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An 18 nW −47/−40 dBm Sensitivity 3/100 kbps MEMS-Assisted CMOS Wake-Up Receiver

机译:18 nW −47 / −40 dBm灵敏度3/100 kbps MEMS辅助CMOS唤醒接收器

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This work demonstrates a low-power wake-up receiver utilizing a MEMS resonant device followed by CMOS demodulator and rectifying trigger circuits. The MEMS device is a Lamb wave piezoelectric-based acoustic resonator utilizing a thin film of lithium niobate (LN) which possess the largest reported electromechanical coupling factors ( ${k} _{t}{2}$ ). This parameter, in conjunction with the high Q, is of paramount importance in providing for passive voltage amplification and filtering of the input signal. The CMOS demodulator is a 9-stage differential cross-coupled passive rectifier circuit designed with a differential output. It demodulates the signal from the MEMS resonator with the same gain as that could be achieved by a single-ended rectifier, but with half the charging time for double the single-ended bit-rate. The rectifier's output is AC-coupled and fed to a two-stage differential voltage amplifier. Finally, an active latch rectifier is used to trigger a wake-up signal. The wake-up receiver is tested with an on-off keying modulated signal with carrier frequency around 400 MHz achieving a bit rate up to 100 kbps. This newly proposed system exhibits a sensitivity of -47 dBm at 3 kbps while consuming a total power of 18 nW.
机译:这项工作演示了一种利用MEMS谐振器件,后跟CMOS解调器和整流触发电路的低功耗唤醒接收器。 MEMS器件是基于兰姆波压电的声谐振器,其利用铌酸锂(LN)薄膜,该薄膜具有最大的机电耦合系数($ {k} _ {t} {2} $)。此参数与高Q结合,对于提供无源电压放大和输入信号的滤波至关重要。 CMOS解调器是设计成差分输出的9级差分交叉耦合无源整流器电路。它以与单端整流器相同的增益对来自MEMS谐振器的信号进行解调,但是充电时间只有单端比特率的两倍。整流器的输出经过交流耦合,然后馈入两级差分电压放大器。最后,有源锁存整流器用于触发唤醒信号。唤醒接收机使用开关键控调制信号进行测试,载波频率约为400 MHz,可实现高达100 kbps的比特率。这个新提出的系统在3 kbps时表现出-47 dBm的灵敏度,同时消耗18 nW的总功率。

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