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Measurement of the Conductivity of Screen Printing Films at Microwave Frequency Employing Resonant Method

机译:微波频率采用共振法测量丝网印刷膜的电导率

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摘要

The conductivity of screen printing films at microwave frequency is one of the most important properties of conductive ink when applied in printed electronics. However, the existing methods of conductivity characterization at microwave frequency focus on homogeneous metal films or semiconductors, which are not suitable for conductive composite materials with poor thickness uniformity, like screen printing films. In this research, by applying a classic stripline ring resonator, a rigorous electromagnetic model was set up, and the conductivity of the screen printing film was able to be deduced by comparison between the measurement and simulation results. As a result, the equivalent conductivity of the film is 2 x 10(6) S/m at 1-3 GHz, which is a little higher than its average direct current conductivity of 1.82 x 10(6) S/m. This method has been proved to be feasible in measuring the conductivity of screen printing films at microwave frequency. Furthermore, it has great potential in the characterization of other printed conductive composite materials on rough surfaces, like textiles.
机译:丝网印刷薄膜在微波频率下的导电性是导电油墨应用于印刷电子产品时最重要的性能之一。然而,现有的微波电导率表征方法主要集中在均匀金属薄膜或半导体上,不适用于厚度均匀性差的导电复合材料,如丝网印刷薄膜。在本研究中,应用经典的带状线环形谐振器,建立了严格的电磁模型,通过测量结果与模拟结果的比较,可以推断丝网印刷薄膜的导电性。结果表明,该薄膜在1-3GHz下的等效电导率为2×10(6)S/m,略高于其平均直流电导率1.82×10(6)S/m。该方法在微波频率下测量丝网印刷薄膜的电导率是可行的。此外,它在粗糙表面上的其他印刷导电复合材料(如纺织品)的表征方面也有很大的潜力。

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