Shuai Chen
Chinese Academy of Sciences
12 Papers
71 Citations
Shuai Chen is an academic researcher from Chinese Academy of Sciences. The author has contributed to research in topics: Jitter & Digital clock. The author has an hindex of 7, co-authored 12 publications. Previous affiliations of Shuai Chen include University of Toronto.
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Papers
A Nano-Watt MOS-Only Voltage Reference With High-Slope PTAT Voltage Generators
Hong Zhang,Xipeng Liu,Jie Zhang,Hongshuai Zhang,Jijun Li,Ruizhi Zhang,Shuai Chen,Anthony Chan Carusone +7 more
TL;DR: This brief presents an MOS-only voltage reference circuit with high-slope proportional-to-absolute-temperature (PTAT) voltage generators for ultra-low-power applications and shows that much power and chip area can be saved.
75
A Robust Energy/Area-Efficient Forwarded-Clock Receiver With All-Digital Clock and Data Recovery in 28-nm CMOS for High-Density Interconnects
Shuai Chen,Hao Li,Patrick Chiang +2 more
TL;DR: A phase tracking procedure is proposed to enable the ADCDR to track the phase drift due to the voltage and temperature variations, and the proposed all-digital clock and data recovery (ADCDR) circuit, which is well suited for today's CMOS process scaling, enables the receiver to achieve low power and area consumption.
19
A 0.8V, 560fJ/bit, 14Gb/s Injection-Locked Receiver with Input Duty-Cycle Distortion Tolerable Edge-Rotating 5/4X Sub-Rate CDR in 65nm CMOS
Hao Li,Shuai Chen,Liqiong Yang,Rui Bai,Weiwu Hu,Freeman Zhong,Samuel Palermo,Patrick Chiang +7 more
- 10 Jun 2014
TL;DR: A quarter-rate forwarded-clock receiver utilizes an edge-rotating 5/4X sub-rate CDR for improved jitter tolerance with low power overhead relative to conventional 2X oversampling CDR systems.
14
Godson-3B1500: A 32nm 1.35GHz 40W 172.8GFLOPS 8-core processor
Weiwu Hu,Yi-Fu Zhang,Liang Yang,Baoxia Fan,Yunji Chen,Shiqiang Zhong,Huandong Wang,Zichu Qi,Pengyu Wang,Xiang Gao,Xu Yang,Bin Xiao,Hongsheng Wang,Zongren Yang,Liqiong Yang,Shuai Chen +15 more
- 28 Mar 2013
TL;DR: Godson-3B1500 is an 8-core microprocessor product of Loongson Technology™ that is fabricated in 32nm 10 Cu-layer high-κ metal-gate (HKMG) low-power bulk CMOS, and contains 1.14 billion transistors within 182.5mm2 die area.
14
A novel SST transmitter with mutually decoupled impedance self-calibration and equalization
Shuai Chen,Liqiong Yang,Hua Jing,Feng Zhang,Zhuo Gao +4 more
- 15 May 2011
TL;DR: A low power source-synchronous source-series-terminated (SST) transmitter (Tx) in 65 nm CMOS technology is presented, and the proposed novel topology can independently control impedance self-calibration and equalization.