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A Clockless Temperature-Compensated Nanowatt Analog Front-End for Wake-Up Radios Based on a Band-Pass Envelope Detector

机译:基于带通包络检测器的唤醒无线电的无齿无水温度补偿的纳瓦模拟前端

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This paper presents an Analog Front-End for integrated Wake-Up Radios. The proposed Analog Front-End is composed of an envelope detector, a Schmitt trigger and a biasing block and has three distinctive features: i) clockless solution, which does not require an always-on oscillator; ii) an envelope detector with band-pass response which leads to smaller capacitance, thus easier integration, and low-frequency noise suppression; iii) temperature compensated biasing scheme. An active scheme for the detector is used based on MOSFETs operated in the subthreshold region with a self-biased topology. Advantages and drawbacks of the proposed architecture are analyzed. A prototype was fabricated in the STMicroelectronics 90-nm BCD technology. The overall power consumption, excluding the biasing block, is 36 nW at 1.2 V. A 10 (-3) Bit Error Rate is measured with a 771-MHz, 2-kbit/s OOK modulated input signal with -46 dBm power at room temperature and at -20 degrees C, and with almost -43 dBm power at 60 degrees C.
机译:本文介绍了集成唤醒无线电的模拟前端。所提出的模拟前端由包络检测器,施密特触发器和偏置块组成,并且具有三个独特的特征:i)无点状解决方案,不需要始终振荡器; ii)带带式响应的包络检测器导致电容较小,从而更容易集成,低频噪声抑制; III)温度补偿偏置方案。基于具有自偏置拓扑的亚阈值区域中操作的MOSFET使用的检测器的主动方案。分析了所提出的架构的优点和缺点。在STMicroelectronics 90-NM BCD技术中制造了原型。排除偏置块的整体功耗为1.2V。使用771MHz,2-Kbit / S OOK调制输入信号测量10(3)位错误率,在房间内为-46 dBm电源测量温度和-20摄氏度,差几于-43 dBm功率为60℃。

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