[1] |
弋稳. 雷达接收机技术[M]. 北京: 电子工业出版社, 2005.
|
|
Ge Wen. Radar receiver technology[M]. Beijing: Publishing House of Electronics Industry, 2005.
|
[2] |
叶波涛, 鲁帆. 电子战微波接收机灵敏度特性[J]. 舰船电子对抗, 2013, 36(4):19-22.
|
|
Ye Botao, Lu Fan. Sensitivity characteristics of electronic warfare microwave recevier[J]. Shipboard Electronic Countermeasure, 2013, 36(4):19-22.
|
[3] |
何锡君, 郭岩. 一种机载雷达无源探测方式的设计[J]. 现代雷达, 2015, 37(8):6-10.
|
|
He Xijun, Guo Yan. Design of a passive detection mode in airborne radar[J]. Modern Radar, 2015, 37(8):6-10.
|
[4] |
宋晓雪. 基于船用导航雷达接收机滤波电路设计[D]. 西安:西安科技大学, 2013.
|
|
Song Xiaoxue. Based on the marine navigation radar receiver filter circuit design[D]. Xi'an:Xi'an University of Science and Technology, 2013.
|
[5] |
张越成. 新型小型化超宽带微波接收前端设计[J]. 电子科技, 2017, 30(5):101-104.
|
|
Zhang Yuecheng. Design of a novel miniaturized ultra-wide-band microwave receiver front-end[J]. Electronic Science and Technology, 2017, 30(5):101-104.
|
[6] |
魏强. 一种线性相位LC滤波器的设计[J]. 压电与声光, 2019, 41(5):621-626.
|
|
Wei Qiang. Design of a linear phase LC filter[J]. Piezoelectrics & Acoustooptics, 2019, 41(5):621-626.
|
[7] |
郭海蛟, 陈锟, 朱正平, 等. 一种提高脉冲雷达接收机干扰抑制力的新方法[J]. 微型机与应用, 2013, 32(7):49-52.
|
|
Guo Haijiao, Chen Kun, Zhu Zhengping, et al. A new method of improving interference rejection for pulse radar receiver[J]. Microcomputer and Its Applications, 2013, 32(7):49-52.
|
[8] |
森荣二. LC滤波器设计与制作[M].薛培鼎,译. 北京: 科学出版社, 2006.
|
|
Mori Eiji. Design and manufacture of LC filter[M]. Translated by Xue Peiding. Beijing: Science Press, 2006.
|
[9] |
黎隽希. 新型小型化低损耗开关滤波器阵列设计[D]. 成都:电子科技大学, 2015.
|
|
Li Junxi. The new compact miniaturized switch filter bank[D]. Chengdu:University of Electronic Science and Technology of China, 2015.
|
[10] |
陈锟, 代兵, 朱正平, 等. 一种分段无源预选滤波器的设计[J]. 中南民族大学学报(自然科学版), 2012, 31(1):75-79.
|
|
Chen Kun, Dai Bing, Zhu Zhengping, et al. Design of the menogenesis passive preselected filter[J]. Journal of South-Central University for Nationalities(Natural Science Edition), 2012, 31(1):75-79.
|
[11] |
徐锐敏, 陈志凯, 赵伟. 微波集成电路的发展趋势[J]. 微波学报, 2013, 29(Z1):55-60.
|
|
Xu Ruimin, Chen Zhikai, Zhao Wei. Development trend of microwave integrated circuits[J]. Journal of Military Communications Technology, 2013, 29(Z1):55-60.
|
[12] |
周江, 张先荣, 钟丽. 基于BGA互联的毫米波模块三维集成设计[J]. 电讯技术, 2019, 59(6):724-728.
|
|
Zhou Jiang, Zhang Xianrong, Zhong Li. 3D integration design of millimeter wave module based on BGA interconnection[J]. Telecommunication Engineering, 2019, 59(6):724-728.
|
[13] |
郑钰, 姜文, 凌天庆, 等. 基于BGA的子阵板间垂直互连研究[J]. 电子测量技术, 2020, 43(7):137-141.
|
|
Zheng Yu, Jiang Wen, Ling Tianqing, et al. Research on vertical interconnection between subarrays based on BGA[J]. Electronic Measurement Technology, 2020, 43(7):137-141.
|
[14] |
向伟玮, 张继帆, 董东, 等. BGA在微系统宽带射频互联中的应用[J]. 电子工艺技术, 2016, 37(2):71-73.
|
|
Xiang Weiwei, Zhang Jifan, Dong Dong, et al. Application of BGA interconnection in wide-band RF microsystem[J]. Electronics Process Technology, 2016, 37(2):71-73.
|
[15] |
汪鑫, 刘丰满, 吴鹏, 等. Ka-K波段收发模块的3D系统级封装(SIP)设计[J]. 微电子学与计算机, 2017, 34(8):113-117.
|
|
Wang Xin, Liu Fengman, Wu Peng, et al. Design and implementation of a Ka-K band receiver andtransmiter 3D SIP module[J]. Microelectronics & Computer, 2017, 34(8):113-117.
|
[16] |
姜兆国, 陈娜, 张路洋. 基于BGA的射频传输性能研究[J]. 电子技术与软件工程, 2018(8):107-108.
|
|
Jiang Zhaoguo, Chen Na, Zhang Luyang. Study on RF transmission characteristics based on BGA[J]. Electronic Technology & Software Engineering, 2018(8):107-108.
|
[17] |
周俊, 沈亚, 顾江川. 新型三维立体集成接收模块设计与实现[J]. 固体电子学研究与进展, 2016, 36(1):25-29.
|
|
Zhou Jun, Shen Ya, Gu Jiangchuan. A movel design of three dimensional integration receiving module[J]. Research & Progress of SSE, 2016, 36(1):25-29.
|
[18] |
张立广, 刘正中. SPWM逆变电源LC滤波器的研究与设计[J]. 电子设计工程, 2014, 22(6):172-174.
|
|
Zhang Liguang, Liu Zhengzhong. LC filter research and design in the SPWM inverter[J]. Electronic Design Engineering, 2014, 22(6):172-174.
|