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Battery Management Technique to Reduce Standby Energy Consumption in Ultra-Low Power IoT and Sensory Applications

机译:电池管理技术降低超低功耗IOT和感官应用中的备用能耗

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In this paper, we present a battery management technique that significantly increases the battery lifetime of event-based devices that are predominantly in standby mode without requiring off or on chip large power switches. The proposed technique uses a novel battery management technique to remove Wake-Up Receiver (WUR) Low Drop-Out (LDO) unit, while causing minimal change to the system's power supply configuration. This technique manages the system so that it can wake up to a normal battery configuration while sleeping in a different battery set-up. This, as a result, drops standby power consumption significantly, making the proposed technique suitable for IoT sensors and, in general, event-based devices. Battery management comprises of voltage level detector, switches for changing battery configuration, and voltage level shifters. The design was applied to an active Radio Frequency Identification (RFID) tag with an embedded WUR and fabricated using TSMC 180nm technology. Measurements on the test chip showed that the proposed architecture and design leads to 80 standby energy saving, prolonging overall (active plus standby) battery's lifetime by 2.5 times while having negligible area overhead. The advantages and disadvantages of the proposed technique are also presented and discussed.
机译:在本文中,我们提出了一种电池管理技术,可以显着增加基于事件的设备的电池寿命,这些设备主要在待机模式下不需要关闭或芯片大功率开关。所提出的技术采用新型电池管理技术删除唤醒接收器(WUR)低掉掉(LDO)单元,同时导致系统电源配置的最小变化。该技术管理系统,使其可以在不同电池设置中睡眠时恢复正常电池配置。结果,这显着降低了待机功耗,使得所提出的技术适用于IOT传感器,通常是基于事件的设备。电池管理包括电压电平检测器,用于改变电池配置的开关和电压电平移位器。该设计应用于具有嵌入式WUR的主动射频识别(RFID)标签,并使用TSMC 180NM技术制造。测试芯片上的测量结果表明,拟议的架构和设计导致80个待机节能,延长总体(活跃加备用)电池的寿命2.5次,同时具有可忽略的区域开销。还提出和讨论了所提出的技术的优点和缺点。

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