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学术论文

2019年期刊论文:

[1] M. Liu, H. Liu, X. Li and Z. Zhu, "A 60-m Range 6.16-mW Laser-Power Linear-Mode LiDAR System With Multiplex ADC/TDC in 65-nm CMOS," IEEE Transactions on Circuits and Systems I: Regular Papers, vol. 67, no. 3, pp. 753-764, March 2020.

[2] M. Liu, D. Li and Z. Zhu, "A Dual-supply Two-stage CMOS Op-amp for High-speed Pipeline ADCs Application," IEEE Transactions on Circuits and Systems II: Express Briefs. doi: 10.1109/TCSII.2019.2926133

[3] M. Liu*, J. Xiao, P. Luo, Z. Zhu and Y. Yang, "Ultrawideband Power-Switchable Transmitter With 17.7-dBm Output Power for See-Through-Wall Radar," IEEE Transactions on Very Large Scale Integration (VLSI) Systems. doi: 10.1109/TVLSI.2020.2972687

[4] J. Zhang, H. Lan, M. Liu* and Y. Yang, "A Handheld Nano Through-Wall Radar Locating with the Gain-Enhanced Vivaldi Antenna," IEEE Sensors Journal. doi: 10.1109/JSEN.2019.2963234

[5] Haizhu Liu; Maliang Liu*, Zhangming Zhu. A high linear voltage-to-time converter (VTC) with 1.2 V input range for time-domain analog-to-digital converters. MICROELECTRONICS JOURNAL, 2019, Vol. 88, pp.18-24

[6] Maliang Liu*, Sirui Zhang, Hu Jin, Zhangming Zhu, Yintang Yang, A Low Complexity Digital Foreground Calibration Technique for CMOS Pipelined ADCs. Journal of Circuits, Systems, and Computers, 28(3): 1950045:1-1950045:29 (2019)

[7] Jiangkun Duan, Maliang Liu*, Zhangming Zhu, Yintang Yang, A 15ps resolution time-to-digital converter with on-chip PLL counting for LiDAR multi-object sensors. MICROELECTRONICS JOURNAL. 92 (2019)

[8] P Luo, M Liu*, L Chen, J Gao, Z Zhu, Y Yang, A 2.99 dB NF 15.6 dB Gain 3-10GHz Ultra-wideband low-noise amplifier for UWB systems in 65 nm CMOS, Analog Integrated Circuits and Signal Processing, 101 (3), 651-657

[9] J Duan, M Liu*, Z Zhu, Y Yang, A 6.3 GHz high bandwidth voltage-to-time converter with high linearity, Analog Integrated Circuits and Signal Processing, 100 (3), 663-670

[10] D. Li, M. Liu, R. Ma and Z. Zhu, "An 8-ch LIDAR Receiver based on TDC with multi-interval detection and real-time in-situ calibration," IEEE Transactions on Instrumentation and Measurement. doi: 10.1109/TIM.2019.2954173

[11] D. Li, M. Liu, L. Zhao, H. Mao, R. Ding and Z. Zhu, "An 8-bit 2.1-mW 350-MS/s SAR ADC With 1.5 b/cycle Redundancy in 65-nm CMOS," IEEE Transactions on Circuits and Systems II: Express Briefs. doi: 10.1109/TCSII.2020.2968457

2018年前期刊论文:

[1] Maliang Liu, Rui Ma, Shubin Liu, Zhen Ding, Pan Zhang, Zhangming Zhu. A 5.0GHz Low-Power Low-Noise Integer-N Digital Sub-Sampling PLL with SAR-ADC PD.  IEEE Trans. on Microwave Theory and Techniques. 2018, Vol.66, no.9,pp.4078-4087.

[2] Maliang Liu, Zhangming Zhu, Yintang Yang. A High-SFDR 14-bit 500MS/s Current-Steering D/A Converter in 0.18μm CMOS. IEEE Trans. on Very Large Scale Integrated Circuits (VLSI) System, 2015, Vol.23, no.12,pp.3148-3152.

[3] Maliang Liu, Kaixiong Lian, Yingzhou Huang, Rui Ma, Zhangming Zhu. A 12-bit 200MS/s pipeline ADC with 91 mW power and 66 dB SNDR. MICROELECTRONICS JOURNAL, 2017, Vol. 63, pp.104-111

[4] M Liu*, J Hu, S Zhang, Z Zhu, PN-assisted digital background calibration of two-step ADC to over 14-bit accuracy, Analog Integrated Circuits and Signal Processing, 94 (1), 75-82

[5] Rui Ma, Maliang Liu, Hao Zheng, and Zhangming Zhu, A 77-dB Dynamic Range Low-Power Variable-Gain Transimpedance Amplifier for Linear LADAR, IEEE Transactions on Circuits and Systems II: Express Briefs, 2017, DOI: 10.1109/TCSII.2017.2684822

[6] Zhangming Zhu, Zheng Qiu, Maliang Liu, Ruixue Ding, A 6-to-10-Bit 0.5V-to-0.9V Reconfigurable 2MS/s power scalable SAR ADC in 0.18μm CMOS, IEEE Trans. on Circuits and Systems I: Regular Papers, March 2015, Vol.62, no.3, pp. 689-696.

[7] Maliang Liu, Yi Xie, Zhangming Zhu. A 67.2 dB SNDR 1.8-V 12-bit 2-MS/s SAR ADC without calibration,Analog Integrated Circuits and Signal Processing, 2016, Vol. 86, no.1, pp.151-158

[8] Maliang Liu, Jingyu Wang, Zhangming Zhu,Wei Guo,Lianxi Liu and Ruixue Ding. A Low Distortion CMOS Analogue Switch with High-order Compensation. Analog Integrated Circuits and Signal Processing, 2015, Vol. 82, no.2, pp.495-500.