3차원 인쇄 기술 기반 안테나/RF 기술동향

  • 윤익재 (충남대학교 전기공학과) ;
  • 이수현 (충남대학교 전기공학과) ;
  • 공명준 (충남대학교 전기공학과) ;
  • 신건영 (충남대학교 전기공학과)
  • Published : 2017.07.31

Abstract

Keywords

References

  1. H. Kodama, "Automatic method for fabricating a three dimensional plastic model with photo hardening polymer", Rev. Sci. Instrum., vol. 52, no. 11, pp. 1770-1773, 1981. https://doi.org/10.1063/1.1136492
  2. W. Charles Hull, "Apparatus for production of three-dimensional objects by stereolithography", US Patent, no. 4,575,330, Mar. 1986.
  3. S. Scott Crump, "Apparatus and method for creating three-dimensional objects", US patent, no. 5,121,329, Jun. 1992.
  4. R. Carl Deckard, "Apparatus for producing parts by selective sintering", US Patent, no. 5,597,589, Jan. 1997.
  5. A. Bowyer, "RepRap project" Available: http://reprap.org
  6. C. R. Garcia, R. C. Rumpf, H. H. Tsang, and J. H. Barton, "Effects of extreme surface roughness on 3D printed horn antenna", IET Electron. Lett., vol. 49, no. 12, 2013.
  7. O. S. Kim, "Rapid prototyping of electrically small spherical wire antennas", IEEE Trans. Antennas Propag., vol. 62, no. 7, pp. 3839-3842, 2014. https://doi.org/10.1109/TAP.2014.2317489
  8. M. Kong, G. Shin, S.-H. Lee, and I.-J. Yoon, "Electrically small folded spherical helix antennas using copper strips and 3D printing technology", IET Electron. Lett., vol. 52, no. 12 pp. 994-996, 2016. https://doi.org/10.1049/el.2016.0982
  9. M. Kong, I.-J. Yoon, "A 3D printed low profile magnetic dipole antenna", in Proc. IEEE Antennas Propag. Int. Symp., San Diego, CA, Jul. 2017.
  10. W. Liang, L. Raymond, and J. Rivas, "3-D-printed air-core inductors for high-frequency power converters", IEEE Trans. Power Electron, vol. 31, no. 1, pp. 52-64, 2016. https://doi.org/10.1109/TPEL.2015.2441005
  11. Y. F. Wu, Y. J. Cheng, "Spherical conformal antenna array based on 3D printing framework", in Proc. 2016 IEEE MTT-S Int. Microwave Workshop Series on Advanced Materials and Processes for RF and THz Applications (IMWS-AMP).
  12. G. McKerricher, J. G. Perez, and A. Shamim, "Fully inkjet printed RF inductors and capacitors using polymer dielectric and silver conductive ink with through vias", IEEE Trans. Electron Devices, vol. 62, no. 3, pp. 1002-1009, Mar. 2015. https://doi.org/10.1109/TED.2015.2396004
  13. M. Ahmadloo, P. Mousavi, "A novel integrated dielectric-and-conductive ink 3-D printing technique for fabrication of microwave devices", in Proc. IEEE MTT-S Int. Microwave Symp. (IMS), Seattle, WA, USA, Jun. 2013.
  14. M. Liang, W.-R. Ng, K. Chang, K. Gbele, M. E. Gehm, and H. Xin, "A 3-D Luneburg lens antenna fabricated by polymer jetting rapid prototyping", IEEE Trans. Antennas Propag., vol. 62, no. 4, pp. 1799-1807, 2014. https://doi.org/10.1109/TAP.2013.2297165
  15. P. Nayeri, M. Liang, R. A. Sabory-Garcia, M. Tuo, F. Yang, M. Gehm, H. Xin, and A. Z. Elsherbeni, "3D printed dielectric reflectarrays: low-cost high-gain antennas at sub-millimeter waves", IEEE Trans. Antennas Propag., vol. 62, no. 4, pp. 2000-2008, 2014. https://doi.org/10.1109/TAP.2014.2303195
  16. O. S. Kim, "3D printing electrically small spherical antennas", in Proc. IEEE Antennas Propag. Soc. Int. Symp., Orlando, FL, USA, pp. 776-777, Jul. 2013.
  17. B. Zhang, H. Zirath, "3D printed iris bandpass filters for millimetre-wave applications", IET Electron. Lett., vol. 51, no. 22, pp. 1791-1793, 2015. https://doi.org/10.1049/el.2015.2342
  18. B. Zhang, H. Zirath, "Metallic 3-D printed rectangular waveguides for millimeter-wave applications", IEEE Trans. Compon., Packag., Manuf. Technol., vol. 6, no. 5, pp. 796-804, May. 2016. https://doi.org/10.1109/TCPMT.2016.2550483
  19. B. Zhang, P. Linner, C. Karnfelt, P. L. Tam, U. Sodervall, and H. Zirath, "Attempt of the metallic 3D printing technology for millimeter-wave antenna implementations", in Proc. Asia Pacific Microw. Conf., Nanjing, China, pp. 1-3, Dec. 2015.
  20. G. L. Huang, T. H. Chio, T. S. Yeo, and S. G. Zhou, "Application of 3-D metal-direct-printing technique for waveguide antenna fabrication", in Proc. URSI Nat. Radio Sci. Meeting, Vancouver, BC, Canada, Jul. 2015.
  21. E. A. Rojas-Nastrucci, J. Nussbaum, T. M. Weller, and N. B. Crane, "Meshed rectangular waveguide for high power, low loss and reduced weight applications", in Proc. IEEE MTT-S Int. Microw. Symp.(IMS), pp. 1-4, May 2016.
  22. J. C. S. Chieh, B. Dick, S. Loui, and J. D. Rockway, "Development of a Ku-band corrugated conical horn using 3-D print technology", IEEE Antennas Wireless Propag. Lett., vol. 13, pp. 201-204, 2014. https://doi.org/10.1109/LAWP.2014.2301169
  23. M. Kong, G. Shin, S. Lee, and I.-J. Yoon, "An electrically small, 3D printed folded spherical meander antenna", in Proc. 2017 Asia-Pacific Int. Symp. Electromag. Compatibility (2017 APEMC), pp. 102-104, Jun. 2017.
  24. S. Moscato, R. Bahr, T. Le, M. Pasian, M. Bozzi, L. Perregrini, and M. M. Tentzeris, "Infill-dependent 3-D-printed material based on NinjaFlex filament for antenna applications", IEEE Antennas Wireless Propag. Lett., vol. 15, pp. 1506-1509, 2016. https://doi.org/10.1109/LAWP.2016.2516101
  25. S. Y. Wu, C. Yang, W. Hsu, and L. Lin, "3D-printed microelectronics for integrated circuitry and passive wireless sensors", Microsystems and Nanoengineering, vol. 1, 15013, 2015. https://doi.org/10.1038/micronano.2015.13
  26. F. Cai, Y.-H. Chang, K. Wang, C. Zhang, B. Wang, and J. Papapolymerou, "Low-loss 3-D multilayer transmission lines and interconnects fabricated by additive manufacturing technologies", IEEE Trans. Microw. Theory Techn., vol. 64, no. 10, pp. 3208-3216, Oct. 2016. https://doi.org/10.1109/TMTT.2016.2601907
  27. Available: http://www.emw.co.kr
  28. A. Friedrich, B. Geck, O. Klemp, and H. Kellermann, "On the design of a 3D LTE antenna for automotive applications based on MID technology", in Proc. 2013 Eur. Microwave Conf. (2013 EuMC), pp. 640-643, Oct. 2013.
  29. F. Gianesello, A. Bisognin, D. Titz, C. Luxey, C. A. Fernandes, J. R. Costa, and D. Gloria, "3D printing technology: Enabling innovative & cost effective industrial antenna solution", in Proc. Int. Workshop on Antenna Technology, Florida, USA, pp. 55-56, 2016.