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Feifan Hong
Feifan Hong
在 ucdconnect.ie 的电子邮件经过验证
标题
引用次数
引用次数
年份
An X-Band CMOS VCO Using Ultra-Wideband Dual Common-Mode Resonance Technique
F Hong, H Zhang, D Zhao
IEEE Transactions on Circuits and Systems I: Regular Papers 69 (9), 3579-3590, 2022
182022
A 196.5 dBc/Hz FOMT 16.8–21.6-GHz Class-F23 CMOS VCO With Transformer-Based Optimal Q-Factor Tank
F Hong, T Ding, D Zhao
IEEE Solid-State Circuits Letters 5, 62-65, 2022
142022
A 196.2 dBc/Hz FOMT 16.8-to-21.6 GHz Class-F23 VCO with Transformer-Based Optimal Q-factor Tank in 65-nm CMOS
F Hong, T Ding, D Zhao
2021 IEEE Asian Solid-State Circuits Conference (A-SSCC), 1-3, 2021
82021
A 54-to-69-GHz Wideband 2T2R FMCW Radar Transceiver Employing Cascaded-PLL Topology and PTAT-Enhanced Temperature Compensation in 40-nm CMOS
C Xu, X Liao, F Hong, M Yang, P Ju, W Chen, P Diao, H Gong, X Liu, ...
2023 IEEE Asian Solid-State Circuits Conference (A-SSCC), 1-3, 2023
42023
An 18.8-to-20.3-GHz wide-ramping-range cascaded-PLL-based FMCW generator with 44.1-kHz RMS frequency error and-105.6-dBc/Hz phase noise in 40-nm CMOS
X Liao, F Hong, S Pan, X You, D Zhao
2022 IEEE Asian Solid-State Circuits Conference (A-SSCC), 1-3, 2022
42022
A Packaged 54-to-69-GHz Wideband 2T2R FMCW Radar Transceiver Employing Cascaded-PLL Topology and PTAT-Enhanced Temperature Compensation in 40-nm CMOS
C Xu, X Liao, M Yang, F Hong, P Ju, W Chen, P Diao, H Gong, X Liu, ...
IEEE Journal of Solid-State Circuits, 2024
2024
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