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A Current-Mode Multiphase Digital Transmitter With a Single-Footprint Transformer-Based Asymmetric Doherty Output Network

Authors :
Jay R. Sheth
Linsheng Zhang
Xiaochuan Shen
Vinay Iyer
Steven M. Bowers
Source :
IEEE Open Journal of the Solid-State Circuits Society, Vol 3, Pp 103-117 (2023)
Publication Year :
2023
Publisher :
IEEE, 2023.

Abstract

This article introduces a current-mode multiphase digital transmitter with a single-footprint transformer-based asymmetric Doherty output network. The proposed multiphase architecture overcomes the bandwidth expansion associated with the polar power amplifier (PA), while still achieving relatively constant output power and drain efficiency (DE) profiles. Additionally, to achieve efficiency enhancement in deep power back-off (PBO), and to simultaneously achieve a compact form factor, an asymmetric series Doherty output matching network using a transformer-within-transformer structure is also proposed. A proof-of-concept eight-phase digital transmitter using the proposed single-footprint Doherty network is implemented in a general-purpose 65-nm CMOS process. The transmitter achieves more than 20-dBm output power $(P_{\mathrm{ out}})$ and more than 31% DE from 4.5 to 6.7 GHz. At 8-dB PBO, it achieves a DE of 23% and 24% at 6.5 and 7.0 GHz, which corresponds to a $1.76\times $ and $1.93\times $ improvement compared to normalized class B PA, respectively. The transmitter also achieves a 21% DE and an average $P_{\mathrm{ out}}$ of 14 dBm with an r.m.s. error vector magnitude $({\mathrm{ EVM}}_{\mathrm{ rms}})$ of 4.1% for a 20-MSym/s 64-quadrature amplitude modulation waveform at 6.5 GHz.

Details

Language :
English
ISSN :
26441349
Volume :
3
Database :
Directory of Open Access Journals
Journal :
IEEE Open Journal of the Solid-State Circuits Society
Publication Type :
Academic Journal
Accession number :
edsdoj.2500152f1b0642eca9c1390e1dc7b119
Document Type :
article
Full Text :
https://doi.org/10.1109/OJSSCS.2023.3290550