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A 5.99-GHz VCO with Wideband-Differential-Mode Second Harmonic Resonance Achieving - 138.9 dBc/Hz Phase Noise at an Offset of 10 MHz
Journal article
Yang, Chaowei, Chen, Yong, Huang, Yunbo, Martins, Rui P., Mak, Pui In. A 5.99-GHz VCO with Wideband-Differential-Mode Second Harmonic Resonance Achieving - 138.9 dBc/Hz Phase Noise at an Offset of 10 MHz[J]. IEEE Microwave and Wireless Technology Letters, 2024, 34(11), 1267-1270.
Authors:
Yang, Chaowei
;
Chen, Yong
;
Huang, Yunbo
;
Martins, Rui P.
;
Mak, Pui In
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Submit date:2024/11/05
1/f3 Pn Corner
Cmos
Figure-of-merit (Fom)
Impulse Sensitivity Function (Isf)
Phase Noise (Pn)
Voltage-controlled Oscillator (Vco)
Wideband-harmonic Shaping
Calibration Techniques for Concurrent Dual-Band Multiport Receivers
Journal article
CHEN RONGHAO, CHEONG PEDRO, CHOI WAI WA, Tu, Mengting. Calibration Techniques for Concurrent Dual-Band Multiport Receivers[J]. IEEE Microwave and Wireless Technology Letters, 2024, 34(10), 1202-1205.
Authors:
CHEN RONGHAO
;
CHEONG PEDRO
;
CHOI WAI WA
;
Tu, Mengting
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Submit date:2024/08/30
Concurrent Dual-band
Multiport Network Calibration
Mutual Interference
Receiver Front-end
Dual-Band Filtering Power Dividers With Multiple Out-of-Band Transmission Zeros and DC-Blocking
Journal article
Liu, Lei, Zhu, Lei, Wang, Zheng Bin, Zhang, Ye Rong. Dual-Band Filtering Power Dividers With Multiple Out-of-Band Transmission Zeros and DC-Blocking[J]. IEEE MICROWAVE AND WIRELESS TECHNOLOGY LETTERS, 2024, 34(7), 899-902.
Authors:
Liu, Lei
;
Zhu, Lei
;
Wang, Zheng Bin
;
Zhang, Ye Rong
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Submit date:2024/07/04
Band-stop Unit
Dual Band
Filtering Power Divider (Fpd)
High Band-to-band Rejection
Multiple Transmission Zeros (Tzs)
Compact Planar N-Way Hybrid Power Divider With λ/4 N-Parallel Transmission Lines and (N-1) x (N-1) Isolation Network
Journal article
Xie, Taiyang, Wang, Xiaolong, Zhu, Lei, Lu, Geyu. Compact Planar N-Way Hybrid Power Divider With λ/4 N-Parallel Transmission Lines and (N-1) x (N-1) Isolation Network[J]. IEEE Microwave and Wireless Technology Letters, 2024, 34(7), 875-878.
Authors:
Xie, Taiyang
;
Wang, Xiaolong
;
Zhu, Lei
;
Lu, Geyu
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TC[WOS]:
1
TC[Scopus]:
1
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Submit date:2024/06/05
Hybrid Power Divider (Hpd)
N-way
Planar
Isolation Network
3-D Printed Multiband Filtering Crossovers Based on Mixed Spherical Cavity Resonators
Journal article
Feng, Shuai, Zhang, Gang, Yang, Yang, Zhou, Xin, Hong, Jiasheng. 3-D Printed Multiband Filtering Crossovers Based on Mixed Spherical Cavity Resonators[J]. IEEE MICROWAVE AND WIRELESS TECHNOLOGY LETTERS, 2024, 34(7), 903-906.
Authors:
Feng, Shuai
;
Zhang, Gang
;
Yang, Yang
;
Zhou, Xin
;
Hong, Jiasheng
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Submit date:2024/06/05
3-d Printed
Dual Band
Filtering Crossover
Hemispherical Cavity Resonator (Hcr)
A 6-GHz 78-fsRMS Double-Sampling PLL With Low-Ripple Bootstrapped DSPD and Retimer-Less MMD Achieving −92-dBc Reference Spur and −258-dB FOM
Journal article
Ren, Hongyu, Yang, Zunsong, Huang, Yunbo, Feng, Chaoping, Chen, Tianle, Zhang, Xinming, Meng, Xianghe, Yan, Weiwei, Zhang, Weidong, Iizuka, Tetsuya, Chen, Yong, Mak, Pui In, Han, Zhengsheng, Li, Bo. A 6-GHz 78-fsRMS Double-Sampling PLL With Low-Ripple Bootstrapped DSPD and Retimer-Less MMD Achieving −92-dBc Reference Spur and −258-dB FOM[J]. IEEE Microwave and Wireless Technology Letters, 2024, 34(5), 548-551.
Authors:
Ren, Hongyu
;
Yang, Zunsong
;
Huang, Yunbo
;
Feng, Chaoping
;
Chen, Tianle
; et al.
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TC[WOS]:
0
TC[Scopus]:
2
IF:
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Submit date:2024/05/16
Double Sampling (Ds)
Figure Of Merit (Fom)
Frequency Synthesizer
Low Jitter
Low Spur
Phase Detector (Pd)
Phase-locked Loop (Pll)
Phase Noise (Pn)
Reference Sampling (Rs)
Subsampling (Ss)
Phase Locked Loops
Type-i
Microfluidic Sensor for Simultaneous Liquid Classification and Concentration Detection
Journal article
Liu, Shidi, Cheong, Pedro, Yang, Chufan, Ye, Yijun, Choi, Wai Wa. Microfluidic Sensor for Simultaneous Liquid Classification and Concentration Detection[J]. IEEE Microwave and Wireless Technology Letters, 2024, 34(3), 358-361.
Authors:
Liu, Shidi
;
Cheong, Pedro
;
Yang, Chufan
;
Ye, Yijun
;
Choi, Wai Wa
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TC[WOS]:
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TC[Scopus]:
1
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Submit date:2024/04/02
Concentration Detection
Liquid Classification
Microfluidic
Microwave Sensor
Liquids
Microfluidics
Rotors
Robot Sensing Systems
Convolutional Neural Networks
Spectrogram
Sensors
A Multiband Standing Wave Oscillator With Wave Pattern Tailoring for Selective Mode Excitation
Journal article
Kang, Zehui, Yang, Meng, Yin, Jun, Wu, Liang. A Multiband Standing Wave Oscillator With Wave Pattern Tailoring for Selective Mode Excitation[J]. IEEE Microwave and Wireless Technology Letters, 2024, 34(3), 330-333.
Authors:
Kang, Zehui
;
Yang, Meng
;
Yin, Jun
;
Wu, Liang
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TC[WOS]:
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Submit date:2024/04/02
Millimeter Wave (mmWave)
Multiband
Multimode
Oscillator
Standing Wave Oscillator (Swo)
Transmission Line (tLine)
Wave Pattern Tailoring (Wpt)
Compact mm-Wave 3-D-Printing Filtering Magic-T Based on Half-Mode Groove Gap Waveguide
Journal article
Huang, Nengcai, Zhang, Gang, Tam, Kam Weng, Hong, Jiasheng, Yang, Jiquan, Lu, Jing, Gu, Hongtao. Compact mm-Wave 3-D-Printing Filtering Magic-T Based on Half-Mode Groove Gap Waveguide[J]. IEEE Microwave and Wireless Technology Letters, 2024, 34(7), 895-898.
Authors:
Huang, Nengcai
;
Zhang, Gang
;
Tam, Kam Weng
;
Hong, Jiasheng
;
Yang, Jiquan
; et al.
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TC[WOS]:
1
TC[Scopus]:
1
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Submit date:2024/06/05
3-d Printing
Band-pass Filters
Bandpass Filter (Bpf)
Couplings
Filtering
Half-mode Groove Gap Waveguide (Hm-ggw)
Magic-t
Magnetic Resonance
Pins
Resonators
Wireless Communication
Dual-Wideband Filtering Phase Shifter With Same Phase Differences, High Frequency Selectivity, and Wide Stopband
Journal article
Zhuowei Zhang, Gang Zhang, Kam-Weng Tam, Chi-Hou Chio, Xin Zhou, Teng Cheng, Ngai Kong. Dual-Wideband Filtering Phase Shifter With Same Phase Differences, High Frequency Selectivity, and Wide Stopband[J]. IEEE MICROWAVE AND WIRELESS TECHNOLOGY LETTERS, 2023, 33(9), 1286 - 1289.
Authors:
Zhuowei Zhang
;
Gang Zhang
;
Kam-Weng Tam
;
Chi-Hou Chio
;
Xin Zhou
; et al.
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TC[WOS]:
2
TC[Scopus]:
2
IF:
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Submit date:2024/08/27
Dual-wideband
Filtering Phase Shifter
Same Constant Phase Difference
Sharp Frequency Selectivity