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Remote frequency calibration of passive wireless microsensors and transponders using injection-locked phase-locked loop

机译:使用注入锁定锁相环对无源无线微传感器和应答器进行远程频率校准

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This paper proposes a new remote frequency calibration method that allows a passive wireless microsensor to adjust the oscillation frequency of its local oscillator using a calibrating reference signal sent by its reader. The reference signal is transmitted wirelessly by the reader in the form of a modulated tone. Frequency calibration is achieved by employing an injection-locking phase-locked loop that adjusts the oscillation frequency of the relaxation oscillator of the microsensor to that of the reference signal. The hysteresis of the relaxation oscillator is created by a novel mono-stable current pulse generating circuit also proposed in this paper. The proposed remote frequency calibration system has been designed in TSMC-0.18 mum 1.8 V 6-metal 1-poly CMOS technology and analyzed using SpectreRF from Cadence Design Systems with BSIM3V3 device models. The power consumption of the VCO is 525 nW while that of the system is 912 nW.
机译:本文提出了一种新的远程频率校准方法,该方法允许无源无线微传感器使用其读取器发送的校准参考信号来调整其本地振荡器的振荡频率。阅读器以调制音的形式无线传输参考信号。通过采用注入锁定锁相环来实现频率校准,该注入锁定锁相环将微传感器的张弛振荡器的振荡频率调整为参考信号的振荡频率。本文还提出了一种新颖的单稳态电流脉冲产生电路,可以产生弛豫振荡器的磁滞。拟议的远程频率校准系统已采用TSMC-0.18的1.8 V 6金属1-poly CMOS技术进行设计,并使用来自Cadence Design Systems的SpectreRF和BSIM3V3器件模型进行了分析。 VCO的功耗为525 nW,而系统的功耗为912 nW。

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