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A few traditional pulse-forming circuits are implemented in a commercial 0.13 μm digital complementary-metal-oxide-semiconductor (CMOS) technology. These circuits, based on a coplanar waveguide, are analyzed and compared through CadenceTM Spectre simulations. The results show that these traditional pulse-forming-line (PFL) based circuits can be implemented in standard CMOS technology for short pulse generations. Further work is needed to explore the potential of the circuit techniques and to minimize parasitic effects. 相似文献
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实验研究了高有载品质因数下有无阳极端帽时调谐性能的差异,以及低有载品质因数下,没有阳极端帽时的可调谐相对论磁控管性能。研究结果表明:没有阳极端帽时,可调谐相对论磁控管具有更宽的调谐范围;在高有载品质因数下,可以达到2.52~3.31 GHz的调谐范围,输出功率范围为44~790 MW;低有载品质因数下,调谐范围为2.55~3.05 GHZ,调谐范围内输出功率1~1.7 GW。 相似文献
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