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Ming Liu 0022
Person information
- affiliation: Chinese Academy Sciences, Institute of Microelectronics, Beijing, China
Other persons with the same name
- Ming Liu — disambiguation page
- Ming Liu 0001 — Hong Kong University of Science and Technology, Department of Electronic and Computer Engineering, Robotics and Multi-perception Lab, Hong Kong (and 3 more)
- Ming Liu 0002 — University of Electronic Science and Technology of China, School of Computer Science and Engineering, Chengdu, China (and 1 more)
- Ming Liu 0003 — University of Electronic Science and Technology of China, School of Computer Science and Engineering, Chengdu, China
- Ming Liu 0004 — Harbin Institute of Technology, School of Computer Science and Technology, China
- Ming Liu 0005 — North Carolina State University, Neuromuscular Rehabilitation Engineering Laboratory, Raleigh, NC, USA (and 2 more)
- Ming Liu 0006 — University of Florida, Gainesville, FL, USA
- Ming Liu 0007 — University of Technology, Connected Intelligence Centre, Sydney, Australia (and 2 more)
- Ming Liu 0008 — Tongji University, School of Economics and Management, Shanghai, China
- Ming Liu 0009 — University of Illinois at Urbana-Champaign, Beckman Institute for Advanced Science and Technology, IL, USA (and 2 more)
- Ming Liu 0010 — Beijing Jiaotong University, Beijing Key Lab of Transportation Data Analysis and Mining, China (and 1 more)
- Ming Liu 0011 — Royal Institute of Technology, Stockholm, Sweden (and 1 more)
- Ming Liu 0012 — Shaanxi Normal University, School of Computer Science, Xi'an, China (and 2 more)
- Ming Liu 0013 — Princeton University, Department of Electrical Engineering, NJ, USA (and 1 more)
- Ming Liu 0014 — Harbin Institute of Technology, School of Astronautics, China (and 1 more)
- Ming Liu 0015 — Chinese Academy of Sciences, Institute of Semiconductors, State Key Laboratory on Integrated Optoelectronics, Beijing, China (and 2 more)
- Ming Liu 0017 — University of Electronic Science and Technology of China, School of Information and Communication Engineering, Chengdu, China (and 1 more)
- Ming Liu 0018 — Harbin Institute of Technolog, School of Computer Science and Technology, China
- Ming Liu 0019 — Hohai University, College of Computer and Information, Laboratory of Array and Information Processing, Nanjing, China
- Ming Liu 0020 — Beihang University, School of Biological Science and Medical Engineering, MOE Key Laboratory for Biomechanics and Mechanobiology, Beijing, China
- Ming Liu 0021 — Shanghai Jiao Tong University, Department of Electronic Engineering, Shanghai, China (and 1 more)
- Ming Liu 0023 — Hong Kong Polytechnic University, Department of Electrical Engineering, Hong Kong
- Ming Liu 0024 — Changchun University of Technology, Department of Applied Mathematics, Changchun, China
- Ming Liu 0025 — Shandong University of Science and Technology, Department of Electrical Engineering and Information Technology, Jinan, China
- Ming Liu 0026 — Xi'an Jiaotong University, State Key Laboratory for Strength and Vibration of Mechanical Structures, Xi'an, China
- Ming Liu 0027 — University of Wisconsin at Madison, WI, USA (and 1 more)
- Ming Liu 0028 — Monash University, NCHA, Melbourne, Australia (and 2 more)
- Ming Liu 0029 — Beijing Institute of Technology, Yangtze Delta Region Academy, School of Opto-Electronics, School of Optics and Photonics, China
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2020 – today
- 2024
- [j25]Yang Li, Wei Wang, Ming Wang, Chunmeng Dou, Zhengyu Ma, Huihui Zhou, Peng Zhang, Nicola Lepri, Xumeng Zhang, Qing Luo, Xiaoxin Xu, Guanhua Yang, Feng Zhang, Ling Li, Daniele Ielmini, Ming Liu:
Binary-Stochasticity-Enabled Highly Efficient Neuromorphic Deep Learning Achieves Better-than-Software Accuracy. Adv. Intell. Syst. 6(1) (2024) - [j24]Qiqiao Wu, Yue Cao, Qing Luo, Haijun Jiang, Zhongze Han, Yongkang Han, Chunmeng Dou, Hangbing Lv, Qi Liu, Jianguo Yang, Ming Liu:
A 9-Mb HZO-Based Embedded FeRAM With 10-Cycle Endurance and 5/7-ns Read/Write Using ECC-Assisted Data Refresh and Offset-Canceled Sense Amplifier. IEEE J. Solid State Circuits 59(1): 208-218 (2024) - [j23]Jinshan Yue, Yongpan Liu, Xiaoyu Feng, Yifan He, Jingyu Wang, Zhe Yuan, Mingtao Zhan, Jiaxin Liu, Jian-Wei Su, Yen-Lin Chung, Ping-Chun Wu, Li-Yang Hong, Meng-Fan Chang, Nan Sun, Chunmeng Dou, Xueqing Li, Ming Liu, Huazhong Yang:
An Energy-Efficient Computing-in-Memory NN Processor With Set-Associate Blockwise Sparsity and Ping-Pong Weight Update. IEEE J. Solid State Circuits 59(5): 1612-1627 (2024) - [j22]Shengzhe Yan, Jinshan Yue, Chaojie He, Zi Wang, Zhaori Cong, Yifan He, Mufeng Zhou, Wenyu Sun, Xueqing Li, Chunmeng Dou, Feng Zhang, Huazhong Yang, Yongpan Liu, Ming Liu:
A 28-nm Floating-Point Computing-in-Memory Processor Using Intensive-CIM Sparse-Digital Architecture. IEEE J. Solid State Circuits 59(8): 2630-2643 (2024) - [c37]Jingyi Wang, Zhangcheng Huang, Bu Chen, Hongyang Shang, Jiapei Zheng, Hankun Lv, Chixiao Chen, Qi Liu, Ming Liu:
A 32×32 Flash LiDAR SPAD Sensor with Up-to-1kfps Motional Target Detection by Threshold-adaptive 2D Dynamic Vision. CICC 2024: 1-2 - [c36]Yu Li, Hao Jiang, Jie Yu, Xuanyu Zhao, Xiaodong Wang, Qihan Liu, Yingfen Wei, Qi Liu, Ming Liu:
High-efficient and Comprehensive Modeling of MFIM Ferroelectric Tunnel Junctions for Non-volatile/Volatile Applications. IMW 2024: 1-4 - [c35]Linfang Wang, Weizeng Li, Zhidao Zhou, Hanghang Gao, Zhi Li, Wang Ye, Hongyang Hu, Jing Liu, Jinshan Yue, Jianguo Yang, Qing Luo, Chunmeng Dou, Qi Liu, Ming Liu:
34.9 A Flash-SRAM-ADC-Fused Plastic Computing-in-Memory Macro for Learning in Neural Networks in a Standard 14nm FinFET Process. ISSCC 2024: 582-584 - [c34]Zhuoyu Dai, Shengzhe Yan, Zhaori Cong, Zeyu Guo, Yifan He, Wenyu Sun, Chunmeng Dou, Feng Zhang, Jinshan Yue, Yongpan Liu, Ming Liu:
A 41.7TOPS/W@INT8 Computing-in-Memory Processor with Zig-Zag Backbone-Systolic CIM and Block/Self-Gating CAM for NN/Recommendation Applications. VLSI Technology and Circuits 2024: 1-2 - [c33]Menggan Liu, Zhi Li, Wendong Lu, Kaifei Chen, Jiebin Niu, Fuxi Liao, Zijing Wu, Congyan Lu, Weizeng Li, Di Geng, Nianduan Lu, Chunmeng Dou, Guanhua Yang, Ling Li, Ming Liu:
First Demonstration of Monolithic Three-Dimensional Integration of Ultra-High Density Hybrid IGZO/Si SRAM and IGZO 2T0C DRAM Achieving Record-Low Latency (5000s). VLSI Technology and Circuits 2024: 1-2 - [i10]Jichang Yang, Hegan Chen, Jia Chen, Songqi Wang, Shaocong Wang, Yifei Yu, Xi Chen, Bo Wang, Xinyuan Zhang, Binbin Cui, Yi Li, Ning Lin, Meng Xu, Yi Li, Xiaoxin Xu, Xiaojuan Qi, Zhongrui Wang, Xumeng Zhang, Dashan Shang, Han Wang, Qi Liu, Kwang-Ting Cheng, Ming Liu:
Resistive Memory-based Neural Differential Equation Solver for Score-based Diffusion Model. CoRR abs/2404.05648 (2024) - [i9]Yifei Yu, Shaocong Wang, Woyu Zhang, Xinyuan Zhang, Xiuzhe Wu, Yangu He, Jichang Yang, Yue Zhang, Ning Lin, Bo Wang, Xi Chen, Songqi Wang, Xumeng Zhang, Xiaojuan Qi, Zhongrui Wang, Dashan Shang, Qi Liu, Kwang-Ting Cheng, Ming Liu:
Efficient and accurate neural field reconstruction using resistive memory. CoRR abs/2404.09613 (2024) - [i8]Hegan Chen, Jichang Yang, Jia Chen, Songqi Wang, Shaocong Wang, Dingchen Wang, Xinyu Tian, Yifei Yu, Xi Chen, Yinan Lin, Yangu He, Xiaoshan Wu, Yi Li, Xinyuan Zhang, Ning Lin, Meng Xu, Yi Li, Xumeng Zhang, Zhongrui Wang, Han Wang, Dashan Shang, Qi Liu, Kwang-Ting Cheng, Ming Liu:
Continuous-Time Digital Twin with Analogue Memristive Neural Ordinary Differential Equation Solver. CoRR abs/2406.08343 (2024) - [i7]Yue Zhang, Woyu Zhang, Shaocong Wang, Ning Lin, Yifei Yu, Yangu He, Bo Wang, Hao Jiang, Peng Lin, Xiaoxin Xu, Xiaojuan Qi, Zhongrui Wang, Xumeng Zhang, Dashan Shang, Qi Liu, Kwang-Ting Cheng, Ming Liu:
Dynamic neural network with memristive CIM and CAM for 2D and 3D vision. CoRR abs/2407.08990 (2024) - 2023
- [j21]Wenning Jiang, Yan Zhu, Chixiao Chen, Hao Xu, Qi Liu, Ming Liu, Rui Paulo Martins, Chi-Hang Chan:
A 14b 500 MS/s Single-Channel Pipelined-SAR ADC With Reference Ripple Mitigation Techniques and Adaptively Biased Floating Inverter Amplifier. IEEE J. Solid State Circuits 58(10): 2709-2721 (2023) - [j20]Wang Ye, Linfang Wang, Zhidao Zhou, Junjie An, Weizeng Li, Hanghang Gao, Zhi Li, Jinshan Yue, Hongyang Hu, Xiaoxin Xu, Jianguo Yang, Jing Liu, Dashan Shang, Feng Zhang, Jinghui Tian, Chunmeng Dou, Qi Liu, Ming Liu:
A 28-nm RRAM Computing-in-Memory Macro Using Weighted Hybrid 2T1R Cell Array and Reference Subtracting Sense Amplifier for AI Edge Inference. IEEE J. Solid State Circuits 58(10): 2839-2850 (2023) - [j19]Shaocong Wang, Yi Li, Dingchen Wang, Woyu Zhang, Xi Chen, Danian Dong, Songqi Wang, Xumeng Zhang, Peng Lin, Claudio Gallicchio, Xiaoxin Xu, Qi Liu, Kwang-Ting Cheng, Zhongrui Wang, Dashan Shang, Ming Liu:
Echo state graph neural networks with analogue random resistive memory arrays. Nat. Mac. Intell. 5(2): 104-113 (2023) - [j18]Ming Liu, Changchun Zhou, Siyuan Qiu, Yifan He, Hailong Jiao:
CNN Accelerator at the Edge With Adaptive Zero Skipping and Sparsity-Driven Data Flow. IEEE Trans. Circuits Syst. Video Technol. 33(12): 7084-7095 (2023) - [c32]Shiwei Liu, Peizhe Li, Jinshan Zhang, Yunzhengmao Wang, Haozhe Zhu, Wenning Jiang, Shan Tang, Chixiao Chen, Qi Liu, Ming Liu:
A 28nm 53.8TOPS/W 8b Sparse Transformer Accelerator with In-Memory Butterfly Zero Skipper for Unstructured-Pruned NN and CIM-Based Local-Attention-Reusable Engine. ISSCC 2023: 250-251 - [c31]Jinshan Yue, Chaojie He, Zi Wang, Zhaori Cong, Yifan He, Mufeng Zhou, Wenyu Sun, Xueqing Li, Chunmeng Dou, Feng Zhang, Huazhong Yang, Yongpan Liu, Ming Liu:
A 28nm 16.9-300TOPS/W Computing-in-Memory Processor Supporting Floating-Point NN Inference/Training with Intensive-CIM Sparse-Digital Architecture. ISSCC 2023: 252-253 - [c30]Jianguo Yang, Qing Luo, Xiaoyong Xue, Haijun Jiang, Qiqiao Wu, Zhongze Han, Yue Cao, Yongkang Han, Chunmeng Dou, Hangbing Lv, Qi Liu, Ming Liu:
A 9Mb HZO-Based Embedded FeRAM with 1012-Cycle Endurance and 5/7ns Read/Write using ECC-Assisted Data Refresh and Offset-Canceled Sense Amplifier. ISSCC 2023: 498-499 - [c29]Jinshan Yue, Mingtao Zhan, Zi Wang, Yifan He, Yaolei Li, Songming Yu, Wenyu Sun, Lu Jie, Chunmeng Dou, Xueqing Li, Nan Sun, Huazhong Yang, Ming Liu, Yongpan Liu:
A 5.6-89.9TOPS/W Heterogeneous Computing-in-Memory SoC with High-Utilization Producer-Consumer Architecture and High-Frequency Read-Free CIM Macro. VLSI Technology and Circuits 2023: 1-2 - [i6]Yang Li, Wei Wang, Ming Wang, Chunmeng Dou, Zhengyu Ma, Huihui Zhou, Peng Zhang, Nicola Lepri, Xumeng Zhang, Qing Luo, Xiaoxin Xu, Guanhua Yang, Feng Zhang, Ling Li, Daniele Ielmini, Ming Liu:
Binary stochasticity enabled highly efficient neuromorphic deep learning achieves better-than-software accuracy. CoRR abs/2304.12866 (2023) - [i5]Ning Lin, Shaocong Wang, Yi Li, Bo Wang, Shuhui Shi, Yangu He, Woyu Zhang, Yifei Yu, Yue Zhang, Xiaojuan Qi, Xiaoming Chen, Hao Jiang, Xumeng Zhang, Peng Lin, Xiaoxin Xu, Qi Liu, Zhongrui Wang, Dashan Shang, Ming Liu:
Resistive memory-based zero-shot liquid state machine for multimodal event data learning. CoRR abs/2307.00771 (2023) - [i4]Yi Li, Songqi Wang, Yaping Zhao, Shaocong Wang, Woyu Zhang, Yangu He, Ning Lin, Binbin Cui, Xi Chen, Shiming Zhang, Hao Jiang, Peng Lin, Xumeng Zhang, Xiaojuan Qi, Zhongrui Wang, Xiaoxin Xu, Dashan Shang, Qi Liu, Kwang-Ting Cheng, Ming Liu:
Pruning random resistive memory for optimizing analogue AI. CoRR abs/2311.07164 (2023) - [i3]Shaocong Wang, Yizhao Gao, Yi Li, Woyu Zhang, Yifei Yu, Bo Wang, Ning Lin, Hegan Chen, Yue Zhang, Yang Jiang, Dingchen Wang, Jia Chen, Peng Dai, Hao Jiang, Peng Lin, Xumeng Zhang, Xiaojuan Qi, Xiaoxin Xu, Hayden K. H. So, Zhongrui Wang, Dashan Shang, Qi Liu, Kwang-Ting Cheng, Ming Liu:
Random resistive memory-based deep extreme point learning machine for unified visual processing. CoRR abs/2312.09262 (2023) - 2022
- [j17]Jinshan Yue, Yongpan Liu, Zhe Yuan, Xiaoyu Feng, Yifan He, Wenyu Sun, Zhixiao Zhang, Xin Si, Ruhui Liu, Zi Wang, Meng-Fan Chang, Chunmeng Dou, Xueqing Li, Ming Liu, Huazhong Yang:
STICKER-IM: A 65 nm Computing-in-Memory NN Processor Using Block-Wise Sparsity Optimization and Inter/Intra-Macro Data Reuse. IEEE J. Solid State Circuits 57(8): 2560-2573 (2022) - [c28]Ming Liu, Yifan He, Hailong Jiao:
An LUT-Based Multiplier Array for Systolic Array-Based Convolutional Neural Network Accelerator. APCCAS 2022: 55-59 - [c27]Haozhe Zhu, Bo Jiao, Jinshan Zhang, Xinru Jia, Yunzhengmao Wang, Tianchan Guan, Shengcheng Wang, Dimin Niu, Hongzhong Zheng, Chixiao Chen, Mingyu Wang, Lihua Zhang, Xiaoyang Zeng, Qi Liu, Yuan Xie, Ming Liu:
COMB-MCM: Computing-on-Memory-Boundary NN Processor with Bipolar Bitwise Sparsity Optimization for Scalable Multi-Chiplet-Module Edge Machine Learning. ISSCC 2022: 1-3 - [c26]Wenxuan Sun, Woyu Zhang, Jie Yu, Yi Li, Zeyu Guo, Jinru Lai, Danian Dong, Xu Zheng, Fei Wang, Shaoyang Fan, Xiaoxin Xu, Dashan Shang, Ming Liu:
3D Reservoir Computing with High Area Efficiency (5.12 TOPS/mm2) Implemented by 3D Dynamic Memristor Array for Temporal Signal Processing. VLSI Technology and Circuits 2022: 222-223 - [c25]Woyu Zhang, Shaocong Wang, Yi Li, Xiaoxin Xu, Danian Dong, Nanjia Jiang, Fei Wang, Zeyu Guo, Renrui Fang, Chunmeng Dou, Kai Ni, Zhongrui Wang, Dashan Shang, Ming Liu:
Few-shot graph learning with robust and energy-efficient memory-augmented graph neural network (MAGNN) based on homogeneous computing-in-memory. VLSI Technology and Circuits 2022: 224-225 - 2021
- [j16]Jianjian Wang, Jinshun Bi, Gang Liu, Hua Bai, Kai Xi, Bo Li, Sandip Majumdar, Lanlong Ji, Ming Liu, Zhangang Zhang:
Simulations of single event effects on the ferroelectric capacitor-based non-volatile SRAM design. Sci. China Inf. Sci. 64(4) (2021) - [j15]Qingting Ding, Tiancheng Gong, Jie Yu, Xiaoxin Xu, Xiaoyan Li, Hangbing Lv, Jianguo Yang, Qing Luo, Peng Yuan, Feng Zhang, Ming Liu:
Investigation of weight updating modes on oxide-based resistive switching memory synapse towards neuromorphic computing applications. Sci. China Inf. Sci. 64(11) (2021) - [j14]Keji Zhou, Xiaoyong Xue, Jianguo Yang, Xiaoxin Xu, Hangbing Lv, Ming-e Jing, Jing Li, Xiaoyang Zeng, Ming Liu:
High-Density 3-D Stackable Crossbar 2D2R nvTCAM With Low-Power Intelligent Search for Fast Packet Forwarding in 5G Applications. IEEE J. Solid State Circuits 56(3): 988-1000 (2021) - [j13]Ming Liu, Ping Zhao, Tianshu Wu, Keshab K. Parhi, Xiaoyang Zeng, Yun Chen:
A low-power twiddle factor addressing architecture for split-radix FFT processor. Microelectron. J. 117: 105276 (2021) - [c24]Linfang Wang, Wang Ye, Junjie An, Chunmeng Dou, Qi Liu, Meng-Fan Chang, Ming Liu:
Sparsity-Aware Clamping Readout Scheme for High Parallelism and Low Power Nonvolatile Computing-in-Memory Based on Resistive Memory. ISCAS 2021: 1-4 - [c23]Zongming Duan, Bowen Wu, Chuanming Zhu, Yan Wang, Weiwei Jin, Ying Liu, Yanhui Wu, Tao Zhang, Ming Liu, Bingfei Dou, Bingbing Liao, Wei Lv, Dongfang Pan, Yongjie Li, Changwei Wang, Yuefei Dai, Pei Li, Hao Gao:
14.6 A 76-to-81GHz 2×8 FMCW MIMO Radar Transceiver with Fast Chirp Generation and Multi-Feed Antenna-in-Package Array. ISSCC 2021: 228-230 - [c22]Jianguo Yang, Xiaoyong Xue, Xiaoxin Xu, Qiao Wang, Haijun Jiang, Jie Yu, Danian Dong, Feng Zhang, Hangbing Lv, Ming Liu:
24.2 A 14nm-FinFET 1Mb Embedded 1T1R RRAM with a 0.022µ m2 Cell Size Using Self-Adaptive Delayed Termination and Multi-Cell Reference. ISSCC 2021: 336-338 - [c21]Dongfang Pan, Guolong Li, Fangting Miao, Biao Deng, Junying Wei, Daquan Yu, Ming Liu, Lin Cheng:
A 1.25W 46.5%-Peak-Efficiency Transformer-in-Package Isolated DC-DC Converter Using Glass-Based Fan-Out Wafer-Level Packaging Achieving 50mW/mm2 Power Density. ISSCC 2021: 468-470 - [i2]Shaocong Wang, Yi Li, Dingchen Wang, Woyu Zhang, Xi Chen, Danian Dong, Songqi Wang, Xumeng Zhang, Peng Lin, Claudio Gallicchio, Xiaoxin Xu, Qi Liu, Kwang-Ting Cheng, Zhongrui Wang, Dashan Shang, Ming Liu:
Echo state graph neural networks with analogue random resistor arrays. CoRR abs/2112.15270 (2021) - 2020
- [j12]Lin Cheng, Xinyuan Ge, Wai Chiu Ng, Wing-Hung Ki, Jiawei Zheng, Tsz Fai Kwok, Chi-Ying Tsui, Ming Liu:
A 6.78-MHz Single-Stage Wireless Charger With Constant-Current Constant-Voltage Charging Technique. IEEE J. Solid State Circuits 55(4): 999-1010 (2020) - [j11]Chao Liu, Jianguo Yang, Pengfei Jiang, Qiao Wang, Donglin Zhang, Tiancheng Gong, Qingting Ding, Yuling Zhao, Qing Luo, Xiaoyong Xue, Hangbing Lv, Ming Liu:
A Low Power 4T2C nvSRAM With Dynamic Current Compensation Operation Scheme. IEEE Trans. Very Large Scale Integr. Syst. 28(11): 2469-2473 (2020) - [c20]Lin Cheng, Xinyuan Ge, Wai Chiu Ng, Wing-Hung Ki, Jiawei Zheng, Tsz Fai Kwok, Chi-Ying Tsui, Ming Liu:
Design of a Single-Stage Wireless Charger with 92.3%-Peak-Efficiency for Portable Devices Applications. ASP-DAC 2020: 1-2 - [c19]Jianguo Yang, Xiaoyong Xue, Xiaoxin Xu, Hangbing Lv, Feng Zhang, Xiaoyang Zeng, Meng-Fan Chang, Ming Liu:
A 28nm 1.5Mb Embedded 1T2R RRAM with 14.8 Mb/mm2 using Sneaking Current Suppression and Compensation Techniques. VLSI Circuits 2020: 1-2
2010 – 2019
- 2019
- [j10]Kai Xi, Jinshun Bi, Sandip Majumdar, Bo Li, Jing Liu, Yannan Xu, Ming Liu:
Total ionizing dose effects on graphene-based charge-trapping memory. Sci. China Inf. Sci. 62(12): 222401 (2019) - [j9]Jiahao Yin, Chunmeng Dou, Danian Dong, Jie Yu, Xiaoxin Xu, Qing Luo, Tiancheng Gong, Lu Tai, Peng Yuan, Xiaoyong Xue, Ming Liu, Hangbing Lv:
A 0.75 V reference clamping sense amplifier for low-power high-density ReRAM with dynamic pre-charge technique. IEICE Electron. Express 16(12): 20190201 (2019) - [j8]Yiming Wang, Yun Li, Haihua Shen, Dongyu Fan, Wei Wang, Ling Li, Qi Liu, Feng Zhang, Xinghua Wang, Meng-Fan Chang, Ming Liu:
A Few-Step and Low-Cost Memristor Logic Based on MIG Logic for Frequent-Off Instant-On Circuits in IoT Applications. IEEE Trans. Circuits Syst. II Express Briefs 66-II(4): 662-666 (2019) - [j7]Dan Li, Ming Liu, Shengwei Gao, Yongjun Shi, Yihua Zhang, Zhiyong Li, Patrick Yin Chiang, Franco Maloberti, Li Geng:
Low-Noise Broadband CMOS TIA Based on Multi-Stage Stagger-Tuned Amplifier for High-Speed High-Sensitivity Optical Communication. IEEE Trans. Circuits Syst. I Regul. Pap. 66-I(10): 3676-3689 (2019) - [c18]Jianguo Yang, Xiaowen Li, Qingting Ding, Xiaoyong Xue, Xiaoxin Xu, Qing Luo, Hangbing Lv, Ming Liu:
A High Reliability 500 µW Resistance-to-Digital Interface Circuit for SnO2 Gas Sensor IoT Applications. ASICON 2019: 1-4 - [c17]Xiaoyong Xue, Jianguo Yang, Yuejun Zhang, Mingyu Wang, Hangbing Lv, Xiaoyang Zeng, Ming Liu:
A 28nm 512Kb adjacent 2T2R RRAM PUF with interleaved cell mirroring and self-adaptive splitting for extremely low bit error rate of cryptographic key. A-SSCC 2019: 29-32 - [c16]Lin Cheng, Xinyuan Ge, Wai Chiu Ng, Wing-Hung Ki, Jiawei Zheng, Tsz Fai Kwok, Chi-Ying Tsui, Ming Liu:
A 6.78MHz 92.3%-Peak-Efficiency Single-Stage Wireless Charger with CC-CV Charging and On-Chip Bootstrapping Techniques. VLSI Circuits 2019: 320- - [p1]Ming Liu, Qi Liu, Hangbing Lv, Shibing Long:
Resistive Switching Devices: Mechanism, Performance and Integration. Handbook of Memristor Networks 2019: 843-911 - [i1]Qiang Huo, Zhenhua Wu, Weixing Huang, Xingsheng Wang, Geyu Tang, Jiaxin Yao, Yongpan Liu, Feng Zhang, Ling Li, Ming Liu:
A Novel General Compact Model Approach for 7nm Technology Node Circuit Optimization from Device Perspective and Beyond. CoRR abs/1905.11207 (2019) - 2018
- [c15]Keji Zhou, Xiaoyong Xue, Jianguo Yang, Xiaoxin Xu, Hangbing Lv, Mingyu Wang, Ming-e Jing, Wenjun Liu, Xiaoyang Zeng, Steve S. Chung, Jing Li, Ming Liu:
Nonvolatile Crossbar 2D2R TCAM with Cell Size of 16.3 F2 and K-means Clustering for Power Reduction. A-SSCC 2018: 135-138 - [c14]Yang Xie, Dan Li, Yiqun Liu, Ming Liu, Yihua Zhang, Xiaoli Wang, Li Geng:
Low-Noise High-Linearity 56Gb/s PAM-4 Optical Receiver in 45nm SOI CMOS. ISCAS 2018: 1-4 - 2017
- [j6]Yannan Xu, Jinshun Bi, Gaobo Xu, Kai Xi, Bo Li, Ming Liu:
Total ionizing dose effects and annealing behaviors of HfO2-based MOS capacitor. Sci. China Inf. Sci. 60(12): 120401:1-120401:3 (2017) - [c13]Nan Qi, Yuhang Kang, Qipeng Lin, Jianxu Ma, Jingbo Shi, Bozhi Yin, Chang Liu, Rui Bai, Shang Hu, Juncheng Wang, Jiangbing Du, Lin Ma, Zuyuan He, Ming Liu, Feng Zhang, Patrick Yin Chiang:
A 51Gb/s, 320mW, PAM4 CDR with baud-rate sampling for high-speed optical interconnects. A-SSCC 2017: 89-92 - [c12]Feng Zhang, Dongyu Fan, Yuan Duan, Jin Li, Cong Fang, Yun Li, Xiaowei Han, Lan Dai, Cheng-Ying Chen, Jinshun Bi, Ming Liu, Meng-Fan Chang:
A 130nm 1Mb HfOx embedded RRAM macro using self-adaptive peripheral circuit system techniques for 1.6X work temperature range. A-SSCC 2017: 173-176 - [c11]Xiaowei Han, Qian Jia, Hongbin Sun, Longfei Wang, Huaqiang Wu, Yimao Cai, Feng Zhang, Yongyi Xie, Fangxu Dong, Xiaoguang Wang, Xiaofei Xue, Li Pang, Xiaoqing Zhao, Mengnan Wu, Pu Bai, Qi Liu, Hangbing Lv, Bing Yu, Chao Zhao, He Qian, Ru Huang, Ming Liu, Yumei Zhou, Nanning Zheng, Qiwei Ren:
A 0.13μm 64Mb HfOx ReRAM using configurable ramped voltage write and low read-disturb sensing techniques for reliability improvement. CICC 2017: 1-4 - 2016
- [j5]Haohao Zhang, Jinshun Bi, Haibin Wang, Hongyang Hu, Jin Li, Lanlong Ji, Ming Liu:
Study of total ionizing dose induced read bit errors in magneto-resistive random access memory. Microelectron. Reliab. 67: 104-110 (2016) - [c10]Dan Li, Zimou Zhang, Yang Xie, Ming Liu, Qian Yang, Li Geng:
A 25Gb/s low-noise optical receiver in 0.13 μm SiGe BiCMOS. ICECS 2016: 576-579 - 2015
- [c9]Xiaonan Yang, Jing Liu, Zhiwei Zheng, Yan Wang, Dandan Jiang, Shengfen Chiu, Hanming Wu, Ming Liu:
Impact of P/E cycling on read current fluctuation of NOR Flash memory cell: A microscopic perspective based on low frequency noise analysis. IRPS 2015: 5 - 2011
- [j4]Zine Abid, Ming Liu, Wei Wang:
3D Integration of CMOL Structures for FPGA Applications. IEEE Trans. Computers 60(4): 463-471 (2011) - [j3]Sansiri Tanachutiwat, Ming Liu, Wei Wang:
FPGA Based on Integration of CMOS and RRAM. IEEE Trans. Very Large Scale Integr. Syst. 19(11): 2023-2032 (2011) - 2010
- [c8]Ming Liu, Qi Liu, Shibing Long, Weihua Guan:
Formation and annihilation of Cu conductive filament in the nonpolar resistive switching Cu/ZrO2: Cu/Pt ReRAM. ISCAS 2010: 1-4 - [c7]Yonghui Ji, Ming Liu, Qin Wang, Shibing Long, Zhaoan Yu, Manhong Zhang:
A low power single ended input differential output low noise amplifier for L1/L2 band. ISCAS 2010: 213-216
2000 – 2009
- 2009
- [c6]Ming Liu, Haigang Yang, Sansiri Tanachutiwat, Wei Wang:
FPGA based on integration of carbon nanorelays and CMOS devices. NANOARCH 2009: 61-64 - [c5]Ming Liu, Haigang Yang, Sansiri Tanachutiwat, Wei Wang:
Carbon Nanotube Nanorelays with Pass-Transistor for FPGA Routing Devices. NanoNet 2009: 57-63 - 2008
- [c4]Liwei Shang, Ming Liu, Sansiri Tanachutiwat, Wei Wang:
Analyzing mixed carbon nanotube bundles: A current density study. ISCAS 2008: 173-176 - [c3]Ming Liu, Wei Wang:
rFGA: CMOS-nano hybrid FPGA using RRAM components. NANOARCH 2008: 93-98 - [c2]Ming Liu, Hua Yu, Wei Wang:
FPAA Based on Integration of CMOS and Nanojunction Devices for Neuromorphic Applications. NanoNet 2008: 44-48 - 2007
- [c1]Dayong Li, Ming Liu, Wei Wang:
Fault Tolerance Circuit for AM-OLED. ISCAS 2007: 2272-2274 - 2006
- [j2]Wei Wang, Ming Liu, Andrew Hsu:
Hybrid Nanoelectronics: Future of Computer Technology. J. Comput. Sci. Technol. 21(6): 871-886 (2006) - [j1]Ling Li, Shibing Long, Congshun Wang, Wengang Wu, Yilong Hao, Ming Liu:
Modeling and simulation development of electron beam resist based on cellular automata. Microelectron. J. 37(4): 317-320 (2006)
Coauthor Index
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Privacy notice: By enabling the option above, your browser will contact the API of archive.org to check for archived content of web pages that are no longer available. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Internet Archive privacy policy.
Reference lists
Add a list of references from , , and to record detail pages.
load references from crossref.org and opencitations.net
Privacy notice: By enabling the option above, your browser will contact the APIs of crossref.org, opencitations.net, and semanticscholar.org to load article reference information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Crossref privacy policy and the OpenCitations privacy policy, as well as the AI2 Privacy Policy covering Semantic Scholar.
Citation data
Add a list of citing articles from and to record detail pages.
load citations from opencitations.net
Privacy notice: By enabling the option above, your browser will contact the API of opencitations.net and semanticscholar.org to load citation information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the OpenCitations privacy policy as well as the AI2 Privacy Policy covering Semantic Scholar.
OpenAlex data
Load additional information about publications from .
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last updated on 2024-10-30 20:34 CET by the dblp team
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