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Main Authors: Gong, Pingzhu, Guo, Jiachen, Vangipurapu, Niteesh Bharadwaj, Chen, Kenle
Format: Preprint
Published: 2024
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Online Access:https://arxiv.org/abs/2404.10558
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author Gong, Pingzhu
Guo, Jiachen
Vangipurapu, Niteesh Bharadwaj
Chen, Kenle
author_facet Gong, Pingzhu
Guo, Jiachen
Vangipurapu, Niteesh Bharadwaj
Chen, Kenle
contents This paper reports a first-ever decade-bandwidth pseudo-Doherty load-modulated balanced amplifier (PD-LMBA), designed for emerging 4G/5G communications and multi-band operations. By revisiting the LMBA theory using the signal-flow graph, a frequency-agnostic phase-alignment condition is found that is critical for ensuring intrinsically broadband load modulation behavior. This unique design methodology enables, for the first time, the independent optimization of broadband balanced amplifier (BA, as the peaking) and control amplifier (CA, as the carrier), thus fundamentally addressing the longstanding limits imposed on the design of wideband load-modulated power amplifiers (PAs). To prove the proposed concept, an ultra-wideband RF-input PD-LMBA is designed and developed using GaN technology covering the frequency range from 0.2 to 2 GHz. Experimental results demonstrate an efficiency of 51% to 72% for peak output power and 44% to 62% for 10-dB OBO, respectively.
format Preprint
id arxiv_https___arxiv_org_abs_2404_10558
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Decade-Bandwidth RF-Input Pseudo-Doherty Load Modulated Balanced Amplifier using Signal-Flow-Based Phase Alignment Design
Gong, Pingzhu
Guo, Jiachen
Vangipurapu, Niteesh Bharadwaj
Chen, Kenle
Hardware Architecture
Signal Processing
This paper reports a first-ever decade-bandwidth pseudo-Doherty load-modulated balanced amplifier (PD-LMBA), designed for emerging 4G/5G communications and multi-band operations. By revisiting the LMBA theory using the signal-flow graph, a frequency-agnostic phase-alignment condition is found that is critical for ensuring intrinsically broadband load modulation behavior. This unique design methodology enables, for the first time, the independent optimization of broadband balanced amplifier (BA, as the peaking) and control amplifier (CA, as the carrier), thus fundamentally addressing the longstanding limits imposed on the design of wideband load-modulated power amplifiers (PAs). To prove the proposed concept, an ultra-wideband RF-input PD-LMBA is designed and developed using GaN technology covering the frequency range from 0.2 to 2 GHz. Experimental results demonstrate an efficiency of 51% to 72% for peak output power and 44% to 62% for 10-dB OBO, respectively.
title Decade-Bandwidth RF-Input Pseudo-Doherty Load Modulated Balanced Amplifier using Signal-Flow-Based Phase Alignment Design
topic Hardware Architecture
Signal Processing
url https://arxiv.org/abs/2404.10558