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Journal Article A Dual Power Mode Q/V-band SiGe HBT Cascode Power Amplifier With A Novel Reconfigurable Four-Way Wilkinson Power Combiner Balun
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Authors
Insu Han, Hanjung Lee, Seong-Mo Moon, Inchan Ju
Issue Date
2025-01
Citation
IEEE Transactions on Circuits and Systems II: Express Briefs, v.72, no.1, pp.168-172
ISSN
1549-7747
Publisher
Institute of Electrical and Electronics Engineers
Language
English
Type
Journal Article
DOI
https://dx.doi.org/10.1109/TCSII.2024.3507175
Abstract
This brief presents a dual power mode (DPM) Q/V-band SiGe HBT cascode power amplifier (PA) for emerging very low-earth-orbit (VLEO) satellite communication (SATCOM). A novel reconfigurable four-way Wilkinson power combiner balun (WPCB) is proposed, where built-in a collector-to-base (CB) junction of upper HBTs in a SiGe HBT cascode is reconfigured to either reverse- or forward-biased to support high power (HP) or low power (LP) modes of the PA, respectively. This DPM scheme neither requires any lossy series switch at the PA output nor dual power supplies, which improves PA efficiency at power back off (PBO) and reduces system complexity. The DPM PA prototype is fabricated in 0.13 μm SiGe HBT BiCMOS. For HP/LP modes, the PA attains measured peak output power (POUT) and peak power added efficiency (PAE) 23.3/18.7 dBm and 30.4/25.8% at 45.0 GHz, respectively, demonstrating its DPM capability. For HP/LP modes at 45 GHz, it delivers linear POUT (PAVG) of 17.0/11.8 dBm with average PAE (PAEAVG) of 17.7/13.0% at 250MHz symbol rate DVB-S2X 64 ASPK modulation signal.
KSP Keywords
45 GHz, Built-in, DVB-S2X, Dual power, Forward-biased, High power, Output power, PA efficiency, Peak power, Power Back Off(PBO), Power added efficiency(PAE)