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Measurement and modeling of passive surface mount devices on FR4 substrates

机译:FR4基板上无源表面贴装器件的测量和建模

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摘要

Passive components like resistors, capacitors and inductors are used in every electronic system. These are the very basic components which affect the system performance at higher frequencies and it is necessary to understand and model the behavior of these components in a very accurate manner. This work focuses on utilizing Printed Circuit Board (PCB) test boards, or fixtures, made of FR4 for characterizing Surface Mount Device (SMD) components. Agilentu27s Advanced Design System (ADS) microwave circuit simulation software was used for designing the microstrip transmission lines as well as for generating the layout for manufacturing of the PCB. SMD resistors, capacitors and inductors were soldered into the fixture and then measured using the Vector Network Analyzer (VNA). The calibration kit was developed in ADS. The measured data were calibrated using the TRL (Thru-Reflect-Line) calibration algorithm. A calibration kit consisting of through, three transmission lines of various lengths, open and short was designed and manufactured. Calibration procedures were performed using Cascade Microtechu27s WinCal XE software. Based on our experience, TRL calibration did not perform to its full potential due to errors in the value of the characteristic impedance of microstrip transmission line. This impedance is ideally assumed to be 50 Ohm, but our lines had characteristic impedance of around 49 Ohm. Simple models for the resistors and capacitors were developed by our collaborators at the University of Zagreb and we developed the model for the inductors. We used ADS for simulations and comparison with the measured data. Extensive optimization of these models was done so as to fit the measured and modeled data. As the frequency goes above 4 GHz models and measurements donu27t match due to the limitations of the PCB material, the increasing effects of the parasitics and calibration artifacts. This work shows how and when we can use inexpensive FR4 PCB for the characterization of the passive SMD components in the low GHz frequency range. It also examines the range of operating frequency of SMD components, verifies the parameters extracted from the simple model and tests the TRL calibration algorithm.
机译:每个电子系统都使用无源元件,例如电阻器,电容器和电感器。这些是在较高频率下影响系统性能的非常基本的组件,因此有必要以非常准确的方式理解和建模这些组件的行为。这项工作的重点是利用由FR4制成的印刷电路板(PCB)测试板或固定装置来表征表面安装器件(SMD)组件。使用安捷伦的高级设计系统(ADS)微波电路仿真软件来设计微带传输线以及生成PCB的布局。将SMD电阻器,电容器和电感器焊接到夹具中,然后使用矢量网络分析仪(VNA)进行测量。校准套件是在ADS中开发的。使用TRL(直通反射线)校准算法对测量数据进行校准。设计并制造了一个校准套件,该套件包括三根不同长度的直通和短通的直通传输线。使用Cascade Microtech的WinCal XE软件执行校准程序。根据我们的经验,由于微带传输线的特征阻抗值存在误差,TRL校准无法发挥其全部潜力。理想情况下,该阻抗为50欧姆,但我们的线路的特征阻抗约为49欧姆。萨格勒布大学的合作者开发了用于电阻器和电容器的简单模型,并且我们开发了用于电感器的模型。我们使用ADS进行仿真并与测量数据进行比较。对这些模型进行了广泛的优化,以适应测量和建模的数据。当频率超过4 GHz时,由于PCB材料的局限性,寄生和校准伪影的影响越来越大,模型和测量值不匹配。这项工作说明了我们如何以及何时可以使用廉价的FR4 PCB来表征低GHz频率范围内的无源SMD组件。它还检查了SMD组件的工作频率范围,验证了从简单模型中提取的参数并测试了TRL校准算法。

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    Koche Rahulkumar Sadanand;

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  • 年度 2012
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