CHARGING APPARATUS AND METHODOLOGY
    1.
    发明申请
    CHARGING APPARATUS AND METHODOLOGY 审中-公开
    充电设备和方法

    公开(公告)号:US20160190860A1

    公开(公告)日:2016-06-30

    申请号:US14984003

    申请日:2015-12-30

    Inventor: Joseph A. Swift

    CPC classification number: H02J7/025 H02J7/0042 H02J50/10

    Abstract: Disclosed herein is an integrated system charging apparatus comprising a power source, an induction energy transmitting unit, and an electrical conductor; wherein, the power source, the induction energy transmitting unit, and the electrical conductor are electrically connected with each other; and wherein at least one of the electrical conductor, and the induction energy transmitting unit, further comprises an advanced composite material.

    Abstract translation: 本文公开了一种集成系统充电装置,其包括电源,感应能量传输单元和电导体; 其中,电源,感应能量传递单元和电导体彼此电连接; 并且其中所述电导体和所述感应能量传递单元中的至少一个还包括高级复合材料。

    Precision resistive elements and related manufacturing process
    3.
    发明授权
    Precision resistive elements and related manufacturing process 有权
    精密电阻元件及相关制造工艺

    公开(公告)号:US08349421B2

    公开(公告)日:2013-01-08

    申请号:US12120821

    申请日:2008-05-15

    Abstract: Exemplary embodiments provide precision resistive composite members and methods for manufacturing and using them. The resistive composite member can have controllable dimensions, geometric shapes, mechanical properties and resistance values. The resistive composite member can be used for high-performance sensors or instrument probes that require, for example, high contact pressure, ultra-high frequency, and/or enable state-of-the-art digital signal transmission, characterization, or measurement. The resistive composite member can include one or more “twisted-fiber-tow” or one or more arrays of “twisted-fiber-tow” contained in a suitable non-metallic or essentially non-metallic binder material. The “twisted-fiber-tow” can further include a number of fibers that are twisted individually and/or in bundles in order to control the mechanical properties and fine-tune the resistance of the resistive composite member and thus to customize the high-performance instrument probes.

    Abstract translation: 示例性实施例提供精密电阻复合构件以及用于制造和使用它们的方法。 电阻复合元件可以具有可控尺寸,几何形状,机械性能和电阻值。 电阻复合构件可用于需要例如高接触压力,超高频和/或使能最先进的数字信号传输,表征或测量的高性能传感器或仪器探针。 电阻复合构件可包括一种或多种扭曲纤维丝束或一种或多种包含在合适的非金属或基本上非金属粘合剂材料中的扭曲纤维丝束阵列。 扭绞纤维束可以进一步包括多个单独地和/或成束地扭绞的纤维,以便控制机械性能并微调电阻复合构件的电阻,从而定制高性能仪器探针 。

    NON-METALLIC, INTEGRATED SENSOR-INTERCONNECT DEVICE, MANUFACTURING PROCESS, AND RELATED APPLICATIONS
    5.
    发明申请
    NON-METALLIC, INTEGRATED SENSOR-INTERCONNECT DEVICE, MANUFACTURING PROCESS, AND RELATED APPLICATIONS 有权
    非金属,集成传感器 - 互连器件,制造工艺及相关应用

    公开(公告)号:US20100230132A1

    公开(公告)日:2010-09-16

    申请号:US12402717

    申请日:2009-03-12

    Abstract: Exemplary embodiments provide materials, devices and arrays of integrated sensor assembly, as well as methods for forming and using such devices and arrays in sensing systems. In one embodiment, the integrated sensor assembly can include an interconnecting member and at least one sensor member connected with the interconnecting member at any location thereof. Each of the sensor member and the interconnecting member can include a core element and a polymer. The core element for the sensor member and the core element for the interconnecting member can be electrically interconnected. Various embodiments can also include a connector member connected to the interconnecting member for transmitting sensing signals from or to the sensor member.

    Abstract translation: 示例性实施例提供了集成传感器组件的材料,装置和阵列,以及用于在感测系统中形成和使用这些装置和阵列的方法。 在一个实施例中,集成传感器组件可以包括互连构件和在其任何位置处与互连构件连接的至少一个传感器构件。 传感器构件和互连构件中的每一个可以包括芯元件和聚合物。 用于传感器构件的芯元件和用于互连构件的芯元件可以电连接。 各种实施例还可以包括连接到互连构件的连接器构件,用于从传感器构件传输感测信号或传递到传感器构件。

    NOVEL HIGH PERFORMANCE MATERIALS AND PROCESSES FOR MANUFACTURE OF NANOSTRUCTURES FOR USE IN ELECTRON EMITTER ION AND DIRECT CHARGING DEVICES
    6.
    发明申请
    NOVEL HIGH PERFORMANCE MATERIALS AND PROCESSES FOR MANUFACTURE OF NANOSTRUCTURES FOR USE IN ELECTRON EMITTER ION AND DIRECT CHARGING DEVICES 失效
    用于电子发射器和直接充电装置的新型高性能材料和制造用于制造纳米结构的方法

    公开(公告)号:US20090224679A1

    公开(公告)日:2009-09-10

    申请号:US12042878

    申请日:2008-03-05

    Abstract: In accordance with the invention, there are electron emitters, charging devices, and methods of forming them. An electron emitter array can include a plurality of nanostructures, each of the plurality of nanostructures can include a first end and a second end, wherein the first end can be connected to a first electrode and the second end can be positioned to emit electrons, and wherein each of the plurality of nanostructures can be formed of one or more of oxidation resistant metals, doped metals, metal alloys, metal oxides, doped metal oxides, and ceramics. The electron emitter array can also include a second electrode in close proximity to the first electrode, wherein one or more of the plurality of nanostructures can emit electrons in a gas upon application of an electric field between the first electrode and the second electrode.

    Abstract translation: 根据本发明,存在电子发射器,充电装置及其形成方法。 电子发射器阵列可以包括多个纳米结构,多个纳米结构中的每一个可以包括第一端和第二端,其中第一端可以连接到第一电极,并且第二端可以被定位成发射电子,以及 其中所述多个纳米结构中的每一个可以由抗氧化金属,掺杂金属,金属合金,金属氧化物,掺杂金属氧化物和陶瓷中的一种或多种形成。 电子发射器阵列还可以包括紧邻第一电极的第二电极,其中在第一电极和第二电极之间施加电场时,多个纳米结构中的一个或多个可以在气体中发射电子。

    Printing platform
    7.
    发明授权
    Printing platform 有权
    印刷平台

    公开(公告)号:US07245838B2

    公开(公告)日:2007-07-17

    申请号:US11156778

    申请日:2005-06-20

    Inventor: Joseph A. Swift

    CPC classification number: G03G15/553 G03G15/5079 G03G15/55 G03G15/556

    Abstract: Described herein is a printing platform having one or more marking modules for reproducing an image on a substrate; a print media source processing unit that supplies the substrate; a finisher that provides finishing capabilities for the substrate; and a platform manager that automatically removes electrical power from at least one component of the printing platform while other components continue to process print jobs.

    Abstract translation: 这里描述的是具有一个或多个用于在基板上再现图像的标记模块的印刷平台; 打印介质源处理单元,其供应所述基板; 一种为基材提供精加工能力的成品机; 以及平台管理器,其自动从打印平台的至少一个组件移除电力,而其他组件继续处理打印作业。

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