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Low-power wake-up receiver with subthreshold CMOS circuits for wireless sensor networks

机译:具有亚阈值CMOS电路的低功耗唤醒接收器,用于无线传感器网络

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摘要

We developed a wake-up receiver comprised of subthreshold CMOS circuits. The proposed receiver includes an envelope detector, a high-gain baseband amplifier, a clock and data recovery (CDR) circuit, and a wake-up signal recognition circuit. The drain nonlinearity in the subthreshold region effectively detects the baseband signal with a microwave carrier. The offset cancellation method with a biasing circuit operated by the subthreshold produces a high gain of more than 100 dB for the baseband amplifier. A pulse-width modulation (PWM) CDR drastically reduces the power consumption of the receiver. A 2.4-GHz detector, a high-gain amplifier and a PWM clock recovery circuit were designed and fabricated with 0.18-mu m CMOS process with one poly and six metal layers. The fabricated detector and high-gain amplifier achieved a sensitivity of -47.2 dBm while consuming only 6.8 mu W from a 1.5 V supply. The fabricated clock recovery circuit operated successfully up to 500 kbps.
机译:我们开发了由亚阈值CMOS电路组成的唤醒接收器。拟议中的接收机包括一个包络检波器,一个高增益基带放大器,一个时钟和数据恢复(CDR)电路以及一个唤醒信号识别电路。亚阈值区域中的漏极非线性会利用微波载波有效地检测基带信号。具有亚阈值的偏置电路的失调消除方法为基带放大器带来了超过100 dB的高增益。脉宽调制(PWM)CDR大大降低了接收器的功耗。设计并制造了一个2.4 GHz检测器,一个高增益放大器和一个PWM时钟恢复电路,并采用0.18微米CMOS工艺制造了一个多晶硅层和六个金属层。制成的检测器和高增益放大器实现了-47.2 dBm的灵敏度,而1.5 V电源仅消耗6.8μW的功率。所制造的时钟恢复电路成功地以高达500 kbps的速度运行。

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