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George Jie Yuan
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- affiliation: Hong Kong University of Science and Technology
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2020 – today
- 2021
- [c13]Shun-Qi Dai, Cristine Jin Estrada, An-Nan Xiong, Chen Xu, George Jie Yuan, Mansun Chan:
CMOS-Compatible Time-of-Flight 3D Imaging Sensors and Systems. ASICON 2021: 1-4
2010 – 2019
- 2015
- [j19]Jiageng Huang, Shiliang Yang, George Jie Yuan:
A 75 dB SNDR 10-MHz Signal Bandwidth Gm-C-Based Sigma-Delta Modulator With a Nonlinear Feedback Compensation Technique. IEEE Trans. Circuits Syst. I Regul. Pap. 62-I(9): 2216-2226 (2015) - 2014
- [j18]Ruoyu Xu, Wai Chiu Ng, George Jie Yuan, Shouyi Yin, Shaojun Wei:
A 1/2.5 inch VGA 400 fps CMOS Image Sensor With High Sensitivity for Machine Vision. IEEE J. Solid State Circuits 49(10): 2342-2351 (2014) - 2013
- [c12]Jiageng Huang, Shiliang Yang, George Jie Yuan:
A 10-MHz bandwidth 70-dB SNDR 640MS/s continuous-time ΣΔ ADC using Gm-C filter with nonlinear feedback DAC calibration. CICC 2013: 1-4 - 2012
- [j17]Jing Guo, George Jie Yuan, Jiageng Huang, Jessica Ka-Yan Law, Chi-Kong Yeung, Mansun Chan:
32.9 nV/rt Hz - 60.6 dB THD Dual-Band Micro-Electrode Array Signal Acquisition IC. IEEE J. Solid State Circuits 47(5): 1209-1220 (2012) - [j16]Ruoyu Xu, Bing Liu, George Jie Yuan:
A 1500 fps Highly Sensitive 256 , ˟, 256 CMOS Imaging Sensor With In-Pixel Calibration. IEEE J. Solid State Circuits 47(6): 1408-1418 (2012) - [j15]Ruoyu Xu, Bing Liu, George Jie Yuan:
Digitally Calibrated 768-kS/s 10-b Minimum-Size SAR ADC Array With Dithering. IEEE J. Solid State Circuits 47(9): 2129-2140 (2012) - [j14]Jing Guo, George Jie Yuan, Mansun Chan:
Modeling of the Cell-Electrode Interface Noise for Microelectrode Arrays. IEEE Trans. Biomed. Circuits Syst. 6(6): 605-613 (2012) - [j13]Ruoyu Xu, Wai Chiu Ng, Hongjie Zhu, Hengying Shan, George Jie Yuan:
Equation Environment Coupling and Interference on the Electric-Field Intrabody Communication Channel. IEEE Trans. Biomed. Eng. 59(7): 2051-2059 (2012) - [j12]George Jie Yuan, Sheung Wai Fung, Kai Yin Chan, Ruoyu Xu:
A 12-bit 20 MS/s 56.3 mW Pipelined ADC With Interpolation-Based Nonlinear Calibration. IEEE Trans. Circuits Syst. I Regul. Pap. 59-I(3): 555-565 (2012) - [j11]Bing Liu, George Jie Yuan:
A Quantum-Limited Highly Linear Monolithic CMOS Detector for Computed Tomography. IEEE Trans. Circuits Syst. I Regul. Pap. 59-I(3): 566-574 (2012) - [j10]George Jie Yuan, Sheung Wai Fung, Kai Yin Chan, Ruoyu Xu:
An Interpolation-Based Calibration Architecture for Pipeline ADC With Nonlinear Error. IEEE Trans. Instrum. Meas. 61(1): 17-25 (2012) - [c11]Hongjie Zhu, Wai Chiu Ng, Hengying Shan, George Jie Yuan:
A physical layer security analysis on the electric-field intra-body communication. ICNC 2012: 14-17 - 2011
- [j9]Jing Guo, George Jie Yuan, Jiageng Huang, Jessica Ka-Yan Law, Chi-Kong Yeung, Mansun Chan:
Highly Accurate Dual-Band Cellular Field Potential Acquisition For Brain-Machine Interface. IEEE J. Emerg. Sel. Topics Circuits Syst. 1(4): 461-468 (2011) - [j8]Ruoyu Xu, Hongjie Zhu, George Jie Yuan:
Electric-Field Intrabody Communication Channel Modeling With Finite-Element Method. IEEE Trans. Biomed. Eng. 58(3): 705-712 (2011) - [c10]Jing Guo, Jiageng Huang, George Jie Yuan, Jessica Ka-Yan Law, Chi-Kong Yeung, Mansun Chan:
A 38.6nV/Hz0.5 -59.6dB THD dual-band micro-electrode array signal acquisition IC. CICC 2011: 1-4 - 2010
- [j7]George Jie Yuan, Ka Leong Tsang:
The design and optimization methodology of a low-distortion sub-µW sample-and-hold stage for weak bio-currents. Microelectron. J. 41(2-3): 121-128 (2010) - [j6]George Jie Yuan, Ho Yeung Chan:
Power analysis and design of wide dynamic range CMOS imaging sensors. Microelectron. J. 41(9): 585-593 (2010) - [c9]Jing Guo, Bing Liu, George Jie Yuan:
A highly linear wide dynamic range detector for cell recording with microelectrode arrays. VLSI-SoC 2010: 179-182
2000 – 2009
- 2009
- [j5]George Jie Yuan, Ho Yeung Chan, Sheung Wai Fung, Bing Liu:
An Activity-Triggered 95.3 dB DR -75.6 dB THD CMOS Imaging Sensor With Digital Calibration. IEEE J. Solid State Circuits 44(10): 2834-2843 (2009) - [j4]George Jie Yuan:
Modeling, Quantitative Analysis, and Design of Switched-Current Pipeline A/D Converters. IEEE Trans. Circuits Syst. I Regul. Pap. 56-I(4): 727-739 (2009) - [c8]Sheung Wai Fung, Bing Liu, George Jie Yuan, Qing Guo:
A Low-noise Monolithic CMOS Bio-potential Detector. ISCAS 2009: 653-656 - [c7]Bing Liu, George Jie Yuan:
A Wide Dynamic Range High Linearity In-pixel Data Acquisition Front-end for Computed Tomography. ISCAS 2009: 2301-2304 - 2008
- [j3]George Jie Yuan, Nabil H. Farhat, Jan Van der Spiegel:
Background Calibration With Piecewise Linearized Error Model for CMOS Pipeline A/D Converter. IEEE Trans. Circuits Syst. I Regul. Pap. 55-I(1): 311-321 (2008) - [c6]Ka Leong Tsang, George Jie Yuan:
The Design and Optimization of a 25 kS/s 10 bit Micropower Current S/H Cell for Weak Current Bio-medical Applications. DELTA 2008: 11-14 - [c5]Ho Yeung Chan, George Jie Yuan:
A low-distortion and wide dynamic range CMOS imager for wireless capsule endoscopy. ISCAS 2008: 2945-2948 - 2007
- [j2]George Jie Yuan, Ning Song, Nabil H. Farhat, Jan Van der Spiegel:
Cort-X II: The Low-Power Element Design for a Dynamic Neural Network. IEEE Trans. Circuits Syst. II Express Briefs 54-II(12): 1130-1134 (2007) - [c4]George Jie Yuan, Ning Song, Nabil H. Farhat, Jan Van der Spiegel:
Cort-X II: low power element design of a large-scale spatio-temporal pattern clustering system. ISCAS 2007: 1017-1020 - 2006
- [c3]George Jie Yuan, Nabil H. Farhat, Jan Van der Spiegel:
A CMOS monolithic implementation of a nonlinear element for arbitrary 1D map generation. ISCAS 2006 - [c2]George Jie Yuan, Nabil H. Farhat, Jan Van der Spiegel:
A CMOS monolithic implementation of a nonlinear interconnection module for a corticonic network. ISCAS 2006 - 2005
- [j1]George Jie Yuan, Nabil H. Farhat, Jan Van der Spiegel:
GBOPCAD: A Synthesis Tool for High-Performance Gain-Boosted Opamp Design. IEEE Trans. Circuits Syst. I Regul. Pap. 52-I(8): 1535-1544 (2005) - 2004
- [c1]George Jie Yuan, Nabil H. Farhat:
A compensation-based optimization methodology for gain-boosted opamp. ISCAS (1) 2004: 669-672
Coauthor Index
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