A simple method to estimate relative permittivity and tangent loss of printed circuit board materials
Ronal D. Montoya Montoya, Natalia Gaviria Gómez
Abstract
Ronal D. Montoya Montoya, Natalia Gaviria Gómez
Abstract
This paper presents a simple and low cost method to estimate relative permittivity and tangent loss for dielectric sheets used in printed circuit boards (PCB's). The process starts by building a rectangular cavity in a very easy manner. As an example, the results to estimate relative permittivity and tangent loss of a fiber glass PCB are shown. The relative permittivity and tangent loss are presented as a function of frequency. To obtain resonant frequencies, the return loss (S11) was measured using a vector network analyzer (VNA). Relative permittivity and tangent loss were estimated at the frequencies of the excited modes in the resonant cavity. The results are presented in a frequency span of 1 GHz to 11 GHz. The nonlinear behavior of the relative permittivity and tangent loss for the dielectric material evaluated are presented. The relative permittivity exhibites a stable behavior at high frequencies while the tangent loss is shown to increase with frequency.
OpenAlex reports 6 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
This paper presents a simple and low cost method to estimate relative permittivity and tangent loss for dielectric sheets used in printed circuit boards (PCB's). The process starts by building a rectangular cavity in a very easy manner. As an example, the results to estimate relative permittivity and tangent loss of a fiber glass PCB are shown. The relative permittivity and tangent loss are presented as a function of frequency. To obtain resonant frequencies, the return loss (S11) was measured using a vector network analyzer (VNA). Relative permittivity and tangent loss were estimated at the frequencies of the excited modes in the resonant cavity. The results are presented in a frequency span of 1 GHz to 11 GHz. The nonlinear behavior of the relative permittivity and tangent loss for the dielectric material evaluated are presented. The relative permittivity exhibites a stable behavior at high frequencies while the tangent loss is shown to increase with frequency.
Key concepts: Dissipation factor, Relative permittivity, Permittivity, Dielectric loss, Materials science, Tangent, Dielectric, Return loss