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A 14.5mm28nW ?59.7dBm-sensitivity ultrasonic wake-up receiver for power-, area-, and interference-constrained applications

机译:14.5mm 2 8nw?59.7dbm-lissity超声波唤醒接收器,用于功率,区域和干扰约束应用

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The next generation of the Internet of Things is envisioned to include unobtrusive, distributed mm-sized nodes capable of sensing and communicating information about their surroundings. Wake-up receivers (WuRXs) - ultra-low-power receivers that monitor their environment for a wake-up signature - are an important part of this vision, as they can extend the lifetime of a wireless node by keeping it asleep until interrogated. The state of the art in WuRXs, measured in terms of sensitivity and power, has recently been advanced by streamlining the signal path to include fewer power-hungry gain stages and instead obtaining the gain at the chip-antenna interface [1,2]. This has led to excellent power-sensitivity performance, but the accompanying increase in size hampers the applicability of these techniques in size-conscious applications, such as surveillance, asset tracking, and ubiquitous sensing. Moreover, size-reduction methods based on RF antenna miniaturization are fundamentally limited by high antenna Qs at low size-to-wavelength ratios [3]; efficiently matching to these antennas requires, in turn, high-Q passives that are generally unavailable at mm-scale.
机译:设想下一代物联网以包括能够感测和传达关于周围环境的信息的不引人注目的分布式MM大小的节点。唤醒接收器(Wurxs) - 超低功耗接收器,用于监控其唤醒签名的环境 - 这是本愿景的重要组成部分,因为它们可以通过保持睡眠直到询问之前延长无线节点的寿命。通过精简信号路径,最近通过精敏和功率来测量的Wurxs中的技术状态,以包括较少的功率饥饿的增益阶段,而是在芯片 - 天线接口处获得增益[1,2]。这导致了出色的功率灵敏度性能,但随着尺寸的增加妨碍了这些技术在尺寸有意识的应用中的适用性,例如监视,资产跟踪和无处不在的感测。此外,基于RF天线小型化的尺寸减少方法基本上受到低尺寸到波长比下的高天线Qs的限制[3];与这些天线有效地匹配,又需要依次以MM级别不可用的高Q流。

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