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Low power method of monitoring and of responsively initiating higher powered intelligent response to detected change of condition

机译:低功耗方法,用于监视和响应地启动对检测到的状态变化的高功率智能响应

摘要

A synchronous control system includes a logic controller (e.g., microprocessor) which can be put into low power standby or sleep mode by shutting off its clock. A quick-start oscillator (QSO) remains shut off to conserve power when not needed, but awakens rapidly and supplies clock signals to the logic controller for quickly awakening the controller so the latter can to respond to exigent circumstances. One such circumstance can be the drop of a vital supply voltage below a predefined threshold. A low power comparator (LPTC) detects the drop and starts up the QSO which in turn awakens the controller. The controller determines what the reason for the awakening is, quickly responds to the exigent circumstance and then turns the QSO off to thereby conserve power and put itself (QSO) back to sleep. Disclosures are provided for the QSO and a first calibration subsystem used to maintain QSO output frequency within a desired range. Disclosures are provided for the LPTC and a second calibration subsystem used to set its trigger threshold. Disclosure of a novel DAC within the LPTC is also provided.
机译:同步控制系统包括逻辑控制器(例如,微处理器),该逻辑控制器可以通过关闭其时钟而进入低功率待机或睡眠模式。快速启动振荡器(QSO)在不需要时会保持关闭状态以节省功率,但会迅速唤醒并向逻辑控制器提供时钟信号以快速唤醒控制器,以便后者可以对紧急情况做出响应。一种这样的情况可以是重要电源电压的下降低于预定阈值。低功耗比较器(LPTC)检测到压降,并启动QSO,从而唤醒控制器。控制器确定唤醒的原因是什么,迅速对紧急情况做出响应,然后关闭QSO,以节省功率并使其自身(QSO)进入睡眠状态。为QSO和用于将QSO输出频率保持在所需范围内的第一校准子系统提供了披露。提供了有关LPTC和用于设置其触发阈值的第二个校准子系统的信息。还公开了LPTC中的新型DAC。

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