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A Symbol-Duty-Cycled 440-pJ/b Impulse Radio Receiver With 0.57-aJ Sensitivity in 130-nm CMOS

机译:在130nm CMOS中具有0.57aJ灵敏度的符号占空比440pJ / b脉冲无线电接收机

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This paper presents an ultra-wideband impulse radio (UWB-IR) receiver (RX) for ultralow energy consumption applications. The design of the receiver takes full advantage of the pulsed nature of UWB-IR communication technology aiming at architectural simplicity, avoidance of precise frequency reference generation, and symbol-level duty-cycled operation. The tradeoff between receiver sensitivity and energy-per-bit consumption is briefly addressed for the different design options taken into consideration. A prototype of the receiver was fabricated in 130-nm CMOS technology and tested. The testing results show that the receiver supports a 4.4-Mb/s data rate, with a sensitivity of 0.57 aJ. Thanks to symbol-level duty-cycling and architecture and circuit optimization, such an outstanding performance is attained at an energy consumption of only 440 pJ/b. The receiver robustness against narrowband interferers is also assessed by measuring the blocker power required to degrade the receiver sensitivity by 1 dB: measurement shows a blocker power level that increases from −45 dBm at 6 GHz up to 3 dBm at 2.4 GHz.
机译:本文介绍了一种用于超低能耗应用的超宽带脉冲无线电(UWB-IR)接收器(RX)。接收机的设计充分利用了UWB-IR通信技术的脉冲性质,旨在简化结构,避免产生精确的频率基准并实现符号级占空比操作。针对考虑到的不同设计选项,简要解决了接收机灵敏度和每位能量消耗之间的折衷问题。接收器的原型采用130纳米CMOS技术制造并进行了测试。测试结果表明,该接收器支持4.4 Mb / s的数据速率,灵敏度为0.57 aJ。得益于符号级占空比,架构和电路优化,仅440 pJ / b的能耗即可获得如此出色的性能。还通过测量使接收器灵敏度降低1 dB所需的阻塞器功率来评估接收器针对窄带干扰源的鲁棒性:测量结果表明,阻塞器功率水平从6 GHz的-45 dBm上升至2.4 GHz的3 dBm。

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