• Journal of Terahertz Science and Electronic Information Technology
  • Vol. 17, Issue 6, 1041 (2019)
PEI Naichang*
Author Affiliations
  • [in Chinese]
  • show less
    DOI: 10.11805/tkyda201906.1041 Cite this Article
    PEI Naichang. Miniaturized integrated receiving front-end in V-band[J]. Journal of Terahertz Science and Electronic Information Technology , 2019, 17(6): 1041 Copy Citation Text show less
    References

    [1] the principle of remote sensing[M]. Beijing:Science Press, 1982.)

    [2] 508-512. (LI Xiangqin,XIE Zhenchao. Tolerance analysis of sub-millimeter wave radiometer antenna based on parametric

         control method[J]. Journal of Terahertz Science and Electronic Information Technology, 2016,14(4):508-512.)

    [3] FABIO B,ANTONELLA B,ALBERTO R,et al. Comparative analysis of recent satellite missions for multi-temporal SAR

         interferometry[C]// Proceedings of Society of Photo-Optical Instrumentation Engineers. Edinburgh,UK:[s.n.], 2016.

    [4] 183 GHz[J]. IEEE Geoscience and Remote Sensing Letters, 2018,15(2):1-15.

         COOPER K B,MONJE R R,MILLAN L,et al. Atmospheric humidity sounding using differential absorption radar near

    [5] (SONG Fanglei,ZHEN Weimin,YU Xiao,et al. Prediction performance comparison between TIEGCM and IRI over China

         ionosonde stations[J]. Chinese Journal of Radio Science, 2017,32(3):356-364.)

    [6] and Remote Sensing Symposium(IGARSS). Fort Worth,TX,USA:IEEE, 2017:1395-1396.

         for L-band interferometric snow depth and snow water equivalent estimation[C]// 2017 IEEE International Geoscience

         DEEB E J,MARSHALL H P,FORSTER R R,et al. Supporting NASA SnowEx remote sensing strategies and requirements

    [7] preliminary results[C]// International Geoscience and Remote Sensing Symposium. Fort Worth,TX,USA:IEEE, 2017:1403-1405.

         COCCIA A,TRAMPUZ C,ORTOLANI M,et al. Deployment of the snowsar sensor in the snowex campaign by nasa and

    [8] application of the world meteorological satellite[J]. Science & Technology Review, 2001,19(1):13-17.)

    [9] implementation of the broadband angle tracking receiver of millimeter wave band[D]. Xi'an,China:Xidian University, 2014.)

    [10] Electronics Letters, 2015,51(19):1503-1505.

         WANG Chong,LI Zhiqun,LI Qin. 60 GHz broadband variable gain mixer using positive feedback in 65 nm CMOS[J].

    [11] Zhigang. Design of 60 GHz CMOS on-chip balun and power amplifier[J]. Electronic Science & Technology, 2017,4(2):6-10.)

    [12] CHI Taiyun,LI Sensen. A 60 GHz on chip linear radiator with single-element 27.9 dBm psat and 33.1 dBm peak EIRP

         Conference. Shanghai,China:IEEE, 2017:1403-1405.

         using multifeed antenna for direct on antenna power combining[C]// 2017 IEEE International Solid-State Circuits

    [13] technology[J]. Information Science, 2016,46(8):1086-1107.)

    [14] HSU Y C,HAROUN I,CHANG D C,et al. A low-cost small-size 60 GHz quadrature coupler for IPD-based SiP radio

         systems[C]// Proceedings of Asia-Pacific Microwave Conference. Sendai,Japan:IEEE, 2014:831-833.

    [15] front end for airport foreign body detection radars[J]. Telecommunication Engineering, 2013,53(10):1357-1361.)

    PEI Naichang. Miniaturized integrated receiving front-end in V-band[J]. Journal of Terahertz Science and Electronic Information Technology , 2019, 17(6): 1041
    Download Citation