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Improved Multimode TRL Calibration Method for Characterization of Homogeneous Differential Discontinuities

机译:改进的多模TRL标定方法用于表征均质微分间断

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摘要

The multimode thru-reflect-line (TRL) calibration technique is widely applied to characterizing differential discontinuities. However, its accuracy is highly dependent on the inhomogeneity degree of differential transmission lines. In particular, in the case that the calibration structures are immersed in a homogeneous medium where different modes travel with the same propagation constant, the conventional multimode TRL is no longer applicable. To overcome this limitation, a new symmetrical reflect standard with distinct pure-mode reflection coefficients is proposed, and the conventional multimode TRL method is improved based on the assumptions applied to the reflect standard. A group of strip-line calibration kits are tested, and the proposed method is implemented to calculate the de-embedded S-parameters of a symmetrical device-under-test. The experimental results show that, from 20 MHz to 16 GHz, the calibrated pure-mode parameters agree well with the simulation, and the cross-mode parameters are mostly lower than −30 dB. Moreover, using the proposed method, the average measurement error achieves at least 14.8-dB reduction relative to that before calibration, and a maximum improvement of 21.2 dB compared with that of the conventional multimode TRL.
机译:多模直通反射线(TRL)校准技术已广泛应用于表征差分不连续性。但是,其精度高度取决于差分传输线的不均匀度。特别地,在将校准结构浸没在不同模式以相同的传播常数行进的均匀介质中的情况下,常规的多模式TRL不再适用。为了克服这一局限性,提出了一种具有不同纯模式反射系数的对称对称反射标准,并在应用于反射标准的假设的基础上改进了传统的多模式TRL方法。测试了一组带状线校准套件,并实现了所提出的方法来计算对称的被测设备的去嵌入S参数。实验结果表明,在20 MHz至16 GHz范围内,校准后的纯模式参数与仿真结果吻合良好,并且交叉模式参数大多低于-30 dB。此外,使用所提出的方法,平均测量误差相对于校准前至少减少了14.8 dB,与传统的多模TRL相比,最大改善了21.2 dB。

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