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    • 5. 发明申请
    • A CONTROLLABLE ELECTRICAL OUTLET AND A METHOD OF OPERATION THEREOF
    • 一种可控电气插座及其操作方法
    • WO2010017126A3
    • 2010-05-06
    • PCT/US2009052552
    • 2009-08-03
    • CRUCS HOLDINGS LLCCRUCS KEVIN M
    • CRUCS KEVIN M
    • H01R13/70
    • H02H3/12H02J3/14H02J13/0075Y02B70/3225Y02B90/2653Y04S20/222Y04S40/126Y10T307/406Y10T307/414Y10T307/74Y10T307/826Y10T307/832
    • Controllable electrical outlets (720) and systems (700) and methods (1200) for controlling and disabling the electrical outlets (720). A controllable electrical outlet (720) includes a current sensor (120), an electrical switch (140), and a microcontroller (1010). When an electrical load (110) is plugged into the electrical outlet (720), the current sensor (120) senses the flow of current and a current sense event is reported from the electrical outlet (720) to a central computer (710). The central computer (710) provides timing and control of the electrical outlet (720). When a predetermined elapsed time has passed, as measured by the central computer (710), a timed-out event is communicated from the central computer (710) to the electrical outlet (720) triggering the electrical switch (140), opening the current path within the electrical outlet (720) such that electrical current no longer flows to the electrical load (110). Communication between the central computer (710) and an electrical outlet (720) may occur, for example, via existing electrical wiring, wirelessly, or via dedicated communication wiring.
    • 用于控制和禁用电插座(720)的可控电插座(720)和系统(700)和方法(1200)。 可控电气出口(720)包括电流传感器(120),电开关(140)和微控制器(1010)。 当电负载(110)插入到电源插座(720)中时,电流传感器(120)感测电流的流动,并且从电源插座(720)向中央计算机(710)报告电流感测事件。 中央计算机(710)提供电源插座(720)的定时和控制。 当经过中央计算机(710)测量的预定经过时间过去时,超时事件从中央计算机(710)传送到触发电气开关(140)的电源插座(720),打开电流 在电气出口(720)内的路径,使得电流不再流向电负载(110)。 中央计算机(710)和电源插座(720)之间的通信可以例如通过现有的电线,无线地或经由专用通信线路进行。
    • 7. 发明申请
    • A CONTROLLABLE ELECTRICAL OUTLET AND A METHOD OF OPERATION THEREOF
    • 一种可控电气插座及其操作方法
    • WO2010017126A2
    • 2010-02-11
    • PCT/US2009/052552
    • 2009-08-03
    • CRUCS HOLDINGS, LLCCRUCS, Kevin, M.
    • CRUCS, Kevin, M.
    • H01R13/70
    • H02H3/12H02J3/14H02J13/0075Y02B70/3225Y02B90/2653Y04S20/222Y04S40/126Y10T307/406Y10T307/414Y10T307/74Y10T307/826Y10T307/832
    • Controllable electrical outlets (720) and systems (700) and methods (1200) for controlling and disabling the electrical outlets (720). A controllable electrical outlet (720) includes a current sensor (120), an electrical switch (140), and a microcontroller (1010). When an electrical load (110) is plugged into the electrical outlet (720), the current sensor (120) senses the flow of current and a current sense event is reported from the electrical outlet (720) to a central computer (710). The central computer (710) provides timing and control of the electrical outlet (720). When a predetermined elapsed time has passed, as measured by the central computer (710), a timed-out event is communicated from the central computer (710) to the electrical outlet (720) triggering the electrical switch (140), opening the current path within the electrical outlet (720) such that electrical current no longer flows to the electrical load (110). Communication between the central computer (710) and an electrical outlet (720) may occur, for example, via existing electrical wiring, wirelessly, or via dedicated communication wiring.
    • 用于控制和禁用电插座(720)的可控电插座(720)和系统(700)和方法(1200)。 可控电插座(720)包括电流传感器(120),电开关(140)和微控制器(1010)。 当电气负载(110)插入电气插座(720)时,电流传感器(120)感测电流的流动并且电流感测事件从电气插座(720)报告给中央计算机(710)。 中央计算机(710)提供电插座(720)的定时和控制。 当由中央计算机(710)测量的经过预定的经过时间时,从中央计算机(710)向触发电气开关(140)的电气插座(720)传送超时事件,打开电流 (720)内的路径,使得电流不再流到电力负载(110)。 中央计算机(710)和电插座(720)之间的通信可以例如经由现有的电线,无线地或经由专用通信布线而发生。
    • 10. 发明申请
    • DEVICE, SYSTEM AND METHOD THAT DECREASING STANDBY POWER OF ELECTRONIC APPLIANCE AND RECEPTACLE
    • 降低电子设备和插座的待机功能的设备,系统和方法
    • WO2009075545A2
    • 2009-06-18
    • PCT/KR2008/007369
    • 2008-12-12
    • LEE, Keun-Jin
    • LEE, Keun-Jin
    • H02J9/00H02J9/02H02J9/04
    • H02J9/005Y10T307/832
    • Disclosed are an apparatus, a system and a method for reducing standby power of an electronic appliance, and an apparatus for reducing standby power of an electrical outlet. The apparatus for reducing the standby power of the electronic appliance includes: a starting switch connected to an external power source for providing power from the external power source to the electronic appliance through a first channel, operating the electronic appliance by providing an operation signal for operating the electronic appliance to the electronic appliance, and disconnecting the external power source connected through the first channel; and a power hold switch device connected to the electronic appliance through a second channel, the power hold switch device providing power from the external power source to the electronic appliance through the second channel when receiving a power hold control signal provided by the operating electronic appliance, and disconnecting power provided by the external power source through the second channel when receiving no power hold control signal. As a result, with only one switch operation, the electronic appliance is connected to a power source, and operates at the same time. When a computer (i.e. the electronic appliance) changes from an operating state to a standby state, the power is automatically disconnected from the computer, so that the computer changes to a non-power consuming state. Accordingly, the standby power of the computer is cut by minimizing the standby state thereof, so that it can be minimized.
    • 公开了一种用于降低电子设备的待机功率的装置,系统和方法,以及用于降低电源插座的待机功率的装置。 用于降低电子设备的待机功率的装置包括:连接到外部电源的启动开关,用于通过第一通道从外部电源向电子设备提供电力,通过提供用于操作的操作信号来操作电子设备 电子设备到电子设备,并断开通过第一通道连接的外部电源; 以及通过第二通道连接到电子设备的电源保持开关装置,所述电源保持开关装置在接收到由所述操作的电子设备提供的电源保持控制信号时,通过所述第二通道从所述外部电源向所述电子设备提供电力, 并且当不接收功率保持控制信号时,通过第二通道断开由外部电源提供的功率。 结果,仅通过一次开关操作,将电子设备连接到电源,同时进行动作。 当计算机(即,电子设备)从操作状态改变到待机状态时,电力被自动地从计算机断开,使得计算机变为非耗电状态。 因此,通过最小化其待机状态来切断计算机的待机功率,从而可以使其最小化。