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An Ultra-Low-Power RF Energy-Harvesting Transceiver for Multiple-Node Sensor Application

机译:用于多节点传感器应用的超低功耗射频能量收集收发器

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An ultra-low-power wirelessly powered radiofrequency (RF) transceiver for wireless sensor network is implemented using 180-nm CMOS technology. We propose a 98- 457.5-MHz transmitter with output radiation power of 22 dBm. This transmitter utilizes 915-MHz wirelessly powering RF signal by frequency division using a true-single-phase-clock divider to generate the carrier frequency with very low power consumption and small die area. The transmitter can support up to 5-Mb/s data rate. The telemetry system uses an eight-stage Cockcroft–Walton rectifier to convert RF to dc voltage for energy harvesting. The bandgap reference and linear regulators provide stable dc voltage throughout the system. The receiver recovers data from the modulated wireless powering RF signal to perform time-division multiple access (TMDA) for the multiple-node system. Power consumption of the TDMA receiver is less than 15 . Our proposed transmitter and receiver each occupies 0.0018 and 0.0135 mm of active die area, respectively.
机译:使用180纳米CMOS技术实现了用于无线传感器网络的超低功耗无线射频(RF)收发器。我们建议使用输出辐射功率为22 dBm的98-457.5-MHz发射机。该发射机使用真正的单相时钟分频器通过分频利用915 MHz无线供电的RF信号,以产生具有非常低功耗和小芯片面积的载波频率。发射器可支持高达5 Mb / s的数据速率。遥测系统使用八级Cockcroft-Walton整流器将RF转换为直流电压以进行能量收集。带隙基准电压源和线性稳压器在整个系统中提供稳定的直流电压。接收器从调制的无线供电RF信号中恢复数据,以执行多节点系统的时分多址(TMDA)。 TDMA接收机的功耗小于15。我们建议的发射器和接收器各自分别占有源芯片面积的0.0018和0.0135 mm。

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