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An energy-efficient readout circuit for resonant sensors based on ring-down measurement

机译:基于振铃下降测量的谐振传感器节能读取电路

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摘要

This paper presents an energy-efficient readout circuit for resonant sensors that operates based on a transient measurement method. The resonant sensor is driven at a frequency close to its resonance frequency by an excitation source that can be intermittently disconnected, causing the sensor to oscillate at its resonance frequency with exponentially decaying amplitude. By counting the zero crossings of this ring-down response, the interface circuit can detect the resonance frequency. In contrast with oscillator-based readout, the presented readout circuit is readily able to detect quality factor (Q) of the resonator from the envelope of the ring-down response, and can be used even in the presence of large parasitic capacitors. A prototype of the readout circuit has been integrated in 0.35 ?m CMOS technology, and consumes only 36 ?A from a 3.3 V supply during a measurement time of 2 ms. The resonance frequency and quality factor of a micro-machined SiN resonator obtained using this prototype are in good agreement with results obtained using impedance analysis. Furthermore, a clear transient response is observed to ethanol flow using the presented readout, demonstrating the use of this technique in sensing applications.
机译:本文提出了一种基于瞬态测量方法的谐振传感器节能读出电路。谐振传感器由可以间歇断开的激励源以接近其谐振频率的频率驱动,从而使传感器以其谐振频率振荡,幅度呈指数衰减。通过对振铃响应的零交叉进行计数,接口电路可以检测到谐振频率。与基于振荡器的读出相反,所提出的读出电路能够容易地从振铃响应的包络线中检测出谐振器的品质因数(Q),并且即使在存在大型寄生电容器的情况下也可以使用。读出电路的原型已集成到0.35 µm CMOS技术中,在2 ms的测量时间内,3.3 V电源仅消耗36 µA。使用该原型获得的微机械SiN谐振器的谐振频率和品质因数与使用阻抗分析获得的结果非常吻合。此外,使用给出的读数可以观察到对乙醇流量的明显瞬态响应,这表明该技术在传感应用中的使用。

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