2021
DOI: 10.1109/access.2021.3103243
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W-Band Sensor for Complex Permittivity Measurements of Rod Shaped Samples

Abstract: A novel W-band sensor for complex permittivity measurements of rod shaped samples based on reflectometer method is described. Characterization of dielectric materials around 100 GHz is quite a challenge. The main limitation is the requirements for the accuracy of the dimensions of the test sample and ensuring good contact with conductive surfaces. From this point of view, it seems interesting to use a cylindrical waveguide with the TE01 mode. The four linearly-polarized H10 fields of rectangular waveguides wit… Show more

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Cited by 3 publications
(3 citation statements)
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References 17 publications
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“…For the remaining materials, there is an analogous agreement between the measurement results obtained using the TE 10 and TM 11 modes. For the FR4 sample, the obtained values were confirmed in [29,30], for the PVDF in [31,36], and for the PTFE in [5,[32][33][34][35].…”
Section: Measurement Resultsmentioning
confidence: 55%
See 1 more Smart Citation
“…For the remaining materials, there is an analogous agreement between the measurement results obtained using the TE 10 and TM 11 modes. For the FR4 sample, the obtained values were confirmed in [29,30], for the PVDF in [31,36], and for the PTFE in [5,[32][33][34][35].…”
Section: Measurement Resultsmentioning
confidence: 55%
“…The first is due to the permittivity ε r extraction resulting from (35). The traditional method requires first the determination of permeability µ r , from (33), and then ε r , from (34).…”
mentioning
confidence: 99%
“…One of the important applications of microwave sensors is determining the dielectric constant of various materials [7][8][9][10][11][12]. By determining the dielectric properties of materials, the type of material can be determined, and one of these methods is the use of bandpass [13] and bandstop filters [14,15] and antenna [16][17][18] structures.…”
Section: Introductionmentioning
confidence: 99%