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科学研究
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2020-05-27 11:35     (阅读:)

[1] Mehdi Nasrollahpour, Priyanka Agrawal, Rahul Sreekumar, Chi-Hsien Yen, Muhammad Aldacher, Song Ye and Sotoudeh Hamedi- Hagh,“Design of a 65-69 GHz 1000:1 FMCW PLL in 65nm CMOS Technology”,IEEE Texas Symposium on Wireless and Microwave Circuit and Systems (WMCS), 2019

[2] Tao Jian, Fan Xiangning and Kuan Bao. A single-ended wideband reconfigurable receiver front-end for multi-mode multi-standard applications in 0.18 µm CMOS[J]. High Technology Letters. 2019, 25(1):1–7.

[3] Tao Jian, Fan Xiangning and Kuan Bao. A single-ended wideband reconfigurable receiver front-end for multi-mode multi-standard applications in 0.18 µm CMOS[J]. High Technology Letters. 2019, 25(1):1–7.

[4] Changwei Ma, Wenying Ma, Yi Tan, Yuzhu Tang, A terahertz metamaterial analog of electromagnetically induced transparency and its application in loss detection, Proc. SPIE, 2019, 9th international Symposium on advanced optical manufacturing and testing technologies: Micro-and Nano-Optics, Catenary Optics, and Subwavelength Electromagnetics, 108400R.

[5] Jian Tao, Xiangning Fan and Xin Chen. A SAW-less receiver front-end with continuously variable bandwidth and enhanced blocker-filtering[J]. IEICE Electronics Express. 2018, 15(12): 1-12.

[6] Jian Tao, Xiangning Fan and Yuan Zhao. A differential balun-LNA for multistandard receivers in 0.13 µm BiCMOS[C]. Proceedings of 2018 IEEE International Conference on Automation, Electronics and Electrical Engineering, AUTEEE, Shenyang ,2018.

[7] Wenying Ma*, Changwei Ma and Weimin Wang, Surface micromachined MEMS deformable mirror based on hexagonal parallel-plate electrostatic actuator, Journal of Physics: Conf. Series, 2018, 986, 012021.

[8] Jian Tao and Xiangning Fan. A 0.13 µm BiCMOS reconfigurable analog baseband for multi-mode multistandard wireless receivers[C]. Proc. 7th international joint conference on pervasive and embedded computing and communication systems (PECCS), Madrid, 2017.

[9] 唐雨竹,马文英,魏耀华,一种地面开槽的双频宽频单极子天线,无线电通信技术,2016,43(1):73-76.

[10] 唐雨竹,马文英,魏耀华,一种新型三频天线的设计与分析,电子元件与材料,2016,35(9):53-57.

[11] Song Ye, et al, “ An Integrated L-Band Transceiver in 0.35um SiGe for Radar Applications“, ICWOC 2012

[12] Song Ye,“Beidou Time Synchronization Receiver for Smart Grid” , IEEE ICSGCE 2011.

[13] Song Ye, et al, “A High Efficiency CMOS Rectifier Circuit for 900MHz Passive RFID Tags”, IEEE PACCS 2010.

[14] Jian Tao, Yajun Wang and Jianli Xing. A comparator with flexible programming of the hysteresis [J]. IEEE international conference on anti-counterfeiting, security and identification (ASID), Chengdu, 2010.

[15] Song Ye, et al, “An Ultra-high-speed Comparator for ADC in 90nm CMOS Technology”, IEEE International Symposium on Microwave, Antenna, Propagation and EMC Technologies For Wireless Communications, 2009.

[16] Song Ye, et al,“Low Spur Charge Pump In 0.35μm SiGe Process for PLL”,ASICON 2009

[17] Jie Wu, Zhiqun Li and Song Ye, “A High Linear Dual-Band PA Driver for GSM/CDMA/PHS Applications”, Asia-Pacific Microwave Conference, 2007, Bangkok, 2007.

[18] Song Ye, et al, “A 200 – 2250 MHz / 400 –4500 MHz Regenerative Frequency Doubler in a 0.35um SiGe Process”, IEEE International Conference on Microwave and Millimeter Wave, 2004

[19] Song Ye and Ye Lu, “A 1 V, 1.9 GHz Folded Dual-Gate Mixer in CMOS”, IEEE International Conference on Microwave and Millimeter Wave Tech, 2002

[20] Song Ye, Koji Yano and C.A.T. Salama, “A 1V, 1.9GHz Mixer using a Lateral Bipolar Transistor in CMOS”, IEEE International Symposium on Low Power Electronics and Design, 2001

[21] Song Ye and C.A.T. Salama, “A 1V, 1.9GHz, Low Distortion Dual Gate CMOS on SOI Mixer”, IEEE International SOI Conference, 2000

[22] 彭 娜,谢蓉芳,陈 珂,吴风松,叶 松,“24GHz CMOS 功率放大器芯片设计”,综合电子信息技术,43(5),2017

[23] 吴风松,叶 松,彭 娜,陈 珂,谢蓉芳,王 琳,“基于定向天线和信号覆盖差异的定向方式”,14(4),2016

[24] Dandan Jiang et al, “ A Quantitative Approach to Characterize Total Ionizing Dose Effect of Periphery Device for 65 nm Flash Memory”, Nanoscience and Nanotechnology Letters, Vol. 10, 378–382, 2018

[25] Yu Zhang, Lei Jin, Dandan Jiang⁎ et al, “Leakage characterization of top select transistor for program disturbance optimization in 3D NAND flash”, Solid State Electronics, Vol. 141, 18–22, 2018

[26] Xingqi Zou, Lei Jin, Dandan Jiang∗ et al, “The Optimization of Gate All Around-L-Shaped Bottom Select Transistor in 3D NAND Flash Memory”, Journal of Nanoscience and Nanotechnology, Vol. 18, 5528–5533, 2018

[27] Yu Zhang , Lei Jin, Dandan Jiang∗ et al, “A Novel Read Scheme for Read Disturbance Suppression in 3D NAND Flash Memory”, IEEE Electron Device Letters, VOL. 38, NO. 12, DECEMBER, 2017

[28] Xingqi Zou , Lei Jin, Dandan Jiang∗ et al, “ Investigation of Cycling-Induced Dummy Cell Disturbance in 3D NAND Flash Memory”, IEEE Electron Device Letters, VOL. 39, NO. 2, FEBRUARY,2018

[29] 王柯,姜一杨,张黄鹏,姜丹丹,“基于FPGA的NAND闪存控制器的设计与验证”,计算机应用,38(S2):254-257, 2018

[30] 陈珂,杜智超,叶松,王颀,霍宗亮,“基于一种NAND 闪存页缓存器设计的C /F 读取算法研究”,46(11),2619-2625, 2018

[31] Song Ye, Jun Li, “The Effects of a Deep N-well Junction on RF Circuit Performance”, 2010 International Workshop on Junction Technology (IWJT) proceedings, 2010.

[32] 杨倩,叶松,姜丹丹,一种65nm CMOS 60GHz 高增益功率放大器,微电子学,2019,49(6):761-765.

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