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潘思宁 准聘副教授

E-mail:psn@tsinghua.edu.cn

通信地址:清华大学自强科技楼2号楼2-413室,邮编100084

潘思宁,清华大学集成电路学院准聘副教授,博士生导师,IEEE高级会员。2013年本科毕业于清华大学电子工程系,获学士学位,2016/2021年在荷兰代尔夫特理工大学微电子系获硕士/博士学位(均获荣誉学位),2021年至2022年在荷兰代尔夫特理工大学从事博士后研究,2022年4月全职回国加入清华大学集成电路学院。主要从事传感器读出电路、CMOS基准源、存算一体电路等模拟/混合信号集成电路设计研究。在芯片设计顶级会议ISSCC及顶级期刊JSSC发表论文共34篇,其中一作/通讯16篇,Springer出版专著一本《Resistor-based temperature sensors in CMOS technology》,专著章节两章。担任亚洲固态电路会议(ASSCC)技术委员会成员, 曾任special program主席。

招生/招聘信息:本课题组每年招收2名左右博士/硕士研究生,常年招聘模拟/混合信号电路设计方向博士后,同时也非常欢迎感兴趣的本科生参与科研工作。详情请附上简历咨询psn@tsinghua.edu.cn。


代表性论著:

期刊(JSSC

1. S. Pan, X. Liu, Z. Li, M. Jiang, Y. Cheng, Z. Tang, H. Wu, "Current-Locked-Loop: a Circuit Topology for Reconfigurable High-Accuracy CMOS References", IEEE J. Solid-State Circuits, early access.

2. N. Pu, N. Wu, K. Liu, Y. Yang. S. Zhang, S. Pan, Z. Wang, Z. Wang, Y. Guo, H. Jiang, "A 174/756-nW 6-Class Keyword Spotting ASIC with Delta/Successive-Approximation Dual-Mode Quantizer", IEEE J. Solid-State Circuits, vol. 61, no. 3, pp. 1204-1215, March 2026.

3. S. Pan, B. Zheng, X. Zhang, Y. Cheng, H. Jiang and H. Wu, "A 143dB Dynamic Range 119dB CMRR Capacitance-to-Digital Converter for High-Resolution Floating-Target Displacement Sensing", in IEEE J. Solid-State Circuits, vol. 60, no. 12, pp. 4359-4368, Dec. 2025.

4. P. Wang, M. Wang, G. Dai, Y. Cao, S. Pan and Y. Zhang, "A Compact and Ultra-Low-Power 32-kHz Conduction-Angle-Adaptive Crystal Oscillator," in IEEE J. Solid-State Circuits, vol. 60, no. 12, pp. 4336-4348, Dec. 2025.

5. J. Yin, W. Deng, H. Jia, S. Pan, M. Wang, T. Chen, H. Zhong, Z. Guo, Z. Wang and B. Chi, "A Time-Domain Accuracy-Boosted Temperature Compensated Crystal Oscillator," IEEE J. Solid-State Circuits, vol. 60, no. 10, pp. 3484-3497, Oct. 2025.

6. S. Pan, Y. Cheng, G. Wu, Z. Wang, K. A. A. Makinwa and H. Wu, "A 0.028mm2 32MHz RC Frequency Reference with an Inaccuracy of ±900ppm from -40°C to 125°C and ±1600ppm After Accelerated Aging," IEEE J. Solid-State Circuits, vol. 60, no. 9, pp. 3257-3267, Sept. 2025.

7. N. G. Toth, Z. Tang, T. Someya, S. Pan and K. A. A. Makinwa, "A PNP-Based Temperature Sensor With Continuous-Time Readout and ±0.1°C (3σ) Inaccuracy From − 55°C to 125°C," IEEE J. Solid-State Circuits. vol. 60, no. 2, pp. 593-602, Feb. 2025.

8. S. Pan, X. An, Z. Yu, H. Jiang and K. A. A. Makinwa, "Compact RC Frequency References based on a Versatile Temperature Compensation Scheme," IEEE J. Solid-State Circuits. vol. 58, no. 12, pp. 3450-3458, Dec. 2023.

9. Z. Tang, S. Pan, M. Grubor and K. A. A. Makinwa, "A Sub-1V Capacitively-Biased BJT-Based Temperature Sensor with an Inaccuracy of ±0.15°C (3σ) from -55°C to 125°C," IEEE J. Solid-State Circuits. vol. 58, no. 12, pp. 3433-3441, Dec. 2023.

10. A. C. de Oliveira, S. Pan, R. J. Wiegerink and K. A. A. Makinwa, "A MEMS Coriolis-Based Mass-Flow-to-Digital Converter for Low Flow Rate Sensing," IEEE J. Solid-State Circuits. vol. 57, no. 12, pp. 3681-3692, Dec. 2022.

11. Ç. Gürleyük, S. Pan and K. A. A. Makinwa, "A 16 MHz CMOS RC Frequency Reference With ±90 ppm Inaccuracy From −45°C to 85°C," IEEE J. Solid-State Circuits. vol. 57, no. 8, pp. 2429-2437, Aug. 2022.

12. S. Pan, J. A. Angevare and K. A. A. Makinwa, "A Self-Calibrated Hybrid Thermal-Diffusivity/Resistor-Based Temperature Sensor," IEEE J. Solid-State Circuits. vol. 56, no. 12, pp. 3551-3559, Dec. 2021.

13. S. Pan and K. A. A. Makinwa, "A 10fJ·K2 Wheatstone Bridge Temperature Sensor with a Tail-Resistor-Linearized OTA," IEEE J. Solid-State Circuits, vol 56, no. 2, pp. 501-510, Feb 2021.

14. S. Pan and K. A. A. Makinwa, "A 0.25 mm2 Resistor-based Temperature Sensor with an Inaccuracy of 0.12°C (3σ) from −55°C to 125°C," IEEE J. Solid-State Circuits, vol 53, no. 12, pp. 3347-3355, Dec 2018.

15. Ç. Gürleyük, L. Pedala, S. Pan, F. Sebastiano, and K. A. A. Makinwa, "A CMOS Dual-RC Frequency Reference with ±200 ppm Inaccuracy from −45°C to 85°C," IEEE J. Solid-State Circuits, vol 53, no. 12, pp. 3386-3395, Dec 2018.

16. S. Pan, Y. Luo, S. H. Shalmany and K. A. A. Makinwa, "A Resistor-based Temperature Sensor with a 0.13 pJ·K² Resolution FoM," IEEE J. Solid-State Circuits. vol. 53, no. 1, pp. 164-173, Jan. 2018.


会议(ISSCC

1. Z. Tang, S. Pan, X. Yu, N. N. Tan, Z. Zhu, "A 2.1-to-3.7ppm/°C Bandgap Voltage Reference with a Current-Domain TC Compensation and ±0.06% Inaccuracy from −40°C to 125°C in 130nm CMOS", in IEEE ISSCC Dig. Tech. Papers, Feb. 2026, pp 82-83.

2. C. Xing, Y. Cui, S. Pan, Y. Zhong, N. Sun, L. Jie, "A 98.5dB-SNDR 250kHz-BW 1V-Supply Continuous-Time Zoom ADC with Smart-Tracking and Floating-Tail-Resistor Linearized Gm-C Loop Filter", in IEEE ISSCC Dig. Tech. Papers, Feb. 2026, pp 552-553.

3. S. Pan, X. Zhang, B. Zheng, Y. Cheng, H. Jiang and H. Wu, "A 143dB Dynamic Range 119dB CMRR Capacitance-to-Digital Converter for High-Resolution Floating-Target Displacement Sensing", in IEEE ISSCC Dig. Tech. Papers, Feb. 2025, pp. 488-489.

4. P. Wang*, M. Wang*, G. Dai, Y. Cao, S. Pan, Y. Zhang, (*Equally-Credited Authors) "A 0.36nW, 820μm2, 32kHz Conduction-Angle-Adaptive Crystal Oscillator in 28nm CMOS for Real-Time Clock Applications", in IEEE ISSCC Dig. Tech. Papers, Feb. 2025, pp. 80-81.

5. F. J. van Mourik, S. Pan, K. M. Dowling, K. A. Makinwa, " A Voltage-Biased CMOS Hall Sensor with 1.0μT (3σ) Offset and a 60nT/√Hz Noise-Floor", in IEEE ISSCC Dig. Tech. Papers, Feb. 2025, pp. 472-473.

6. S. Pan, Y. Cheng, G. Wu, Z. Wang, K. A. A. Makinwa and H. Wu, "A 0.028mm2 32MHz RC Frequency Reference in 0.18μm CMOS with ±900ppm Inaccuracy from −40°C to 125°C and ±1600ppm Inaccuracy After Accelerated Aging", in IEEE ISSCC Dig. Tech. Papers, Feb. 2024, pp. 56-58.

7. X. An*, S. Pan*, H. Jiang and K. A. A Makinwa, (*Equally-Credited Authors) "A 0.01mm2 10MHz RC Frequency Reference with a 1-Point On-Chip-Trimmed Inaccuracy of ±0.28% from -45°C to 125°C in 0.18μm CMOS" in IEEE ISSCC Dig. Tech. Papers, Feb. 2023, pp. 60-61.

8. Z. Tang, S. Pan and K. A. A Makinwa, "A Sub-1V 810nW Capacitively-Biased BJT-Based Temperature Sensor with an Inaccuracy of ±0.15°C (3σ) from -55°C to 125°C, " in IEEE ISSCC Dig. Tech. Papers, Feb. 2023, pp. 354-355.

9. N. Toth*, T. Someya, Z. Tang, S. Pan* and K. A. A Makinwa, (*Equally-Credited Authors) " A BJT-Based Temperature Sensor with ±0.1°C (3σ) Inaccuracy from -55°C to 125°C and a 0.85pJK2 Resolution FoM Using Continuous-Time Readout," in IEEE ISSCC Dig. Tech. Papers, Feb. 2023, pp. 358-359.

10. A. C. de Oliveira, S. Pan and K. A. A Makinwa, "A MEMS Coriolis-Based Mass-Flow-to-Digital Converter with 100μg/h/√Hz Noise Floor and Zero Stability of ±0.35mg/h," in IEEE ISSCC Dig. Tech. Papers, Feb. 2022, pp. 68-69.

11. S. Pan, J. A. Angevare and K.A.A Makinwa, "A Hybrid Thermal-Diffusivity/Resistor-based Temperature Sensor with a Self-Calibrated Inaccuracy of 0.25°C (3σ) from 55°C to 125°C," in IEEE ISSCC Dig. Tech. Papers, in IEEE ISSCC Dig. Tech. Papers, Feb. 2021, pp. 78-80.

12. H. Jiang, S. Pan, Ç. Gürleyük and K. A. A. Makinwa, "A 0.14mm2 16MHz CMOS RC Frequency Reference with a 1-point Trimmed Inaccuracy of ±400ppm from 45°C to 85°C," in IEEE ISSCC Dig. Tech. Papers, Feb. 2021, pp. 436-438.

13. S. Pan and K. A. A. Makinwa, " A CMOS Resistor-based Temperature Sensor with a 10fJK2 Resolution FoM and 0.4°C (3σ) Inaccuracy from 55°C to 125°C after a 1-point Trim," in IEEE ISSCC Dig. Tech. Papers, Feb. 2020, pp. 68-69.

14. Ç. Gürleyük, S. Pan, and K. A. A. Makinwa, "A 16MHz CMOS RC Frequency Reference with ±400ppm Inaccuracy from 45°C to 85°C after Digital Temperature Compensation," in IEEE ISSCC Dig. Tech. Papers, Feb. 2020, pp. 64-65.

15. S. Pan, Ç. Gürleyük, M. F. Pimenta and K. A. A. Makinwa, "A 0.12mm2 Wien Bridge Temperature Sensor with a 0.1°C (3σ) Inaccuracy from 40°C to 180°C," in IEEE ISSCC Dig. Tech. Papers, Feb. 2019, pp. 184-186.

16. S. Pan and K. A. A. Makinwa, "A Wheatstone Bridge Temperature Sensor with a Resolution FoM of 20fJ·K2," in IEEE ISSCC Dig. Tech. Papers, Feb. 2019, pp. 186-188.

17. S. Pan and K. A. A. Makinwa, "A 0.25mm2 Resistor-based Temperature Sensor with an Inaccuracy of 0.12°C (3σ) from 55°C to 125°C and a Resolution FoM of 32fJ·K2," in IEEE ISSCC Dig. Tech. Papers, Feb. 2018, pp. 320-322.

18. S. Pan, Y. Luo, S. H. Shalmany and K. A. A. Makinwa, "A Resistor-based Temperature Sensor with a 0.13pJ·K2 Resolution FOM," in IEEE ISSCC Dig. Tech. Papers, Feb. 2017, pp. 158-159.


专著

1. S. Pan and K. A. A. Makinwa, Resistor-based temperature sensors in CMOS technology, Springer, Cham, 2022.