A MM-Wave Current-Mode Inverse Outphasing Transmitter Front-End: A Circuit Duality of Conventional Voltage-Mode Outphasing

被引:31
|
作者
Li, Sensen [1 ,2 ]
Huang, Min-Yu [1 ,3 ]
Jung, Doohwan [1 ]
Huang, Tzu-Yuan [1 ]
Wang, Hua [1 ]
机构
[1] Georgia Inst Technol, Sch Elect & Comp Engn, Atlanta, GA 30332 USA
[2] Samsung Res Amer, Stand & Mobil Innovat SMI Lab, Plano, TX 75023 USA
[3] Speedlink Technol, Cupertino, CA 95014 USA
关键词
Modulation; Resistance; Computer architecture; Linearity; Quadrature amplitude modulation; Power generation; Impedance; Chireix compensation; CMOS; communication; efficiency enhancement; fifth-generation (5G); millimeter-wave (mm-wave); outphasing; peak-to-average power ratio (PAPR); power amplifier (PA); transmitter (TX); DOHERTY POWER-AMPLIFIER; HIGH-EFFICIENCY; CMOS-SOI; BAND; OPERATION; SILICON; PAS;
D O I
10.1109/JSSC.2020.3038882
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
This article presents a millimeter-wave (mm-wave) transmitter (TX) front-end employing a new inverse outphasing architecture with current-mode power amplifiers (PAs). This study on the conventional outphasing operation reveals its strong dependence on its voltage-mode driving source assumption and thus exhibits major limitations at mm-wave, since efficient and linear mm-wave PAs often behave as current sources. To address this challenge, we propose a current-mode inverse outphasing architecture that employs current-mode driving sources and is inherently compatible with mm-wave linear PAs. Moreover, the conventional series outphasing combiner is replaced by a much simpler and low-loss parallel power combining scheme. Closed-form mathematical expressions are derived for both the outphasing and inverse outphasing operations, including the active load modulation, Chireix compensations, and outphasing efficiency, which fundamentally explains the limitations of the conventional approach and the advantages of the inverse outphasing architecture. Further theoretical analysis discovers a circuit duality relationship between outphasing and inverse outphasing architectures, which offers unique circuit intuitions. As a proof-of-concept, we implement a 28-GHz TX front-end using cascode PAs, based on the inverse outphasing architecture. In the measurement, the TX achieves 22.7-dBm saturated output power with 42.6% PA drain efficiency. The TX exhibits effective PA efficiency enhancement at 6-dB power back-off (PBO), validating the high-efficiency inverse outphasing active load modulation. Modulation tests with high-order quadrature amplitude modulation (QAM) signals demonstrate that the TX supports >10-Gb/s high-fidelity complex signals and achieves the state-of-the-art modulation performance.
引用
收藏
页码:1732 / 1744
页数:13
相关论文
共 47 条
  • [1] Circuit design: A study on voltage-mode to current-mode conversion techniques
    Hilas, CS
    Laopoulos, T
    MELECON '96 - 8TH MEDITERRANEAN ELECTROTECHNICAL CONFERENCE, PROCEEDINGS, VOLS I-III: INDUSTRIAL APPLICATIONS IN POWER SYSTEMS, COMPUTER SCIENCE AND TELECOMMUNICATIONS, 1996, : 1309 - 1312
  • [2] A Hybrid Transmitter With Voltage-Mode SST Preemphasis and Current-Mode Transmitter Equalization Capable of Operating at 77 K in DUNE
    Wang, Xiaoran
    Gui, Ping
    IEEE TRANSACTIONS ON NUCLEAR SCIENCE, 2023, 70 (03) : 262 - 271
  • [3] A 28-GHz Current-Mode Inverse-Outphasing Power Amplifier in 65-nm CMOS
    Li, Liangfeng
    Ni, Dongliang
    Chen, Jiazheng
    Huang, Jiwei
    2021 THE 6TH INTERNATIONAL CONFERENCE ON INTEGRATED CIRCUITS AND MICROSYSTEMS (ICICM 2021), 2021, : 268 - 271
  • [4] A 65nm CMOS Current-Mode Receiver Front-End
    Rodriguez, S.
    Rusu, A.
    2011 IEEE INTERNATIONAL SYMPOSIUM ON CIRCUITS AND SYSTEMS (ISCAS), 2011, : 530 - 533
  • [5] Low power current-mode analog front-end for biomedical applications
    Groza, Robert
    Farago, Paul
    2018 IEEE INTERNATIONAL CONFERENCE ON AUTOMATION, QUALITY AND TESTING, ROBOTICS (AQTR), 2018,
  • [6] A CMOS Current-Mode Magnetic Hall Sensor With Integrated Front-End
    Heidari, Hadi
    Bonizzoni, Edoardo
    Gatti, Umberto
    Maloberti, Franco
    IEEE TRANSACTIONS ON CIRCUITS AND SYSTEMS I-REGULAR PAPERS, 2015, 62 (05) : 1270 - 1278
  • [7] Interfacing a SiPM to a Current-mode Front-end: Effects of the Coupling Inductance
    Ciciriello, Fabio
    Corsi, Francesco
    Licciulli, Francesco
    Marzocca, Cristoforo
    Matarrese, Gianvito
    2014 IEEE NUCLEAR SCIENCE SYMPOSIUM AND MEDICAL IMAGING CONFERENCE (NSS/MIC), 2014,
  • [8] Voltage-Mode and Current-Mode FSK Demodulator using IC AD844 at circuit level
    Bhagat, Narendra
    Khot, Uday Pandit
    2019 IEEE 5TH INTERNATIONAL CONFERENCE FOR CONVERGENCE IN TECHNOLOGY (I2CT), 2019,
  • [9] A differential low-voltage high gain current-mode integrated RF receiver front-end
    王春华
    马铭磷
    孙晶茹
    杜四春
    郭小蓉
    何海珍
    半导体学报, 2011, 32 (02) : 120 - 125
  • [10] A differential low-voltage high gain current-mode integrated RF receiver front-end
    Wang Chunhua
    Ma Minglin
    Sun Jingru
    Du Sichun
    Guo Xiaorong
    He Haizhen
    JOURNAL OF SEMICONDUCTORS, 2011, 32 (02)