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A New Dynamic-Bias Measurement Setup for Nonlinear Transistor Model Identification

机译:一种新的非线性晶体管模型辨识动态偏差测量装置

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摘要

In this paper, we present a new dynamic-bias measurement setup and its application to the extraction of a nonlinear model for microwave field-effect transistors. The dynamic-bias technique has been recently proposed and relies on the use of low-frequency (LF) and high-frequency (HF) vector-calibrated measurements acquired, for instance, by means of a large-signal network analyzer. In this paper, we propose a new and alternative technique to perform the dynamic-bias measurements, based on relatively low-cost instrumentation commonly available in microwave laboratories. The new acquisition system is composed of a four-channel vector LF receiver (e.g., an oscilloscope) and a one-channel HF scalar receiver (e.g., a spectrum analyzer), which replace the eight-channel vector receiver. Moreover, the proposed architecture greatly simplifies the measurement setup and the calibration procedure. As a case study, a 0.25-μm GaN HEMT is considered. Dynamic-bias measurements, carried out by means of the proposed measurement setup, are used for the identification of a nonlinear model of this device. Finally, the model is fully validated through comparison with time-domain harmonic load–pull measurements carried out at 5 GHz.
机译:在本文中,我们提出了一种新的动态偏置测量设置及其在微波场效应晶体管的非线性模型的应用。最近已经提出了动态偏置技术并依赖于使用低频(LF)和高频(HF)矢量校准测量的使用,例如通过大信号网络分析器获取。在本文中,我们提出了新的替代技术进行动态偏差测量的基础上,成本相对较低的仪器在实验室微波常用的。新的采集系统由四通道矢量LF接收器(例如,示波器)和一个通道HF标量接收器(例如,频谱分析仪)组成,其替换八通道向量接收器。此外,所提出的架构极大地简化了测量设置和校准过程。作为一个案例研究,考虑了0.25微米的GaN HEMT。通过所提出的测量设置执行的动态偏置测量用于识别该设备的非线性模型。最后,通过与5GHz执行的时域谐波载荷测量进行比较全面验证该模型。

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