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    • 4. 发明申请
    • PORTABLE HYBRID APPLICATIONS FOR AC/DC LOAD SHARING
    • 便携式混合应用用于交流/直流负载共享
    • WO2006047715A2
    • 2006-05-04
    • PCT/US2005038860
    • 2005-10-27
    • NEXTEK POWER SYSTEMS INC
    • SAVAGE PAUL
    • H02M7/00H02B1/00
    • G06F1/263H02J1/10H02M1/10Y10T307/367Y10T307/391
    • Portable hybrid applications for AC/DC load sharing includes circuitry for simultaneously using at least one of external AC, internal DC power and/or external DC power. The apparatus also includes an input power receptacle for receiving at least one of AC power and external DC power. A power router inside the apparatus routes at least one of AC power, internal DC power, and external DC power to provide power for an application. An apparatus for providing DC to DC conversion includes a tip and a DC to D C whip connected to the tip. A male plug is connected to the second end of the whip. A buck converter within the male plug converts DC power to a DC power level associated With the whip and transmits the converted DC power along the DC to DC whip to the tip. Alternatively, an internal DC source provides internal DC power.
    • 用于交流/直流负载共享的便携式混合应用包括同时使用外部交流,内部直流电源和/或外部直流电源中至少一种的电路。 该装置还包括用于接收AC电力和外部DC电力中的至少一个的输入电源插座。 设备内部的电源路由器将交流电源,内部直流电源和外部直流电源中的至少一个传送给应用程序的电源。 用于提供DC到DC转换的装置包括尖端和连接到尖端的DC至D C鞭状物。 公插头连接到鞭子的第二端。 公插头内的降压转换器将直流电力转换成与鞭状相关联的直流功率电平,并将转换后的直流电力沿直流鞭状发射到尖端。 或者,内部直流电源提供内部直流电源。
    • 5. 发明申请
    • ARRANGEMENT FOR AND METHOD OF DYNAMICALLY MANAGING ELECTRICAL POWER BETWEEN AN ELECTRICAL POWER SOURCE AND AN ELECTRICAL LOAD
    • 动力源和电力负荷之间动力管理的布置方法和方法
    • WO2016111744A1
    • 2016-07-14
    • PCT/US2015/059805
    • 2015-11-10
    • NEXTEK POWER SYSTEMS, INC.
    • ADELSON, Alex, M.
    • H02J1/10H02J3/00H02J7/00
    • H02J7/0024H02J3/32
    • Electrical power is dynamically managed among one or more power sources and one or more loads, A plurality of monitor nodes is connected to an input terminal connected to each source, and to an output terminal connected to each load, A plurality of electrical power storage cells is connected among the input and output terminals, each cell being capable of storing power from at least one of the sources and being capable of discharging stored power to at least one of the loads, A plurality of controllable switches is connected to the cells. Master and slave controllers dynamically monitor operating conditions at the monitor nodes during operation of each source and each load, and selectively dynamically control the switches to interconnect the cells in different circuit topologies in response to the monitored operating conditions.
    • 在一个或多个电源和一个或多个负载之间动态地管理电力。多个监视器节点连接到连接到每个电源的输入端子,以及连接到每个负载的输出端子。多个电力存储单元 连接在所述输入和输出端子之间,每个单元能够存储来自所述源中的至少一个的功率并且能够将存储的功率放电到至少一个所述负载。多个可控开关连接到所述单元。 主控和从控制器在每个源和每个负载的操作期间动态地监视监视器节点的操作条件,并且响应于所监视的操作条件,选择性地动态地控制开关以互连不同电路拓扑中的单元。
    • 8. 发明申请
    • ACCESSIBLE CONTROL PANEL FOR OVERHEAD ELECTRICAL APPARATUS IN A SUSPENDED CEILING SYSTEM
    • 悬挂式吊装系统中的电气设备可访问控制面板
    • WO2010088008A1
    • 2010-08-05
    • PCT/US2010/020105
    • 2010-01-05
    • NEXTEK POWER SYSTEMS, INC.
    • PARIGORIS, Ronald, J.GUTSCHOW, Wayne, A.HARTMAN, Benjamin
    • G09F7/18
    • E04B9/003E04B9/006
    • An overhead arrangement, for use in a suspended ceiling system having a grid framework of frame elements lying in a ceiling plane and bounding a plurality of openings for supporting a corresponding plurality of ceiling members, includes an electrical apparatus, such as a DC power supply, a support for supporting the electrical apparatus on the framework at an elevation above one of the ceiling members supported in one of the openings, and a slanted control panel on the housing and having manually accessible controls and visually accessible displays. The slanted control panel is obliquely and downwardly inclined relative to the ceiling plane to enable manual access to the controls and visual access to the displays through the opening to the slanted control panel from below the framework after the ceiling member is at least partially removed from its opening without mechanical interference between the ceiling tile and the electrical apparatus.
    • 一种用于悬吊天花板系统的顶置装置,其具有位于天花板平面中的框架元件的格栅框架并且限定用于支撑相应的多个天花板构件的多个开口,并且包括诸如直流电源的电气设备, 用于在支撑在其中一个开口中的一个顶板构件上方的支架上的框架上支撑电气设备的支撑件,以及在壳体上的倾斜控制面板,并且具有手动可接近的控制和可视化的显示器。 倾斜的控制面板相对于天花板平面倾斜和向下倾斜,以便在天花板构件至少部分地从其外部移除之后,通过从框架下方通过开口到控制面板的开口来手动地进入控制器和对显示器的视觉访问 在天花板瓦片和电气设备之间没有机械干扰地打开。
    • 9. 发明申请
    • CUSTOMER SIDE POWER MANAGEMENT SYSTEM AND METHOD
    • 客户侧电源管理系统及方法
    • WO1997035374A1
    • 1997-09-25
    • PCT/US1996004199
    • 1996-03-18
    • NEXTEK POWER SYSTEMS, INC.WILHELM, William, G.
    • NEXTEK POWER SYSTEMS, INC.
    • H02J03/32
    • H02J1/06H01R25/006H02J3/32H02J9/061Y02B10/72Y02P80/11Y10T307/527Y10T307/615Y10T307/625
    • A customer side power management system includes a power transducer (10) coupled to the electric lines (12) from the utility (L1, L2, L3, AND N). The power transducer (10) senses stochastic peak power demands from the electric utility (L1, L2, L3, AND N), and provides an output signal proportional thereto. The output signal is time averaged (14) and provided to a comparator circuit (21). A predetermined threshold signal (28 OR 32) is also provided to the comparator circuit (21), and the two signals are compared. An AC-to-DC converter (38) or power supply is coupled to the utility's electric line (L1, L2, L3, AND N) and provides a DC voltage on its ouput. The amplitude of the DC voltage is controlled by the output signal from the comparator circuit (21). A power isolation and ditribution circuit (48) and a storage battery (34) are also included. The power isolation and distribution circuit is connected between the AC-to-DC converter (38) and the storage battery (34). The power management system senses peak power demands for electricity, and switches a particular load (46) of the customer from being powered by the AC-to-DC converter (38) to the storage battery (34). When there is no peak power demand, the AC-to-DC converter (38) powers the particular load (46).
    • 客户侧电源管理系统包括从公用设施(L1,L2,L3和AND)耦合到电线(12)的功率传感器(10)。 功率传感器(10)感测电力公司(L1,L2,L3和AND)的随机峰值功率需求,并提供与其成比例的输出信号。 输出信号经时间平均(14)并提供给比较器电路(21)。 预定的阈值信号(28 OR 32)也被提供给比较器电路(21),并且比较两个信号。 AC-DC转换器(38)或电源耦合到电力公司的电气线路(L1,L2,L3和AND),并在其输出端提供直流电压。 直流电压的幅度由比较电路(21)的输出信号控制。 还包括电力隔离和分配电路(48)和蓄电池(34)。 电源隔离配电电路连接在AC-DC转换器(38)和蓄电池(34)之间。 电力管理系统感测对电力的峰值功率需求,并且切换客户的特定负载(46)由AC-DC转换器(38)供电到蓄电池(34)。 当没有峰值功率需求时,AC-DC转换器(38)为特定负载(46)供电。