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A Continuous-Mode Harmonic-Tuning Ku-Band GaN MMIC Doherty Power Amplifier with an 18.7% Fractional Bandwidth
會議論文

A Continuous-Mode Harmonic-Tuning Ku-Band GaN MMIC Doherty Power Amplifier with an 18.7% Fractional Bandwidth

Po-Yu Lee, Yu-Hsiang Shang, Hsin-Chieh Lin, Yin-Cheng Chang, Da-Chiang Chang 和 Shawn S.H. Hsu
IEEE MTT-S International Microwave Symposium digest, 頁碼.208-211
IEEE
2026 IEEE MTT-S Radio Frequency Technology and Techniques Symposium (IMS RFTT) (Boston, MA, USA, 07/06/2026–12/06/2026)
07/06/2026

摘要

Amplifiers Bandwidth continuous-mode (CM) Design methodology Doherty power amplifier (DPA) gallium nitride (GaN) Generative adversarial networks harmonic-tuning Impedance Loading MMIC Power amplifiers Printing Timing Broadband Technology
This paper presents a Ku-band continuous-mode harmonic-tuning Doherty power amplifier (CMHT-DPA) using 0.12-\mu \mathrm{m} GaN HEMT MMIC technology. Detailed design considerations of the broadband impedance-inverting network (IIN) and phase compensation network (PCN) are discussed and implemented, together with the continuous-mode loading (CML) for achieving wideband operation while maintaining high output power back-off (OBO) efficiency. Measured results show that the proposed DPA exhibits a \mathrm{P}_{\text{sat }} of 3 8. 7 ~ \text{d B m} , with a peak PAE of 31.3% and a PAE of 28.2% at 6-dB OBO. The small-signal gain is up to 17.9 dB within the 3-dB bandwidth from 13.6 to 16.4 GHz, corresponding to an 18.7% fractional bandwidth. Compared to previously published GaN DPAs in a similar frequency range, the proposed DPA achieves the highest efficiency at both saturation and 6-dB OBO and the largest fractional bandwidth, with the obtained FoMs among the best.

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