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An Accurate Calibrate-Able Multiharmonic Active Load–Pull System Based on the Envelope Load–Pull Concept

机译:基于包络荷载-牵引概念的精确可校准多谐波主动荷载-牵引系统

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摘要

After calibration, since the systematic imperfections of the envelop load-pull (ELP) components were now fully accounted for, the user is able to rapidly set accurate terminations with full Smith chart coverage. This functionality has been achieved by optimizing the hardware configuration of the envelop load-pull concept. Development of a system whose systematic errors could be described by a magnitude invariant error flow model was critical. As a consequence, a robust calibration mechanism, that is analogous to the one-port error correction of a vector network analyzer, was exploited and comprehensively verified. After calibration, since the systematic imperfections of the ELP components were now fully accounted for, the user is able to set accurately terminations with full Smith chart coverage. Finally, measurements on commercially available transistor devices are presented that verify the rapid nature, accuracy, flexibility, reliability, and ease of calibration of the multiharmonic load-pull system.
机译:校准后,由于现在已完全解决了包络负载牵引(ELP)组件的系统缺陷,因此用户能够在Smith图表完全覆盖的情况下快速设置准确的端接。该功能已通过优化包络负载-牵引概念的硬件配置来实现。开发一个系统误差可以用幅度不变误差流模型描述的系统至关重要。结果,开发并全面验证了类似于矢量网络分析仪的单端口纠错的可靠校准机制。校准后,由于现在已完全解决了ELP组件的系统缺陷,因此用户可以在史密斯圆图的全部覆盖范围内准确设置端接。最后,提出了对商用晶体管器件的测量,这些测量值验证了多谐波负载牵引系统的快速特性,准确性,灵活性,可靠性以及易于校准的特点。

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