P. Saad, Mats Helgöstam, Ruiting Hou

2026.1.1IEEE TRANSACTIONS ON MICROWAVE THEORY AND TECHNIQUES

DOI: 10.1109/tmtt.2025.3597416

Abstract

This article introduces a dual-band power amplifier (PA) architecture that enables dynamic power sharing and band-specific microsleep functionality. These capabilities are realized through a shared wideband auxiliary amplifier operating alongside two single-band main amplifiers, forming a dual-band three-stage Doherty PA (DPA). A prototype of this architecture is implemented and experimentally characterized, demonstrating peak output power levels of <inline-formula> <tex-math notation="LaTeX">$57.4\,\pm \,0.4\,\text {dBm}$ </tex-math></inline-formula> for Band1 (2.11−2.17GHz) and <inline-formula> <tex-math notation="LaTeX">$57\,\pm \,0.2\,\text {dBm}$ </tex-math></inline-formula> for Band7 (2.62−2.69GHz). At 9dB back-off, measured drain efficiencies are 58%–63% for Band1 and 56%–58% for Band7. Concurrent dual-band linearized measurements using 20MHz new radio (NR) signals with a 7.5dB peak-to-average power ratio (PAPR) confirm excellent linearity and demonstrate dynamic power-sharing capability of the proposed architecture.

Citation format

SAAD, P.; HELGÖSTAM, Mats; HOU, Ruiting. Concurrent dual-band dual-output four-stage doherty power amplifier at 2.1/2.6 ghz delivering 60 + 60 w average power with 50% efficiency. IEEE TRANSACTIONS ON MICROWAVE THEORY AND TECHNIQUES, 2026, 74: 238–252.