位置栏目

左成杰  教授
主要研究方向:射频微机电系统(RF-MEMS)、纳米光机电系统(Nano-Opto-Electro-Mechanical Systems)、射频滤波器(IPD、SAW、FBAR)、射频集成电路设计(RFIC)、射频前端模组(RFFE Module)、MEMS-IC芯片集成与协同设计等
电话:
邮箱:czuo@ustc.edu.cn
办公室:
个人简介

研究方向包括射频微机电系统(RF-MEMS)、纳米光机电系统(Nano-Opto-Electro-Mechanical Systems)、射频滤波器(IPD、SAW、FBAR)、射频集成电路设计(RFIC)、射频前端模组(RFFE Module)、MEMS-IC芯片集成与协同设计等;研究与工作期间发表国际论文50余篇,以及美国专利申请超过140项(其中超过98项已获授权)

个人经历
  • 2000-2004 中国科学技术大学,学士,电子信息科学与技术

  • 2004-2006 荷兰代尔夫特理工大学,硕士(荣誉毕业生),电气工程

  • 2006-2010 美国宾夕法尼亚大学,博士,电气与系统工程

  • 2011-2016 美国高通公司,资深工程师

荣誉
  • 中国科大校友总会微电子行业分会理事

  • 安徽省战略性新兴产业技术领军人才

  • 2012年高通技术论坛第一名

  • 2009-2010年度IEEE固态电路学会博士成就奖学金

  • 2008年IEEE国际频率控制会议最佳学生论文奖

论文

https://orcid.org/0000-0002-7520-349X

  • Z. Dai, H. Cheng, S. Xiao, H. Sun, and C. Zuo, “Coupled Shear SAW Resonator With High Electromechanical Coupling Coefficient of 34% Using X-Cut LiNbO₃-on-SiC Substrate,” IEEE Electron Device Letters, vol. 45, no. 4, pp. 720-723, Apr 2024.

  • K. Yang, F. Lin, J. Fang, J. Chen, H. Tao, H. Sun, and C. Zuo, “Nanosheet Lithium Niobate Acoustic Resonator for mmWave Frequencies,” IEEE Electron Device Letters, vol. 45, no. 2, pp. 272-275, Feb 2024.

  • K. Yang, C. He, J. Fang, X. Cui, H. Sun, Y. Yang, and C. Zuo, “Advanced RF filters for wireless communications,” Chip, vol. 2, no. 4, Dec 2023.

  • Z. Su, H. Cheng, X. Sun, H. Sun, and C. Zuo, “High-Performance Floating Gate Heterostructure with WSe2-MoS2 Diode Channel for Neural Synapse,” IEEE Electron Device Letters, vol. 44, no. 7, pp. 1084-1087, Jul 2023.

  • Z. Dai, X. Liu, H. Cheng, S. Xiao, H. Sun, and C. Zuo, “Ultra High Q Lithium Niobate Resonator at 15-Degree Three-Dimensional Euler Angle,” IEEE Electron Device Letters, vol. 43, no. 7, pp. 1105-1108, Jul 2022.

  • Z. Su, Z. Xuan, J. Liu, Y. Kang, C. Liu, and C. Zuo, “Sub-femto-Joule energy consumption memory device based on van der Waals heterostructure for in-memory computing,” Chip, vol. 1, no. 2, 100014, Jun 2022.

  • C. Zuo, C. He, W. Cheng, and Z. Wang, “Hybrid Filter Design for 5G using IPD and Acoustic Technologies,” 2019 IEEE International Ultrasonics Symposium (IUS 2019), Glasgow, Scotland, UK, Oct 2019.

  • C. Zuo, C. H. Yun, P. J. Stephanou, S.-J. Park, C.-S. T. Lo, R. Mikulka, J.-H. J. Lan, M. F. Velez, R. Shenoy, J. Kim, and M. Nowak, “Cross-Sectional Dilation Mode Resonator with Very High Electromechanical Coupling up to 10% using AlN,” 2012 IEEE International Frequency Control Symposium (IFCS 2012), Baltimore, MD, USA, May 2012.

  • C. Zuo, J. Van der Spiegel, and G. Piazza, “Dual-Mode Resonator and Switchless Reconfigurable Oscillator Based on Piezoelectric AlN MEMS Technology,” IEEE Transactions on Electron Devices, vol. 58, no. 10, Oct 2011.

  • C. Zuo, J. Van der Spiegel, and G. Piazza, “1.5-GHz CMOS Voltage-Controlled Oscillator Based on Thickness-Field-Excited Piezoelectric AlN Contour-Mode MEMS Resonators,” 2010 IEEE Custom Integrated Circuits Conference (CICC 2010), San Jose, CA, USA, Sep 2010.

  • C. Zuo, J. Van der Spiegel, and G. Piazza, “1.05-GHz CMOS Oscillator Based on Lateral-Field-Excited Piezoelectric AlN Contour-Mode MEMS Resonators,” IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control, vol. 57, no. 1, pp. 82-87, Jan 2010.

  • C. Zuo, N. Sinha, J. Van der Spiegel, and G. Piazza, “Multifrequency Pierce Oscillators Based on Piezoelectric AlN Contour-Mode MEMS Technology,” IEEE/ASME Journal of Microelectromechanical Systems, vol. 19, no. 3, pp. 570-580, Jun 2010.

  • C. Zuo, N. Sinha, and G. Piazza, “Very High Frequency Channel-Select MEMS Filters Based on Self-Coupled Piezoelectric AlN Contour-Mode Resonators,” Sensors and Actuators A: Physical, vol. 160, no. 1-2, pp. 132-140, May 2010.