触发电路被编程为在信标宽度冲突上触发。
    • 17. 发明申请
    • BEVERAGE PREPARATION CAPSULES
    • 饮料制备胶囊
    • US20140220191A1
    • 2014-08-07
    • US14131654
    • 2012-07-11
    • David KellyPaul Fletcher
    • David KellyPaul Fletcher
    • B65D85/804A23F5/26A23F3/18
    • A sealed beverage preparation capsule includes a sealed hollow body having a top and a bottom, a beverage preparation ingredient inside the body and a layer of filter material at least about 2 mm thick located inside the body and abutting said bottom of said body. A kit is also provided for assembling a plurality of beverage preparation capsules. The capsules include a cup-shaped base having a bottom, and side walls extending from the base to an upper rim defining an open top of the base component, and a plurality of ingredient pods. Each ingredient pod includes a top, side walls and a bottom, each formed of sheet material, wherein the pod contains a beverage preparation ingredient. The ingredient pod is shaped and configured to be engaged with the base component to assemble a beverage making capsule, with the top of the pod forming a lid for the base component and the bottom of the ingredient pod spaced from the bottom of the base inside the base.
    • 密封饮料制备胶囊包括具有顶部和底部的密封中空体,体内的饮料制剂成分和位于体内并邻接所述主体的底部的至少约2mm厚度的过滤材料层。 还提供了用于组装多个饮料制备胶囊的试剂盒。 胶囊包括具有底部的杯形基底,以及从基部延伸到限定基部组件的开口顶部的上缘的侧壁和多个成分荚。 每个成分荚包括顶部,侧壁和底部,每个由片材形成,其中荚包含饮料制备成分。 成分荚形状和构造成与基部部件接合以组装饮料制造胶囊,其中荚的顶部形成用于基部部件的盖子,并且配料荚的底部与基部的底部间隔开, 基础。
    • 19. 发明申请
    • Integrated circuit with depletion mode JFET
    • 具有耗尽型JFET的集成电路
    • US20070069250A1
    • 2007-03-29
    • US11237095
    • 2005-09-28
    • Alan ChenDaniel DolanDavid KellyDaniel KerrStephen Kuehne
    • Alan ChenDaniel DolanDavid KellyDaniel KerrStephen Kuehne
    • H01L29/80
    • H01L29/808H01L21/823892H01L27/0922H01L27/098H01L29/1066H01L29/7833
    • An integrated circuit having an n-channel MOSFET device and a JFET device. The integrated circuit includes a semiconductor layer having an upper surface, an MOS transistor device formed in a doped well of a first conductivity type extending from the semiconductor upper surface and a JFET device. The JFET device includes a channel region in the semiconductor layer spaced from, and having a peak concentration positioned a predetermined distance below, the upper surface. An associated method of manufacturing includes introducing p-type dopant into the semiconductor surface to form a p-well in which the NMOS device is formed and a source and a drain of the JFET device. N-type dopant is introduced into the semiconductor surface to form an n-type region of the NMOS device below the p-well and a gate region of the JFET device. P-type dopant is introduced into the semiconductor layer to simultaneously form a higher concentration p-type region in the p-well of the NMOS device and a channel region extending between the source and drain of the JFET.
    • 具有n沟道MOSFET器件和JFET器件的集成电路。 集成电路包括具有上表面的半导体层,形成在从半导体上表面延伸的第一导电类型的掺杂阱中的MOS晶体管器件和JFET器件。 JFET器件包括半导体层中的与上表面间隔开并具有位于预定距离的峰值浓度的沟道区域。 相关联的制造方法包括将p型掺杂剂引入半导体表面以形成其中形成NMOS器件的p阱以及JFET器件的源极和漏极。 N型掺杂剂被引入到半导体表面中以在p阱的下面形成NMOS器件的n型区域和JFET器件的栅极区域。 P型掺杂剂被引入到半导体层中,以在NMOS器件的p阱和在JFET的源极和漏极之间延伸的沟道区域中同时形成更高浓度的p型区域。