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dc.contributor.author
Mannem, Naga Sasikanth
dc.contributor.author
Huang, Min-Yu
dc.contributor.author
Huang, Tzu-Yuan
dc.contributor.author
Wang, Hua
dc.date.accessioned
2022-06-27T09:20:09Z
dc.date.available
2022-06-01T16:02:08Z
dc.date.available
2022-06-27T09:20:09Z
dc.date.issued
2020-12
dc.identifier.issn
0018-9200
dc.identifier.issn
1558-173X
dc.identifier.other
10.1109/JSSC.2020.3022617
en_US
dc.identifier.uri
http://hdl.handle.net/20.500.11850/550237
dc.description.abstract
Antenna load impedance variations typically cause significant power amplifier (PA) performance degradation, including output power, large-signal linearity, and peak/average PA efficiency, which are especially critical for modern millimeter-wave (mm-Wave) communications with spectrally efficient complex modulations. To address this problem, we propose a reconfigurable hybrid series/parallel Doherty PA with a 90°-coupler-based active load modulation network. By reconfiguring the series/parallel Doherty operation modes, the strengths of the Main/Auxiliary PAs, and their relative phase, linear output power (OP1 dB), as well as peak output power (Psat) and energy efficiency (PAEpeak and PAE1dB ) of the PA can be largely restored under full-span 360° antenna impedance variations. The theoretical analysis and design guidelines are both presented in this article. As a proof of concept, a 39-GHz reconfigurable hybrid series/parallel Doherty PA is fabricated in the Global Foundries 45-nm RF CMOS silicon on insulator (SOI) process with a 2-V PA supply and 1-V driver supply. At 39 GHz, the PA achieves a 33.3% peak power-added efficiency (PAE) at 20.8-dBm sat and 32.2% PAE1dB at 20.2-dBm OP1dB at a nominal 50- Ω load. The reconfigured PA demonstrates an 18.5-19.12-dBm OP1dB with a high PAE1dB of 20.6%-25.3% at 3:1 antenna voltage standing wave ratio (VSWR) over 360° angles. The PA achieves an rms error vector magnitude (EVM) of -23.6 dB/-22.8 dB/-23.1 dB at an average Pout of 13.8 dBm/12.2 dBm/11.5 dBm with 100 MSym/S/500 MSym/S/1 GSym/S single-carrier 64-quadratic-amplitude modulation (QAM) signal, respectively, at a nominal load of 50 Ω. A greater-than 11.2-dBm average Pout is achieved at an rms EVM of -24 dB under a full-span 3:1 antenna VSWR with a 100-MSym/S 64-QAM signal.
en_US
dc.language.iso
en
en_US
dc.publisher
IEEE
en_US
dc.subject
5G mobile communication
en_US
dc.subject
Impedance
en_US
dc.subject
Phased arrays
en_US
dc.subject
Power amplifierts (PAs)
en_US
dc.title
A Reconfigurable Hybrid Series/Parallel Doherty Power Amplifier with Antenna VSWR Resilient Performance for MIMO Arrays
en_US
dc.type
Journal Article
dc.date.published
2020-09-17
ethz.journal.title
IEEE Journal of Solid-State Circuits
ethz.journal.volume
55
en_US
ethz.journal.issue
12
en_US
ethz.journal.abbreviated
IEEE J. Solid-State Circuits
ethz.pages.start
3335
en_US
ethz.pages.end
3348
en_US
ethz.publication.place
New York, NY
en_US
ethz.publication.status
published
en_US
ethz.leitzahl
ETH Zürich::00002 - ETH Zürich::00012 - Lehre und Forschung::00007 - Departemente::02140 - Dep. Inf.technologie und Elektrotechnik / Dep. of Inform.Technol. Electrical Eng.::09757 - Wang, Hua / Wang, Hua
en_US
ethz.leitzahl.certified
ETH Zürich::00002 - ETH Zürich::00012 - Lehre und Forschung::00007 - Departemente::02140 - Dep. Inf.technologie und Elektrotechnik / Dep. of Inform.Technol. Electrical Eng.::09757 - Wang, Hua / Wang, Hua
en_US
ethz.date.deposited
2022-06-01T16:02:14Z
ethz.source
BATCH
ethz.eth
no
en_US
ethz.availability
Metadata only
en_US
ethz.rosetta.installDate
2022-06-27T09:20:15Z
ethz.rosetta.lastUpdated
2023-02-07T03:47:53Z
ethz.rosetta.exportRequired
true
ethz.rosetta.versionExported
true
ethz.COinS
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