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    • 1. 发明申请
    • CONTROLLABLE ELECTRICAL OUTLET WITH A CONTROLLED WIRED OUTPUT
    • 带控制电线输出的可控电气插座
    • WO2015131130A1
    • 2015-09-03
    • PCT/US2015/018145
    • 2015-02-27
    • LUTRON ELECTRONICS CO., INC.
    • RANERI, Daniel, CurtisGUELLNITZ, Joseph, C.SPIRA, Joel, S.
    • H01R13/66H02J13/00H01R31/06H01R25/00H01R24/78
    • H02J3/005H01R13/6683H01R24/78H01R25/006H01R31/065Y10T307/352
    • A load control system having a controllable electrical outlet provides a low cost solution for controlling a plurality of standard electrical outlets. The controllable electrical outlet may be coupled in series between a power source and at least one standard electrical outlet for controlling the power delivered to the standard electrical outlet. The controllable electrical outlet may comprise an actuator for allowing the controllable electrical outlet to be associated with an input device for receiving digital messages from the input device. The controllable electrical outlet may be installed in a standard electrical wallbox, e.g ., replacing a previously-installed standard electrical outlet. The actuator may be easily accessed to associate the controllable electrical outlet with the input device and a radio-frequency receiver and antenna may be located in the controllable electrical outlet to provide optimum reception of radio-frequency signals.
    • 具有可控电源插座的负载控制系统提供了用于控制多个标准电源插座的低成本解决方案。 可控制的电源插座可以串联耦合在电源和至少一个标准电源插座之间,用于控制输送到标准电源插座的功率。 可控电气插座可以包括用于允许可控电插座与输入装置相关联的致动器,用于从输入装置接收数字消息。 可控制的电源插座可以安装在标准的电壁箱中,例如更换预先安装的标准电源插座。 可以容易地访问致动器以将可控电气插座与输入装置相关联,并且射频接收器和天线可以位于可控电气插座中,以提供对射频信号的最佳接收。
    • 3. 发明申请
    • AUTOMATIC CONFIGURATION OF A LOAD CONTROL SYSTEM
    • 自动配置负载控制系统
    • WO2016014957A1
    • 2016-01-28
    • PCT/US2015/042022
    • 2015-07-24
    • LUTRON ELECTRONICS CO., INC.
    • KNODE, Galen, EdgarKOBER, Steven, J.RANERI, Daniel, CurtisWALSH, III, Richard, M.
    • H05B37/02
    • H05B33/0815H02M5/04H05B33/0845H05B37/02H05B37/0245
    • A control module is able to be installed with electrical devices, such as, for example electrical loads (e.g., lighting loads) and/or load regulation devices. The control module attempts to determine whether the electrical loads (e.g., drivers for lighting loads) are responsive to one or more of a plurality of control techniques. The control module may be able to automatically determine an appropriate control technique to use to control the connected driver and/or lighting load. The control module may sequentially attempt to control the connected driver and/or lighting load using each of the plurality of control techniques and determine if the driver and/or lighting load is responsive to the present control technique. The plurality of control techniques includes one or more analog control techniques and one or more digital control techniques.
    • 控制模块能够安装有诸如电负载(例如照明负载)和/或负载调节装置的电气装置。 控制模块尝试确定电负载(例如,用于照明负载的驱动器)是否响应于多个控制技术中的一个或多个。 控制模块可能能够自动确定用于控制所连接的驱动器和/或照明负载的适当的控制技术。 控制模块可以使用多种控制技术中的每一种顺序地尝试控制连接的驱动器和/或照明负载,并且确定驱动器和/或照明负载是否响应于本控制技术。 多个控制技术包括一个或多个模拟控制技术和一个或多个数字控制技术。
    • 4. 发明申请
    • MULTIPLE LOCATION LOAD CONTROL SYSTEM
    • 多位置负载控制系统
    • WO2017070604A1
    • 2017-04-27
    • PCT/US2016/058301
    • 2016-10-21
    • LUTRON ELECTRONICS CO., INC.
    • DADASHNIALEHI, EhsanNEWMAN, Robert, C.RANERI, Daniel, CurtisSHUKLA, Jaykrishna, A.
    • H05B37/02H05B39/08
    • H05B37/0272G06F3/041H04R1/028H05B33/0815H05B33/0845H05B37/0254H05B39/086
    • A multiple location load control system comprises a main device and remote devices, which do not require neutral connections, but allow for visual and audible feedback at the main device and the remote devices. The main device and the remote devices are adapted to be coupled together via an accessory wiring. The main device can be wired on the line side and the load side of the load control system. The main device is configured to enable a charging path to allow the remote devices to charge power supplies through the accessory wiring during a first time period of a half cycle of the AC power source. The main device and the remote devices are configured to communicate with each other via the accessory wiring during a second time period of the half cycle, for example, by actively pulling-up and actively pulling-down the accessory wiring to communicate using tri-state logic.
    • 多位置负载控制系统包括主设备和远程设备,其不需要中性连接,但允许在主设备和远程设备处进行视觉和听觉反馈。 主设备和远程设备适合通过附件配线连接在一起。 主设备可以连接在负载控制系统的线路侧和负载侧。 主设备被配置为启用充电路径以允许远程设备在AC电源的半个周期的第一时间段期间通过配件布线对电源充电。 主设备和远程设备被配置为在半周期的第二时间段期间经由附件布线彼此进行通信,例如通过主动拉升并主动拉下辅助布线以使用三态进行通信 逻辑。