PSoC-based embedded design and quartz tuning fork for low-temperature measurement system design

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Abstract

This article describes a commercial quartz tuning fork (QTF), 8 mm in height by 3 mm in diameter, holding a twoterminal electronic component with a nominal frequency of 32.768 kHz and 12.5 pF typical load capacitance packed in a vacuum-sealed metal container, which has been used as a sensor for low-temperature measurement with good sensitivity, repeatability, and reliability. An embedded readout design with the support of a programmable system on-chip (PSoC) and virtual instrument control program, which uses a personal computer as an input/output device, provides online data acquisition of the QTF frequency data, which will in turn provide the measurement of the low-temperature bath in which the QTF is immersed. The embedded PSoC readout captures the varying frequency signals from the QTF as a response to the measurement temperature, processes it, and sends the frequency value to a personal computer, where LabVIEW, a graphical language ("G" language), displays the data in a graphical format. The QTFs for low temperature (300 K to 77 K) are well studied, whereas a sensor using a PSoC embedded design as a readout is a novel design implementation. © 2012 Society for Laboratory.

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APA

Jayapandian, J., Sakthi Swarrup, J., Sheela, O. K., & Ravi, U. (2012). PSoC-based embedded design and quartz tuning fork for low-temperature measurement system design. Journal of Laboratory Automation, 17(2), 144–154. https://doi.org/10.1177/2211068211426552

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