Zero standby power for powerline communication devices
    51.
    发明授权
    Zero standby power for powerline communication devices 有权
    电力线通信设备的零待机功率

    公开(公告)号:US09236909B2

    公开(公告)日:2016-01-12

    申请号:US14559756

    申请日:2014-12-03

    Inventor: Oleg Logvinov

    Abstract: An embodiment is an integrated System on Chip (SoC) including a communication interface configured to implement a communication protocol including functional blocks that are energized or de-energized individually so that a minimum power consumption is used to receive and detect a signal, and a receiver identification (ID) detection function configured to determine whether the signal is intended for the device in which the SoC resides. The SoC further includes a power management function configured to control which functions in the SoC and/or device in which the SoC resides are energized or de-energized depending on the results of the receiver ID detection function, and a power source capable of energizing a minimum number of the functional blocks required to receive and detect a signal, wherein the power source can be used in a low power state and switched over to a main power supply when the SoC is energized.

    Abstract translation: 一个实施例是集成片上系统(SoC),其包括通信接口,该通信接口被配置为实现包括被单独通电或断电的功能块的通信协议,以便使用最小功耗来接收和检测信号,以及接收器 识别(ID)检测功能,被配置为确定信号是否适用于SoC驻留的设备。 SoC还包括功率管理功能,其被配置为根据接收机ID检测功能的结果来控制SoC驻留的SoC和/或设备中的哪些功能被激励或断电,以及能够激励 接收和检测信号所需的功能块的最小数量,其中当SoC被通电时,电源可以以低功率状态使用并切换到主电源。

    Zero Standby Power for Powerline Communication Devices
    53.
    发明申请
    Zero Standby Power for Powerline Communication Devices 有权
    电力线通信设备的零待机功率

    公开(公告)号:US20150180540A1

    公开(公告)日:2015-06-25

    申请号:US14559756

    申请日:2014-12-03

    Inventor: Oleg Logvinov

    Abstract: An embodiment is an integrated System on Chip (SoC) including a communication interface configured to implement a communication protocol including functional blocks that are energized or de-energized individually so that a minimum power consumption is used to receive and detect a signal, and a receiver identification (ID) detection function configured to determine whether the signal is intended for the device in which the SoC resides. The SoC further includes a power management function configured to control which functions in the SoC and/or device in which the SoC resides are energized or de-energized depending on the results of the receiver ID detection function, and a power source capable of energizing a minimum number of the functional blocks required to receive and detect a signal, wherein the power source can be used in a low power state and switched over to a main power supply when the SoC is energized.

    Abstract translation: 一个实施例是集成片上系统(SoC),其包括通信接口,该通信接口被配置为实现包括被单独通电或断电的功能块的通信协议,以便使用最小功耗来接收和检测信号,以及接收器 识别(ID)检测功能,被配置为确定信号是否适用于SoC驻留的设备。 SoC还包括功率管理功能,其被配置为根据接收机ID检测功能的结果来控制SoC驻留的SoC和/或设备中的哪些功能被激励或断电,以及能够激励 接收和检测信号所需的功能块的最小数量,其中当SoC被通电时,电源可以以低功率状态使用并切换到主电源。

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