Title :
Recent Advances in Real-Time Load-Pull Systems
Author :
Teppati, Valeria ; Ferrero, Andrea ; Pisani, Umberto
Author_Institution :
Dept. of Electron., Politec. di Torino, Turin
Abstract :
In this paper, some of the latest advances in real-time load-pull technologies will be described. A recently introduced ultralow-loss directional coupler, which has been designed and realized by the authors, provides a number of advantages when used in load-pull test sets. This device has been called the load-pull head. The new ultralow-loss load-pull head can transform any passive precalibrated load-pull system into an easily calibrated and accurate real-time load-pull test set, without losing high-reflection-coefficient capabilities. Moreover, if used to realize an active loop, the load-pull head reduces the risks of oscillations and the amount of the loop amplifier output power. As an example application, measurements with a passive real-time load-pull setup of a 30-W laterally diffused MOS (LDMOS) transistor are presented. Furthermore, some advice to bypass the remaining unavoidable losses due to probes and cables is given. We will show, with measurements and with very simple calculations, that the combined use of load-pull heads, a passive tuner, and an active loop not only boosts the available GammaL but also decreases the loop amplifier output power, with a sensible reduction in the overall cost of the system.
Keywords :
directional couplers; microwave field effect transistors; microwave power amplifiers; power MOSFET; semiconductor device measurement; semiconductor device testing; active loop; high-reflection-coefficient capabilities; laterally diffused MOS transistor; load-pull head; load-pull test sets; loop amplifier output power; microwave devices; microwave measurements; microwave phase shifters; microwave power FETs; microwave power amplifiers; passive tuner; power 30 W; real-time load-pull systems; ultralow-loss broadband high-power directional coupler design; yttrium iron garnet filters; Directional couplers; microwave devices; microwave measurements; microwave phase shifters; microwave power FETs; microwave power amplifiers; tuners; yttrium iron garnet filters;
Journal_Title :
Instrumentation and Measurement, IEEE Transactions on
DOI :
10.1109/TIM.2008.926044