面向物联网应用的超低功耗、高数据速率、全芯片射频开关键控接收器

Aasish Boora, Bharatha Kumar Thangarasu, Kiat Seng Yeo
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摘要

尽管高能效接收器在无线传感器网络中的应用潜力巨大,但由于功耗大或支持的数据速率有限,阻碍了其广泛应用。在此,我们提出了一种高能效、超低功耗、支持更高的数据传输速率的完全片上射频接收器前端,用于 2.4 GHz 工业、科学和医疗频段的开关键控调制信号。该接收器体积小巧,采用了耐温振荡器、伪差分混频器和宽带检测器,同时避免了大体积声波谐振器、晶体振荡器等笨重的外部元件。测量结果表明,所提出的开关键控接收器可以解码高达 5 Mbps 数据速率的低功率级射频信号,而功耗仅为 178 µW。这项工作还证明了以更低的功率支持更低的数据速率。由于所提出的接收器可在不同功率模式下工作,因此可集成到各种应用中,包括物联网设备和连续监测生物医学/可穿戴植入物。Aasish Boora 及其同事为高数据速率物联网应用实现了低功耗片上射频接收器。他们的设备可重新配置,根据数据传输速率调整功耗,从而实现节能运行。
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Ultra-low power, high-data rate, fully on-chip radio frequency on-off keying receiver for internet-of-things applications
Despite the enormous potential of energy-efficient receivers for wireless sensor networks, the large power consumption or limited data rate support impedes its extensive applications. Here, we present an energy-efficient, ultra-low power, higher data rate supporting, completely on-chip radio-frequency receiver frontend for on-off keying modulated signals in the 2.4 GHz industrial, scientific, and medical band. This compact-sized receiver is achieved by implementing temperature-resilient oscillator, pseudo-differential mixer, and a wideband detector while avoiding bulky external components such as bulk-acoustic wave resonators, crystal oscillators. Measurement results demonstrate that the proposed on-off keying receiver can decode low power level radio-frequency signals up to 5 Mbps data rate while consuming only 178 µW power. This work also demonstrates support for lower data rates at reduced power. Since the proposed receiver operates in different power modes, it can be integrated in diverse applications including internet-of-things devices and continuously monitoring biomedical/wearable implants. Aasish Boora and colleagues implement low-power on-chip radio frequency receiver for high data rate Internet of Things applications. Their device can be reconfigurable to adjust power consumption to the data rate aiming at energy-efficient operation.
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