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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.
Favorite
|
TC[WOS]:
0
TC[Scopus]:
2
IF:
0
/
0
|
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
A 28-nm Computing-in-Memory-Based Super-Resolution Accelerator Incorporating Macro-Level Pipeline and Texture/Algebraic Sparsity
Journal article
Wu, Hao, Chen, Yong, Yuan, Yiyang, Yue, Jinshan, Fu, Xiangqu, Ren, Qirui, Luo, Qing, Mak, Pui In, Wang, Xinghua, Zhang, Feng. A 28-nm Computing-in-Memory-Based Super-Resolution Accelerator Incorporating Macro-Level Pipeline and Texture/Algebraic Sparsity[J]. IEEE Transactions on Circuits and Systems I: Regular Papers, 2024, 71(2), 689-702.
Authors:
Wu, Hao
;
Chen, Yong
;
Yuan, Yiyang
;
Yue, Jinshan
;
Fu, Xiangqu
; et al.
Favorite
|
TC[WOS]:
1
TC[Scopus]:
0
IF:
5.2
/
4.5
|
Submit date:2024/02/22
Algebraic Sparsity (As)
Cmos
Computing-in-memory (Cim)
Multiply-accumulation (Mac)
Structured Sparsity (Ss)
Super-resolution (Sr)
Texture Sparsity (Ts)
P3 ViT: A CIM-Based High-Utilization Architecture With Dynamic Pruning and Two-Way Ping-Pong Macro for Vision Transformer
Journal article
Fu, Xiangqu, Ren, Qirui, Wu, Hao, Xiang, Feibin, Luo, Qing, Yue, Jinshan, Chen, Yong, Zhang, Feng. P3 ViT: A CIM-Based High-Utilization Architecture With Dynamic Pruning and Two-Way Ping-Pong Macro for Vision Transformer[J]. IEEE Transactions on Circuits and Systems I: Regular Papers, 2023, 70(12), 4938-4948.
Authors:
Fu, Xiangqu
;
Ren, Qirui
;
Wu, Hao
;
Xiang, Feibin
;
Luo, Qing
; et al.
Favorite
|
TC[WOS]:
3
TC[Scopus]:
3
IF:
5.2
/
4.5
|
Submit date:2024/02/22
Accelerator
Cmos
Computing-in-memory (Cim)
Dynamic Prune
Prediction Network
Vision Transformer (Vit)
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
A 4.5-W, 18.5–24.5-GHz GaN Power Amplifier Employing Chebyshev Matching Technique
Journal article
Yujia, Wang, Jincheng, Zhang, Yong, Chen, Junyan, Ren, Shunli, Ma. A 4.5-W, 18.5–24.5-GHz GaN Power Amplifier Employing Chebyshev Matching Technique[J]. IEEE Transactions on Very Large Scale Integration (VLSI) Systems, 2023, 31(2), 233-242.
Authors:
Yujia, Wang
;
Jincheng, Zhang
;
Yong, Chen
;
Junyan, Ren
;
Shunli, Ma
Favorite
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TC[WOS]:
2
TC[Scopus]:
5
IF:
2.8
/
2.8
|
Submit date:2023/01/30
Chebyshev Matching Technique
Gallium Nitride (Gan)
Power Added Efficiency (Pae)
Power Amplifier (Pa)
Satellite Communication
Wideband Matching Network
Protein Kinase C Modulation Determines the Mesoderm/ Extraembryonic Fate Under BMP4 Induction From Human Pluripotent Stem Cells
Journal article
Godoy-Parejo, Carlos, Deng, Chunhao, Xu, Jiaqi, Zhang, Zhaoying, Ren, Zhili, Ai, Nana, Liu, Weiwei, Ge, Wei, Deng, Chuxia, Xu, Xiaoling, Chin, Y. Eugene, Chen, Guokai. Protein Kinase C Modulation Determines the Mesoderm/ Extraembryonic Fate Under BMP4 Induction From Human Pluripotent Stem Cells[J]. Stem Cells, 2023, 41(6), 578-591.
Authors:
Godoy-Parejo, Carlos
;
Deng, Chunhao
;
Xu, Jiaqi
;
Zhang, Zhaoying
;
Ren, Zhili
; et al.
Favorite
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TC[WOS]:
2
TC[Scopus]:
1
IF:
4.0
/
4.9
|
Submit date:2023/07/19
Bmp4
Extraembryonic
Fgf
Gf109203x
Human Embryonic Stem Cells
Mesoderm
Protein Kinase c
Signaling Boundary
Trophoblast
Wnt
A 124-to-152-GHz Power Amplifier Exploiting Chebyshev-Type Two-Section Wideband and Low-Loss Power-Combining Technique in 28-nm CMOS
Journal article
Zhang, Jincheng, Wang, Yujia, Chen, Yong, Ren, Junyan, Ma, Shunli. A 124-to-152-GHz Power Amplifier Exploiting Chebyshev-Type Two-Section Wideband and Low-Loss Power-Combining Technique in 28-nm CMOS[J]. IEEE Transactions on Microwave Theory and Techniques, 2022, 71(5), 1852-1865.
Authors:
Zhang, Jincheng
;
Wang, Yujia
;
Chen, Yong
;
Ren, Junyan
;
Ma, Shunli
Favorite
|
TC[WOS]:
11
TC[Scopus]:
11
IF:
4.1
/
4.2
|
Submit date:2023/06/05
Chebyshev
Cmos
Coupled Resonator
D-band
Power Amplifier (Pa)
Slow Wave Coplanar Waveguide (S-cpw)
Transformer
Two-section Wideband Power Combining
A Security-Enhanced, Charge-Pump-Free, ISO14443-A-/ISO10373-6-Compliant RFID Tag With 16.2-μW Embedded RRAM and Reconfigurable Strong PUF
Journal article
Qirui Ren, Qiang Huo, Zhisheng Chen, Qi Gao, Yiming Wang, Yiming Yang, Hao Wu, Xiangqu Fu, Xiaoxin Xu, Qing Luo, Jianfeng Gao, Chengying Chen, Xiaojin Zhao, Dengyun Lei, Xinghua Wang, Feng Zhang, Yong Chen, Pui-In Mak. A Security-Enhanced, Charge-Pump-Free, ISO14443-A-/ISO10373-6-Compliant RFID Tag With 16.2-μW Embedded RRAM and Reconfigurable Strong PUF[J]. IEEE TRANSACTIONS ON VERY LARGE SCALE INTEGRATION (VLSI) SYSTEMS, 2022, 31(2), 243-252.
Authors:
Qirui Ren
;
Qiang Huo
;
Zhisheng Chen
;
Qi Gao
;
Yiming Wang
; et al.
Favorite
|
TC[WOS]:
0
TC[Scopus]:
0
IF:
2.8
/
2.8
|
Submit date:2023/01/30
Current Sense Amplifier (Csa)
Low Cost
Low Power
Physical Unclonable Function (Puf)
Radio Frequency Identification Technology (Rfid)
Resistive Ram (rRam)
Security
A 13 µW Analog Front-End with RRAM-Based Lowpass FIR Filter for EEG Signal Detection
Journal article
Ren, Qirui, Chen, Chengying, Dong, Danian, Xu, Xiaoxin, Chen, Yong, Zhang, Feng. A 13 µW Analog Front-End with RRAM-Based Lowpass FIR Filter for EEG Signal Detection[J]. Sensors, 2022, 22(16), 6096.
Authors:
Ren, Qirui
;
Chen, Chengying
;
Dong, Danian
;
Xu, Xiaoxin
;
Chen, Yong
; et al.
Favorite
|
TC[WOS]:
4
TC[Scopus]:
4
IF:
3.4
/
3.7
|
Submit date:2023/01/30
Analog Front-end (Afe)
Cmos
Eeg
Rram-based Lowpass Fir Filter
Signal Process
Ultra-low Power
A 124-152 GHz > 15-dBm Psat28-nm CMOS PA Using Chebyshev Artificial-Transmission-Line-Based Matching for Wideband Power Splitting and Combining
Conference paper
Jincheng Zhang, Tianxiang Wu, Yong Chen, Junyan Ren, Shunli Ma. A 124-152 GHz > 15-dBm Psat28-nm CMOS PA Using Chebyshev Artificial-Transmission-Line-Based Matching for Wideband Power Splitting and Combining[C], 2022, 187-190.
Authors:
Jincheng Zhang
;
Tianxiang Wu
;
Yong Chen
;
Junyan Ren
;
Shunli Ma
Favorite
|
TC[WOS]:
2
TC[Scopus]:
5
|
Submit date:2023/01/30
Cmos
d Band
Power Amplifier (p a)
Power Combining
Wideband