$300mu mathrm{W}$ backchannel receiver (RX) compatible with the Bluetooth-Lo'/> A 300μ W Bluetooth-Low-Energy Backchannel Receiver Employing a Discrete-Time Differentiator-Based Coherent GFSK Demodulation
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A 300μ W Bluetooth-Low-Energy Backchannel Receiver Employing a Discrete-Time Differentiator-Based Coherent GFSK Demodulation

机译:一种300μW蓝牙 - 低能量后备接收器,采用基于离散时间的微分器的连贯GFSK解调

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This paper presents a $300mu mathrm{W}$ backchannel receiver (RX) compatible with the Bluetooth-Low-Energy (BLE) standard for ultra-low power Internet-of-Things (IoT) applications. A PLL-less, mixer-first zero-IF architecture is proposed to achieve the low power operation featuring an antenna-chip co-design for lossless quadrature (I/Q) generation in the RF path. A novel $10mu mathrm{W}$ switched-capacitor differentiator-based GFSK demodulator is presented. The demodulator exhibits a robust operation under I/Q phase and amplitude imbalances and operates at a 1MHz baseband clock frequency. The proposed backchannel communication within the packet's payload is achieved through 2× data repetition. The chip is designed and fabricated in CMOS 40nm technology. The RX achieves −69dBm sensitivity for 0.1% BER at 0.5Mbps effective data rate.
机译:本文提出了一个 $ 300 mu mathrm {w $ BackChannel接收器(RX)与蓝牙低能量(BLE)标准兼容,用于超低电网的内容(IOT)应用程序。提出了一种PLL-Light的混合器 - 首先 - 如果建筑以实现低功率操作,以RF路径中的无损正交(I / Q)产生的天线芯片共同设计。一本小说 $ 10 mu mathrm {w $ 提出了基于开关的基于电容器的GFSK解调器。解调器在I / Q相位和幅度不平衡下表现出鲁棒操作,并以1MHz基带时钟频率运行。通过2×数据重复实现数据包的有效载荷内的提出的后顾通信。该芯片采用CMOS 40NM技术设计和制造。 RX为0.1%BER实现0.5Mbps有效数据速率的敏感性。

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