Millimeter-Wave CMOS Power Amplifier Using Slow-wave Transmission Lines

被引:0
|
作者
Tang, Xiao-Lan [1 ,2 ]
Pistono, Emmanuel [1 ]
Fournier, Jean-Michel [1 ]
Ferrari, Philippe [1 ]
Duan, Zongming [2 ]
Ma, Qiang [2 ]
Dai, Yuefei [2 ]
机构
[1] LAHC, IMEP, 3 Parvis Louis Neel, F-38016 Grenoble, France
[2] East China Res Inst Elect Engn, Hefei 230088, Peoples R China
关键词
D O I
暂无
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
A three-stage 60-GHz power amplifier was implemented in a 65 nm CMOS technology. High-quality-factor slow-wave coplanar waveguides were used for input, output and inter-stage matching networks in order to improve the performance. In Class-A operation, the power amplifier exhibits a measured maximum linear power gain G of 18.3 dB at 55 GHz, with a 3-dB bandwidth of 8.5 GHz. The measured 1-dB output compression point OCP1dB and the maximum saturated output power P-sat are 12 dBm and 14.2 dBm, respectively, with a DC power consumption of 156 mW under 1.2 V voltage supply. The measured peak power added efficiency PAE is 16 %. The die area is 0.52 mm(2) (875 mu m x 600 mu m) including all the pads, whereas the effective area is only 0.24 mm(2).
引用
收藏
页数:3
相关论文
共 50 条
  • [21] Millimeter-wave slow-wave Si-benzocyclobutene transmission line: modeling and a coupler application
    Shi, Li-Yun
    Li, Tao-Tao
    Chen, Yu
    Zhou, Liang
    Gao, Jian-Jun
    [J]. MICROWAVE AND OPTICAL TECHNOLOGY LETTERS, 2020, 62 (03) : 1188 - 1194
  • [22] A broadband, high isolation millimeter-wave CMOS power amplifier using a transformer and transmission line matching topology
    Bo Chen
    Li Shen
    Supeng Liu
    Yuanjin Zheng
    Jianjun Gao
    [J]. Analog Integrated Circuits and Signal Processing, 2014, 81 : 537 - 547
  • [23] A broadband, high isolation millimeter-wave CMOS power amplifier using a transformer and transmission line matching topology
    Chen, Bo
    Shen, Li
    Liu, Supeng
    Zheng, Yuanjin
    Gao, Jianjun
    [J]. ANALOG INTEGRATED CIRCUITS AND SIGNAL PROCESSING, 2014, 81 (02) : 537 - 547
  • [24] A Modified Slotted Helix Slow-Wave Structure for High-Power Millimeter-Wave TWT
    Liu, Luwei
    Wei, Yanyu
    Yin, Hairong
    Xu, Jin
    Zhao, Guoqing
    Gong, Yubin
    [J]. 2013 IEEE 14TH INTERNATIONAL VACUUM ELECTRONICS CONFERENCE (IVEC), 2013,
  • [25] Two CMOS Wilkinson Power Dividers Using High Slow-Wave and Low-Loss Transmission Lines
    Pakasiri, Chatrpol
    Teng, Wei-Sen
    Wang, Sen
    [J]. MICROMACHINES, 2024, 15 (08)
  • [26] A wideband planar helix slow-wave structure for millimeter-wave TWTs
    Zhao, Chen
    Aditya, Sheel
    Wang, Shaomeng
    Chua, Ciersiang
    [J]. 2015 IEEE INTERNATIONAL VACUUM ELECTRONICS CONFERENCE (IVEC), 2015,
  • [27] A Novel Coplanar Slow-Wave Structure for Millimeter-Wave BWO Applications
    Zhao, Chen
    Aditya, Sheel
    Wang, Shaomeng
    [J]. IEEE TRANSACTIONS ON ELECTRON DEVICES, 2021, 68 (04) : 1924 - 1929
  • [28] A 124-184 GHz Amplifier Using Slow-wave Transmission lines in 28-nm FDSOI CMOS Process
    Parveg, Dristy
    Karaca, Denizhan
    Varonen, Mikko
    Vandati, Ali
    Halonen, Kari A. I.
    [J]. 2016 GLOBAL SYMPOSIUM ON MILLIMETER WAVES (GSMM) & ESA WORKSHOP ON MILLIMETRE-WAVE TECHNOLOGY AND APPLICATIONS, 2016, : 48 - 51
  • [29] A Slow-Wave Microstrip Line With a High-Q and a High Dielectric Constant for Millimeter-Wave CMOS Application
    Lee, Jae Jin
    Park, Chul Soon
    [J]. IEEE MICROWAVE AND WIRELESS COMPONENTS LETTERS, 2010, 20 (07) : 381 - 383
  • [30] U-shaped Slow-wave Transmission Lines in 0.18μm CMOS
    Hsu, Heng-Chia
    Dasgupta, Kaushik
    Neihart, Nathan M.
    Shekhar, Sudip
    Walling, Jeffrey S.
    Allstot, David J.
    [J]. 2010 IEEE INTERNATIONAL SYMPOSIUM ON CIRCUITS AND SYSTEMS, 2010, : 1296 - 1299