一种新型5G毫米波分压器的超紧凑反向输入延迟多尔蒂功率放大器

Aniello Franzese, M. Wei, R. Negra, A. Malignaggi
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摘要

本文报道了一种5G毫米波应用的Doherty功率放大器(DPA)的设计。与标准DPA相反,该设计在载波放大器的输入端呈现延迟,从而在DPA处于低功率状态时增强了峰值放大器的隔离性。此外,该电路利用一种新颖的功率分压器(PD)来减小无源元件的尺寸和数量。此外,PD将载波和峰值放大器的输入阻抗转换为50 Ω,避免了有损匹配网络。其性能包括在26.5 GHz时无预驱动放大器的峰值增益超过7 dB,回退效率平台为5 dB,饱和功率超过14 dBm。该电路采用IHP 130纳米SiGe技术制造,有效面积为660×360µm2,适合集成到波束形成芯片中。
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Ultracompact Inverted Input Delay Doherty Power Amplifier with a Novel Power Divider for 5G mm-Wave
This paper reports on the design of a Doherty power amplifier (DPA) for 5G mm-wave applications. Conversely to standard DPAs, this design presents a delay at the input of the carrier amplifier, which enhances the isolation of the peaking amplifier while the DPA is in its low power regime. Moreover, the circuit leverages a novel power divider (PD) to reduce both size and number of passive components. Moreover, the PD transforms the input impedance of the carrier and the peaking amplifiers to 50 Ω avoiding lossy matching networks. Performance consists of a peak gain without pre-driver amplifiers of more than 7 dB at 26.5 GHz, a back-off efficiency plateau of 5 dB, and a saturation power of more than 14 dBm. The circuit has been fabricated in the IHP 130-nm SiGe technology and occupies an effective area of 660×360 µm2, which makes it suitable to be integrated into a beamformer chip.
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