Wideband Cartesian RF-DAC-based predistorter using nonlinear RF-DACs and IQ expansion
(2026)- Abstract
- We here present an RF-DAC-based PD featuring IQ expansion, a linearization concept using segmented non-linear RF-DACs combined with increased expansion in the IQ direction. The proposed predistorter, realized within the RF-DACs themselves, is very hardware efficient, only requiring a small amount of additional hardware compared to a conventional RF-DAC. The proposed RF-DAC-based PD, realized in a 22nm CMOS technology, is used to linearize a PA integrated on the same chip. With IQ expansion, we measure a peak compression ripple of ±0.2dB across the full range with a peak output power <2.3dB below the PA Psat. Modulated measurements with up to 4GSym/s 64QAM SC signals show an EVM <4.05% and ACPR <−30.1dBc, achieving an EVM... (More)
- We here present an RF-DAC-based PD featuring IQ expansion, a linearization concept using segmented non-linear RF-DACs combined with increased expansion in the IQ direction. The proposed predistorter, realized within the RF-DACs themselves, is very hardware efficient, only requiring a small amount of additional hardware compared to a conventional RF-DAC. The proposed RF-DAC-based PD, realized in a 22nm CMOS technology, is used to linearize a PA integrated on the same chip. With IQ expansion, we measure a peak compression ripple of ±0.2dB across the full range with a peak output power <2.3dB below the PA Psat. Modulated measurements with up to 4GSym/s 64QAM SC signals show an EVM <4.05% and ACPR <−30.1dBc, achieving an EVM improvement of >0.3percent unit. (Less)
Please use this url to cite or link to this publication:
https://lup.lub.lu.se/record/d8a5280a-93d9-4f17-92b1-e9221c685f5a
- author
- Åberg, Victor
LU
and Zhou, Han
- organization
- publishing date
- 2026
- type
- Chapter in Book/Report/Conference proceeding
- publication status
- published
- subject
- host publication
- IEEE International Symposium on Circuits and Systems (ISCAS)
- pages
- 5 pages
- publisher
- IEEE - Institute of Electrical and Electronics Engineers Inc.
- external identifiers
-
- scopus:105043479492
- ISBN
- 979-8-3315-7769-8
- DOI
- 10.1109/ISCAS66217.2026.11562181
- language
- English
- LU publication?
- yes
- id
- d8a5280a-93d9-4f17-92b1-e9221c685f5a
- date added to LUP
- 2026-05-28 14:54:47
- date last changed
- 2026-08-26 09:28:32
@inproceedings{d8a5280a-93d9-4f17-92b1-e9221c685f5a,
abstract = {{We here present an RF-DAC-based PD featuring IQ expansion, a linearization concept using segmented non-linear RF-DACs combined with increased expansion in the IQ direction. The proposed predistorter, realized within the RF-DACs themselves, is very hardware efficient, only requiring a small amount of additional hardware compared to a conventional RF-DAC. The proposed RF-DAC-based PD, realized in a 22nm CMOS technology, is used to linearize a PA integrated on the same chip. With IQ expansion, we measure a peak compression ripple of ±0.2dB across the full range with a peak output power <2.3dB below the PA Psat. Modulated measurements with up to 4GSym/s 64QAM SC signals show an EVM <4.05% and ACPR <−30.1dBc, achieving an EVM improvement of >0.3percent unit.}},
author = {{Åberg, Victor and Zhou, Han}},
booktitle = {{IEEE International Symposium on Circuits and Systems (ISCAS)}},
isbn = {{979-8-3315-7769-8}},
language = {{eng}},
publisher = {{IEEE - Institute of Electrical and Electronics Engineers Inc.}},
title = {{Wideband Cartesian RF-DAC-based predistorter using nonlinear RF-DACs and IQ expansion}},
url = {{http://dx.doi.org/10.1109/ISCAS66217.2026.11562181}},
doi = {{10.1109/ISCAS66217.2026.11562181}},
year = {{2026}},
}