• DocumentCode
    586918
  • Title

    Characterization of radar absorber based on square patch textured surface

  • Author

    Olivia, L. ; Kurniawan, Adit ; Sugihartono ; Munir, Achmad

  • Author_Institution
    Fac. of Electro & Commun., Inst. Teknol. Telkom, Bandung, Indonesia
  • fYear
    2012
  • fDate
    21-23 Nov. 2012
  • Firstpage
    210
  • Lastpage
    212
  • Abstract
    A square patch can operate whereby at the resonance frequency of resistively textured surface. The surface behaves like a perfect magnetic conductor; therefore the electric field would be in tangential to the surface. The developed patch that consists of square shape of metallic copper with length of 22mm and gap between patches of 2.0mm is placed on a single-sided 3.2mm thick grounded FR4 Epoxy dielectric substrate. Relative permittivity and tan δ of the dielectric substrate are 4.04 and 0.02, respectively, whilst the thickness of metallic copper top patch as well as the ground plane is 0.035mm. The losses of dielectric substrate and copper conductive are also taken into account. Surface-mounted-resistive elements are incorporated midway connecting between the adjacent patches to reduce the amount of backscatter from the surface. The reflection coefficient of absorber with resistive elements of 440Ω where upon the incident electromagnetic energy should be absorbed is up to 34dB.
  • Keywords
    radar absorbing materials; adjacent patches; copper conductive; dielectric substrate; electric field; ground plane; magnetic conductor; metallic copper; metallic copper top patch; radar absorber characterization; relative permittivity; resistance 440 ohm; resistively textured surface resonance frequency; single-sided thick grounded FR4 epoxy dielectric substrate; square patch textured surface; surface-mounted-resistive elements; Conductors; Copper; Dielectric substrates; Impedance; Radar; Surface impedance; Surface texture; Perfect magnetic conductor; radar absorber; resistive element; square patch; textured surface;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Radio-Frequency Integration Technology (RFIT), 2012 IEEE International Symposium on
  • Conference_Location
    Singapore
  • Print_ISBN
    978-1-4673-2303-1
  • Type

    conf

  • DOI
    10.1109/RFIT.2012.6401663
  • Filename
    6401663