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Resonance Frequency Readout Circuit for a 900 MHz SAW Device

机译:900 MHz声表面波器件的谐振频率读出电路

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A monolithic resonance frequency readout circuit with high resolution and short measurement time is presented for a 900 MHz RF surface acoustic wave (SAW) sensor. The readout circuit is composed of a fractional-N phase-locked loop (PLL) as the stimulus source to the SAW device and a phase-based resonance frequency detecting circuit using successive approximation (SAR). A new resonance frequency searching strategy has been proposed based on the fact that the SAW device phase-frequency response crosses zero monotonically around the resonance frequency. A dedicated instant phase difference detecting circuit is adopted to facilitate the fast SAR operation for resonance frequency searching. The readout circuit has been implemented in 180 nm CMOS technology with a core area of 3.24 mm 2 . In the experiment, it works with a 900 MHz SAW resonator with a quality factor of Q = 130. Experimental results show that the readout circuit consumes 7 mW power from 1.6 V supply. The frequency resolution is 733 Hz, and the relative accuracy is 0.82 ppm, and it takes 0.48 ms to complete one measurement. Compared to the previous results in the literature, this work has achieved the shortest measurement time with a trade-off between measurement accuracy and measurement time.
机译:提出了一种用于900 MHz RF表面声波(SAW)传感器的高分辨率且测量时间短的单片谐振频率读出电路。读出电路由分数N锁相环(PLL)作为SAW装置的激励源,以及由基于逐次逼近(SAR)的基于相位的谐振频率检测电路组成。基于SAW器件的相频响应在谐振频率附近单调穿越零的事实,提出了一种新的谐振频率搜索策略。采用专用的瞬时相位差检测电路,以促进谐振频率搜索的快速SAR操作。读出电路已采用180 nm CMOS技术实现,核心面积为3.24 mm 2。在实验中,它与质量因数Q = 130的900 MHz SAW谐振器一起工作。实验结果表明,读出电路从1.6 V电源消耗7 mW的功率。频率分辨率为733 Hz,相对精度为0.82 ppm,完成一项测量需要0.48 ms。与文献中的先前结果相比,这项工作实现了最短的测量时间,并且在测量精度和测量时间之间进行了权衡。

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