发明名称 Passive source and load-pull architecture for high reflection factor synthesis
摘要 An enhanced loop in a passive tuner consists of an extremely low loss coupler and a high directivity circulator. In the case of source reflection factor synthesis, a passive loop generates an additional incident traveling wave. This wave, added to the primary incident traveling wave, augments the traveling wave and thus increases the magnitude of the synthesized reflection factor at the source port of a device, such as a transistor. In the case of load reflection factor synthesis, the passive loop augments the initial reflected traveling wave by pumping an additional traveling wave. This additional traveling wave helps in synthesizing a higher load reflection factor at the load port. This architecture is capable of high reflection factor synthesis that enables load synthesis even on the border of the Smith chart. There is no problem of instability with the architecture of the present invention.
申请公布号 US8841922(B2) 申请公布日期 2014.09.23
申请号 US201113097303 申请日期 2011.04.29
申请人 发明人 Ghannouchi Fadhel M.;Ben Smida Souheil;Hashmi Mohammad Shabi;Helaoui Mohamed
分类号 G01R27/02;G01R27/32 主分类号 G01R27/02
代理机构 代理人
主权项 1. A passive architecture for synthesizing high reflective impedance factor, the architecture comprising: a source-pull architecture including: a RF source generator adapted to emit an input traveling wave at a testing frequency;a closed passive loop adapted to receive the input traveling wave and to also feed-forward the input traveling wave to a device under test (DUT) through a tuner and to then send back to the DUT a portion of the reflected input traveling wave through the tuner as a supplementary traveling wave at the same testing frequency to be assembled to the input traveling wave;the tuner adapted to send the portion of the reflected input traveling wave to be assembled by the passive loop as a supplementary traveling wave, the tuner further adapted to present a high magnitude reflection coefficient to the DUT by the superposition of the supplementary traveling wave and the input traveling wave; and a load-pull architecture including: a load tuner adapted to reflect to the DUT a portion of an output travelling wave at the testing frequency coming out from the DUT;a load side closed passive loop adapted to first receive a portion of the output traveling wave through the load tuner and, second, to send back a supplementary travelling wave to the DUT through the load tuner.
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