Torres R, García J V, Arnau A, Perrot H, Kim L To Thi, Gabrielli C
GIBEC-Escuela de Ingeniería de Antioquia, Universidad CES, Calle 25, Sur No. 42-73, Envigado, Colombia.
Rev Sci Instrum. 2008 Apr;79(4):045113. doi: 10.1063/1.2908430.
The monitoring of frequency changes in fast quartz crystal microbalance (QCM) applications is a real challenge in today's instrumentation. In these applications, such as ac electrogravimetry, small frequency shifts, in the order of tens of hertz, around the resonance of the sensor can occur up to a frequency modulation of 1 kHz. These frequency changes have to be monitored very accurately both in magnitude and phase. Phase-locked loop techniques can be used for obtaining a high performance frequency/voltage converter which can provide reliable measurements. Sensitivity higher than 10 mVHz, for a frequency shift resolution of 0.1 Hz, with very low distortion in tracking both the magnitude and phase of the frequency variations around the resonance frequency of the sensor are required specifications. Moreover, the resonance frequency can vary in a broad frequency range from 5 to 10 MHz in typical QCM sensors, which introduces an additional difficulty. A new frequency-voltage conversion system based on a double tuning analog-digital phase-locked loop is proposed. The reported electronic characterization and experimental results obtained with conducting polymers prove its reliability for ac-electrogravimetry measurements and, in general, for fast QCM applications.
在当今的仪器仪表中,监测快速石英晶体微天平(QCM)应用中的频率变化是一项真正的挑战。在这些应用中,如交流电重法,在传感器共振附近会出现高达1 kHz频率调制的几十赫兹量级的小频率偏移。这些频率变化必须在幅度和相位上都进行非常精确的监测。锁相环技术可用于获得高性能的频率/电压转换器,从而提供可靠的测量。对于0.1 Hz的频率偏移分辨率,要求灵敏度高于10 mV/Hz,并且在跟踪传感器共振频率附近频率变化的幅度和相位时失真非常低。此外,在典型的QCM传感器中,共振频率可在5至10 MHz的宽频率范围内变化,这带来了额外的困难。本文提出了一种基于双调谐模拟 - 数字锁相环的新型频率 - 电压转换系统。所报道的使用导电聚合物获得的电子特性和实验结果证明了其在交流电重法测量以及一般快速QCM应用中的可靠性。