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A 90- to 115-GHz superheterodyne receiver front-end for W-band imaging system in 28-nm complementary metal-oxide-semiconductor Journal article
Wang, Xi, Wei, Dong, Zhang, Zhiyang, Wu, Tianxiang, Chen, Xu, Chen, Yong, Ren, Junyan, Ma, Shunli. A 90- to 115-GHz superheterodyne receiver front-end for W-band imaging system in 28-nm complementary metal-oxide-semiconductor[J]. International Journal of Circuit Theory and Applications, 2023, 51(4), 1530-1547.
Authors:  Wang, Xi;  Wei, Dong;  Zhang, Zhiyang;  Wu, Tianxiang;  Chen, Xu; et al.
Favorite | TC[WOS]:1 TC[Scopus]:1  IF:1.8/1.7 | Submit date:2023/01/30
Imaging System  Low-noise Amplifier (Lna)  Peak-staggered Matching Technique  Superheterodyne Receiver (Rx)  Symmetrical-layout Mixer  Transistor-layout Optimization  W-band  Wideband  
Joint optimization of wind farm layout considering optimal control Journal article
Chen, Kaixuan, Lin, Jin, Qiu, Yiwei, Liu, Feng, Song, Yonghua. Joint optimization of wind farm layout considering optimal control[J]. Renewable Energy, 2021, 182, 787-796.
Authors:  Chen, Kaixuan;  Lin, Jin;  Qiu, Yiwei;  Liu, Feng;  Song, Yonghua
Favorite | TC[WOS]:14 TC[Scopus]:18  IF:9.0/8.1 | Submit date:2022/02/21
Decomposition Method  Layout Optimization  Wake Effect  Wind Farm  
Design of a 4.2-to-5.1 GHz Ultralow-Power Complementary Class-B/C Hybrid-Mode VCO in 65-nm CMOS Fully Supported by EDA Tools Journal article
Martins,Ricardo, Lourenco,Nuno, Horta,Nuno, Zhong,Shenke, Yin,Jun, Mak,Pui In, Martins,Rui P.. Design of a 4.2-to-5.1 GHz Ultralow-Power Complementary Class-B/C Hybrid-Mode VCO in 65-nm CMOS Fully Supported by EDA Tools[J]. IEEE TRANSACTIONS ON CIRCUITS AND SYSTEMS I-REGULAR PAPERS, 2020, 67(11), 3965-3977.
Authors:  Martins,Ricardo;  Lourenco,Nuno;  Horta,Nuno;  Zhong,Shenke;  Yin,Jun; et al.
Favorite | TC[WOS]:16 TC[Scopus]:25  IF:5.2/4.5 | Submit date:2021/03/04
Automatic Layout Generation  Electronic Design Automation  Multi-objective Optimization  Nanometer Cmos  Ultralow-power  Voltage-controlled Oscillator