中国科大微电子学院
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潘东方

邮箱:pdf1992@ustc.edu.cn

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经历:
2014.09-2019.11 中国科学技术大学 电子科学与技术专业硕博连读,工学博士
2018.06-2019.06 美国南卫理公会大学 电子工程系 访问学者
2019.11-至今 中国科学技术大学微电子学院 博士后


主要研究方向:高频功率集成电路设计(高频全集成隔离电源芯片)以及射频毫米波集成电路设计CMOS毫米波雷达收发前端芯片、CMOS功率放大器芯片),发表论文10余篇,其中第一作者发表SCI收录期刊论文5篇(IEEE TCAS-IIEEE MWCL等)和4篇集成电路设计领域顶级和主流国际会议论文,包括IEEE ISSCCIEEE ESSCIRC等,担任IEEE MWCLIEEE TVLSIIEEE ISCAS等国际知名期刊和会议审稿人。 


代表性工作:

[1] D. Pan, G. Li, F. Miao, B. Deng, J. Wei, D. Yu, M. Liu, L. Cheng. 33.5 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, 2021 IEEE International Solid- State Circuits Conference (ISSCC), San Francisco, CA, USA, 2021, pp. 468-470.

[2] D. Pan, Z. Duan, B. Wu, Y. Wang, D. Huang, Y. Wang, L. Sun, P. Gui, L. Cheng. A 76–81-GHz Four-Channel Digitally Controlled CMOS Receiver for Automotive Radars[J], in IEEE Transactions on Circuits and Systems I: Regular Papers, vol. 68, no. 3, pp. 1091-1101, March 2021.

[3]   D. PAN, Z. DUAN, S. CHAKRABORTY, L. SUN AND P. GUI. A 60–90-GHz CMOS Double-Neutralized LNA Technology with 6.3-dB NF and 10dBm P1dB[J]. IEEE Microwave and Wireless Components Letters, 2019,29(7):489-491.

[4] D. PAN, Z. DUAN, L. SUN AND P. GUI. A Compact and High-Linearity 77 GHz CMOS Receiver Front-End for Automotive Radar[J]. IET Circuits, Devices & Systems, 2019, 13(8): 1203-1208.

[5] D. PAN, Z. DUAN, L. SUN, S. GUO, L. CHENG AND P. GUI. A 76-81 GHz CMOS PA with 16-dBm PSAT and 30-dB Amplitude Control for MIMO Automotive Radars2019 IEEE European Solid-State Circuits conference (ESSCIRC)[C], 2019.

[6]   D. PAN, Z. DUAN, B. WU, Y. WANG, D. HUANG, Y. WANG, P. GUI AND L. SUN. A Digitally Controlled CMOS Receiver with 14 dBm P1dB for 77 GHz Automotive Radar: 2019 IEEE International Symposium on Circuits and Systems (ISCAS)[C], 2019. (Student Travel Grant)

[7]   D. PAN, Z. DUAN, L. HUANG, Y. WANG, Y. ZHOU, B. WU AND L. SUN. Design of high-linearity 75–90 GHz CMOS down-conversion mixer for automotive radar[J]. Analog Integrated Circuits and Signal Processing, 2018,97(2):313-322.

[8] Z. DUAN, D. PAN, B. WU, et al. A 76-81GHz FMCW Transceiver with 3-Transmit, 4-Receive Paths and 15dBm Output Power for Automotive Radars: 2019 IEEE Radio Frequency Integrated Circuits Symposium (RFIC)[C], 2019.

[9]   D PAN, Z. DUAN, R. CAO AND L. SUN. Design of ultra-wideband LNA with 3.6 ± 0.4 dB NF and 15.9 ± 1.1 dB gain[J]. IEICE Electronics Express, 2018,15(11):20180403.


 

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