Pulsed multi-tone measurements for time domain load pull characterizations of power transistors

F. de Groote, P. Roblin, Y. Ko, Chieh-Kai Yang, S. Doo, M. Bossche, J. Teyssier
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引用次数: 15

Abstract

Real-time active load-pull (RTALP) characterization of power transistors with a large signal network analyzer (LSNA) has the benefit of greatly accelerating the design of power amplifiers. However RTALP has been so far limited to devices operating under CW excitations and constant biasing and was therefore mostly applicable to transistors with small memory effects. In TDMA communication or radar systems, amplifiers are excited by pulsed or modulated RF signals and operate under pulsed biasing. For such applications the measurement of modulated/pulsed RF signals under pulsed biasing/RF conditions is required for a more realistic understanding of the behavior of transistors with memory effects. This paper demonstrates that under appropriate conditions it is possible to effectively combine these two excitation modes while performing large-signal measurement by sub-sampling down-conversion with a LSNA. In this demonstration, the acquisition of CW two-tone and three-tone excitations is performed using multiple-recording with pulse duty rate of 1.5% and 0.15%. The pulse-recorded measurements for the three-tone excitation are found to be consistent with CW measurements (100% duty rate). This preliminary work indicates that either intermodulation or real-time active load-pull measurements under pulsed operation can be readily realized for RF samplers with sufficiently short settling time while operating under pulsed RF modulation.
功率晶体管时域负载拉特性的脉冲多音测量
利用大信号网络分析仪对功率晶体管进行实时有源负载-拉力(RTALP)表征,大大加快了功率放大器的设计速度。然而,RTALP迄今为止仅限于在连续波激励和恒定偏置下工作的器件,因此主要适用于具有小存储效应的晶体管。在时分多址通信或雷达系统中,放大器由脉冲或调制射频信号激发并在脉冲偏置下工作。对于这些应用,需要在脉冲偏置/射频条件下测量调制/脉冲射频信号,以便更现实地理解具有记忆效应的晶体管的行为。本文证明,在适当的条件下,可以有效地结合这两种激励模式,同时使用LSNA进行次采样下变频进行大信号测量。在本演示中,采用脉冲占空率分别为1.5%和0.15%的多重记录方式采集连续波双音和三音激励。三音激励的脉冲记录测量结果与连续波测量结果(100%占空率)一致。这项初步工作表明,在脉冲射频调制下工作的射频采样器,只要有足够短的稳定时间,就可以很容易地实现脉冲操作下的互调或实时主动负载-拉力测量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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