• Journal of Infrared and Millimeter Waves
  • Vol. 33, Issue 3, 256 (2014)
YAO Chang-Fei1、2、*, ZHOU Ming2, LUO Yun-Sheng2, LIN Gang1, LI Jiao2, XU Cong-Hai2, KOU Ya-Nan2, WU Gang2, and WANG Ji-Cai2
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
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    DOI: 10.3724/sp.j.1010.2014.00256 Cite this Article
    YAO Chang-Fei, ZHOU Ming, LUO Yun-Sheng, LIN Gang, LI Jiao, XU Cong-Hai, KOU Ya-Nan, WU Gang, WANG Ji-Cai. Development of D-Band and G-Band frequency multiply sources with Schottky diodes of NEDI[J]. Journal of Infrared and Millimeter Waves, 2014, 33(3): 256 Copy Citation Text show less
    References

    [1] [DB/OL]: http: ∥www.virginiadiodes.com/

    [2] Yao C F. Research on Microwave and Millimeter Wave Frequency Mixing and Multiplying Techniques and their Applications[D]. Nanjing: Southeast University, 2010.

    [3] Graauw T. The Herschel-Heterodyne Instrument for the Far-Infrared (HIFI)[J]. Astronomy & Astrophysics, 2010, 5(8): 17.

    [4] Jones J R, Bishop W L, Jones S H, et al. Planar multibarrier 80/240GHz heterostructure barrier varactor triplers[J]. IEEE Transaction on Microwave Theory Techniques, 1997, 45(4): 512517.

    [5] Xiao Q, Hesel J L, Crowe T W, et al. High-efficiency heterostructure-barrier-varactor frequency triplers using AlN substrates[C]. IEEE MTT-S International Microwave Symposium Digest. California: 2005: 1217.

    [6] Vukusic J, Tomas B, T. Arezoo E, et al. A 0.2W heterostructure barrier varactor frequency tripler at 113GHz.[J]. IEEE Trans. Electron Devices Letters, 2007, 28(5): 340342.

    [7] Maestrini A, Ward J S, Gill J J, et al. A 540640GHz high-efficiency four-anode frequency tripler[J]. IEEE Transaction on Microwave Theory Techniques, 2005, 53(9): 28352843.

    [8] Maestrini A, Ward J S, Canseliet C T, et al. In-phase power-combined frequency triplers at 300 GHz[J]. IEEE Transaction on Microwave Wireless Components Letters, 2008, 18(3): 218220.

    [9] Maestrini A, Ward J S, Chattopadhyay G, et al. THz sources based on frequency multiplication and their applications[J]. Journal of RF-Engineering and Telecommunications, 2008, 5(6): 118122.

    [10] Crowe T W, Matmuch R J, Roser H P, et al. GaAs Schottky Diodes for THz Mixing Applications[J]. Procedding of the IEEE, 1992, 80(11): 18271841.

    [11] Rizzi B J. Planar Varactor Diodes for Millimeter and Submillimeter wavelengths[D]. Virginia: University of Virginia, 1992.

    [12] Archer J W. A high performance frequency doubler for 80 to 120GHz[J]. IEEE Transaction on Microwave Theory and Techniques, 1982, 30(5): 824825.

    [13] Porterfield D W, Crowe T W, Bradley R F, et al. A high-power fixed-turned millimeter-wave balanced frequency doubler[J]. IEEE Transaction on Microwave Theory Techniques, 1999, 47(4): 419425.

    [14] Maas S A. Nonlinear Microwave and RF Circuits[M]. Boston, Arech House, 2003.

    YAO Chang-Fei, ZHOU Ming, LUO Yun-Sheng, LIN Gang, LI Jiao, XU Cong-Hai, KOU Ya-Nan, WU Gang, WANG Ji-Cai. Development of D-Band and G-Band frequency multiply sources with Schottky diodes of NEDI[J]. Journal of Infrared and Millimeter Waves, 2014, 33(3): 256
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