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REVIEW ARTICLE

Ka-band dual sheet beam traveling wave tube using supported planar ring-bar slow wave structure

, , , , , , , , , & show all
Pages 2236-2250 | Received 03 Apr 2020, Accepted 29 Jul 2020, Published online: 29 Aug 2020

References

  • Nebuloni L, Orsenigo G. Microwave power module for space applications. IEEE Trans Electron Devices. 2001;48(1):88–94. doi: 10.1109/16.892173
  • Kory C, Ives L, Booske J, et al. Novel TWT interaction circuits for high frequency applications. International Vacuum Electronics Conference (IVEC); 2004.
  • Alaria MK, Bera A, Sharma RK, et al. Design and development of helix slow-wave structure for Ku-band TWT. IEEE Transactions on Plasma Science. 2011;39(1):550–554. doi: 10.1109/TPS.2010.2089701
  • Mistretta A, Martorana R, Bisconti D, et al. Development of a 1.5-kW average output power coupled-cavity TWT With a 10% bandwidth Operating in X-band. IEEE Trans Electron Devices. 2018;65(6):2252–2256. doi: 10.1109/TED.2017.2785662
  • Ruan CJ, Zhang MW, Dai J, et al. W-Band multiple beam staggered double-vane traveling wave tube with broad band and high output power. IEEE Transactions On Plasma Science. 2015;43(7):2132–2139. doi: 10.1109/TPS.2015.2435160
  • Tian YY, Yue LN, Zhou Q, et al. Investigation on sheet beam folded V-Shape Groove waveguide for millimeter-wave TWT. IEEE Transactions On Plasma Science. 2016;44(8):1363–1368. doi: 10.1109/TPS.2016.2582505
  • Shen F, Wei YY, Xu X, et al. U-shaped microstrip meander-line slow-wave structure for Ka-band traveling-wave tube. International Conference on Microwave and Millimeter Wave Technology (ICMMT); 2012.
  • Shen F, Wei YY, Yin HR, et al. A Novel V-shaped microstrip meander-line slow-wave structure for W-band MMPM. IEEE Transactions On Plasma Science. 2012;40(2):463–469. doi: 10.1109/TPS.2011.2175252
  • Bai NF, Gu LL, Shen CS, et al. S-Shaped microstrip meander-line slow-wave structure for W-Band traveling-wave tube. International Vacuum Electronics Conference (IVEC); 2013.
  • Wang SM, Gong YB, Wang ZL, et al. Study of the Symmetrical microstrip angular Log-periodic meander-line traveling-wave tube. IEEE Transactions On Plasma Science. 2016;44(9):1787–1793. doi: 10.1109/TPS.2016.2598614
  • Fu CF, Wei YY, Wang WX. Dispersion characteristics of a rectangular helix slow-wave structure. IEEE Trans Electron Devices. 2008;55(12):3582–3589. doi: 10.1109/TED.2008.2006539
  • Chua C, Aditya S, Zhongxiang S. Effective dielectric constant method for a planar helix with straight-edge connections. IEEE Electron Device Letters. 2009;30(11):1215–1217. doi: 10.1109/LED.2009.2031827
  • Chua C, Aditya S, Tsai JM. Microfabricated planar helical slow-wave structures based on straight-edge connections for THz vacuum electron devices. Terahertz Science and Technology. 2011;4(4):208–229.
  • Zhao C, Aditya S, Chua C. Analysis of coupled planar helices with straight-edge connections for application in millimeter-wave TWTs. IEEE Trans Electron Devices. 2013;60(3):1244–1250. doi: 10.1109/TED.2013.2241437
  • Zhao C, Aditya S, Chua C. Connected pair of planar helices with straight-edge connections for application in TWTs. IEEE Trans Electron Devices. 2013;61(6):1692–1698. doi: 10.1109/TED.2014.2298857
  • Leborgne RH, Goodman C, Hull RR, et al. Development of an 800 W Ka-band, ring-bar TWT. Technical digest. IEDM; 1991.
  • Datta SK, Naidu VB, Rao PRR, et al. Equivalent circuit analysis of a ring–bar slow-wave structure for high-power traveling-wave Tubes. IEEE Trans Electron Devices. 2009;56(12):3184–3190. doi: 10.1109/TED.2009.2030710
  • Lopes DT, Motta CC. Large signal analysis of ring-bar slow-wave structures for a Ku-band traveling-wave tube. IEEE Pulsed Power Conference; 2009.
  • Ding C, Wei YY, Wang YY, et al. 2-Dimensional microstrip meander-line for broad band planar TWTs. IEEE International Vacuum Electronics Conference (IVEC); 2016.

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