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A Blocker-Tolerant Mixer-First Receiver with Channel BW Extention Technique Achieving 22.2 dBm OOB-IIP3 and 23.3 MHz BW Conference paper
Yongjun He, Gengzhen Qi, Pui-In Mak. A Blocker-Tolerant Mixer-First Receiver with Channel BW Extention Technique Achieving 22.2 dBm OOB-IIP3 and 23.3 MHz BW[C], 2022, 671-675.
Authors:  Yongjun He;  Gengzhen Qi;  Pui-In Mak
Favorite | TC[Scopus]:0 | Submit date:2023/03/06
Receiver  N-path Filter  Lnta  Blocker-tolerant  Channel Bw  Oob-iip3  Lo Leakage  Linearity  
A Low-Power Blocker-Tolerant Receiver with Wideband Negative-Feedback Technique Achieving 22.4dBm OOB-IIP3 Conference paper
Chenxiang Cai, Gengzhen Qi, Pui-In Mak. A Low-Power Blocker-Tolerant Receiver with Wideband Negative-Feedback Technique Achieving 22.4dBm OOB-IIP3[C], 2022, 687-691.
Authors:  Chenxiang Cai;  Gengzhen Qi;  Pui-In Mak
Favorite | TC[Scopus]:0 | Submit date:2023/03/06
Blocker-tolerant  Lo Generation  Miller Theory  Mobile Communication  N-path Filter  Oob-iip3  Out-of-band  Passive Mixer  Rf  Receiver  
A Low-Power Multiband Blocker-Tolerant Receiver With a Steep Filtering Slope Using an N-Path LNA With Feedforward OB Blocker Cancellation and Filtering-by-Aliasing Baseband Amplifiers Journal article
Shao, Haijun, Qi, Gengzhen, Mak, Pui In, Martins, Rui P.. A Low-Power Multiband Blocker-Tolerant Receiver With a Steep Filtering Slope Using an N-Path LNA With Feedforward OB Blocker Cancellation and Filtering-by-Aliasing Baseband Amplifiers[J]. IEEE Transactions on Circuits and Systems I: Regular Papers, 2022, 69(1), 220-231.
Authors:  Shao, Haijun;  Qi, Gengzhen;  Mak, Pui In;  Martins, Rui P.
Favorite | TC[WOS]:14 TC[Scopus]:12  IF:5.2/4.5 | Submit date:2021/09/20
Baseband (Bb)  Blocker-tolerant  Feed-forward Blocker Cancellation  Feedforward Systems  Filtering-by-aliasing (Fa)  Gain  Linearity  Linearity  N-path Filter  Noise Figure (Nf)  Noise Measurement  Out-of-band (Ob) Rejection  Passband  Radio Frequency  Receiver (Rx) And Radio Frequency (Rf)  Receivers  
Novel neurotoxic peptides from Protopalythoa variabilis virtually interact with voltage-gated sodium channel and display anti-epilepsy and neuroprotective activities in zebrafish Journal article
Qiwen Liao, Shengnan Li, Shirley Weng In Siu, Jean‑Étienne R. L. Morlighem, Clarence Tsun Ting Wong, Xiufen Wang, Gandhi Rádis‑Baptista, Simon Ming‑Yuen Lee. Novel neurotoxic peptides from Protopalythoa variabilis virtually interact with voltage-gated sodium channel and display anti-epilepsy and neuroprotective activities in zebrafish[J]. Archives of Toxicology, 2018, 93(1), 189-206.
Authors:  Qiwen Liao;  Shengnan Li;  Shirley Weng In Siu;  Jean‑Étienne R. L. Morlighem;  Clarence Tsun Ting Wong; et al.
Favorite | TC[WOS]:13 TC[Scopus]:15  IF:4.8/5.3 | Submit date:2019/04/04
Anti-epilepsy  Disulfide Bond  Neuroactive Peptides  Neuroprotection  Protein Docking  Voltage-gated Sodium Ion Channel Blocker  
Natural autophagy blockers, dauricine (DAC) and daurisoline (DAS), sensitize cancer cells to camptothecin-induced toxicity Journal article
Wu, Ming-Yue, Wang, Sheng-Fang, Cai, Cui-Zan, Tan, Jie-Qiong, Li, Min, Lu, Jin-Jian, Chen, Xiu-Ping, Wang, Yi-Tao, Zheng, Wei, Lu, Jia-Hong. Natural autophagy blockers, dauricine (DAC) and daurisoline (DAS), sensitize cancer cells to camptothecin-induced toxicity[J]. ONCOTARGET, 2017, 8(44), 77673-77684.
Authors:  Wu, Ming-Yue;  Wang, Sheng-Fang;  Cai, Cui-Zan;  Tan, Jie-Qiong;  Li, Min; et al.
Favorite | TC[WOS]:31 TC[Scopus]:38  IF:5.168/5.312 | Submit date:2018/10/30
Dauricine  Daurisoline  Autophagy Blocker  Cancer Cells  Cell Toxicity  
A 0.038-mm2SAW-Less Multiband Transceiver Using an N-Path SC Gain Loop Journal article
Gengzhen Qi, Pui-In Mak, Rui P. Martins. A 0.038-mm2SAW-Less Multiband Transceiver Using an N-Path SC Gain Loop[J]. IEEE Journal of Solid-State Circuits, 2017, 52(8), 2055 - 2070.
Authors:  Gengzhen Qi;  Pui-In Mak;  Rui P. Martins
Favorite | TC[WOS]:13 TC[Scopus]:14  IF:4.6/5.6 | Submit date:2019/03/12
Adjacent-channel Leakage Rejection (Aclr)  Long-term Evolution (Lte)  Miller Effect  Multiband  n Path  Noise Figure (Nf)  Out Of Band (Ob)  Passive Mixer  Phase Noise  Power-amplifier Driver (Pad)  Receiver (Rx)  Surface Acoustic Wave (Saw)  Switched Capacitor (Sc)  Transceiver (Txr)  Transmitter (Tx)  Bandpass Filter  Baseband (Bb)  Blocker  Cmos  
A 0.038-mm2 SAW-Less Multiband Transceiver Using an N-Path SC Gain Loop Journal article
Qi,Gengzhen, Mak,Pui In, Martins,Rui P.. A 0.038-mm2 SAW-Less Multiband Transceiver Using an N-Path SC Gain Loop[J]. IEEE Journal of Solid-State Circuits, 2017, 52(8), 2055-2070.
Authors:  Qi,Gengzhen;  Mak,Pui In;  Martins,Rui P.
Favorite | TC[WOS]:13 TC[Scopus]:14  IF:4.6/5.6 | Submit date:2021/03/09
Adjacent-channel Leakage Rejection (Aclr)  Bandpass Filter  Baseband (Bb)  Blocker  Cmos  Long-term Evolution (Lte)  Miller Effect  Multiband  n Path  Noise Figure (Nf)  Out Of Band (Ob)  Passive Mixer  Phase Noise  Power-amplifier Driver (Pad)  Receiver (Rx)  Surface Acoustic Wave (Saw)  Switched Capacitor (Sc)  Transceiver (Txr)  Transmitter (Tx)  
A sub-GHz multi-ISM-band ZigBee receiver using function-reuse and gain-boosted N-path techniques for IoT applications Journal article
Zhicheng Lin, Pui-In Mak, Rui P. Martins. A sub-GHz multi-ISM-band ZigBee receiver using function-reuse and gain-boosted N-path techniques for IoT applications[J]. IEEE Journal of Solid-State Circuits, 2014, 49(12), 2990-3004.
Authors:  Zhicheng Lin;  Pui-In Mak;  Rui P. Martins
Favorite | TC[WOS]:46 TC[Scopus]:54 | Submit date:2019/02/11
Blocker Nf  Cmos  Current Reuse  Iip3  Internet Of Things (Iot)  Ism  Linear Periodically Time-variant (Lptv)  Low-noise Amplifier (Lna)  Mixer  Noise Figure (Nf)  Out-of-band (Ob)  Phase Noise  Receiver  Ultra-low-power (Ulp)  Ultra-low-voltage (Ulv)  Voltage-control Led Oscillator (Vco)  Wireless  Zigbee  
Design and Analysis of a Blocker-Tolerant Gain-Boosted N-Path Receiver Using a Bottom-Plate Switched-Capacitor Technique Journal article
Yi Mao, Gengzhen Qi, MAK PUI IN. Design and Analysis of a Blocker-Tolerant Gain-Boosted N-Path Receiver Using a Bottom-Plate Switched-Capacitor Technique[J]. IEEE Open Journal of Circuits and Systems, 2014, 5, 92-101.
Authors:  Yi Mao;  Gengzhen Qi;  MAK PUI IN
Adobe PDF | Favorite | TC[WOS]:0 TC[Scopus]:1 | Submit date:2024/05/04
Bottom-plate  Blocker-tolerant  Gain-boosted (Gb)  Linearity  Low-noise Amplifier (Lna)  Lo Generator  N-path Filter  Oob-iip3  Noise Figure (Nf)  Switched-capacitor (Sc)