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On the Performance Evaluation of Commercial SAW Resonators by Means of a Direct and Reliable Equivalent-Circuit Extraction

机译:通过直接可靠的等效电路提取商业锯谐振器的性能评价

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摘要

Nowadays, surface acoustic wave (SAW) resonators are attracting growing attention, owing to their widespread applications in various engineering fields, such as electronic, telecommunication, automotive, chemical, and biomedical engineering. A thorough assessment of SAW performance is a key task for bridging the gap between commercial SAW devices and practical applications. To contribute to the accomplishment of this crucial task, the present paper reports the findings of a new comparative study that is based on the performance evaluation of different commercial SAW resonators by using scattering (S-) parameter measurements coupled with a Lorentzian fitting and an accurate modelling technique for the straightforward extraction of a lumped-element equivalent-circuit representation. The developed investigation thus provides ease and reliability when choosing the appropriate commercial device, depending on the requirements and constraints of the given sensing application. This paper deals with the performance evaluation of commercial surface acoustic wave (SAW) resonators by means of scattering (S-) parameter measurements and an equivalent-circuit model extracted using a reliable modeling procedure. The studied devices are four TO-39 packaged two-port resonators with different nominal operating frequencies: 418.05, 423.22, 433.92, and 915 MHz. The S-parameter characterization was performed locally around the resonant frequencies of the tested SAW resonators by using an 8753ES Agilent vector network analyzer (VNA) and a home-made calibration kit. The reported measurement-based study has allowed for the development of a comprehensive and detailed comparative analysis of the performance of the investigated SAW devices. The characterization and modelling procedures are fully automated with a user-friendly graphical user interface (GUI) developed in the Python environment, thereby making the experimental analysis faster and more efficient.
机译:如今,表面声波(SAW)谐振器由于各种工程领域的广泛应用而引起了不断的关注,例如电子,电信,汽车,化学和生物医学工程。对SAW性能进行全面评估是弥合商业锯设备与实际应用之间的差距的关键任务。为了促进这项重要任务的实现,本文报告了一种新的比较研究的结果,该研究基于不同商业SAW谐振器的绩效评估,采用散射(S-)参数测量与Lorentzian配件和准确的集体元件等效电路表示的直接提取模型技术。因此,在选择相应的商业设备时,开发的调查根据给定的感测应用程序的要求和约束,在选择合适的商业设备时提供了缓解和可靠性。本文通过散射(S-)参数测量和使用可靠的建模程序提取的等效电路模型来涉及商业表面声波(SAW)谐振器的性能评估。研究的装置是四到39个封装的双端口谐振器,具有不同的标称工作频率:418.05,423.22,433.92和915 MHz。通过使用8753ES Agilent向量网络分析仪(VNA)和自制校准套件,在局部地围绕测试的SAW谐振器的谐振频率局部执行S参数表征。报告的基于测量的研究已经允许开发对调查的SAW器件性能的全面和详细的比较分析。表征和建模程序通过在Python环境中开发的用户友好的图形用户界面(GUI)完全自动化,从而使实验分析更快,更高效。

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