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Modelling of a 4-18GHz 6W flip-chip integrated power amplifier based on GaN HEMTs technology

机译:基于GaN HEMTs技术的4-18GHz 6W倒装芯片集成功率放大器的建模

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摘要

This paper reports on the design of a cascode GaN HEMT distributed power amplifier demonstrating significant improvement of the best power performances reported to date. The active device is a 8x50µm AlGaN/GaN HEMT grown on siSiC. The distributed power amplifier integrates 4 cascode cells capacitively coupled to the gate line for power optimization. The active part made of the 4 cascode cells is implanted on a GaN-based wafer while the distributed passive part made of the interconnection lines is implanted on an AlN substrate. Finally, the GaN-based wafer integrating the active part is flip-chipped onto the AlN substrate via electrical and mechanical bumps. The flip-chip integrated circuit demonstrates a mean gain of 10dB and input/output matching lower than –10dB over the 4-18GHz bandwidth. At an input power of 29dBm (1db comp.), power simulations exhibit a mean output power of 37.6dBm with a standard deviation of 0.3dB, a power gain of 8.6dB and 16% of PAE over the band. At an input power of 31dBm (2dB comp.), the distributed amplifier achieves a mean output power of 38.6dBm, a power gain of 7.6dB and 18% of PAE.
机译:本文报道了共源共栅GaN HEMT分布式功率放大器的设计,证明了迄今为止报道的最佳功率性能的显着改善。有源器件是在siSiC上生长的8x50μmAlGaN / GaN HEMT。分布式功率放大器集成了4个级联单元,它们与栅极线电容耦合以优化功率。由4个共源共栅电池组成的有源部分被注入到GaN基晶片上,而由互连线组成的分布式无源部分被注入到AlN衬底上。最后,将集成了有源部件的GaN基晶片通过电和机械凸点倒装到AlN衬底上。倒装芯片集成电路在4-18GHz带宽上的平均增益为10dB,输入/输出匹配低于–10dB。在29dBm(1db comp。)的输入功率下,功率模拟显示的平均输出功率为37.6dBm,标准偏差为0.3dB,功率增益为8.6dB,并且在该频段上的PAE为16%。在31dBm(2dB压缩)的输入功率下,分布式放大器的平均输出功率为38.6dBm,功率增益为7.6dB,PAE为18%。

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