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朱浩然

领域:高端装备制造产业 学校:安徽大学职称:高级工程师

微波电路与系统2. 天线与射频集成电路3. 系统级封装技术...

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教育背景

工作经历

项目课题经历

  1. 国家自然科学基金:芯片级封装中信号与电源完整性协同设计方法的研究 2019.1-2021.12  

  2. 安徽省科技重大专项:5G通信中自适应MIMO基站天线的研发2019.1-2020.12

  3. 二类重大横向课题:高性能小型化射频无源器件集成的研究

 2018.10-2020.12

  1. 中航工业高强辐射场实验室课题:混响室高强度辐射场空间合成技术研究

 2018.10-2019.10

 5.毫米波重点实验室开放课题:三维射频系统级封装中复杂互连线的信号完整性研究 2019.1-2020.12

 6.安徽省自然科学研究重点项目:三维高速混合电路系统中电源完整性的研究

 2018.6-2020.12

 7.博微长安电子有限公司课题:低成本毫米波天线与射频前端集成的研究

     2019.1-2020.1

 8.上海交通大学院士基金:三维堆叠射频系统级封装中宽带噪声抑制方法的研究 2018.5-2019.5



论文、成果、著作等

[1] Haoran Zhu, Yufa Sun, Zhixiang Huang, and Xianliang Wu, “A Compact EBG Structure with Etching Spiral Slots for Ultra-Wideband Simultaneous Switching Noise Mitigation in Mixed Signal Systems,” Early Access in IEEE Trans. Compon. Packag. Manufact. Technol., 2018.

 [2] Haoran Zhu, Yufa Sun, and Xianliang Wu, “A Compact Tapered EBG Structure with Sharp Selectivity and Wide Stopband by Using CSRR,” IEEE Microw. Wireless Compon. Lett., vol. 28, no 9, 541-543, 2018.

 [3] Haoran Zhu and Junfa Mao, “An ultra-wideband common-mode suppression filter based on S-DBCSRR for high-speed differential signals,IEEE Microw. Wireless Compon. Lett., vol. 25, no 4, 226-228, 2015.

[4] Haoran Zhu, Junfa Mao, and Jianjie Li, “Ultra-wideband suppression of SSN using localized topology with CSRRs and embedded capacitance in high-speed circuits,IEEE Trans. Microw. Theory Tech., vol. 2, pp 764-772, 2013.

 [5] Haoran Zhu and Junfa Mao, “Localized planar EBG structure of CSRR for ultra-wideband SSN mitigation and signal integrity improvement in mixed signal systems,IEEE Trans. Compon. Packag. Manufact. Technol., vol. 12, pp 2092-2100, 2013.

 [6] Haoran Zhu and Junfa Mao, “Miniaturized tapered EBG structure with wide stopband and flat passband,IEEE Antennas Wireless Propag. Lett., vol. 11, pp. 314-317, 2012.

 [7] Haoran Zhu,Wei Shenand Junfa Mao, “A miniaturized semi-lumped lowpass filter with multiple transmission zeros and wide stopband,J. Electromagn. Waves Appl., vol. 26, pp. 1148-1157, 2012.

 [8] Jianjie Li, Junfa Mao,and Haoran Zhu, “Embedded planar EBG and shorting via arrays for SSN suppression in multilayer PCBs,IEEE Antennas Wireless Propag. Lett., vol. , pp. 1430-1433, 2013.

 [9] Jianjie Li, Junfa Mao,and Haoran Zhu, “Localized dual-side mushroom ground plane structure for the SSN suppression in multilayer PCBs,Prog. Electromagn. Resea. Lett., vol. 34, pp. 169-176, 2012.

 [10] Haoran Zhu, Tao Ni,andYuefei Dai, “Simulation and Analysis of the Ultra-Wideband RF-End System,” IEEE International Conference on Microwave and Millimeter Wave Technology, Beijing, China, Jun. 5-6, 2016.

 [11] Haoran Zhu, Tao Ni,andYuefei Dai, “Analysis of the Capacitance Compensation Characteristic of Wire-Bonding Interconnection for the Multi-Chips Circuit,” National Microwave and Millimeter Wave Conference of China, Hefei, May 51-28, 2015.

 [12] Haoran Zhu andJunfa Mao, “Signal integrity and power integrity analysis for novel power plane of EBG structure in mixed signal systems,” IEEE International Wireless Symposium, Beijing, Apr. 13-19, 2013.

 [13] Haoran Zhu andJunfa Mao, “Complementary double spiral resonators localized on embedded capacitance for ultra-wideband suppression of SSN,” European Microwave Conference, Nuremberg, Oct. 8-10, 2013.

 [14] Haoran Zhu andJunfa Mao, “A novel bandstop Filter with wide stopband using signal interference technology,” IEEE International Workshop on Microwave and Millimeter Wave Circuits and System Technology, Chengdu, China, Apr. 19-20, 2012.

 [15] Haoran Zhu andJunfa Mao, “A bandstop filter based on non-bianisotropic complementary split ring resonators (NBCSRRs),” IEEE Electrical Design and Packaging Symposium, Hangzhou, China, Dec. 11-14, 2011.

[16] Haoran Zhu andJunfa Mao, “A compact wideband lowpass filter bansed on semi-lumped topology,”National Microwave and Millimeter Wave Conference of China, Chongqing, May 21-24, 2013.

[17] Haoran Zhu andJunfa Mao, “A widestop band lowpass filter based on dual plane EBG structure,”National Microwave and Millimeter Wave Conference of China, Qingdao, Jun. 5-11, 2011. (Best Paper Award)




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