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Research Article

A method to improve the finite surface roughness of an LCP-based microstrip filter at Q-Band

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Pages 2135-2146 | Received 19 Oct 2021, Accepted 11 Apr 2022, Published online: 27 Apr 2022

References

  • Cameron RJ, Kudsia CM, Mansour RR. Microwave filters for communication systems. (NJ): Hoboken: Wiley & Sons; 2007.
  • Kudsia C, Cameron R, Tang WC. Innovation in microwave filters and multiplexing networks for communication satellite systems. IEEE Trans Microw Theory Tech. 1992;40:1133–1149.
  • Bairavasubramanian R, Pinel S, Laskar J, et al. Compact 60-ghz bandpass filters and duplexers on liquid crystal polymer technology. IEEE Microwave Wireless Compon Lett. 2006;16:237–239.
  • Zhang L, Chen K, Chen G, et al. Study of flexible RF front-end module based on liquid crystal polymer substrate. 2020 International conference on microwave and millimeter wave technology (ICMMT); 2020, p. 1–3. DOI: 10.1109/ICMMT49418.2020.9386888.
  • Thompson DC, Tantot O, Jallageas H, et al. Characterization of liquid crystal polymer (LCP) material and transmission lines on LCP substrates from 30--110 GHz. IEEE Trans Microwave Theory Tech. 2004;52:1343–1352.
  • Rogers Corporation Advanced Circuit Materials. Website: http://www.rogerscorporation.com/acm/index.html.
  • Ni J, Hong J, Martin IP. Compact microstrip IF Lossy filter with ultra-wide stopband. IEEE Trans Microwave Theory Tech. 2018;66(10):4520–4527. DOI:10.1109/TMTT.2018.2858781.
  • Zou G, Gronqvist H, Starski P, et al. Characterization of liquid crystal polymer for high frequency system-in-a-package applications. IEEE Trans Adv Packag. 2002;25:503–508.
  • Thompson DC, Tantot O, Jallageas H, et al. Characterization of liquid crystal polymer (LCP) material and transmission lines on LCP substrates from 30--110GHZ. IEEE Trans Microwave Theory Tech. 2004;52:1343–1352.
  • Gold G, Helmreich K. A physical surface roughness model and its applications. IEEE Trans Microwave Theory Tech. 2017;65(10):3720–3732.
  • Gold G, Helmreich K. Surface impedance concept for modeling conductor roughness. Proceedings of the IEEE MTT-S International Microwave Symposium 2015 (IMS 2015), Phoenix, Arizona, USA; 2015.
  • Thompson D. Characterization and design of liquid crystal polymer (LCP) based multilayer RF components and packages [PhD thesis]. Georgia Institute of Technology; 2006.
  • Inoue H, Fukutake S, Ohata H. Liquid crystal polymer film heat resistance and high dimensional stability. Procedings of Pan Pacific Microelectronics Symposium; 2001. p. 273–278.
  • Khoo C, Brox B, Norrhede R, et al. Effect of copper lamination on the rheological and copper adhesion properties of a thermotropic liquid crystalline polymer used in PCB applications. IEEE Trans Comp Packag Manufact Technol. 1997;20:219–226.
  • Bairavasubramanian R, Papapolymerou J. Multilayer quasi-elliptic filters using dual mode resonators on liquid crystal polymer technology. IEEE MTT-S International Microwave Symposium Digest; 2007.
  • Papapolymerou J, Laskar J, Quendo C, et al. Dual-band filters for WLAN applications on liquid crystal polymer technology. IEEE MTT-S International Microwave Symposium Digest; 2005.
  • Li XF, Xiao JK. Multilayer LCP millimeter-wave broadband reflection less bandpass filter based on broadside coupling. 2021 IEEE 4th International Conference on Electronic Information and Communication Technology (ICEICT); 2021, pp.740–743. DOI:10.1109/ICEICT53123.2021.9531092.

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