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Asynchronous logic application in a power management unit for ultra low power wireless sensor nodes

机译:超低功耗无线传感器节点在电源管理单元中的异步逻辑应用

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This work presents the application of asynchronous logic style to control circuits of the on-chip power management unit (PMU) in a wireless sensor node. Because of the inherent property of asynchronous logic - to operate without any synchronous clock signal - it is the first choice circuit class for controllers in a clock-less environment. Due to the nature of the asynchronous logic, as it is to work in sensitivity to asynchronous input-changes without being separated by clock edges, the construction of such an asynchronous finite state machine (AFSM) requires careful synthesis and implementation methodology. The asynchronous circuit is realized by means of thick gate oxide transistors and it is directly connected to the power supply. Hence, no voltage regulator and no bandgap are required for the operation of the low power asynchronous circuit. The power management unit itself is applied in the architecture of an ultra low power sensor node circuit. Such circuits are supplied by a limited battery voltage or by an energy harvester and require low power architectures in order to deliver long operating times, especially during the power-down phase of the full circuit. The transceiver is manufactured in a 130 nm CMOS process and has to operate between −40 and 125°C.
机译:这项工作介绍了异步逻辑风格的应用来控制无线传感器节点中的片上电源管理单元(PMU)的电路。由于异步逻辑的固有特性 - 在没有任何同步时钟信号的情况下运行 - 它是时钟环境中控制器的第一类。由于异步逻辑的性质,因为它是在对异步输入的敏感性上工作而不被时钟边缘分开,因此这种异步有限状态机(AFSM)的构造需要仔细的合成和实现方法。通过厚的栅极氧化物晶体管实现异步电路,并且它直接连接到电源。因此,低功耗异步电路的操作不需要电压调节器和没有带隙。电力管理单元本身应用于超低功率传感器节点电路的架构。这种电路由有限的电池电压或由能量收割机提供,并且需要低功率架构,以便提供长时间的操作时间,尤其是在全电路的断电阶段期间。收发器在130nm CMOS工艺中制造,并且必须在-40和125℃之间运行。

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