Title :
An energy-efficient reconfigurable readout circuit for resonant sensors based on ring-down measurement
Author :
Yuxin Yan ; Zeng Zeng ; Chao Chen ; Hui Jiang ; Zu-yao Chang ; Karabacak, Devrez M. ; Pertijs, Michiel A. P.
Author_Institution :
Electron. Instrum. Lab., Delft Univ. of Technol., Delft, Netherlands
Abstract :
This paper presents a novel readout circuit for micro-mechanical resonant sensors. To determine the sensor´s resonance frequency and quality factor, the sensor is briefly excited, after which the exponentially-decaying ring-down current produced by a piezoelectric transducer is read out by an auto-zeroed trans-impedance amplifier (TIA). An auto-zeroed comparator then detects zero- and level-crossings for frequency counting and quality factor measurement. A new circuit topology is proposed to reduce errors due to leakage currents. Moreover, a reconfigurable TIA enhances the circuit´s flexibility. A prototype chip has been implemented in a 0.35 μm CMOS process. Experimental results obtained using a silicon-nitride clamped-clamped beam resonator are in good agreement with results obtained using conventional impedance analysis. In a measurement time of 2 ms, the circuit achieves a 50 ppm detection limit in resonance frequency, 5 times better than prior work, while consuming only 31.5 μA from a 3.3 V supply.
Keywords :
CMOS integrated circuits; Q-factor measurement; comparators (circuits); electric current measurement; frequency measurement; leakage currents; micromechanical resonators; microsensors; operational amplifiers; piezoelectric transducers; readout electronics; silicon compounds; CMOS process; SiN; TIA; auto-zeroed comparator; autozeroed transimpedance amplifier; current 31.5 muA; energy-efficient reconfigurable readout circuit; exponentially-decaying ring-down current measurement; frequency counting; impedance analysis; leakage current; level-crossing detection; micromechanical resonant sensor; piezoelectric transducer; quality factor measurement; silicon-nitride clamped-clamped beam resonator; size 0.35 mum; time 2 ms; voltage 3.3 V; zero-crossing detection; Frequency measurement; Impedance; Q-factor; RLC circuits; Resonant frequency; Semiconductor device measurement; Sensors; energy-efficiency; resonant sensors; ring-down measurement; sensor interfacing;
Conference_Titel :
SENSORS, 2014 IEEE
Conference_Location :
Valencia
DOI :
10.1109/ICSENS.2014.6984973